The present invention relates to a method and device for manufacturing a content-filled bottle, and more specifically, to a method for manufacturing a content-filled bottle, in which a liquid substance is filled into the interior of a synthetic resin bottle having an inversion part disposed on a bottom part thereof, and which is capable of causing the inversion part to be inverted between a state in which the inversion part is recessed inwardly along an axial direction of a body part, and a state in which the inversion part projects outwardly from the body part, along with a device for carrying out such a method.
As a content-filled bottle, which accommodates a liquid substance such as a drink or the like therein, for example, a bottle (PET bottle) made by blow forming a polyethylene-telephthalate material has been known. In this type of bottle, for purposes of heat sterilization, the bottle is filled with a drink, which has been heated to a high temperature (e.g., 85° C.), whereupon cooling is performed after an opening of the bottle has been hermetically sealed by a cap. Thus, upon cooling, the interior of the bottle is placed in a reduced pressure state together with a reduction in the volume of the liquid drink. Also at this time, a body portion of the bottle becomes deformed by the reduced pressure inside the bottle, which tends to make the outer appearance of the bottle unfavorable.
Therefore, on such synthetic resin bottles that are intended to be filled with liquid contents at a high temperature, multiple formation of flexible panels on the body part, which evenly absorb the deformation accompanying the internal pressure reduction after filling, is carried out. However, in the case that such panels are provided, the shape of the bottle becomes complicated and the material cost for the bottle increases.
Consequently, it has been known to provide an inversion part capable of being inverted between concave and convex shapes on a bottom part of the bottle, wherein the heated liquid contents are filled in a state in which the inverted part projects outwardly from the bottle, and after the bottle opening is sealed by the cap, the inversion part in a state of projecting outwardly from the body part is recessed inwardly into the body part, when the pressure is reduced as a result of cooling.
In this type of bottle, prior to filling of the liquid contents therein, the inversion part on the bottom of the bottle is pressed out so as to project outwardly from the body part. Next, liquid contents that have been heated to a high temperature are filled into the interior of the bottle in a state in which the inversion part of the bottom part projects outwardly from the body part, and the opening of the bottle is sealed by a cap. Thereafter, when the liquid contents inside the bottle are cooled resulting in a reduced pressure state, the inversion part on the bottom of the bottle, which is in an outwardly projected state, is pressed up and recessed inwardly into the bottle. As a result, the reduced pressure state of the inside pressure is canceled out, whereby reduced pressure deformation of the container body part does not occur. In this manner, the inversion part, which is invertible between concave and convex states, is provided on the bottom of the bottle, wherein assuming the inversion part is made to become inverted during the manufacturing steps of the content-filled bottle, panels for evenly absorbing the aforementioned deformation do not need to be provided on the body part of the bottle, and therefore the degree of freedom in designing the bottle can be enhanced, together with enabling a reduction in material costs for the bottle.
However, in such a bottle which prevents reduced pressure deformation of the body part by concave/convex inversion of the bottom of the bottle, the inversion part on the bottom of the bottle into which contents have been filled beforehand must be made to project outwardly from the body portion, and thus the bottom part of the bottle becomes unstable and it is difficult to transport the bottle in a self-standing state. Therefore, after the inversion part on the bottom of the bottle has been made to project outwardly from the body part, a cylindrically shaped auxiliary tool having a ground portion on which the bottle bottom is stabilized is installed, whereby the projecting part on the bottom portion is accommodated within the auxiliary tool. Thus, by enabling the bottle to stand on its own through means of the auxiliary tool, transporting of the bottle in a stable manner is conceivable.
However, during the manufacturing steps for the content-filled bottle, a problem results in that, in addition to the fact that the process of concave/convex inversion of the bottle bottom portion must be carried out multiple times, in the case of installing the auxiliary tool as described above, a process for installing the auxiliary tool must also be provided, whereby the number of process steps increases and efficiency is deteriorated. Moreover, in particular, because the body and bottom parts in this type of synthetic resin bottle are thin-walled, the integrity thereof for maintaining the shape of the bottle is comparatively weak, and there is a concern that along with increasing the number of process steps, when an excessive load is applied to the bottle, inappropriate deformation and buckling may occur, whereby the product quality of the bottle becomes degraded.
