Tool for manufacturing containers with rolled free edges

The jig with sliding and contracting split jaws addresses the failure issues of conventional tools by supporting the container during rolling, ensuring a stable and efficient curling process for containers.

JP7811577B2Active Publication Date: 2026-02-05MYUSEL EXTRUSION LLC
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Patent Information

Application Number
JP2023514168
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-05-15
Filing Date
2021-05-14
Publication Date
2026-02-05
Estimated Expiration
2041-05-14

AI Technical Summary

Technical Problem

Conventional tools for curling the free edge of containers are prone to failure, leading to deformation and waste, and do not adequately support the container during the rolling operation, especially for tapered containers.

Method used

A jig with a container fixture and a rolling die, featuring split jaws that slide along the container's outer surface and contract to adjust the rounded groove's diameter, providing support and facilitating a smooth rolling operation.

Benefits of technology

The jig supports the container's exterior during rolling, allowing for a longer curling distance with reduced risk of deformation, enabling a stiffer and more stable rim with improved material utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure contemplates a tool 100 for manufacturing containers having a rolled free edge. The tool 100 includes a container fixture 110 and a rolling die 150. The container fixture 110 includes a first set of split jaws 125 that are positioned to abut an accessible outer surface of the container near the container's free edge and slide along the outer surface of the container, thereby supporting the outer surface during the rolling operation. The rolling die 150 of one embodiment includes a second set of split jaws 165 having rounded grooves 155, the split jaws of the second set of split jaws being positioned to contract during the rolling operation.
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Description

[Technical Field]

[0001] FIELD OF THE DISCLOSURE The present disclosure relates to the field of fixtures for rolled edges on containers. [Background technology]

[0002] In a standard paper container, such as a paper beverage cup, the free edge of the container is rolled in a rolling motion to reinforce the free edge and also to provide a smooth edge.

[0003] Typically, a jig is used to curl the top edge of a container. A conventional jig includes a first die and a second die. The container is held by the first die, and the second die is pressed against the edge of the container that needs to be curled. The second die has a rounded groove that faces the edge of the container. Typically, the groove faces downward, and the second die with the groove is displaced downward toward the free edge of the container held within the first die below the second die. As the second die is displaced further downward, the edge of the container begins to curl. One conventional jig is shown in U.S. Patent Application Publication No. 2008 / 0029525. Another example of a conventional jig is shown in U.S. Patent No. 3,065,677. As disclosed in U.S. Patent Application Publication No. 2008 / 0029525 and U.S. Patent No. 3,065,677, a reciprocating impact tool (second die) includes an annular groove that facilitates curling of the cup edge. The impact tool displaces vertically downward to facilitate curling of the edge within the annular groove. However, the rolling operation has been found to be prone to failure. When the operation fails, the container within the jig becomes deformed and must be discarded.

[0004] Therefore, a need is felt for a tool that alleviates the above-mentioned shortcomings of conventional tools and that facilitates the rolling action at the free edge of the container. [Prior art documents] [Patent documents]

[0005] [Patent Document 1] U.S. Patent Application Publication No. 2008 / 0029525 [Patent Document 2] U.S. Patent No. 3,065,677 Summary of the Invention [Problem to be solved by the invention]

[0006] It is an object of the present disclosure to provide a tool that aids in performing a rolling operation on the free edge of a container.

[0007] Another object of the present disclosure is to provide a fixture that supports the exterior surface of the container during the rolling operation.

[0008] It is yet another object of the present disclosure to provide a fixture that accommodates tapered containers better than prior art fixtures.

[0009] It is yet another object of the present disclosure to provide a tool that is capable of rolling more material at the top edge than prior art tools. [Means for solving the problem]

[0010] The present disclosure provides a jig for manufacturing containers having a rolled free edge. The jig includes a first die configured as a container fixture and a second die configured as a rolling die. The container fixture includes an open recess configured to receive the container. The rolling die includes a rounded groove facing the container fixture for curling the free edge of the container. The container fixture includes a first set of split jaws that abut an outer operable surface of the container when the container is placed in the container fixture, the jaws of the first set of split jaws being arranged to slide along a first sliding mechanism to slide along the outer operable surface of the container during a rolling operation, the first sliding mechanism being arranged to displace the jaws of the first set of split jaws along a path having an angle relative to a central longitudinal axis of the open recess of the container fixture that corresponds to the angle of the outer operable surface of the container relative to the central longitudinal axis of the open recess of the container fixture.

