This invention relates to a foam dispensing container that dispenses a liquid agent into foam, and a foam dispenser attachment used for the foam dispensing container.
There has been proposed a container (foam dispensing container) designed to dispense, from a container body, a various types of liquid materials (liquid agents) including hand soap, face wash, dishwashing detergent, hairdressing agent into foam after mixing them with air. For example, Patent Literature 1 describes a container with a foaming pump, designed to dispense a liquid agent housed in the container body into foam, when a nozzle head is pressed down. The container has a foam dispensing adapter having discretely arranged thereon a plurality of circular outlets according to a triangular or pentagonal layout at the vertexes and the center. The foam dispensing adapter is detachably attached to the nozzle head so as to be capped thereon from the top. In the container, positions and diameter of the outlets are determined so as to build up a foam object modeled after a character, as a result of crowding of foam lumps dispensed through a plurality of outlets.
Patent Literature 2 describes an aerosol container that jets, from a container body containing a liquid agent and a pressurizing gas, such liquid agent into a foamy or gel-like matter. By pressing the nozzle head down, the outlet is opened, and the liquid agent having been filled under pressure is jetted powerfully to produce foam or gel, to build up a spaghetti- or band-like contiguous geometry. The nozzle head has formed therethrough a plurality of flow channels through which the liquid agent is dispensed, and the outlet corresponds to each of these flow channels. Patent Literature 2 proposes various types of the outlet. More specifically, a plurality of outlets shaped like slit, rectangle, circle, star and so forth are discretely arranged over the face of the nozzle head. With such design, plural lines of foam or gel with a contiguous geometry will be dispensed.
The containers described in Patent Literature 1 and Patent Literature 2 were designed to dispense the foamy liquid agent through the outlets with the aid of the mechanical foaming pump or pressurizing gas, when the user presses down the nozzle head. Meanwhile, Patent Literature 3 describes a device that dispenses a liquid agent into foam, with the aid of an electrically actuated pump. The pump has an electrically reciprocated piston, which is activated upon detection of approach of the user's hand by a sensor, and quantitatively dispenses a predetermined amount of liquid agent. The liquid agent is dispensed through a round open nozzle in the form of liquid or foam.
[Patent Literature 1] JP-A-2010-149060
[Patent Literature 2] U.S. Pat. No. 5,813,785
[Patent Literature 3] JP-T2-2012-532644
[Patent Literature 4] JP-A-2008-36531
[Patent Literature 5] JP-Y2-H07-28056
By dispensing the liquid agent in a foamy manner, the user can quickly use it for cleansing or the like, without need of foaming it by hands. The container of Patent Literature 1 can build up the dispensed foam modeled after characters, posing an advantage of being joyful to see, not only for the convenience of cleansing.
The container of Patent Literature 1 can, however, only build the foam object with a relatively simple shape based on combination of several spherical lumps of foam, since the container merely has the circular outlets at a plural points. It is therefore difficult for the container of Patent Literature 1 to build up a finely-profiled foam object with the intended shape in various ways.
The container of Patent Literature 2 is an aerosol container for jetting foamy or gel-type liquid agent through a plurality of outlets to build up the spaghetti-like or band-like contiguous geometry, and the liquid agent having been filled under pressure is jetted powerfully in the form of foam or gel. It is therefore difficult for the container of Patent Literature 2 to build up a foam object with the intended shape modeled after characters of so, unlike the container of Patent Literature 1.
There is therefore a need for building up the liquid agent dispensed into foam with finely-profiled intended shape.
This invention is to provide a foam dispensing container that includes a container body that reserves a liquid agent; a head part that has an outlet, and dispenses the liquid agent delivered from the container body through the outlet into foam; and a dispensing operation part that allows dispensing of a predetermined amount of the foamy liquid agent through the outlet each time it accepts a user's operation, the outlet being an opening with a contiguous geometry narrowed from an intended shape, and being designed to build up the foamy liquid agent, dispensed through the outlet as a result of a single or multiple operations made on the dispensing operation part, into the intended shape in a plan view seen in the dispensing direction.
This invention is also to provide a foam dispenser attachment used while attached detachably to a nozzle part of a foam dispensing container that includes a container body that reserves a liquid agent; a nozzle part that has a nozzle opening, and dispenses the liquid agent delivered from the container body through the nozzle opening into foam; and a dispensing operation part that allows dispensing of a predetermined amount of the foamy liquid agent through the nozzle opening each time it accepts a user's operation, the foam dispenser attachment having an outlet with a contiguous geometry narrowed from an intended shape, and being designed to accept the foamy liquid agent dispensed through the nozzle opening and to dispense it through the outlet to thereby build up a foam object with the intended shape.
According to the foam dispensing container, and the foam dispenser attachment used for such foam dispensing container of this invention, the outlet is opened to have a contiguous geometry narrowed from the intended shape, so that the dispensed foam swells in the width direction to be built up to such intended shape in a plan view. This invention can therefore build up the foam object with the intended shape in a finely profiled manner.
The above and other objects, features and advantages of this invention will be more apparent from the following description of certain preferred embodiments taken in conjunction with the accompanying drawings.
Embodiments of this invention will be explained below referring to the attached drawings. In all drawings, all similar constituents will be given the same reference signs to properly skip repetitive explanation.
The foam dispensing container 100 of this embodiment has a container body 40 that reserves a liquid agent L, a head part 30 having an outlet 20, and a dispensing operation part (pump head part 32). The head part 30 dispenses the liquid agent L delivered from the container body 40 through the outlet 20 into foam. The dispensing operation part (pump head part 32) allows dispensing of a predetermined amount of foamy liquid agent (foam B) through the outlet 20, each time it accepts a user's operation. In this way, the foam object FB with a desired intended shape as illustrated in
The outlet 20 of this embodiment is formed to have such contiguous geometry narrowed from the intended shape. The foamy liquid agent (foam B) dispensed through the outlet 20, as a result of a single or multiple operations made on the dispensing operation part (pump head part 32), is built up into an intended shape in a plan view seen in the dispensing direction.
The foam dispensing container 100 will be further detailed below. In this specification, with the container body 40 stood upright, the side the head part 30 positioned relative to the container body 40 will be denoted as “top” or “upper side”, and the opposite side will be denoted as “bottom” or “lower side”. Such vertical direction does not always necessarily agree with the perpendicular direction. For the convenience, among horizontal directions that cross normally to the top-bottom direction, the direction connecting the container body 40 and the outlet 20 will occasionally be referred to as “distal-proximal direction”, and the side of the container body 40 closer to the outlet 20 referred to as “distal side”.
The foam dispensing container 100 is a container capable of dispensing the liquid agent L, reserved in a liquid form in the container body 40, after transforming it into foamy article. Although the liquid agent L is now represented by a hand soap, it may also be exemplified, without being limited thereto, by various products used in a foamy form, including face-wash, cleanser, dishwashing detergent, hairdressing, body soap, shaving cream, skin cosmetics such as foundation, hair dyes, and foods such as whipped cream.
The foam dispensing container 100 is a container capable of dispensing the liquid agent L from the container body 40, upon being actuated mechanically or electrically. When roughly itemized, the foam dispensing container 100 is composed of the container body 40 that reserves the liquid agent L, and a nozzle assembly 50 (foam delivery mechanism 50) that is attached to the container body 40 and is used for dispensing the liquid agent L.
The liquid agent L is reserved in the container body 40 at normal pressure or under pressure. The foam dispensing container 100 transforms the liquid agent L into foam, by bringing the liquid agent L reserved at normal pressure into contact with air, or reducing the pressure around the liquid agent L reserved under pressure. In this specification, the foamy liquid agent L will occasionally be referred to as “foam B”, for the convenience of discriminating it from the non-foamy liquid agent L reserved in the container body 40.
The foam dispensing container 100 of this embodiment is, as described later, a mechanical pumping container by which the liquid agent L reserved in the container body 40 at normal pressure is sucked up through a suction tube 57, when a piston 55 (see
The container body 40 has a bottle form, and has a hollow trunk 42, and a bottleneck 44 formed on the top end of the trunk 42 so as to shrink the diameter. Geometry and inner volume of the container body 40 are not specifically limited. The container body 40 is made of a synthetic resin. Now the liquid agent L (foam B) may be dispensed, alternatively to this embodiment, typically with the aid of a pressurized gas contained in a bomb, such as aerosol product, or with the aid of an electrically actuated motor 98 (see
The outlet 20 is an opening through which the form B is dispensed outside the foam dispensing container 100. The head part 30 is a term collectively denoting portions that form a flow channel of the liquid agent L or foam B outside the container body 40, and encompasses the outlet 20.
The outlet 20 is formed so as to be opened downward in a bottom face 31 of the head part 30, specifically at a portion thereof projected laterally from the bottleneck 44 of the container body 40. The dispensing direction of the foam B dispensed through the outlet 20 is downward, and downward visual viewing will be referred to as “plan view”. The foam B, when dispensed through the outlet 20 and released to the atmospheric pressure, will be locally swelled in the individual portions, while keeping as a whole the geometry of the outlet 20. In this way, the foam B will be built up into the foam object with an intended shape FB on the user's palm H (see
The head part 30 of this embodiment has a dispensing guide 26 having the outlet 20 on the bottom end thereof. The dispensing guide 26 is provided so as to extend below the head part 30 (more specifically a reservoir 60, see
The form B dispensed through the head part 30 is rectified as a whole after allowed to pass through the dispensing guide 26. In this way, the dispensed foam B is prevented from swelling in the widthwise direction, and thereby the foam object FB is suitably formed into the predetermined intended shape.