The present invention has been devised taking into account the aforementioned problems and has the object of providing a method and device by which a content-filled bottle can be manufactured with good efficiency and high product quality, wherein, during manufacturing of the content-filled bottle in which reduced pressure deformation of the body portion is prevented through concave/convex inversion of a bottom part thereof, inappropriate deformation or buckling of the content-filled bottle is prevented.
For accomplishing the concerned objects, the present invention provides a method for manufacturing a content-filled bottle, in which liquid contents are hermetically sealed in a synthetic resin bottle comprising a hollowed body part, an opening provided on an upper end of the body part and capable of being fitted with a cap thereon, a bottom part that closes a bottom end of the body part, and an inversion part provided within a portion of the bottom part, which is capable of undergoing inversion between a state of being recessed inwardly into the body part along an axial direction of the body part, and a state of projecting outwardly from the body part, the method being characterized by:
an auxiliary tool mounting step by which a cylindrical auxiliary tool, formed with a shape such that a portion thereof capable of being mounted on the bottom part of the bottle and corresponding to the inversion part is opened, and which is capable of accommodating the inversion part in the state of projecting outwardly from the body part, is mounted onto a bottom part outer periphery of a non-content-filled empty bottle under a condition in which the inversion part is recessed inwardly into the body part;
a bottom part projecting step in which the inversion part on the bottom part of the empty bottle, on which the auxiliary tool has been mounted by the auxiliary tool mounting step, is made to project outwardly from the body part;
a content filling step in which liquid contents are filled into the interior of the bottle having the inversion part thereof projecting outwardly from the body part by means of the bottom part projecting step;
a sealing step in which a cap is fitted onto the opening of the filled bottle, the interior of which has been filled with liquid contents by the content filling step, for sealing the bottle;
a bottom part recessing step by which the inversion part that projects outwardly from the filled bottle in which the cap has been fitted by the sealing step is recessed inwardly into the body part; and
an auxiliary tool separating step in which the auxiliary tool is separated from the filled bottle in which the inversion part has become recessed inwardly into the body part by the bottom part recessing step,
wherein the auxiliary tool mounting step further comprises an empty bottle retaining step for retaining the empty bottle by gripping the opening from an outer side thereof along an upper surface of a flange that is formed on an outer periphery of the opening of the empty bottle, and an empty bottle loading step in which an empty bottle support table that raisably supports the empty bottle onto which the auxiliary tool has been mounted is raised, whereby the auxiliary tool is installed onto the bottom part of the empty bottle that is retained by the retaining step, and wherein the empty bottle is loaded onto the empty bottle support table through the auxiliary tool, and
wherein the bottom part projecting step further comprises a bottom part downward pressing step in which a rod shaped pushdown member is lowered in an axial direction from the opening of the empty bottle, which has been loaded onto the empty bottle support table by the empty bottle loading step, and is inserted into the interior of the empty bottle, whereby the inversion part in an inwardly recessed state is pressed downwardly by an end of the pushdown member from the inside of the empty bottle so as to project outwardly from the body part, and a pushdown member retracting step in which the pushdown member is raised and retracted from the inside of the empty bottle after the inversion part has been inversely projected by the bottom part downward pressing step.
According to the method of the present invention, the opening is gripped on an upper surface of a flange (so-called support ring) in the empty bottle retaining step of the auxiliary tool mounting step. In addition, in the empty bottle loading step, installation of the auxiliary tool onto the bottom part of the bottle and loading of the bottle onto the top of the empty bottle support table are carried out by raising the empty bottle support table. Accordingly, at the same time that the auxiliary tool is installed, the empty bottle becomes positioned between the upper surface of the flange and the bottom part thereof is positioned above the empty bottle support table.
