The present invention relates to the field of product dispensing, and in particular to a pumping device, such as a press pump and a manually operated pump, that may be used for dispensing flowable and semi-flowable materials such as a liquid and an emulsion from a container.
In containers for containing products such as sanitary wash supplies, medicines and foods, a pumping device is generally provided for dispensing the products from the containers. Conventional pumps available on the market are generally provided with elastic mechanisms made of metal, such as metal springs, to provide a biasing force to movable parts of the pumps, such as press heads, thereby imparting reciprocating capability to these movable parts.
It has been found during use that the elastic mechanisms made of metal have defects. First, the metal elastic members are immersed in the product for a long period of time, thereby causing rusting, and impurities generated due to the rusting may contaminate the liquid. Second, in a common product pumping device, except the metal elastic member, the remaining parts are generally made of plastics in order to reduce manufacturing costs. In this way, when the pumping device is recovered after using up, it is required to disassemble the pumping device, separate the metal elastic member from the other plastic parts, and recover them separately. This has an impact on recycling efficiency.
In order to solve this problem and improve the recycling efficiency of the pumping device, there is a need for a pumping device having a new structural design, which is capable of solving the problem that the metal elastic members are apt to rust to cause contamination, and is also capable of providing the same or similar elastic properties as a technical spring.
The present invention has been made on the basis of the above-described problem in the prior art. An object of the present invention to provide a pumping device of a novel structure, which allows efficient recycling. Further, the structure of the pumping device allows an elastic member to be made of plastics, and is capable of preventing elasticity reduction caused by the fact that the elastic member made of the plastics yields and deforms due to a long-time pressure.
The pumping device of the present invention has a movable part and a fixed part. The movable part is capable of reciprocating relative to the fixed part, thereby dispensing, by means of a straw connected to the fixed part, a product contained in a container. The pumping device comprises an elastic member, wherein one end of the elastic member is connected or supported on the movable part, and the other end of the elastic member is connected or supported on the container, or is supported on the container by means of the fixed part.
Therefore, in the pumping device having the above-described structure, the elastic member is directly or indirectly supported or connected to the container, and in particular can be supported on the container. This allows for greater flexibility in the size design of the elastic member and allows for the use of a larger sized elastic member. In this way, it can also ensure that desired elasticity is obtained in the case of the elastic element made of plastics.
Specifically, the movable part may comprise: a press head; and a piston rod connected to the press head; the fixed part may comprise: an engagement sleeve connected at a mouth of the container; a cylinder connected to the engagement sleeve, accommodated in the container and connected to the straw, the piston rod extending into the container; wherein one end of the elastic member abuts against or is fixed to the press head or the piston rod.
The other end of the elastic member abuts against or is fixed to one of: a shoulder of the container, an outer side surface of a bottom of the container, an inner surface of the bottom of the container, and a step portion formed inside the container.
In an embodiment, the other end of the elastic member is fixed to the mouth of the container, wherein the elastic member comprises an upper ring, a lower ring, and at least one elastic strip extending between the upper ring and the lower ring, and at least one fixed strip also extends upwards from the lower ring, the fixed strip being upwards connected to a fixed ring which is fixed at the mouth.
Preferably, the pumping device further comprises a releasing mechanism which is switchable between a released position and a preloading position, wherein the level of the elastic member when the releasing mechanism is in the released position is higher than the level of the elastic member when the releasing mechanism is in the preloading position. By providing the releasing mechanism, the elastic member may be in a released state when not in use, thereby avoiding or reducing yield deformation of the elastic member.
Preferably, the releasing mechanism comprises a synchronising collar, a first actuator is provided on the press head, a second actuator is provided on the synchronising collar, and the releasing mechanism is switched between the released position and the preloading position under the interaction between the first actuator and the second actuator.
Further, the first actuator is a first bump formed on the press head, a first bevel is formed on the first bump, the second actuator is a second bump formed on the synchronising collar, a second bevel is formed on the second bump, and the first bevel matches with the second bevel.
Preferably, the synchronising collar is sleeved on the engagement sleeve, wherein a slot is formed in an inner surface of the synchronising collar and a guide rail is formed on an outer surface of the engagement sleeve, and the guide rail matches with the slot, thus guiding movement of the synchronising collar relative to the engagement sleeve in the longitudinal direction of the pumping device and preventing rotational movement of the synchronising collar relative to the engagement sleeve.