The dispensing guide 26 in this embodiment is formed so as to suspend down from the head part 30 and is formed like a wall. This beneficially prevents the dispensed foam B from adhering onto the undersurface of the head part 30, making it possible to improve release of the foam B, and to build up a well-profiled foam object FB. This invention is, however, not limited thereto, and wherein the dispensing guide 26 may be formed so as to be buried in the wall of the bottom face 31 of the head part 30. A possible case where the dispensing guide 26 is buried in the wall of the bottom face 31, may be such that the bottom face 31 is made thick enough, and a through-hole formed so as to extend through the bottom face 31 may be used as the dispensing guide 26. In this case, from the viewpoint of improving release of the foam B dispensed through the dispensing guide 26 formed so as to extend through the bottom face 31, it is possible to carve bottom face 31 (that is, the undersurface of the head part 30) to form a trench-like recess with a predetermined depth around the dispensing guide 26. By forming the recess close to the dispensing guide 26, the dispensing guide 26 will eventually be surrounded by a thin wall, and can thereby reduce the amount of foam B probably adhere onto the bottom face 31 of the head part 30.
Width (aperture) and geometry of the outlet 20 are determined so that the foam object FB with intended shape may be built up, when the foam B was dispensed onto the dispensing target plane TP positioned a predetermined distance SP (see
The intended shape of the foam object FB may be any of planar icons (pictures) representing letters, graphics and symbols. That is, the phrase stating that “the foamy liquid agent (foam B) is built up into an intended shape in a plan view seen in the dispensing direction, as a result of operation made on the dispensing operation part” means that the foam object FB, having a shape of a predetermined form in a plan view in the dispensed direction, is built on the dispensing target plane TP positioned a predetermined distance SP below the level of the outlet 20 upon completion of dispensing of the foam B. The foam object FB is formed into a three-dimensional shape having a predetermined thickness, on the dispensing target plane TP such as palm H. Such three-dimensional shape is recognized to be the above-described intended shape in a plan view in the dispensing direction.
Graphics of the intended shape is exemplified by those of animal, plant, human, animation character, geometrical shape, and pattern.
As illustrated in
The outlet 20 of this embodiment is formed as an opening having a contiguous geometry narrowed from the intended shape that is a plan view of the foam object FB. Now the phrase stating that the “intended shape is narrowed” means that the widths of the individual portions composing the intended shape are shrunk along the contour of the intended shape, or are shrunk so as to fill up the inside of the intended shape. The phrase stating that the “outlet 20 has a contiguous geometry” means that at least a partial area of the outlet 20 has a linear form whose length is sufficiently larger than the width. Representatively, the linear form is preferably a contiguous long shape, but the linear form is not limited thereto, and also includes embodiments having a plurality of discrete elements (openings) closely juxtaposed in the longitudinal direction, which are exemplified by the forms of broken line and chain line. More specifically, unlike the container of Patent Literature 1 by which an intended shape is stippled by using a plurality of outlets distributed two-dimensionally, the outlet 20 of this embodiment draws at least a part of the intended shape like a line drawing, by aid of the contiguous geometry that contains a long linear portion. Such linear portion may be a contiguous opening, or may be discrete openings arranged in line. In the description below, the term “linear” will be used to encompass a mode representing a continuous line, and a mode representing discrete elements arranged in line to give a broken line, chain line and so forth. The phrase stating that “the outlet 20 has a contiguous geometry narrowed from the intended shape” means that linear portions of the outlet 20 are arranged along the contour of the intended shape, or so as to fill the inside of the intended shape, for the purpose of building up the intended shape using the foam B that swells after dispensed.
For the purpose of building up, with the foam B, a lump of intended shape which outlines the plan view geometry of the foam object FB, the outlet 20 may be given as an opening with an integrated contiguous geometry. Alternatively, each of a plurality of partial outlets has a contiguous geometry, and these partial outlet may be combined to give the outlet 20. Each of the outlets 20 according to this embodiment and the later-described first to third modified examples (see
By forming the outlet 20 with a contiguous geometry as seen in the foam dispensing container 100 of this embodiment, the outlet 20, even if partially clogged, can sustainably dispense the foam B from both sides of the clogged portion. This is beneficial to avoid dispensing failure of the foam B, due to total clogging of the outlet 20. A possible cause of clogging of the outlet 20 is such that a residue of the foam B in the head part 30 may return after elapse of a certain period of time into the liquid agent L in liquid form, and can further promote solidification. However, by making the outlet 20 with a contiguous geometry, is now possible to prevent the total clogging of the outlet 20, even if a long duration of time elapsed after the foam B was dispensed and before the next dispensing operation, and the outlet 20 should be partially clogged. In other words, even if the liquid agent L contains an ingredient that is likely to solidify, it now becomes possible to dispense the foam B while reducing a risk of clogging of the outlet 20. By dispensing the foam B through opening portions adjoining to the locally clogged portion of the outlet 20, the solidified moiety that caused clogging may be expelled from the outlet 20 in such a way entrained by the dispensed foam B. In particular, as a result of contiguousness of formation of the narrowly-opened part 22 and the widely-opened part 24 as seen in this embodiment, even if the narrowly-opened part 22 should be partially clogged, the clogging at the narrowly-opened part 22 may be resolved by dispensing the form B through the widely-opened part 24. From this point of view, the outlet 20 preferably has a pair of widely-opened parts 24 (24a, 24b) on both ends of the narrowly-opened part 22 (see
The foam dispensing container 100 dispenses a predetermined amount of foam B through the outlet 20 each time the dispensing operation part (pump head part 32) is operated. Now the phrase stating that “a predetermined amount of foam B is dispensed” conceptually exclude that “foam B is unlimitedly and continuously dispensed”, so that the amount of foam B dispensed through the outlet 20 per operation made on the dispensing operation part (pump head part 32) is not always necessarily constant in a strict sense. “A predetermined amount of foam B dispensed through the outlet 20” means a bulk volume of foam B delivered through the outlet 20, when the dispensing operation part (pump head part 32) is operated, with the flow channel inside a nozzle assembly 50 (see
The bulk volume of the foam B dispensed per operation is preferably such as fitting in adult's palm H as illustrated in
By dispensing a predetermined amount of foam B as a result of operation made on the dispensing operation part (pump head part 32) as demonstrated by the foam dispensing container 100 of this embodiment, the foam object FB is prevented from unlimitedly swelling, and thereby a desired foam object FB with intended shape may be built up. A specific geometry of opening of the outlet 20, in particular the degree of narrowing from the intended shape, is determined so that the desired foam object FB with intended shape will be build up with a total amount of foam B dispensed by repetitively operating the dispensing operation part (pump head part 32) a predetermined certain number of times (one or plural times).
The geometry of the outlet 20 will further be detailed.
As illustrated in
The linear narrowly-opened part 22 may be a contiguous long opening as described above, or may be discrete openings arranged in line. The narrowly-opened part 22 may have a form of constant-width band, or may have a width that varies in the longitudinal direction.
Extension style of the narrowly-opened part 22 may be straight, curved, or bent, without special limitation. The narrowly-opened part 22 in this embodiment is composed of a plurality of narrowly-opened parts 22a, 22b which are bent and mutually connected. As described later, the narrowly-opened part 22a has a straight form, meanwhile the narrowly-opened part 22b has a curved form.
The widely-opened part 24 is an opened region of the outlet 20, made wider than the width of opening of the linear narrowly-opened part 22. Being bounded by a boundary where the width of opening of the outlet 20 discontinuously or abruptly increases, the side with a smaller width of opening will be denoted as the narrowly-opened part 22, and the wider side will be denoted as the widely-opened part 24.
The widely-opened part 24 may have a line pattern wider than the narrowly-opened part 22, or may be polygonal or near-circular form, without special limitation. As illustrated in
As illustrated in
As illustrated in
More specifically, the foam dispensing container 100 of this embodiment further includes a piston 55 that is attached to the container body 40 by aid of the cap 53 and is movable reciprocatively relative to the cap 53; and the housing 56 that houses the piston 55 and communicates with the outlet 20. The dispensing operation part (pump head part 32) in this embodiment sucks the liquid agent L from the container body 40 up into the housing 56 and dispenses it through the head part 30, by moving the piston 55 reciprocatively upon acceptance of a user's press-down operation.