[0011] In one embodiment, the rolling die includes a second set of split jaws, the rounded groove being disposed within a split jaw of the second set of split jaws, the second set of split jaws being arranged to contract during the rolling operation such that the circumference of the rounded groove is reduced during the rolling operation. In one embodiment, the rounded groove lies in a closed loop disposed in a plane perpendicular to the longitudinal axis of the container recess.

[0012] In one embodiment, the rounded groove has a diameter D in a plane perpendicular to the central longitudinal axis of the container recess, and the second set of split jaws are arranged to contract during the rolling operation, such that the diameter D is reduced during the rolling operation.

[0013] In one embodiment, the first set of split jaws and the second set of split jaws each include a contact surface that abuts against each other when the first and second sets of jaws contact each other. When either the rolling die or the container fixture is moved toward the other, the first set of split jaws and the second set of split jaws contact each other, and relative motion between the rolling die and the container fixture displaces the first set of split jaws inward according to the angle of the first sliding mechanism, thereby displacing the second set of split jaws inward as well.

[0014] It should be emphasized that the term "comprises / including / including" when used in this specification is used to specify the presence of stated features, integers, steps or components, but does not exclude the presence or addition of one or more other features, integers, steps, components or groups thereof.

[0015] The fixture of the present disclosure will now be described with reference to the accompanying drawings. [Brief explanation of the drawings]

[0016] [Figure 1] 1 illustrates an isometric view of a fixture of the present disclosure. [Figure 2] FIG. 1 illustrates an isometric view of a rolling die of the jig of the present disclosure. [Figure 3] 2 shows a schematic partial cross-sectional side view of the fixture of FIG. 1 prior to initiating the rolling operation on the container; [Figure 4] 2 shows a schematic partial cross-sectional side view of the fixture of FIG. 1 during a rolling operation; [Figure 5] 2 shows a schematic partial cross-sectional side view of the fixture of FIG. 1 at the end of the rolling operation; DETAILED DESCRIPTION OF THE INVENTION

[0017] In the following, the invention will be explained in more detail with reference to embodiments illustrated by the accompanying drawings, in which it should be emphasized that the illustrated embodiments are used for illustrative purposes only and should not be used to limit the scope of the invention.

[0018] The present disclosure discloses a tool for manufacturing containers with a rolled free edge. Rolling the free edge provides rigidity to the free edge of the container and provides a container with a smooth free edge. More specifically, the tool according to the present invention is useful for performing a rolling operation on the free edge of the container. In the rolling operation, the free edge of the container is rolled outward and downward toward the exterior surface of the container (in typical use of the container).

[0019] The jig 100 includes a container fixture 110 and a roll die 150 .

[0020] A first embodiment of a jig 100 of the present invention is shown in Figures 1-4. Figure 1 shows an isometric view of the jig 100. Figure 2 shows a perspective view of the rolling die. Figure 3 shows a cross-sectional view of the jig 100 before starting the rolling operation on the container. Figure 4 shows a cross-sectional view of the jig 100 during the rolling operation. Figure 5 shows a cross-sectional view of the jig 100 at the end of the rolling operation.

[0021] The container fixture 110 has an open recess 115 configured to receive a container (not shown) whose free edge is to be curled / rolled. The recess 115 has a shape complementary to the outer surface of the received container. The container is received in the recess 115 so that the open end of the container with the free edge to be rolled faces the rolling die 150.

[0022] In one embodiment, the container may be a cardboard, plastic, or metal cup.

[0023] Note that in the current embodiment, the container is placed in the container recess 115 with the free edge of the container facing downwards and the "bottom" of the container facing upwards. Only half of the fixture is shown in Figures 3-5, as is only half of the container recess 115.

[0024] The container fixture 110 includes a hollow fixture body 120 having a recess 115 formed therein. The container fixture 110 includes a first set of split jaws 125 disposed within the fixture body 120. The jaw support surfaces 127 of the first set of split jaws 125 abut the operable outer surface of the container when the container is disposed within the recess. The jaws are positioned to slide along the outer surface of the container during the rolling operation. Thus, the outer surface of the container near the free edge is adequately supported during the rolling operation. This prevents the container from buckling / crushing during the rolling operation, as is sometimes observed with conventional fixtures. In conventional fixtures, the upper exposed portions of the container sidewalls are often unsupported.