In the pumping device of the present invention, the elastic member may be made of plastics.
In a specific preferred structure, the movable part comprises: a press head; and a piston rod connected to the press head, wherein the press head is provided with a pressing flange, and a user is capable of pressing the pressing flange with his/her finger to apply a pressure to the press head;
the fixed part comprises: an engagement sleeve connected at a mouth of the container; a cylinder connected to the engagement sleeve, accommodated in the container and connected to the straw, the piston rod extending into the container;
wherein one end of the elastic member abuts against or is fixed to the press head or the piston rod, and the other end abuts against or is fixed to the engagement sleeve.
Further, a guide block is provided on the elastic member, a recess is formed in the engagement sleeve, and the elastic member is rotatable between the released position in which the guide block is located within the recess and the preloading position in which the guide block exits the recess such that the distance between the upper end and the lower end of the elastic member is reduced. Thus, preloading and releasing functions of the elastic member are achieved.
In addition, the elastic member is formed with a synchronising sleeve, and the press head comprises a lower press head ring sleeved on the synchronising sleeve, wherein raised ribs are formed on one of an outer surface of the synchronising sleeve and an inner surface of the lower press head ring, and grooves are formed in the other one of the outer surface of the synchronising sleeve and the inner surface of the lower press head ring, and the raised ribs and the grooves match with each other such that the elastic member is rotatable together with the press head.
The elastic member may be arranged outside the press head and/or the engagement sleeve, or may be hidden inside the press head and/or the engagement sleeve. For example, a lower sleeve may be formed at a lower portion of the press head, and an upper sleeve is formed at an upper portion of the engagement sleeve, the lower sleeve and the upper sleeve match with each other to form an internal space in which the elastic member is accommodated.
Non-limiting preferred embodiments of the present invention are illustrated in the accompanying drawings, and the features and advantages of the present invention will become more apparent in conjunction with the accompanying drawings. In the drawings:
Specific embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that only preferred embodiments of the present invention are shown in these accompanying drawings and are not intended to constitute a limitation to the scope of the present invention. Various obvious modifications, variations and equivalent substitutions to the present invention can be made by those skilled in the art based on the embodiments shown in the drawings, and the technical features in the described embodiments can be arbitrarily combined without causing contradictions. These all fall within the scope of protection of the present invention.
In the disclosure of the present invention, the terms such as “upper” and “lower” used to indicate directions or orientations are according to the orientation of the device in use.
As shown in the figures, the pumping device 100 is mounted on a container 20. The pumping device 100 includes a press head 110 which is relatively movably connected to an engagement sleeve 120. The engagement sleeve 120 is fixedly connected at a mouth of the container 20, and a cylinder 130 of the pumping device 100 is connected to the engagement sleeve 120. A piston rod 140 is connected to the press head 110, a piston (not shown) is connected to the piston rod 140, and an end of the piston rod 140 connected to the piston extends into the cylinder 130.
The pumping device 100 of the present invention further comprises an elastic member 150, one end of the elastic member 150 is a fixed end and is supported on the container 20, and the other end thereof is a movable end and is supported on a movable part composed of the press head 110, etc.
With respect to the pumping device 100 configured as shown in
Preferably, the pumping device 100 further includes a releasing mechanism which is movable between the released position in which the elastic member 150 is in a released state and a preloading position in which the elastic member 150 is slightly loaded. In the exemplary structure shown in
Preferred structures of constituent parts of the pumping device 100 will be described separately below.
Correspondingly,
Turning back to
When the press head 110 is rotated from the released position shown in
After using up, the press head 110 can be rotated in a reverse direction to go back to the state shown in
As shown in
The other end of the elastic member 250 is supported on the outer side of the bottom of the container 20, and particularly on an outer side surface 22 of the bottom of the container 20. For example, an external thread may be formed on the outer side surface 22 of the bottom of the container 20, and the lower end of the elastic member 250 may be provided with a part with an internal thread, so that the lower end of the elastic member 250 is fixed to the outside of the bottom of the container 20 in a threaded connection manner. Alternatively, the lower end (namely, the fixed end) of the elastic member 250 may be fixed to the outside of the bottom of the elastic member 250 in other manners.
As shown in
In this embodiment, the movable end of the elastic member 350 may also abut against or be fixed to other movable parts, for example, the press head 310 as in the first embodiment.