The structure and operation of the nozzle assembly 50 will be briefed below. The ball valve 59 is a valve that prevents fall of the liquid agent L having been reserved in the housing 56 and the suction tube 57. When the user presses down, by his or her hand or so, the pump head part 32 (dispensing operation part) of the head part 30, the piston 55 increases air pressure in the housing 56, while restricting the ball valve 59 from ascending (opened) with the lower end of the piston 55. The piston 55 has provided thereto a liquid flow channel (not illustrated), which is a small hole that communicates the housing 56 with the head part 30. Since the area of opening of the liquid flow channel is sufficiently small, the air pressure in the housing may be elevated by pressing the pump head part 32 down powerfully, and the liquid agent L is then pushed from the housing 56 up into the head part 30. The head part 30 has provided thereto an air flow channel (not illustrated) that is communicated with the outside. The head part 30 has provided therein an air-liquid contact portion 51 on the flow channel for the liquid agent L. The air-liquid contact portion 51 is typically a mesh, which transforms the liquid agent L into foam (foam B), by allowing the air outside the head part 30 and the air in the housing 56, together with the liquid agent L, to pass through the air-liquid contact portion 51 (mesh). The foam B is dispensed through the outlet 20 of the head part 30. When the user releases his or her hand or so from the pump head part 32, the spring 58 elastically returns the piston 55 to the original position. The pressure inside the housing 56 becomes low, the ball valve 59 is opened, and a new portion of the liquid agent L is sucked up into the suction tube 57 to fill the housing 56 again. The inside of the head part 30 is kept at the atmospheric pressure with the outer air introduced through the air flow channel into the head part 30.
The above-described structure and operation of the nozzle assembly 50 are merely examples, and also well-known ones, such as a foam dispenser described in Patent Literature 4 described above, may be used.
With the nozzle assembly 50 of this embodiment, a predetermined amount of foam B is dispensed through the outlet 20, each time the pump head part 32 (dispensing operation part) is operated. The predetermined amount is determined by parameters such as stroke in reciprocating motion of the piston 55.
As illustrated in
The foam dispenser attachment 10 is used while being detachably attached to the nozzle part 52 of the foam dispensing container 100. The foam dispenser attachment 10 has the outlet 20, and when detachably attached to the nozzle part 52, the outlet 20 communicates with the nozzle opening 54. More specifically, the foam dispenser attachment 10 of this embodiment has the outlet 20 with the contiguous geometry narrowed from the intended shape, catches the foamy liquid agent (foam B) dispensed from the nozzle opening 54, and dispenses it through the outlet 20 to build up the foam object FB with intended shape.
With such design of the head part 30 separable into the foam dispenser attachment 10 and the nozzle part 52, a plurality of types of foam dispenser attachments 10 having different opening geometries of the outlet 20 may be attached to the nozzle part 52 in an exchangeable manner. The foam object FB with intended shape may be built up by dispensing, while using the container body 40 and the nozzle assembly 50 in common. Conversely, the common foam dispenser attachment 10 may be attached to the nozzle assemblies 50 of different container bodies 40 in an exchangeable manner. Accordingly, if the container body 40 and the nozzle assembly 50 should be discarded or exchanged, the foam dispenser attachment 10 may be used consecutively, and the foam dispenser attachment 10 may be attached afterward to the container body 40 and the nozzle assembly 50 having widely been put into practical use.
As illustrated in
As illustrated in
Since the head part 30 (foam dispenser attachment 10), having the outlet 20 opened therein, has the reservoir 60, the foam B delivered from the container body 40 is temporally reserved in the reservoir 60, and then uniformly dispensed downward over the entire portion of the outlet 20. The foam B is therefore prevented from being dispensed predominantly on the front end side (the lefthand side in
As described above, the head part 30 of the foam dispensing container 100 has the nozzle part 52. The nozzle part 52 of this embodiment dispenses the foamy liquid agent (foam B), delivered from the container body 40, obliquely downward inside the reservoir 60. The head part 30 (the foam dispenser attachment 10 in this embodiment) has an inclined face 62 that nearly confronts such obliquely downward direction. The inclined face 62 is provided inside the reservoir 60, and is formed between the wide guide part 28 and the narrow guide part 27. With such design, the foam B dispensed through the nozzle opening 54 towards the foam dispenser attachment 10 collides on the inclined face 62 to decelerate itself, and is uniformly filled inside the reservoir 60. The foam B is then dispensed downward through the outlet 20. The outlet 20 is formed so as to extend between the front end side and the base side of the inclined face 62 (see
The dispensing guide 26 is provided so as to extend downward from the reservoir 60. The foam B, having been decelerated inside the reservoir 60 and once reserved therein, flows into the dispensing guide 26, guided downward, and dispensed through the outlet 20. With the dispensing guide 26 provided below the reservoir 60, the foam B dispensed through the outlet 20 is reduced to swell. More specifically, the foam B has a lower bulk density and is highly compressive as compared with the liquid agent L in the liquid form, and thereby the foam B delivered through the nozzle opening 54 to the reservoir 60 and reserved there is compressed. For this reason, the foam B largely swells if the length of passage of the dispensing guide 26 is short. In contrast, if the length of passage of the dispensing guide 26 is long, the foam B is gradually depressurized as it passes through the dispensing guide 26, and is also rectified during passage through the dispensing guide 26. This advantageously stabilizes the shape of the dispensed foam B, and suppresses the dispensed foam B from swelling, so that the foam object FB with intended shape will be built up in a finely profiled manner.
As illustrated in
The head part 30 may have inside thereof a net body (not illustrated) through which the foamy liquid agent L delivered from the container body 40 is allowed to pass. Although the position of placement of the net body is not specifically limited, it is preferable to place at least a part of the net body inside the dispensing guide 26, or adjacent to the dispensing guide 26. In particular, the net body is preferably placed in the vicinity of the outlet 20.
By providing the net body in the vicinity of the outlet 20, the liquid agent L is prevented from dripping, even if the dispensing direction of foam B should be downward like in this embodiment. More specifically, while the liquid agent L in the state of foam B may otherwise return back to the liquid form with time due to collapse of bubbles, the net body provided close to the outlet 20 will help the liquid agent L in the liquid form adhere thereon, and prevent the liquid agent L from dripping from the outlet 20. Since the foam B passes through the net body immediately before being dispensed through the outlet 20, a further fine-bubbled foam may be produced.
The net body is a mesh or other porous body. The net body may be a mesh obtained by weaving warps and wefts, made of metal or resin, into plain weave or twilled weave (woven wire net), or may be a perforated screen plate obtained by perforating a sheet-like base to form therein a large number of fine throughholes. Although dimensional relation between the openings of the net body and the aforementioned air-liquid contact portion 51 is not specifically limited, the opening of the net body may be set larger than the opening of the air-liquid contact portion 51. With such setting, pressure loss at the net body may be reduced, and thereby the pressing force on the pump head part 32, necessary for dispensing the foam B through the outlet 20, is prevented from excessively increasing. For the net body and the air-liquid contact portion 51 composed of a plain weave or twilled weave, the opening is determined based on the diameter of the line material and the mesh count (number of line materials per inch). For the net body and the air-liquid contact portion 51 composed of a perforated plate, the opening is determined based on the averaged diameter of the fine throughholes individually approximated to circles.
In this embodiment, the net body may be placed on the base side of the feeding direction of the liquid agent L, relative to the outlet 20. The net body may be placed so as to cover the entire portion of the outlet 20 that is composed of the widely-opened part 24 and the narrowly-opened parts 22a, 22b. A part of the net body may be placed so as to extend over the internal bottom face 64a and the inclined face 62 illustrated in
The foam dispenser attachment 10 is configured by mutually combining the upper half 10a and the lower half 10b in the dispensing direction. The lower half 10b has the outlet 20 formed so as to open therein. This configuration facilitates formation of the reservoir 60 that has the inclined face 62 and an inner guide 29 described later, inside the foam dispenser attachment 10. After the foam dispenser attachment 10 was assembled, the upper half 10a and the lower half 10b may be joined unseparably, typically by using an adhesive. The upper half 10a and the lower half 10b may be formed typically by injection molding of a synthetic resin.
The outlet 20 has the linear narrowly-opened part 22, and the widely-opened part 24 that is formed contiguously with the narrowly-opened part 22 and is made wider than the narrowly-opened part 22. The widely-opened part 24 is placed on the front end side of the inclined face 62, and the narrowly-opened part 22 is placed on the base side. As illustrated in
The outlet 20 of this embodiment has a straight narrowly-opened part 22a that corresponds to the stem of eighth note, a curved narrowly-opened part 22b that corresponds to the flag, and a widely-opened part 24 that corresponds to the head. The dispensing guide 26 is formed so as to surround the circumference of the outlet 20 in a plan view as illustrated in
With such design, the foam object FB with intended shape, molded after a musical note (eighth note) as illustrated in
The widely-opened part 24 is disposed on the front end side (the lefthand side in
The plurality of linear narrowly-opened parts 22a, 22b of the outlet 20 in this embodiment cross each other. As illustrated in
As illustrated in
As illustrated in
The inner guide 29a of the upper half 10a is provided so as to surround a portion of the circumference of the outlet 20, particularly around the front end side of the feeding direction (indicated by an arrow in
The inner guides 29a and 29b partition the inside of the foam dispenser attachment 10 into the reservoir 60 that communicates with the outlet 20, and a closed area 61 that does not communicate with the outlet 20. The fitting part 16 communicates with the reservoir 60 formed on the inner side of the inner guide 29a. As a consequence, inside the foam dispenser attachment 10, there are formed the reservoir 60 that constitutes the flow channel of the foam B, and the closed area 61 the foam B cannot enter. With the closed area 61 formed inside the foam dispenser attachment 10, the volume of reservoir 60 relative to the total volume of foam dispenser attachment 10 is suppressed. It is therefore possible to reduce the amount of foam B that might remain in the reservoir 60 and vanish, rather than dispensed through the outlet 20.