In addition, by maintaining the above state and by the bottom part downward pressing step of the bottom part projecting step, the rod shaped pushdown member is lowered from the opening of the empty bottle, thereby causing the inversion part to project outwardly. Subsequently, withdrawal of the pushdown member from the empty bottle is carried out by the pushdown member retracting step.
In this manner, according to the present invention, positioning is finalized at the same time that the auxiliary tool is installed. Accordingly, projecting of the inversion part can be linked with and carried out by the pushdown member, and lowering of efficiency accompanying installation of the auxiliary tool can be prevented. In addition, the structure of the apparatus is simplified and equipment costs can be decreased. Furthermore, because the bottom part projecting step can be performed while maintaining high positional accuracy by means of the auxiliary tool mounting step, the positioning at which the pushdown member is pressed down does not suffer from off placement or shifting. Accordingly, damage to the bottom part of the empty bottle can be reliably prevented and a content-filled bottle of high product quality can be manufactured.
Further, when the inversion part of the synthetic resin bottle comprises an inclined portion, which is capable of concave/convex inversion in a symmetrical shape inwardly and/or outwardly of the body part, and a bottom part central portion formed in a region surrounded by the inclined portion, in the bottom part downward pressing step of the bottom part projecting step, the inversion part is pressed downward by the end of the pushdown member along at least an inner peripheral edge of the inclined portion of the inversion part.
When the inversion part of the synthetic resin bottle is inverted, the boundary thereof with the bottom part central portion acts as a hinge. In such a case, by pressing down along the inner peripheral edge of the inclined portion which acts as a hinge, adverse effects are not imparted to the bottom part central portion and the inversion part can be inverted outwardly from the body part with a comparatively small pressing force. The load imposed on the bottom part of the bottle at the time of inversion can be alleviated, and inadvertent deformations can be reliably prevented while enabling the inversion part to be inverted securely. Accordingly, damage to the bottom part of the empty bottle can be reliably prevented and a content-filled bottle of high product quality can be manufactured with good efficiency.
Further, in the bottom part downward pressing step and in the pushdown member retracting step, raising and lowering of the pushdown member is driven through an arm that extends outwardly of the bottle along a vertical direction of the bottle, and which is connected to an upper end of the pushdown member.
Accordingly, a driving mechanism or the like for raising and lowering the pushdown member can be disposed outside of the bottle through the arm. Owing thereto, the driving mechanism or the like is not positioned directly above the opening, and falling of foreign substances (for example, machine oil or the like) from the driving mechanism and incursion thereof from the opening of the bottle can be reliably prevented.
Further, the bottom part recessing step of the present invention includes a filled bottle loading step by which the filled bottle on which the auxiliary tool is installed is loaded onto a filled bottle support table from which a downward position corresponding to the inversion part is open, a shoulder part pressing step by which a shoulder part, which extends to an upper end of the body part from a lower end of an opening of the filled bottle that is loaded onto the filled bottle support table, is pressed so as to prevent upward movement thereof, and a bottom part pushup step in which the inversion part, in a state of projecting outwardly from the body part of the filled bottle, which is prevented from upward movement by the shoulder part pressing step, is pressed upwardly and recessed into the body part by an end of a rod shaped pushup member.
In the bottom part recessing step of the present invention, the filled bottle is loaded onto the filled bottle support table by the filled bottle loading step, and in a state in which the shoulder part of the filled bottle is pressed by the shoulder part pressing step, the inversion part of the filled bottle, in a projected state, is pressed upwardly and recessed inwardly by the bottom part pushup step. In the bottom part pushup step, when an end of the pushup member pushes the bottom part of the filled bottle upward, an upward pressing force is applied in the axial direction of the filled bottle. However, due to the fact that the shoulder part of the filled bottle is pressed upon, the resultant buckling strength of the bottle is sufficiently brought forth, whereby resistance can be provided against the upward pushing force of the pushup member. Owing thereto, when the inversion part is pressed upward, causing the inversion part to be recessed inward, even if a load is applied to the bottle, inappropriate deformation and buckling of the bottle does not occur, and a content-filled bottle that exhibits high product quality can be manufactured.