[0025] By providing a support on top of the container's exterior during the rolling operation, the material at the top edge is less stressed, allowing for a longer curling distance with less risk of the sides collapsing. A longer curling distance allows for more material to be placed in the curl, allowing for a stiffer, more stable rim.

[0026] The jig 100 includes a first sliding mechanism 125, 130 that facilitates sliding of the first set of split jaws 125 along the outer surface of the container. More specifically, the jaws of the first set of split jaws 125 are arranged to slide along the first sliding mechanism. The first sliding mechanism guides each of the jaws of the first set of split jaws 125 along the outer surface of the container. The first sliding mechanism is arranged within the fixture body 120 of the container fixture 110 at an angle that corresponds to the angle of the outer surface of the container relative to the central longitudinal axis of the open recess. More specifically, the angle that the first sliding mechanism makes with respect to the vertical or horizontal axis of the jig 100 is equal to the angle that the outer surface of the container makes with respect to the vertical or horizontal axis of the jig 100 when the container is received in the recess 115.

[0027] In one embodiment, the first sliding mechanism includes a plurality of pins 130. The pins 130 are fixedly disposed within the fixture body 120 of the container fixture 110, are configured spaced apart from the outer surface of the container, and are evenly spaced around the container recess. The pins 130 are arranged so that the pins 130 are parallel to the outer surface of the container. In one embodiment, a jaw support surface 127 of the first set of split jaws 125 is disposed between the outer surface of the container and the pins 130. Each jaw of the first set of split jaws 125 includes a slot 126 for receiving the pin 130. The slot is configured so that the jaws 125 can slide along the pins 130. In one embodiment, the pins 130 are rigid rods. In one embodiment, the pins 130 have a circular cross-section.

[0028] Additionally, the jaw support surfaces 127 have a tapered angle that corresponds to the angle of the container's outer surface.

[0029] In the current embodiment, the jaws are attached to and slide along pins, however other sliding arrangements can be used within the scope of the present invention and those skilled in the art of mechanical design will be able to provide suitable designs.

[0030] The rolling die 150 includes a rounded groove 155. The rounded groove 155 faces the container fixture 110 and is configured to facilitate curling the free edge of the container. The rounded groove coincides with the outer periphery of the container opening when viewed in a plane perpendicular to the longitudinal axis of the container recess. Thus, in this example, the container has a circular opening, and the rounded groove also has a circular shape with a diameter D.

[0031] The rolling die 150 includes a hollow die body 160. Additionally, the rolling die 150 includes a second set of split jaws 165 disposed on the die body 160. The second set of split jaws 165 includes a rounded groove 155. More specifically, a portion 157 of the groove 155 is configured on each of the second set of split jaws 165 that together form a complete rounded groove 155.

[0032] The second set of split jaws 165 are positioned to contract during the rolling operation such that the diameter D is reduced during the rolling operation. More specifically, the gaps 167 between adjacent jaws of the second set of split jaws 165 continue to reduce as the rolling operation progresses, causing the second set of split jaws 165 to be further displaced toward the container fixture 110.

[0033] In one embodiment, the rolling die 150 includes a second sliding mechanism 200 configured to horizontally displace the second set of split jaws 165, thereby facilitating retraction of the second set of split jaws 165. The second sliding mechanism includes a plurality of springs 195 and a horizontal pin 200. More specifically, each jaw of the second set of split jaws 165 is slidably mounted on the horizontal pin 200 and includes a spring 195. The springs 195 are positioned such that when the second set of split jaws 165 moves inward, the springs 195 are compressed. When the second set of split jaws is released, the force applied by the springs causes the second set of split jaws to move outward.

[0034] Each jaw of the first set of split jaws 125 and the second set of split jaws 165 has a contact surface 135, 170. In one embodiment, the contact surfaces 135, 170 of the first set of split jaws 125 and the second set of split jaws 165 are tapered. The tapered contact surfaces 135, 170 have complementary taper angles. The tapered contact surfaces 135, 170 facilitate movement of the second set of split jaws 165 when the first set of split jaws 125 and the second set of split jaws 165 contact each other.

[0035] As the rolling die 150 is pushed toward the container fixture 110, the tapered surface 170 of each jaw of the second set of split jaws 165 contacts the tapered surface 135 of the corresponding jaw of the first set of jaws 125. These two tapered surfaces then join together. As the rolling die 150 is pushed further upward toward the container fixture 110, the second set of split jaws 165 is forced upward relative to the container fixture. This causes the first set of split jaws 125 to also displace upward relative to the container fixture. Because the jaws of the first set of split jaws 125 slide on the angled pins 130, as the jaws of the first set of split jaws 125 move upward, they simultaneously move inward. Due to the connection between the first and second sets of jaws, the jaws of the second set of jaws also displace inward.