Modified examples of the foam dispenser attachment 10 of the first embodiment will be explained.
As illustrated in
Meanwhile, the first modified example is different from the first embodiment in the aspects below. That is, as illustrated in
The foam object FB built up after dispensed through the foam dispenser attachment 11 of the first modified example looks snowman in a plan view. Note that, as a further modified example of the first modified example, the foam object FB may be shaped such that three or more near-circular portions CP are overlapped. In this case, the outlet 20 is preferably composed of three or more near-circular, widely-opened parts 24, and the linear narrowly-opened parts 22 that mutually connect them.
The outlets 20 of the second modified example and the third modified example illustrated in
The foam object FB built up after dispensed through the foam dispenser attachment 12 of the second modified example looks like human in a plan view. The foam object FB built up after dispensed through the foam dispenser attachment 13 of the third modified example looks like a letter (letter “A” in this modified example) in a plan view. Any one of the narrowly-opened parts 22a to 22c (the narrowly-opened part 22b in this modified example) is divided into a plurality of sections, leaving a separation region 25 in between. In the bottom face 31 of the foam dispenser attachment 13, an inner region 31a surrounded by the narrowly-opened parts 22a to 22c, and an outer region 31b around the narrowly-opened parts 22a to 22c are bridged together by the separation region 25. The foam dispenser attachment 13 may therefore be molded easily, and the outlet 20 is suppressed from being deformed contingently due to relative displacement of the inner region 31a and the outer region 31b under dispensing pressure of the foam B. The separation region 25 may be provided to a plurality of points of the narrowly-opened parts 22a to 22c. The length of the separation region 25, or the divisional distance of the narrowly-opened part 22b is preferably short as possible, so as to give the intended shape to the foam object FB, and may typically be made narrower than the line width of the narrowly-opened part 22b. As an alternative to the embodiment described above, the inner region 31a and the outer region 31b may be joined with a bridge (not illustrated) provided inside the foam dispenser attachment 13. With such design, each of the narrowly-opened parts 22a to 22c may be formed as a contiguous line segment, while disusing the separation region 25.
The outlet 20 of the fourth modified example illustrated in
The narrowly-opened parts 22a, 22b are partial outlets, and jointly constitute the outlet 20. The narrowly-opened parts 22a, 22b of the fourth modified example meander like comb teeth, and the end portions are spaced from each other. In other words, the foam dispenser attachment 14 has the separation region 25 between the narrowly-opened parts 22a, 22b as the partial outlets. The foam B is not dispensed from the separation region 25, so that the foam object FB will have a vacant portion VC.
The foam dispenser attachment 14 of the fourth modified example builds up the planar intended shape, by gathering the foam B respectively dispensed through the line segments 23a to 23c. In other words, when the intended shape of the foam object FB is planar, it is recommendable to virtually divide the plane into a plurality of regions, and to allocate the contiguous partial outlets of the outlet 20, each of which being narrowed from each region. With such design, the foam object FB having a large area or a complicated shape may accurately be built up with the foam B.
In conclusion, as represented by the foam dispenser attachments 10 to 14 of the first embodiment, and of the first to fourth modified examples, the outlet 20 used in this invention may have a variety of opening geometries.
The foam dispensing container 110 of the second embodiment is different from the foam dispensing container 100 of the first embodiment (see
The foam dispensing container 110 of the second embodiment is different from the foam dispenser attachment 10 of the first embodiment (see
The pump mechanism 92 has a reservoir 91, a piston 93a, a plunger 93b and a check valve 93c. The container body 40 with the liquid agent L reserved therein is set upside down in the enclosure 99 while directing the bottleneck downward. The reservoir 91 accepts the liquid agent L from the container body 40. The piston 93a is actuated by the motor 98, and reciprocally drives the plunger 93b to close the flow channel of the reservoir 91 in a freely openable/closable manner. The check valve 93c allows the liquid agent L to flow unidirectionally from the reservoir 91 towards the foam dispenser attachment 10, while preventing backflow.
The motor 98 is powered by the power source unit 90, and the operation thereof is controlled by the control unit 95. As the power source unit 90, a dry cell is typically used. The sensing part 96 is a proximity sensor that is disposed near the outlet 20 of the foam dispenser attachment 10, and detects approach of the user's hand. The sensing part 96 is typically a reflective sensor having an infrared transceiver. When the sensing part 96 detects approach of the user's hand, a detection signal is sent to the control unit 95 and used for activating the motor 98.
In the middle of a tube path 94a that constitutes the flow channel of liquid agent L, connecting the reservoir 91 and the foam dispenser attachment 10, there is provided an air-liquid contact portion 94b. When the piston 93a is positioned at the top dead center as illustrated in
Upon receiving a detection signal from the sensing part 96, the control unit 95 activate the motor 98 so as to reciprocate the piston 93a a preset number of times. In this way, a predetermined amount of liquid agent L is dispensed as the foam B through the outlet 20.
As seen in the foam dispensing container 110 of the second embodiment, the foam dispenser attachment 10 may be used while attached to the enclosure 99. Alternatively, as seen in the foam dispensing container 100 of the first embodiment (see
The foam dispensing container 100 of the third embodiment is different from the first embodiment in that it has an extension part 70, leaving the other aspects in common.
More specifically, the foam dispensing container 100 of the third embodiment has the container body 40 that reserves the liquid agent L; and the head part 30 that has the outlet 20, and dispenses the liquid agent L delivered from the container body 40 through the outlet 20 into foam. The head part 30 has the dispensing operation part (pump head part 32). The dispensing operation part (pump head part 32) dispenses a predetermined amount of foamy liquid agent (foam B) through the outlet 20, each time the user's operation is accepted. The dispensed foam B is schematically illustrated in
The head part 30 of this embodiment has extension parts 70 that extend beyond the front end position of the outlet 20 with respect to the dispensing direction DD.
Since the extension parts 70 extend beyond the front end position of the outlet 20 with respect to the dispensing direction DD, the extension parts 70 may be brought into contact with the dispensing target plane TP, while opposing the outlet 20 to the dispensing target plane TP leaving a space in between. In this way, the distance SP (see
Now the phrase stating that “the dispensed foamy liquid agent (foam B) is built up into the foam object FB with intended shape” means that the foam B dispensed through the outlet 20 is made up into the predetermined shape on the dispensing target plane TP. The intended shape of the foam object FB is not specifically limited, and is exemplified by geometrical shapes, characters' shapes and so forth. The intended shape means at least one of plan view geometry of the foam object FB when seen confronting to the dispensing target plane TP, or a three dimensional steric shape of the foam object FB. The foam object FB with intended shape includes foam objects shaped differently from those dispensed through a single nozzle with a circular cross section having widely been used in public in the foam dispensing container. Such foam objects include those built up after dispensed through a plurality of outlets, and those built up after dispensed through one or plural outlets that are formed by combining circle, rectangle and so forth.
This embodiment exemplifies a foam pump bottle designed to mechanically dispense the liquid agent L from the container body 40, when the pump head part 32 is pressed down. In the foam dispensing container 100 of this embodiment, the piston 55 (see
The head part 30 of this embodiment is configured by detachably combining the pump head part 32 having the nozzle part 52, and the foam dispenser attachment 10 having the outlet 20 (see
The outlet 20 is formed so as to be opened downward in a bottom face 31 of the head part 30, at a position (on the distal side) laterally projected out from the bottleneck 44 of the container body 40. The dispensing direction DD of the foam B dispensed through the outlet 20 of this embodiment is downward, so that a downward view will now be referred to as a plan view. The foam B dispensed through the outlet 20 and exposed to the air descends towards the dispensing target plane TP (see
The dispensing target plane TP is a flat plane or a curved plane on which the foam object FB is built up. Although a user's palm is exemplified in
Now the dispensing direction DD of the foam B means an overall direction of the foam B dispensed through the outlet 20. The dispensing direction DD is determined by various factors. The factors include flow direction of the foam B that passes through the outlet 20, an angle formed between the flow direction and the direction the outlet 20 opens, an angle between the direction of gravity and the direction the outlet 20 opens, and rate of swelling of the foam B that swells after dispensed through the outlet 20 and exposed to the air.
The head part 30 has the extension parts 70 that extend beyond the front end position of the outlet 20 with respect to the dispensing direction DD. The “front end position of the outlet 20 with respect to the dispensing direction DD” means the frontmost position, in the dispensing direction DD, of the circumferential wall (inner circumferential face of the dispensing guide 26) that partitions the outlet 20. The inner circumferential face of the dispensing guide 26 is the wall with which the foam B dispensed through the outlet 20 comes into contact.