Furthermore, when the inversion part of the synthetic resin bottle includes an inclined portion, which is capable of concave/convex inversion in a symmetrical shape inwardly and/or outwardly of the body part, and a bottom part central portion formed in a region surrounded by the inclined portion, in the bottom part pushup step of the bottom part recessing step, preferably, the inclined portion and the bottom part central portion of the inversion part are pressed upwardly by the end of the pushup member.
Consequently, in the bottom part pushup step, since the inclined portion and the bottom part central portion are pressed upwardly by the end of the pushup member, inappropriate deformation of the inclined portion and the bottom part central portion is regulated while the inversion part is recessed inwardly into the body part. Owing thereto, the bottom part of the filled bottle can be recessed into a correct shape for the inversion part.
Further, the auxiliary tool separating step of the present invention is characterized by a filled bottle retaining step in which the opening is gripped from the outside along a lower surface of a flange formed on an outer periphery of the opening of the filled bottle, and an auxiliary tool pull down step of coupling to the auxiliary tool, which is installed on the filled bottle retained by the filled bottle retaining step, and pulling the auxiliary tool downward of the filled bottle.
In accordance with the present invention, since the flange of the bottle having a comparatively high strength is retained from below while the auxiliary tool is pulled downward, compared to a case, for example, in which the body part is retained while the auxiliary tool is pulled downward, deformation of the body can be favorably suppressed, and the auxiliary tool can be detached without diminishing the product quality of the bottle.
Further, the present invention provides a device for manufacturing a content-filled bottle, in which liquid contents are hermetically sealed in a synthetic resin bottle comprising a hollowed body part, an opening provided on an upper end of the body part and capable of being fitted with a cap thereon, a bottom part that closes a bottom end of the body part, and an inversion part provided within a portion of the bottom part, which is capable of undergoing inversion between a state of being recessed inwardly into the body part along an axial direction of the body part, and a state of projecting outwardly from the body part, the device being characterized by:
auxiliary tool mounting means for mounting a cylindrical auxiliary tool, formed with a shape such that a portion thereof capable of being mounted on the bottom part of the bottle and corresponding to the inversion part is opened, and which is capable of accommodating the inversion part in a state of projecting outwardly from the body part, onto a bottom part outer periphery of a non-content-filled empty bottle under a condition in which the inversion part is recessed inwardly into the body part;
bottom part projecting means for causing the inversion part on the bottom part of the empty bottle, on which the auxiliary tool has been mounted by the auxiliary tool mounting means, to project outwardly from the body part;
content filling means for filling liquid contents into the interior of the bottle having the inversion part thereof projecting outwardly from the body part by means of the bottom part projecting means;
sealing means for fitting a cap onto the opening of the filled bottle, the interior of which has been filled with liquid contents by the content filling means, for thereby sealing the bottle;
bottom part recessing means for recessing the inversion part, which projects outwardly from the filled bottle on which the cap has been fitted by the sealing means, inwardly into the body part; and
auxiliary tool separating means for separating the auxiliary tool from the filled bottle in which the inversion part has been recessed inwardly into the body part by the bottom part recessing means,
wherein the auxiliary tool mounting means further comprises an empty bottle chuck for gripping the opening from an outer side thereof along an upper surface of a flange that is formed on an outer periphery of the opening of the empty bottle, an empty bottle support table disposed below the empty bottle that is retained by the empty bottle chuck, which is raised with the auxiliary tool loaded thereon whereby the auxiliary tool is installed onto the bottom part of the empty bottle, and which supports the empty bottle for being raised and lowered through the auxiliary tool, and table raising/lowering means for driving raising and lowering of the empty bottle support table, and
wherein the bottom part projecting means further comprises a rod shaped pushdown member, which is capable of being raised and lowered, disposed above an opening of the empty bottle that is retained by the empty bottle chuck, and which is inserted into the interior of the empty bottle from the opening, whereby the inversion part in an inwardly recessed state is pressed downwardly from the inside of the empty bottle so as to project outwardly from the body part, and a pushdown member raising/lowering means for driving raising and lowering of the pushdown member.