[0036] Thus, the two sets of jaws lock together and move together, remaining joined to each other because they move inward the same amount and have the same radius at their contact surfaces.

[0037] As the rolling die 150 is displaced away from the container fixture 110, the first set of jaws 125 moves downward due to gravity, pushing the second set of jaws 165 outward. A compressed spring 195 also biases the second set of split jaws 165 to their original / initial position. When the rolling die is displaced far enough away from the container fixture, the jaws of the first and second sets of jaws move apart. Because the contact surfaces are tapered, the two surfaces easily move apart.

[0038] In the open position, i.e., before the start of the rolling operation, the second set of split jaws 165 are outward. During the rolling operation, the second set of split jaws 165 move inward to adjust the diameter of the rounded rolling groove 155 to the taper of the container. In this way, the rounded groove 155 adjusts its diameter to fit the taper of the outer surface of the container.

[0039] In the inoperable configuration, each of the jaws of the first set of split jaws 125 and the second set of split jaws 165 does not abut adjacent jaws in the same set, and gaps 126, 167 are provided between adjacent jaws. In the operable configuration, or as the rolling operation progresses, the gaps 126, 167 between adjacent jaws in each set of jaws begin to decrease, after which the jaws can abut adjacent jaws in the same set of jaws.

[0040] The number of jaws in each of the first set of split jaws 125 and the second set of split jaws 165 can vary according to the application requirements and the size and shape of the container. In one embodiment, the first set of split jaws 125 and the second set of split jaws 165 each include an equal number of circumferentially arranged jaws. In one embodiment, the first set of split jaws 125 and the second set of split jaws 165 each include eight jaws.

[0041] The fixture 100 includes an actuator configured to displace either the container fixture 110 or the rolling die 150 toward the other, while the other remains fixed. In one embodiment, the actuator is coupled to the container fixture 110 and displaces the container fixture 110 toward the rolling die 150. In another embodiment, the actuator is coupled to the rolling die 150 and displaces the rolling die 150 toward the container fixture 110.

[0042] It should be noted that although the container fixture 110 is shown as the top in the accompanying drawings, the overall structure of the jig 100 can be inverted with the container fixture 110 on the bottom and the rolling die 150 on the top.

[0043] The jig 100 further includes a channel 190 configured within the die body 160 of the rolling die 150. The channel 190 is configured to promote the flow of lubricant, typically silicone, dripping onto the rounded grooves 155. The lubricant passes through the channel 190. The silicone slowly drips from the end of the channel 190 and falls into the rounded grooves 155. The lubricant reduces friction between the container and the jig 100 during the rolling operation. Because the lubricant is applied by a slow drip process, a cloud of lubricant does not form around the periphery of the jig 100 (as occurs in prior art types of lubrication systems). Instead, the lubricant concentrates only around the rounded grooves 155 and not elsewhere. This prevents waste of lubricant. The above disclosure of a lubricating apparatus may be the subject of a divisional application that may be filed in the future. For example, the jig includes a rolling die and a container fixture, the rolling die having a rounded groove suitable for rolling the free edge of a container placed in the container fixture into a roll, the rolling die being positioned below the container fixture, and the jig including a lubricating device whereby a lubricant outlet is provided above the rounded groove, so that the lubricant extruded from the lubricant outlet drips and enters the rounded groove.

[0044] To perform the rolling operation, the container is placed in the open recess 115 with the free edge of the container facing the rolling die 150. Furthermore, one of the container fixture 110 and the rolling die 150 is displaced toward the other to establish contact therebetween. Upon contact, the first set of split jaws 125 is moved along the first sliding mechanism toward the base of the container and away from the free edge of the container due to pressure from the second set of split jaws 165. Furthermore, the first set of split jaws 125 begins to move inward due to the angular arrangement of the pins 130. The inward movement of the first set of split jaws 125 allows the first set of split jaws 125 to slide along the tapered outer surface of the container, thereby supporting the outer surface during the rolling operation.

[0045] Upon contacting the free edge of the container, the second set of split jaws 165 begin to roll the free edge of the container due to the rounded grooves 155 .