The normal line of the outlet 20 of this embodiment (downward in
For the case, as an alternative to this embodiment, where the normal line of the outlet 20 crosses the dispensing direction DD, the front end position of the outlet 20 in the dispensing direction DD is given by the frontmost point, in the dispensing direction DD, of the circumferential wall that partitions the outlet 20. The cases where the normal line of the outlet 20 crosses the dispensing direction DD include, for example, the case where the outlet 20 was formed by beveling the tip of the tubular dispensing guide 26 (see
The phrase stating that the “extension parts 70 extend beyond the front end position of the outlet 20 with respect to the dispensing direction DD” means that at least a part of the extension parts 70 is positioned ahead of the front end position of the outlet 20 with respect to the dispensing direction DD. The extension parts 70 of this embodiment are formed so as to extend, relative to the outlet 20, from the rear side to the front side in the dispensing direction DD. At least the front ends 74 of the extension parts 70 are positioned below the outlet 20, and in other words, positioned ahead in the dispensing direction DD beyond the front end position of the outlet 20.
The extension parts 70 in this embodiment are fixed in terms of positional relation relative to the outlet 20. With such design, the extension parts 70 are prevented from moving relative to the outlet 20 even when pressed against the dispensing target plane TP, and can keep the distance SP (see
The extension parts 70 in this embodiment, illustrated in
As illustrated in
The normal line of the outlet 20 (opening) lies parallel to the direction the dispensing guide 26 suspends down. The dispensing direction DD in the foam dispensing container 100 of this embodiment therefore lies in the direction of normal line of the outlet 20 (opening), which directs downward as indicated by an arrow in
As illustrated in
The front ends 74 of the extension parts 70 are formed within a region that may be encompassed within the palm of one hand of the user (at least adult male). Positions of the base portions and front ends of the extension parts 70 may be determined depending on geometry or size of the outlet 20.
The extension parts 70 are preferably provided at a plurality of discrete positions around the outlet 20. More preferably, a pair of extension parts 70 are opposingly formed on both sides of the outlet 20, and so as to project out from the circumferential face of the foam dispenser attachment 10.
The extension parts 70 of this embodiment are integrally formed with the foam dispenser attachment 10 using a single material. With this design, the extension parts 70 will not be detached from the foam dispenser attachment 10, even when the extension parts 70 are kept pressed against the dispensing target plane TP and applied with drag from the target plane TP as a result of press-down operation made on the pump head part 32. However, as a modified example of this embodiment, the extension parts 70 may be detachably attached to the foam dispenser attachment 10. In other words, the extension parts 70 may have a detachable engagement part adapted to the foam dispenser attachment 10. The detachable engagement part is exemplified by a claw part that grasps the foam dispenser attachment 10, and an adhesive tape used for adhesive fixation to the foam dispenser attachment 10. With the extension parts 70 made detachable from the head part 30, whether the foam dispenser attachment 10 should have a function of spacer or shaping member attributable to the extension parts 70, or not, is now a matter of choice. Alternatively, the existing foam dispenser attachment will have a function of spacer or shaping member, by attaching the extension parts 70 as add-ons.
As illustrate in
It suffices that the front ends of the extension part 70 of the this embodiment, when viewed from the front of the dispensing direction DD confronting to the outlet 20, reside outside the closed area that surrounds the outlet 20, and the position thereof is not specifically limited. The pair of extension parts 70 of this embodiment are formed outside the outlet 20, and on both sides thereof away from each other in the width direction (the lateral direction in
The outlet 20 of this embodiment has the shape identical to that of the first embodiment, and is composed of an opening that has the contiguous geometry narrowed from the intended shape of the foam object FB. As an alternative to this embodiment, the outlet 20 may be composed of a plurality of discretely arranged openings, in the same way as in the foam dispenser attachment 13 described later in a sixth embodiment.
The linear narrowly-opened part 22 may be a contiguous long opening as described above, or may be composed of discrete openings arranged in line. With intervals of such discreteness adjusted to a predetermined value or below, the foams B dispensed through such plurality of openings arranged in line will be crowded together on the dispensing target plane TP to build up the a contiguous linear foam object FB.
As illustrated in
The foam dispenser attachment 10 accepts the foamy liquid agent (foam B) dispensed through the nozzle opening 54, and dispenses it through the outlet 20 in the predetermined dispensing direction DD, to thereby build up the foam object FB with intended shape. The foam dispenser attachment 10 of this embodiment has the above-described extension parts 70 that extend beyond the front end position of the outlet 20 with respect to the dispensing direction DD.
As illustrated in
<Method of Producing Foam Object>
Next, a method of producing a foam object (occasionally referred to as “the present method”, hereinafter) according to an embodiment of this invention will be explained.
The present method relates to a method by which the foam B is dispensed from the foam dispensing container 100 (see
The present method includes an arrangement step and a dispensing step. In the arrangement step, the dispensing target plane TP is opposed to the outlet while keeping a predetermined distance SP in between. In the dispensing step, the foamy liquid agent (foam B) is dispensed through the outlet 20 onto the dispensing target plane TP so as to build up a foam object FB with intended shape, by pressing down the head part 30 and by concurrently lowering the dispensing target plane TP while keeping the predetermined distance SP in between.
With such design, since the foam B is dispensed through the outlet 20 while keeping a predetermined distance SP between the outlet 20 and the dispensing target plane TP, so that the state of foam B after dispensed and reaches the dispensing target plane TP will be reproducible, and the foam object FB with the desired intended shape may be built up repetitively.
The foam B dispensed through the outlet 20 has a small shape retention, and may swell upon being exposed to the air, or can be rounded up into ball shape. The shape of the resultant foam object FB can therefore easily vary, just by changing the distance between the outlet 20 and the dispensing target plane TP such as user's palm. In contrast, according to the foam dispensing container 100, the foam dispenser attachment 10, and the method of producing a foam object of this embodiment, the foam object FB that is built up on the dispensing target plane TP upon each dispensing operation made by the user will enjoy an improved reproducibility of shape. Thus the foam object FB may be built up into the desired intended shape in a highly accurate manner.
The present method may also perform a elevation step in which the pressed-down head part 30 and the lowered dispensing target plane TP are elevated while keeping the distance SP in between, and a dispensing step again. Since the distance between the dispensing target plane TP and the outlet 20 is kept constant over the elevation step and the plural times of dispensing steps, so that the desired foam object FB with intended shape may be built up with the foams B dispensed in the plural times of dispensing steps in a highly reproducible manner. At least the arrangement step of the present method is preferably carried out while mutually joining the head part 30 and the dispensing target plane TP (see
As described above, the head part 30 has the extension parts 70 that extend beyond the front end position of the outlet 20, with respect to the dispensing direction DD the foamy liquid agent (foam B) is dispensed through the outlet 20. In the arrangement step and the dispensing step, by pressing the front ends 74 of the extension parts 70 against the dispensing target plane TP so as to mutually join the head part 30 and the dispensing target plane TP, the outlet 20 and the dispensing target plane TP are kept at a predetermined distance SP (see
In one modified example of the present method, it is recommendable for the user, in the arrangement step and the dispensing step, to bring his or her fingers of one palm, which is the dispensing target plane TP, into contact with the head part 30, typically in such a way that he or she bends its fingers of one palm upward to hold the head part 30. In this way, the head part 30 and the dispensing target plane TP are linked by aid of the fingers in the arrangement step and the dispensing step, and thereby the outlet 20 and the palm (dispensing target plane TP) may be kept at the predetermined distance SP.
Now other embodiments of the foam dispensing container and the foam dispenser attachment of this invention will be explained. Descriptions that overlap those in the third embodiment will be skipped properly.
The foam dispenser attachment 11 of the fourth embodiment is in common with the foam dispenser attachment 10 of the third embodiment in that the extension part 70 is provided outside the region where the liquid agent (foam B) passes through, and the region where the foam object FB with intended shape (see
The extension part 70 of this embodiment has a form of partially-sphered cylinder (that is, “dome”), with the top and bottom ends opened. The foam dispenser attachment 11 of this embodiment is same as the foam dispenser attachment 10 of the third embodiment (see
The aperture of the opening of the top end part 71 of the extension part 70 can totally contain the dispensing guide 26 both in terms of geometry and size, leaving a void V formed between the whole circumference of the dispensing guide 26 and the extension part 70. The aperture of the bottom end part 72 of the extension part 70 can totally contain the intended shape of the foam object FB to be built up (see
With the extension part 70 circumferentially formed as in the fourth embodiment, contact between the dispensing target plane TP (see
Geometry of the circumferential go-around-type extension part 70 is not specifically limited. Although in this embodiment it is given as the partially spherical shape that diverges downward, the shape is not limited thereto. The extension part 70 may have a form of truncated cone, or may have a shape widened or thickened from the geometry of aperture of the outlet 20, or from the dispensing guide 26. The bottom end of the extension part 70 may be circular as shown in this embodiment, or may alternatively have a shape other than circle, such as a rectangular shape, and may have a shape thickened from the geometry of aperture of the outlet 20.
Alternatively, the go-around-type extension part 70 may be made translucent or semi-translucent, entirely or partially. Still alternatively, the extension part 70 may have a peephole provided to a part thereof, or may have a notch at the bottom end thereof. With such design, how the foam object FB was built up may be visually confirmed, before the foam object FB built on the dispensing target plane TP is taken out from the extension part 70.
The foam dispenser attachment 12 of the fifth embodiment is different from the foam dispenser attachment 10 of the third embodiment in that at least the front end part 74 of the extension part 70 is provided within the area where the foam object FB with intended shape is built. In other words, the extension part 70 of this embodiment is preferably brought into contact with the foam B dispensed through the outlet 20.