In manufacturing of the content-filled bottle by the device of the present invention, first, the auxiliary tool is installed onto the bottom outer periphery of an empty bottle by the auxiliary tool mounting means. Next, the inversion part on the bottom part of the empty bottle is inverted by the bottom part projecting means and made to project outwardly from the body part. In succession, the interior of the bottle is filled with liquid contents by the content filling means, and a cap is fitted onto the opening of the filled bottle by the sealing means for thereby sealing the bottle. In addition, the inversion part that projects downwardly from the filled bottle is pressed and inverted inwardly into the body part, thereby recessing the inversion part, by the bottom part recessing means.
According to the present invention, when the auxiliary tool is mounted onto the bottom outer periphery of the empty bottle by the auxiliary tool mounting means, the opening is gripped along an upper surface of the flange of the empty bottle by the empty bottle chuck provided in the auxiliary tool mounting means. Next, the empty bottle table is raised by the table raising/lowering means, whereby the auxiliary tool loaded onto the empty bottle support table is installed onto the bottom part of the empty bottle. Because the empty bottle chuck abuts against the bottle from the upper surface side of the flange and upward movement of the bottle is regulated, in such a regulated state, solely by raising the empty bottle support table, the auxiliary tool can be mounted onto the bottom part of the empty bottle, whereby installation of the auxiliary tool can be reliably and speedily carried out.
Furthermore, the raised empty bottle support table assumes a state in which the empty bottle is loaded thereon at the time that the auxiliary tool is mounted onto the bottom part of the empty bottle. In this condition, next, the inversion part of the bottom portion of the empty bottle is inversely projected downward by the bottom part projecting means. More specifically, the pushdown member is lowered by the pushdown member raising/lowering means and is inserted into the empty bottle, whereby the end of the pushdown member presses down on the inversion part. At this time, the empty bottle is gripped and placed in a positioned state by the empty bottle chuck and the empty bottle support table of the auxiliary tool mounting means. Owing thereto, the pressing position of the pushdown member, with respect to the inversion part of the bottom part of the empty bottle, is not shifted, and thus damage to the bottom part of the empty bottle can reliably be prevented. In addition, because such proper positioning is completed simultaneously with mounting of the auxiliary tool, the projecting operation of the inversion part, which is performed by the pushdown member, can be carried out quickly in sequence after mounting of the auxiliary tool, lowering of efficiency accompanying mounting of the auxiliary tool can be prevented, and the structure of the apparatus can be simplified together with enabling a reduction in equipment costs.
Further, when the inversion part of the synthetic resin bottle includes an inclined portion, which is capable of concave/convex inversion in a symmetrical shape inwardly and/or outwardly of the body part, and a bottom part central portion formed in a region surrounded by the inclined portion, preferably the pushdown member of the bottom part pushdown means includes an annular convex part on an end thereof, which presses downward along at least an inner peripheral edge of the inclined portion of the inversion part.
When the inversion part of the synthetic resin bottle is inverted, the boundary thereof with the bottom part central portion acts as a hinge. In the present invention, because an annular protrusion-is disposed on the end of the pushdown member of the bottom part pushdown means, the inversion part can be pressed down reliably along an inner peripheral edge of the inclined portion, which acts as a hinge. Consequently, the inversion part can be made to project outwardly from the body part without occurrence of inadvertent deformation to the inversion part, whereas the inversion part can be inverted with a comparatively small pressing force. Accordingly, the load applied to the bottom part when the inversion part is inverted can be reduced, damage to the bottom part of the empty bottle can be reliably prevented, and a content-filled bottle of high product quality can be manufactured with good efficiency.