As shown in
Particularly, as shown in
Thus, as shown in the cross-sectional view of
As shown in
A step portion 25 is formed inside the container 20, and a fixed end of the elastic member 650 abuts against the step portion 25.
d show a pumping device 800 of a sixth embodiment of the present invention. The similarities of the structure in the sixth embodiment as the structures in the first through fifth embodiments will not be described in detail herein, and the following description will mainly focus on the features of the sixth embodiment that are different from those of the first through fifth embodiments.
As shown, like the pumping device 100 of the first embodiment, the pumping device 800 of the sixth embodiment is manually operated and includes a press head 810 and an engagement sleeve 820, a flange is formed on the press head 810, and the user may apply a force to the flange with one hand to press the press head 810. A piston rod 840 (see
The structure of the elastic member 850 of the pumping device 800 of the sixth embodiment is clearly shown in
Turning back to
Preloading of the elastic member 850 may be achieved by means of the matching between the guide block 855 and the recess 821, as described in more detail below.
Further, as shown more clearly in
The arrangement positions of the groove and the raised rib may be interchanged herein, which is also within the scope of the present invention, namely, the raised rib may be formed on the inner surface of the lower press head ring 811, and the groove may be correspondingly formed in the outer surface of the synchronising sleeve 854.
The action principle of the pumping device 800 of the sixth embodiment will be described below with reference to
When leaving a factory, the pumping device 800 is in the released position as shown in
Before operating the pumping device 800 to pump the product in the container 20, the user first rotates the press head 810, for example, by 90 degrees, to rotate the elastic member 850 together therewith. In this way, under the interaction between the guide bevel 822 in the recess 821 of the engagement sleeve 820 and the bevel 857 on the guide block 855 of the elastic member 850, the guide block 855 rises out of the recess 821 such that the distance between the upper ring 851 and the lower ring 852 of the elastic member 850 is decreased, and the elastic member 850 then enters the preloading position as shown in
In the preloading position, the user may press down the press head 810 to pump out the product in the container 20.
After using up, the press head 810 may optionally be rotated reversely to bring the elastic member 850 backe to the released position.
As shown in
Particularly, as shown in
Similar to the first embodiment, the elastic member 950 includes an upper ring 951, a lower ring 952, and an elastic strip 953 therebetween, as shown in the perspective view of
As for the lower ring 952 of the elastic member 950, in the structure shown in
b show a pumping device 1000 of an eighth embodiment of the present invention. The similarities of the structure in the eighth embodiment and the structures in the first through seventh embodiments will not be described in detail herein, and the following description will mainly focus on the features of the eighth embodiment that are different from those of the first through seventh embodiments.
As shown in
The difference lies in that two or more elastic strips 1053 included in the elastic member 1050 of the eighth embodiment are located on different planes. This is illustrated in
The preferred embodiments of the present invention are described above. On this basis, those skilled in the art may make obvious variations and modifications.
In the structure shown in the figures, the elastic member includes an upper ring and a lower ring. However, one of the upper ring and the lower ring may be omitted, in which case the respective ends of the elastic strip are directly connected to the movable part or the container.
In the first embodiment, the elastic member 150 and the synchronising collar 160 are two parts formed separately, but the elastic member 150 may alternatively be formed integrally with the synchronising collar.
In the above description of the disclosed embodiments, the upper ring and the lower ring (or the upper end and the lower end) of the elastic member are supported or connected in corresponding parts, including the case where the upper ring and the lower ring of the elastic member are integrally formed on the corresponding parts.
In the embodiments disclosed above, the press head, the piston rod, etc. are described as the movable parts of the pumping device, and the cylinder, the engagement sleeve, etc. are described as the fixed parts of the pumping device. It will be appreciated by those skilled in the art that other movable and fixed parts may be further included for different types of pumping devices, and that the same part may be a movable part in one type of pumping device but may be a fixed part in another type of pumping device. For example, similarly, the cylinder may be either a fixed part or a movable part. Correspondingly, if the cylinder is the fixed part, the piston and the piston rod are movable parts, and if the cylinder is the movable part, the piston and the piston rod are correspondingly fixed parts.
In the embodiments disclosed above, the straw 30 is shown as an integral part. The straw may be made by means of injection molding, or may also be made by means of extrusion, blow molding, etc. Furthermore, the straw may further include a plurality of portions assembled together.
Number | Date | Country | Kind |
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201910730558.8 | Aug 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/108976 | 9/29/2019 | WO |