The extension part 70 of the fifth embodiment is provided, as illustrated in
With such design, when the extension part 70 is drawn out from the built foam object FB, a part of the foam B is dragged up by the extension part 70 while adhering thereto, to produce a pointed part P on the surface of the foam object FB. Accordingly, for an exemplary case as illustrated in
The extension part 70 of this embodiment may be used as a spacer for keeping the distance SP between the outlet 20 and the dispensing target plane TP (see
Alternatively, the foam B may be dispensed while keeping the front end part 74 of the extension part 70 slightly lifted above the dispensing target plane TP, and thus arranged in a contactless manner. In this case, the extension part 70 is not used as the spacer, but may be used solely as the shaping member for creating the pointed part P on the foam object FB.
The extension part 70 of this embodiment has a pillar form as a whole, and is provided in parallel to the dispensing direction DD, so as to project out from the ceiling 66 of the reservoir 60 of the foam dispenser attachment 10 (see
Although the front end part 74 in this embodiment appears spherical, this invention is not limited thereto. The bottom face of the front end part 74 may be formed flat. With such design, the front end part 74 can contact by surface with the dispensing target plane TP, so that the dispensing target plane TP may be confronted stably to the outlet 20. The shape of the front end part 74 is not limited to sphere, but may have various shapes depending on the geometry and size of the pointed part P to be formed on the foam object FB.
The outlet 20 has the linear narrowly-opened part 22, and the widely-opened part 24 that is formed contiguously with the narrowly-opened part 22 and is made wider than the narrowly-opened part 22. The foam B dispensed through the widely-opened part 24 composes a near-circular part CP of the foam object FB, and the foam B dispensed through the narrowly-opened part 22 composes a narrow portion NP of the foam object FB. The extension part 70 is provided within the widely-opened part 24. The stem part 76 of the extension part 70 of this embodiment is vertically arranged nearly at the center of the widely-opened part 24. The extension part 70 can therefore come into contact with the foam object FB nearly at the center of the near-circular part CP, so that the near-circular part CP and the narrow portion NP will not be disturbed in their contours, and the foam object FB is suppressed from being deformed as a whole.
Although a character shape exemplified in the fifth embodiment as the intended shape of the foam object FB was a head of rabbit having two narrow portions NP projected out from the near-circular portion CP, this is merely an instance. For example, in one modified example of the fifth embodiment, at least a part of the intended shape may be configured, in a plan view, by a plurality of near-circular parts CP overlapped with each other. The outlet 20 capable of building up such foam object FB with intended shape may have a plurality of near-circular, widely-opened parts 24 respectively narrowed from the plurality of near-circular parts CP, and a linear narrowly-opened part 22 that mutually connects the widely-opened parts 24. In this case, as with the foam dispenser attachment 12 of the fifth embodiment, the extension part 70 may be provided inside the widely-opened part 24. With such design, the pointed part that typically represents eyes, nose or the like may be formed in the foam object FB having various characters' shapes, within a single or a plurality of near-circular parts CP. In this case, a plurality of extension parts 70 may be provided to the head part 30, and the extension parts 70 may be arranged respectively inside the plurality of widely-opened parts 24.
The dispensing direction DD of the foam B dispensed through the outlets 20 points frontwards of this sheet of
Meanwhile, the foam dispenser attachment 13 of this embodiment is same as the foam dispenser attachment 12 of the fifth embodiment in that at least the front end part 74 of the extension part 70 is provided within the area where the foam object FB with intended shape will be built up. The foam dispenser attachment 13 of this embodiment is also same as the foam dispenser attachment 12 of the fifth embodiment, in that the extension part 70 has the front end part 74, and a rod-like stem part 76 made narrower than the front end part 74.
The stem part 76 of the extension part 70 is preferably formed so as to suspend downward from the bottom face 31 of the foam dispenser attachment 13. More preferably, the stem part 76 of the extension part 70 is provided at the middle point relative to the plurality of outlets 20.
According to the foam dispenser attachment 13 of the sixth embodiment, by using the extension part 70 as a spacer so as to be brought into contact with the dispensing target plane TP, the outlet 20 and the dispensing target plane TP are kept at the predetermined distance SP (see
In the foam dispensing container 110 of this embodiment, the foam dispenser attachment 10 is disposed inside the enclosure 99, leaving the outlet 20 exposed from the enclosure 99. The foam dispenser attachment 10 is provided to the head part 30 that protrudes from the enclosure 99 nearly in the horizontal direction.
The foam dispenser attachment 14 of this embodiment has a pair of extension parts 70 opposed while placing the outlet 20 in between, like the foam dispenser attachment 10 of the third embodiment. The front end parts 74 of the extension parts 70 are positioned below the outlets 20 beyond the front end position thereof, with respect to the dispensing direction DD.
The sensing part 96 has a touch sensor that detects touching on the extension parts 70 or pressing of the extension parts 70. When the user makes his or her palm contact to the front end parts 74 of the extension parts 70, or pushes the front end parts 74 of the extension parts 70 upward by his or her palm with a predetermined force, the sensing part 96 as the touch sensor detects the load of contact or pressurizing, and sends a detection signal to the control unit 95. With such design, the foam B will be dispensed through the outlet 20 when the dispensing target plane TP (palm) comes into contact with the front end parts 74 of the extension parts 70. The distance SP (see
Style of sensing with the sensing part 96 is not limited to as described above, allowing various modifications. For example, for the foam dispensing container 110 used in bright places, the sensing part 96 may detect that the circumstance of the outlet 20 turned dark. In this case, an illuminance sensor is used as the sensing part 96. It is recommendable to provide the extension part 70 that surrounds the circumference of the outlet 20 in a go-around manner, like the foam dispenser attachment 10 of the fourth embodiment illustrated in
The embodiments of this invention have been described above referring to the attached drawings, merely as examples of this invention. Various configurations other than those described above may be adoptable.
For example, although the embodiments have exemplified that a lump of foam object FB is built by dispensing, this invention is not limited thereto. When the foam object FB having a plurality of lump portions is built up by dispensing, it is recommendable to configure the outlet with a plurality of partial outlets corresponded to the individual lump portions.
The structures of the nozzle assembly 50 illustrated in
The embodiments above have exemplified that the liquid agent L reserved in the liquid form in the container body 40 was introduced into the foam dispenser attachment 10 after transformed into foam. More specifically, the air-liquid contact portion 51 was disposed inside the nozzle assembly 50 in the first embodiment (see
A valve may be provided in the vicinity of the outlet 20. The valve may be an on-off valve which is pushed open by the foam B passing through the outlet 20 and is closed upon termination of dispensing of the foam B, which is exemplified by a self-closing valve described in Patent Literature 5 described above. The outlet 20 may preferably be provided inside the dispensing guide 26, or outside the dispensing guide 26 and neighboring thereto so as to cover the outlet 20. Provision of the valve will prevent the liquid agent L that remains within the head part 30 from drying up, and will effectively prevent the outlet 20 from being clogged.
Although the third to sixth embodiments have exemplified the case where the extension part 70 was integrally provided with the foam dispenser attachments 10 to 14 having the outlet 20, this invention is not limited thereto. The foam dispenser attachments 10 to 14 may be configured with a plurality of members, and one member having the outlet 20 and the other member having the extension part 70 may be separately fixed to the head part 30 (pump head part 32).
The fifth and sixth embodiments have exemplified the case where one pillar-like extension part 70 was formed on the foam dispenser attachment 10 so as to protrude in parallel to the dispensing direction DD, or, downward (see
In conjunction with the embodiments described above, this invention herein will disclose a foam dispensing container and a foam dispenser attachment below.
<1> A foam dispensing container that includes a container body that reserves a liquid agent; a head part that has an outlet, and dispenses the liquid agent delivered from the container body through the outlet into foam; and a dispensing operation part that allows dispensing of a predetermined amount of the foamy liquid agent through the outlet each time it accepts a user's operation,
the outlet being an opening with a contiguous geometry narrowed from an intended shape, and being designed to build up the foamy liquid agent, dispensed through the outlet as a result of a single or multiple operations made on the dispensing operation part, into the intended shape in a plan view seen in the dispensing direction.
<2> The foam dispensing container according to <1>, wherein the outlet has a linear narrowly-opened part; and a widely-opened part that communicates with the narrowly-opened part and is made wider than the narrowly-opened part.
<3> The foam dispensing container according to <2>, wherein the widely-opened part is near circular with a diameter larger than a width of the narrowly-opened part.
<4> The foam dispensing container according to any one of <1> to <3>, wherein the head part has a reservoir that reserves the foamy liquid agent delivered from the container body, and the reservoir has a ceiling that inclines towards the front end side of the feeding direction of the liquid agent, and downward towards the outlet.
<5> The foam dispensing container according to <4>, wherein the head part has a nozzle part that dispenses the foamy liquid agent delivered from the container body in an obliquely downward direction into the reservoir; and an inclined face that is provided in the reservoir so as to nearly confront the obliquely downward direction, and
the outlet is formed so as to extend between the front end side and the base side of the inclined face.