Further, in the device of the present invention, preferably the pushdown member raising/lowering means is positioned on an upper side of the empty bottle that is retained by the empty bottle chuck, and is connected to the pushdown member through an arm extending directly above the opening of the empty bottle.
Accordingly, a driving mechanism or the like for raising and lowering the pushdown member can be disposed outside of the bottle through the arm. Owing thereto, because the driving mechanism or the like is not positioned directly above the opening, falling of foreign substances (for example, machine oil or the like) from the driving mechanism and incursion thereof from the opening of the bottle can be reliably prevented.
Further, in the device of the present invention, the bottom part recessing means further includes a filled bottle support table having an opening therein open at a downward position corresponding to the inversion part of the filled bottle on which the auxiliary tool is mounted, a shoulder part presser by which a shoulder part, which extends to an upper end of the body part from a lower end of an opening of the filled bottle that is loaded onto the filled bottle support table, is pressed so as to prevent upward movement thereof, a rod shaped pushup member, which is capable of being raised and lowered, and by which the inversion part, in a projected state, is pressed upwardly and recessed into the body part through the opening of the filled bottle support table by an end of the rod shaped pushup member, and a punch raising/lowering means for raising and lowering the pushup member.
According to the present invention, when the inversion part on the bottom part of the filled bottle is recessed inwardly into the body part by the bottom part recessing means, first, the filled bottle is loaded onto the filled bottle support table through the auxiliary tool and the shoulder part is pressed from above by the shoulder part presser. Subsequently, the pushup member is raised by the punch raising/lowering means, and the inversion part, which is in an outwardly projected state from the body part of the filled bottle, is pressed upwardly by the pushup member, which is raised through the opening of the filled bottle support table. Owing thereto, the projected state of the inversion part becomes inverted, whereby the inversion part is recessed inwardly into the body part of the bottle.
When the pushup member pushes the bottom part of the filled bottle upwardly, an upward pressing force is applied in the axial direction of the filled bottle. However, due to the fact that the shoulder part of the filled bottle is pressed upon, and by pressing the body part evenly over a comparatively wide range upwardly of the body part, a resultant buckling strength of the bottle is sufficiently brought forth, whereby resistance can be provided reliably against the upward pressing force of the pushup member. Owing thereto, even if a load is applied by the pressing force of the pushup member to portions apart from the inversion part of the bottle, inappropriate deformation and buckling of the bottle does not occur, and a content-filled bottle that exhibits high product quality can be manufactured.
Further, in the device of the present invention, the inversion part of the synthetic resin bottle preferably includes an inclined portion, which is capable of concave/convex inversion in a symmetrical shape inwardly and/or outwardly of the body part, and a bottom part central portion formed in a region surrounded by the inclined portion, the pushup member of the bottom part recessing means having a pushup abutment part on an end thereof which abuts against the inversion part, wherein the pushup abutment part has a shape corresponding to the bottom part central portion, and also has a shape adapted to circumferentially press at least a part of the inclined portion.
In accordance therewith, the pushup abutment part of the pushup member of the bottom part recessing means initially presses the bottom part central portion upwardly, while the inclined portion, which is also pushed up at the same time, is inverted along the shape of the pushup abutment part. Consequently, inadvertent deformation of the inclined portion and the bottom part central portion can be regulated while the bottom part is pressed upward, and the bottom part of the filled bottle can be recessed with a correct shape for the inversion part. Due to the pushup abutment part having a shape corresponding to the bottom part central portion, the upward pressing force can be applied while being concentrated on the bottom part central portion, and furthermore, by having a shape adapted to circumferentially press at least the inclined portion, inadvertent deformation when the inclined portion is inverted is prevented. Further, at this time, the pushup abutment part may also have a shape corresponding to the inclined portion.