[0046] Due to the contact surfaces 135, 170, inward movement of the first set of split jaws 125 also causes inward movement of the second set of split jaws 165. Thus, the movement of the fixture 100 can be controlled using a single actuator.

[0047] Additionally, the container fixture 110 or rolling die 150 may be heated in the form of a heating element such that the fixture 100 is warmed, thereby helping to prepare the material for the rolling operation.

[0048] It should be noted that the drawings and the above description illustrate exemplary embodiments in a simplified and schematic manner. Many of the specific mechanical details have not been shown, as those skilled in the art would be familiar with these details and would only unnecessarily complicate this description. For example, the specific materials used and the specific manufacturing procedures have not been described in detail, with the understanding that those skilled in the art would be able to find suitable materials and suitable processes for manufacturing containers and fixtures according to the present invention.

[0049] It is also noted that the present independent claim 1 focuses on a tool in which a first set of dividing jaws is arranged to slide along the outer surface of the container during the rolling operation. In a possible divisional application, independent claim 1 may be drafted to focus on a second set of dividing jaws that contract during the rolling operation to reduce the circumference of the rounded groove. An independent claim may be drafted as "A tool for producing containers having a rolled free edge", said tool comprising: a container fixture including an open recess configured to receive a container; a rolling die having a rounded groove facing the container fixture, the rounded groove being positioned to correspond to a free edge of a container inserted into the container fixture to curl the free edge of the container, the rolling die being displaceable relative to the container fixture; Equipped with The rolling die comprises one set of split jaws with rounded grooves, and a second set of split jaws arranged to contract during rolling, such that the circumference of the rounded grooves is reduced during rolling. [Explanation of symbols]

[0050] 100 Jig 110 Container fixture 115 recess 120 Fixture body 125 First set of split jaws 127 Inner surface of first set of split jaws 130 pins 135 Contact surface of container fixture 150 Roll Dice 155 Groove 160 Dice body 165 Second set of split jaws 170 Roll die contact surface 190 channels 195 Spring 200 horizontal pins

Claims

1. 1. A tool for manufacturing tapered containers having a rolled free edge, comprising: a container fixture comprising an open recess configured to receive a container; a rolling die having a rounded groove facing the container fixture, the rounded groove being positioned to correspond to a free edge of the container inserted into the container fixture to curl the free edge of the container, the rolling die being displaceable relative to the container fixture; In a jig comprising: a first set of split jaws that abut an outer surface of a container when the container is placed in the container fixture, the jaws of the first set of split jaws being arranged to slide along a first sliding mechanism so as to slide along the outer surface of the container during the rolling operation, the first sliding mechanism being arranged so that the jaws of the first set of split jaws are displaced along a path having an angle relative to the longitudinal central axis of the open recess of the container fixture corresponding to the angle of the outer surface of the container relative to the longitudinal central axis of the open recess of the container fixture.

2. 2. The jig of claim 1, wherein the first sliding mechanism includes a plurality of pins spaced apart from the outer surface of the container, arranged around the longitudinal central axis of the open recess of the container fixture, and arranged at an angle relative to the longitudinal central axis of the open recess of the container fixture.

3. 3. The jig of claim 1, wherein the rolling die comprises a second set of split jaws having the rounded grooves, the second set of split jaws being arranged to contract during the rolling operation, so that the circumference of the rounded grooves is reduced during the rolling operation.

4. 4. The jig of claim 3, wherein the rolling die includes a second sliding mechanism configured to horizontally displace / retract the second set of split jaws.

5. 5. The jig of claim 4, wherein the first set of split jaws and the second set of split jaws have contact surfaces, and when either the rolling die or the container fixture is moved toward the other, the first set of split jaws and the second set of split jaws contact each other, and relative movement between the rolling die and the container fixture displaces the first set of split jaws longitudinally and inwardly according to the angle of the first sliding mechanism, thereby displacing the second set of split jaws inwardly as well.

6. 6. The jig of claim 5, wherein the contact surfaces of the first and second sets of split jaws are tapered surfaces having complementary taper angles.

7. 4. The jig of claim 3, wherein each of said first and second sets of split jaws includes an equal number of circumferentially arranged jaws.

8. 10. The fixture of claim 1, wherein the fixture comprises an actuator configured to displace either the roll die or the container fixture toward the other.

9. 2. The jig of claim 1, wherein each of the first set of split jaws has an internal tapered surface having a taper angle corresponding to the angle of the outer surface of the container relative to the central longitudinal axis of the open recess of the container fixture.

Citation Information

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