<6> The foam dispensing container according to <5>, wherein the outlet has a linear narrowly-opened part, and a widely-opened part that communicates with the narrowly-opened part and is made wider than the narrowly-opened part, and
the widely-opened part is arranged on the front end side of the inclined face, and the narrowly-opened part is arranged on the base side.
<7> The foam dispensing container according to <5> or <6>, wherein the reservoir has an inner bottom whose level of height is higher on the front end side of the inclined face, than on the base side.
<8> The foam dispensing container according to any one of <4> to <7>, wherein the head part further comprises a dispensing guide that is provided so as to extend downward from the reservoir and has the outlet at the lower end, and
the dispensing guide has a straight pipe-like throughhole formed into an identical geometry with the outlet.
<9> The foam dispensing container according to any one of <1> to <8>, wherein the head part has a nozzle part with a nozzle opening through which the foamy liquid agent from the container body is delivered; and a foam dispenser attachment having the outlet, and attached detachably to the nozzle part so that the outlet and the nozzle opening can communicate, and
the foam dispenser attachment has a fitting part to which the nozzle opening is inserted, and an engagement part that detachably engages with the nozzle part.
<10> A foam dispenser attachment used while attached detachably to a nozzle part of a foam dispensing container that comprises a container body that reserves a liquid agent; a nozzle part that has a nozzle opening, and dispenses the liquid agent delivered from the container body through the nozzle opening into foam; and a dispensing operation part that allows dispensing of a predetermined amount of the foamy liquid agent through the nozzle opening each time it accepts a user's operation,
the foam dispenser attachment having an outlet with a contiguous geometry narrowed from an intended shape, and being designed to accept the foamy liquid agent dispensed through the nozzle opening and to dispense it through the outlet to thereby build up a foam object with the intended shape.
<11> The foam dispensing container according to <3>, wherein the intended shape is at least partially formed so that a plurality of near-circular portions are mutually overlapped in a plan view, and
the outlet has a plurality of near-circular, widely-opened parts with diameters respectively shrunk from the plurality of the near-circular portions, and a linear narrowly-opened part that connects the widely-opened parts.
<12> The foam dispensing container according to any one of <1> to <10>, wherein the outlet has a plurality of mutually crossing linear narrowly-opened parts.
<13> The foam dispensing container according to any one of <1> to <10>, wherein the intended shape has at least partially a planar shape in a plan view,
the outlet has a series of bent or meandering linear narrowly-opened parts,
the narrowly-opened part contains a plurality of line segments arranged in parallel, and
the line segments are arranged leaving in between a distance that is preset to allow lumps of the dispensed foamy liquid agent to swell in the width direction to be crowded with each other to give the planar shape.
<14> The foam dispensing container according to <9>, wherein the outlet has a linear narrowly-opened part, and a widely-opened part that communicates with the narrowly-opened part and is made wider than the narrowly-opened part,
the dispensing guide has a narrow guide part formed to oppose by sandwiching the narrowly-opened part, and a wide guide part disposed along the widely-opened part, and
the narrow guide part and the wide guide part communicate with each other while bounded nearly by the width of the narrow guide part.
<15> The foam dispensing container according to any one of <1> to <8>, wherein the head part is configured to combine a nozzle part with a nozzle opening through which the foamy liquid agent from the container body is delivered; and a foam dispenser attachment having the outlet, and attached detachably to the nozzle part so that the outlet and the nozzle opening can communicate.
<16> The foam dispensing container or the foam dispenser attachment according to <9> or <10>, wherein the foam dispenser attachment has a reservoir that reserves the foamy liquid agent delivered from the container body, and the fitting part is provided so as to be opened at the base side of the reservoir.
<17> The foam dispensing container or the foam dispenser attachment according to <16>, wherein the engagement part is formed so as to project out from the base side of the reservoir and engaged with the nozzle part from the bottom thereof.
<18> The foam dispensing container or the foam dispenser attachment according to any one of <9>, <10>, and <15> to <17>, wherein the foam dispenser attachment is configured by combining an upper half and a lower half to each other, and the lower half has formed therein the outlet.
<19> The foam dispensing container or the foam dispenser attachment according to <18>, wherein the upper half has a wall-like inner guide that surrounds at least a part of circumference of the outlet in a plan view.
<20> The foam dispensing container or the foam dispenser attachment according to <19>, wherein the inner guide surrounds, out of the circumference of the outlet, the front end side thereof in the feeding direction of the liquid agent from the container body to the foam dispenser attachment, and the fitting part is provided on the base side in the feeding direction.
<21> The foam dispensing container according to any one of <1> to <20>, further includes a piston that is attached to the container body while placing a cap in between, and provided so as to move reciprocatively relative to the cap, and a housing that houses the piston and communicates with the outlet, and
the dispensing operation part is a pump head part that sucks the liquid agent from the container body up into the housing and dispenses it out through the head part, as a result of reciprocative motion of the piston upon acceptance of a user's press-down operation.
<22> The foam dispensing container according to any one of <1> to <20>, further comprising a power source unit, a pump mechanism that is powered by the power source unit and delivers the liquid agent from the container body, and a control unit that controls operation of the pump mechanism,
the dispensing operation part includes a sensing part that detects approach or input operation of a user, and
the control unit activates the pump mechanism, based on detection by the sensing part of the approach or input operation of the user, so as to dispense a predetermined amount of the foamy liquid agent through the outlet.
<23> The foam dispensing container according to any one of <1> to <8>, wherein the head part has disposed inside thereof a net body that allows the foamy liquid agent delivered from the container body to pass therethrough.
<24> The foam dispensing container according to <23> citing <8>, wherein the net body is disposed inside the dispensing guide or adjacent to the dispensing guide.
<25> A foam dispensing container-filled product that includes the foam dispensing container according to any one of <1> to <15>, and <21> to
<24>, and the liquid agent filled in the container body.
This invention also discloses the foam dispensing container, the foam dispenser attachment and a method of producing the foam object below, in conjunction with the above-described embodiments.
<1A> A foam dispensing container that includes a container body that reserves a liquid agent, and a head part that has an outlet, and dispenses the liquid agent delivered from the container body through the outlet into foam, the head part having a dispensing operation part that allows dispensing of a predetermined amount of the foamy liquid agent through the outlet each time it accepts a user's operation, the foam dispensing container being designed to build up the foamy liquid agent, dispensed through the outlet in a predetermined dispensing direction as a result of a single or multiple operations made on the dispensing operation part, into foam object with an intended shape, and the head part having an extension part that extends beyond the front end position of the outlet with respect to the dispensing direction.
<2A> The foam dispensing container according to <1A>, wherein the extension part is provided outside an area through which the foamy liquid agent dispensed through the outlet passes, and outside an area where the foam object with the intended shape is built up.
<3A> The foam dispensing container according to <2A>, wherein the extension parts are provided at a plurality of discrete positions around the outlet.
<4A> The foam dispensing container according to <2A>, the extension part is circumferentially formed so as to surround the circumference of the outlet.
<5A> The foam dispensing container according to any one of <2A> to <4A>, wherein the extension part is formed so as to diverge as it departs from the outlet in the dispensing direction.
<6A> The foam dispensing container according to <1A>, wherein the extension part is provided so that at least the front end falls in an area where the foam object with the intended shape will be built up.
<7A> The foam dispensing container according to <6A>, wherein the extension part is provided inside the outlet in a plan view seen in the dispensing direction.
<8A> The foam dispensing container according to <6A> or <7A>, wherein the extension part has the front end, and a rod-like stem part formed thinner than the front end.
<9A> The foam dispensing container according to any one of <1A> to <8A>, wherein the outlet is composed of an opening with a contiguous geometry narrowed from the intended shape, or a plurality of discretely arranged openings.
<10A> A foam dispenser attachment used while attached detachably to a nozzle part of a foam dispensing container that comprises a container body that reserves a liquid agent; a nozzle part that has a nozzle opening, and dispenses the liquid agent delivered from the container body through the nozzle opening into foam; and a dispensing operation part that allows dispensing of a predetermined amount of the foamy liquid agent through the nozzle opening each time it accepts a user's operation, and is designed to accept the foamy liquid agent delivered through the nozzle opening and to dispense it through the outlet in a predetermined dispensing direction to thereby build up a foam object with an intended shape, the foam dispenser attachment having an extension part that extends beyond the front end position of the outlet with respect to the dispensing direction.
<11A> A method of producing a foam object, by which a foam object is built up by dispensing a foam from a foam dispensing container that has a container body that reserves a liquid agent, and a head part that dispenses the liquid agent delivered from the container body through an outlet into foam by predetermined portions each time a user's press-down operation is accepted, the method includes an arrangement step for opposing a dispensing target plane to the outlet while keeping a predetermined distance in between; and a dispensing step for dispensing the foamy liquid agent through the outlet onto the dispensing target plane so as to build up a foam object with an intended shape, by pressing down the head part and by concurrently lowering the dispensing target plane while keeping the predetermined distance in between.
<12A> The foam dispensing container according to any one of <1A> to <9A>, wherein the head part is configured to combine a nozzle part with a nozzle opening through which the foamy liquid agent from the container body is delivered; and a foam dispenser attachment having the outlet, and attached detachably to the nozzle part so that the outlet and the nozzle opening can communicate.