Further, in the device of the present invention, the auxiliary tool separating means further includes a filled bottle chuck for gripping the opening from an outer side thereof along a lower surface of the flange formed on the outer periphery of the opening of the filled bottle, an auxiliary tool coupling member, which is capable of being raised and lowered so as to be coupled to the auxiliary tool that is mounted on the filled bottle retained by the filled bottle chuck, and for pulling down the auxiliary tool downward of the filled bottle, so as to separate the auxiliary tool from the filled bottle, and a coupling member raising and lowering means for driving raising and lowering of the auxiliary tool coupling member.
According to the present invention, the filled bottle is retained by the filled bottle chuck of the auxiliary tool separating means and the auxiliary tool coupling member is coupled to the auxiliary tool. Subsequently, in accordance with lowering of the auxiliary tool coupling member by means of the coupling member raising and lowering means, the auxiliary tool is made to separate from the filled bottle. When the auxiliary tool coupling member is lowered and the auxiliary tool is pulled downward, because the filled bottle is retained by the filled bottle chuck from beneath the flange, which exhibits a comparatively high strength, compared to a case, for example, in which the body part is retained while the auxiliary tool is pulled downward, deformation of the body can be favorably suppressed, and the auxiliary tool can be detached without adversely affecting the product quality of the bottle.
At this time, more specifically, the auxiliary tool preferably includes an annular latching groove on an outer peripheral surface thereof, and the auxiliary tool coupling member includes a projection that engages with the latching groove of the auxiliary tool, the projection latching with the latching groove when the auxiliary tool is raised by the coupling member raising and lowering means, and the latched state between the projection and the latching groove being maintained when the coupling member raising and lowering means is lowered, thereby separating the auxiliary tool from the filled bottle. Consequently, the auxiliary tool has a simple structure and can be separated quickly from the filled bottle.
Further, in the present invention, the auxiliary tool preferably is equipped with engaging pawls on a circumferential wall thereof, which are elastically attachable/detachable with a recess formed in the body part of the bottle. In accordance therewith, in the auxiliary tool, the engaging pawls engage reliably in the recess of the body part of the bottle, and the mounted condition of the auxiliary tool on the bottle can be reliably maintained without becoming detached therefrom. Furthermore, since the engaging pawls elastically engage with the recess of the bottle body part, engagement in the recess of the body bottle part can be smoothly performed upon mounting, and separation of the auxiliary tool can also be smoothly carried out by the auxiliary tool separating means.
An embodiment of the present invention shall be explained with reference to the drawings. The device of the present invention is utilized for manufacturing a content-filled bottle, which is filled with contents such as a beverage or the like, wherein portions thereof are made up of an empty bottle processing apparatus 1 as shown in
A bottle 3, which is placed in the empty bottle processing apparatus 1, comprises a polyethylene-telephthalate resin (PET) bottle made by blow formation. As shown in
In the description of the present embodiment, while the container is unfilled as shown in
First, an explanation shall be given concerning the empty bottle processing apparatus 1. As shown in
The auxiliary tool 24 is formed in a cylindrical shape from a comparatively hardened synthetic resin material, and is installed onto the bottle 3 so as to cover the bottom part 7 thereof from a lower end portion of the body part 6 of the bottle 3. As shown in
As shown in
Each of the auxiliary tool mounting means 39 comprises an empty bottle chuck 41 fixed to and supported by one of the guide rods 38, and an empty bottle support table 42, which is supported while capable of being raised and lowered on the guide rod 38 at a downward position from the empty bottle chuck 41.
As shown in
As shown in
The empty bottle support table 42 installs the auxiliary tool 24, which is loaded onto the auxiliary tool loader 50, onto an empty bottle 3 by raising it along the bottom part 7 of the empty bottle 3, which is supported by the empty bottle chuck 41. At this time, because the empty bottle chuck 41 grips the opening 4 by the claw members 44 along an upper surface of the flange 10 of the empty bottle 3, even if an upward pressing force is applied to the empty bottle 3 when the auxiliary tool 24 is installed thereon, upward movement of the empty bottle 3 is reliably regulated. In addition, as shown in
As shown in
When the inversion part 12 of the empty bottle 3 is pushed down by the pushdown member 54, because the empty bottle 3 is placed in a positional state by being sandwiched between the empty bottle chuck 41 and the empty bottle support table 42, the annular protrusion 58 of the pushdown member 54 abuts with good precision against the inner circumferential edge (second hinge section 16) of the inclined portion 13. In addition, as a result of the auxiliary tool 24 being mounted on the empty bottle 3, the inversion part 12 of the empty bottle 3, which is pressed down and projected downwardly by the pushdown member 54, is accommodated within the opening 31 of the auxiliary tool, whereby the downward projection of the inversion part 12 can be smoothly carried out.
Next, an explanation shall be given concerning the filled bottle processing apparatus 2. As shown in
As shown in
The filled bottle support table 74 includes a plurality of filled bottle loading sections 78, wherein openings 79 are formed in the filled bottle loading sections 78, which penetrate vertically therethrough corresponding to the inversion parts 12 of the filled bottles 3.
A shoulder presser 80 is supported while capable of being raised and lowered on the first guide rod 75. The shoulder presser 80 comprises a cam follower 81, such that the cam follower 81 is guided by a cam rail 82 disposed on an outer circumference of the support pillar 71, thereby raising and lowering the shoulder presser 80. As shown in
As shown in
The pushup member 85 is positioned downwardly of each of the filled bottle loading sections 78 of the filled bottle support table 74, so that when the support pillar 71 is rotated around, the pushup member 85 is raised to penetrate through the openings 79 of the filled bottle loading sections 78 under the guidance of the cam rail 92. Owing thereto, the end of the pushup member 85 presses up on the downwardly projecting inversion part 12 of the filled bottle 3, causing the inversion part 12 to become recessed inwardly into the filled bottle 3. At this time, by providing the shock absorbing spring 88 in the interior of the guide tube 87, an excessive pushing force from the pushup member 85 is prevented from being imposed on the inversion part 12, whereby damage to the inversion part 12 can reliably be prevented. Further, by providing the pushup abutment member 89 on the end of the pushup member 85, the inversion part 12 can be recessed along the recessed shape thereof when the inversion part is inwardly recessed, and inadvertent deformations of the bottom part 7 can be prevented, enabling the inversion part to be smoothly recessed inwardly. In
As shown in
A filled bottle chuck 102 is supported in a fixed condition to the first guide rod 98. The filled bottle chuck 102 has a similar structure as that of the previously discussed empty bottle chuck 41, and therefore detailed explanations thereof shall be omitted. However, differing from the empty bottle chuck 41, as shown in
As shown in
The content filled bottle is manufactured in the following manner by the device of the present embodiment, which is constructed as described above. More specifically, first, the auxiliary tool 24 is installed onto the bottom part 7 of an empty bottle 3 by the auxiliary tool mounting means 39 of the empty bottle processing apparatus 1 shown in
As shown in
Next, in the bottom part projecting means 40, as shown in
Additionally, as shown in
In the bottom part recessing means 59 of the filled bottle processing apparatus 2, first, as shown in
In the auxiliary tool separating means 61 of the filled bottle processing apparatus 2, the filled bottle 3, which has been delivered from the filled bottle transport turret 60, is retained by the filled bottle chuck 102 as shown in
In the manufacturing method and device for manufacturing a content filled bottle according to the present invention, an inversion part is provided on a bottom part of the bottle, wherein the bottle is manufactured by filling liquid contents into the interior of a synthetic resin bottle, and the inversion part thereof is capable of being inverted between a state in which the inversion part is recessed inwardly along an axial direction of the body part, and a state in which the inversion part projects outwardly from the body part. In accordance with such a manufacturing method and device for manufacturing a content filled bottle of the present invention, inappropriate deformation and buckling of the bottle can be prevented, thus enabling a content filled bottle to be manufactured with good efficiency and high product quality.
Number | Date | Country | Kind |
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2006-135221 | May 2006 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2007/059737 | 5/11/2007 | WO | 00 | 10/30/2008 |