<13A> The foam dispensing container according to <12A>, wherein the foam dispenser attachment has a fitting part to which the nozzle opening is inserted, and an engagement part that detachably engages with the nozzle part.
<14A> The foam dispensing container according to any one of <1A> to <8A>, <12A> and <13A>, wherein the outlet has a linear narrowly-opened part, and a widely-opened part that communicates with the narrowly-opened part and is made wider than the narrowly-opened part.
<15A> The foam dispensing container according to <14A>, wherein at least a part of the intended shape is formed so that a plurality of near-circular portions are mutually overlapped in a plan view, and
the outlet has a plurality of the near-circular, widely-opened parts with diameters respectively shrunk from the plurality of the near-circular portions, and the linear narrowly-opened part that connects the widely-opened parts.
<16A> The foam dispensing container according to <14A> or <15A>, wherein the extension part is provided inside the widely-opened part.
<17A> The foam dispensing container according to <9A>, wherein the outlet is composed of a plurality of discretely arranged openings, and the extension part is provided in a region between the plurality of openings and having no opening formed therein.
<18A> The foam dispensing container according to <3A>, having a pair of extension parts formed away from each other on both sides in the widthwise direction that crosses the distal-proximal direction connecting the container body and the outlet, and an area that falls between the pair of extension part and on the distal side of the outlet is opened wider than the width of the outlet.
<19A> The foam dispensing container according to <10A> or <13A>, wherein the extension part is detachably attached to the foam dispenser attachment.
<20A> The foam dispensing container according to any one of <1A> to <9A> and <12A> to <19A>, further including a piston that is attached to the container body while placing a cap in between, and provided so as to move reciprocatively relative to the cap, and a housing that houses the piston and communicates with the outlet, and the dispensing operation part is a pump head part that sucks the liquid agent from the container body up into the housing and dispenses it out through the head part, as a result of reciprocative motion of the piston upon acceptance of a user's press-down operation.
<21A> The foam dispensing container according to any one of <1A> to <9A> and <12A> to <19A>, further including a power source unit, a pump mechanism that is powered by the power source unit and delivers the liquid agent from the container body, and a control unit that controls operation of the pump mechanism, the dispensing operation part includes a sensing part that detects approach or input operation of a user, and the control unit activates the pump mechanism, based on detection by the sensing part of the approach or input operation of the user, so as to dispense a predetermined amount of the foamy liquid agent through the outlet.
<22A> The foam dispensing container according to <21A>, wherein the sensing part has a touch sensor that detects touching on the extension part or pressing of the extension part.
<23A> The method of producing a foam object according to <11A>, further including an elevation step for elevating the pressed-down head part and the lowered dispensing target plane while keeping the distance in between, and then repeating the dispensing step.
<24A> The method of producing a foam object according to <11A> or <23A>, wherein in the arrangement step, the head part and the dispensing target plane are joined to each other.
<25A> The method of producing a foam object according to <24A>, wherein the head part has an extension part that extends beyond the front end position of the outlet with respect to the dispensing direction the foamy liquid agent is dispensed through the outlet, and in the arrangement step and in the dispensing step, the outlet and the dispensing target plane are kept at the predetermined distance by pressing the front end of the extension part against the dispensing target plane.
<26A> The method of producing a foam object according to <24A>, wherein in the arrangement step and in dispensing step, by folding fingers of one user's palm, which is the dispensing target plane, to be brought into contact with the head part, the outlet and the one palm are kept at the predetermined distance.
<27A> A foam dispensing container-filled product that includes the foam dispensing container according to any one of <1A> to <22A>, and the liquid agent filled in the container body.
This application claims priority based on Japanese patent application No. 2014-241538 filed on Nov. 28, 2014, Japanese patent application No. 2015-115150 filed on Jun. 5, 2015, and Japanese patent application No. 2015-130405 filed on Jun. 29, 2015, the entire contents of which are incorporated herein by reference.
Number | Date | Country | Kind |
---|---|---|---|
JP2014-241538 | Nov 2014 | JP | national |
JP2015-115150 | Jun 2015 | JP | national |
JP2015-130405 | Jun 2015 | JP | national |
This application is continuation of U.S. application Ser. No. 15/531,288 filed May 26, 2017, which is a National Stage entry under 35 U.S.C. § 371 of PCT/JP2015/083474, filed on Nov. 27, 2015, and claims priority to Japanese Patent Application No. 2014-241538, filed on Nov. 28, 2014, Japanese Patent Application No. 2015-115150, filed on Jun. 5, 2015, and Japanese Patent Application No. 2015-130405, filed on Jun. 29, 2015. The entire content and disclosure of each of the foregoing applications is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
1740384 | Wright | Dec 1929 | A |
2779514 | Kebel | Jan 1957 | A |
3092334 | Peterson | Jun 1963 | A |
3572591 | Brown | Mar 1971 | A |
4865257 | Bailey | Sep 1989 | A |
5326000 | Fuchs | Jul 1994 | A |
5813785 | Baudin et al. | Sep 1998 | A |
6145756 | Kohls | Nov 2000 | A |
6679438 | Didlo | Jan 2004 | B1 |
7377710 | Baumann | May 2008 | B2 |
D610227 | Hunter | Feb 2010 | S |
8814007 | Mills | Aug 2014 | B2 |
9511381 | Takahashi | Dec 2016 | B2 |
9827577 | Kuwahara | Nov 2017 | B2 |
20040086321 | Burkholz et al. | May 2004 | A1 |
20080264974 | Binderbauer | Oct 2008 | A1 |
20090166382 | Snodgrass | Jul 2009 | A1 |
20090173751 | Laidler | Jul 2009 | A1 |
20100127018 | Laidler | May 2010 | A1 |
20120091229 | Laidler | Apr 2012 | A1 |
20120187152 | Zhou et al. | Jul 2012 | A1 |
20120234947 | Takahashi | Sep 2012 | A1 |
20120273525 | Canfield | Nov 2012 | A1 |
20130037575 | van der Molen | Feb 2013 | A1 |
20130098943 | Sciole | Apr 2013 | A1 |
20140034679 | Fitzpatrick | Feb 2014 | A1 |
20140367480 | Tonh | Dec 2014 | A1 |
20150273486 | Kuwahara | Oct 2015 | A1 |
20180297040 | Hirata | Oct 2018 | A1 |
Number | Date | Country |
---|---|---|
186697 | Sep 1936 | CH |
102639247 | Aug 2012 | CN |
203209211 | Sep 2013 | CN |
36 15 741 | Nov 1987 | DE |
002862243-0001 | Nov 2015 | EP |
002862243-0002 | Nov 2015 | EP |
002862953-0001 | Nov 2015 | EP |
002862953-0002 | Nov 2015 | EP |
S53-051848 | May 1978 | JP |
61-54248 | Mar 1986 | JP |
H04-080880 | Jul 1992 | JP |
6-3886 | Jan 1994 | JP |
7-28056 | May 1995 | JP |
2000-185782 | Jul 2000 | JP |
2001-334178 | Dec 2001 | JP |
2008-36531 | Feb 2008 | JP |
2010-26033 | Feb 2010 | JP |
2010-105694 | May 2010 | JP |
3159292 | May 2010 | JP |
1390113 | Jun 2010 | JP |
2010-149060 | Jul 2010 | JP |
1399832 | Oct 2010 | JP |
2010-269233 | Dec 2010 | JP |
2011-184088 | Sep 2011 | JP |
2012-202207 | Oct 2012 | JP |
2012-532644 | Dec 2012 | JP |
1399833 | Oct 2013 | JP |
1399834 | Oct 2013 | JP |
5412106 | Feb 2014 | JP |
1545214 | Mar 2016 | JP |
1545215 | Mar 2016 | JP |
1548678 | May 2016 | JP |
1548679 | May 2016 | JP |
2016-209867 | Dec 2016 | JP |
2017-7706 | Jan 2017 | JP |
2017-12971 | Jan 2017 | JP |
2017-12972 | Jan 2017 | JP |
2017-14375 | Jan 2017 | JP |
2018-200393 | Dec 2018 | JP |
WO2011138828 | Nov 2011 | WO |
WO 2014068627 | May 2014 | WO |
Entry |
---|
Office Action dated Mar. 5, 2019 in Japanese Patent Application No. 2017-186425, with concise English translation. |
Office Action dated Apr. 16, 2019 in Japanese Patent Application No. 2017-180013, with concise English translation. |
Combined Office Action and Search Report dated Nov. 5, 2018 in Chinese Patent Application No. 201580063581.6, 16 pages (with unedited computer generated English translation and English translation of categories of cited documents). |
Extended European Search Report dated Sep. 13, 2018 in Patent Application No. 15863617.5, 8 pages. |
Combined Chinese Office Action and Search Report dated Feb. 24, 2018 Chinese Patent Application No. 201580063581.6 (with English translation), 20 pages. |
Office Action dated Aug. 1, 2017 in Japanese Patent Application No. 2015-115150 (with unedited computer generated English translation). |
International Search Report dated Feb. 23, 2016 in PCT/JP2015/083474 filed Nov. 27, 2015. |
Number | Date | Country | |
---|---|---|---|
20200055061 A1 | Feb 2020 | US |
Number | Date | Country | |
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Parent | 15531288 | US | |
Child | 16664301 | US |