Die for flanging cup opening of titanium vacuum cup

By designing a mold for titanium thermos cups and utilizing the combination of upper and lower modules and elastic components, the problem of complex flanging and low yield of titanium thermos cup rims was solved, achieving a flanging effect that is convenient to process and has a high yield.

CN224114942UActive Publication Date: 2026-04-14ZHEJIANG FEIJIAN IND & TRADE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG FEIJIAN IND & TRADE CO LTD
Filing Date
2025-06-24
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The existing titanium thermos cup rim flanging process is complex and has a low yield, making it difficult to effectively utilize the high strength and hardness of titanium for efficient processing.

Method used

A mold comprising an upper module and a lower module was designed. The upper module is pressed down to achieve the cup rim flanging, and multiple elastic components and Haval fixing components are used in conjunction to achieve convenient installation and removal of the cup body.

Benefits of technology

The process of flanging the rim of titanium insulated cups has been simplified, improving the yield rate, processing efficiency, and product quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224114942U_ABST
    Figure CN224114942U_ABST
Patent Text Reader

Abstract

The utility model discloses a mould for flanging a cup mouth of a titanium vacuum cup, which comprises a mould main body and a cup body, the mould main body comprises an upper module and a lower module, the cup body is detachably placed on the lower module, and the upper module is pressed downwards to finish flanging at the cup mouth of the cup body. By means of the die, machining during flanging of the cup opening of the cup body can be facilitated, and the yield during flanging of the cup opening of the cup body can be effectively increased.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to tooling molds, and more particularly to a mold for flanging the mouth of a titanium thermos cup. Background Technology

[0002] With the continuous development of technology, thermos cups, as common daily necessities, can keep water or other liquids warm. Most existing thermos cups are made of stainless steel, which can cause heavy metal leaching. Over time, this can affect the taste of the beverage, and the beverage can also gradually corrode the stainless steel, causing damage to the inner liner and affecting the lifespan of the thermos cup.

[0003] Then, insulated cups made of titanium appeared. However, due to the high strength and hardness of titanium, there was no good mold for processing the rim of the insulated cup, which made the processing more complicated and the yield rate lower. Therefore, improvements were needed. Summary of the Invention

[0004] This invention addresses the shortcomings of existing technologies, such as the complexity of flanging the rim of titanium insulated cups and the low yield rate, by providing a new mold for flanging the rim of titanium insulated cups.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] A mold for flanging the rim of a titanium thermos cup includes a mold body and a cup body. The mold body includes an upper mold assembly and a lower mold assembly. The cup body is detachably placed on the lower mold assembly, and the upper mold assembly presses down to complete the flanging of the rim of the cup body.

[0007] This application utilizes a mold that facilitates the processing of the cup body and rim during the flanging process, and can effectively improve the yield rate of the cup body and rim during the flanging process.

[0008] Preferably, in the above-described mold for flanging the mouth of a titanium thermos cup, the lower mold assembly includes a lower flange, a lower mold cavity, a lower mold rod, and a lower mold core. The lower end of the lower mold cavity is connected to the lower flange, a first movable space is provided on the lower mold cavity, the lower mold rod is disposed in the first movable space, and the lower end of the lower mold rod is connected to the lower flange. The lower mold core is connected to the upper end of the lower mold rod.

[0009] Preferably, in the above-described mold for flanged rims of titanium thermos cups, the lower mold assembly further includes a first elastic component and a mold core pusher block. The mold core pusher block is disposed at the lower end of the lower mold core. The first elastic component is sleeved on the lower mold rod, and the upper end of the first elastic component cooperates with the mold core pusher block, while the lower end of the first elastic component cooperates with the lower flange. The mold core pusher block can move up and down within the first movable space through the cooperation of the first elastic component.

[0010] Preferably, the mold for flanging the mouth of a titanium thermos cup described above further includes a Haver fixing component, which includes a Haver fixing ring and a Haver block. The Haver block is disposed at the upper end of the lower mold cavity and cooperates with the lower mold core. The Haver fixing ring cooperates with the Haver block.

[0011] Preferably, in the mold for flanging the mouth of a titanium thermos cup described above, the Haval fixing component further includes a mating component, which includes a bolt and a second elastic component. The Haval fixing ring has a through hole, and the bolt passes through the through hole and engages with the Haval block. The second elastic component is disposed between the bolt and the Haval fixing ring.

[0012] Preferably, in the above-described mold for flanged rims of titanium thermos cups, the upper mold assembly includes an upper flange, an upper mold cylinder, an upper mold cavity, and an upper mold core. The upper mold cylinder is connected to the upper flange, and a second movable space is provided on the upper mold cylinder. The upper mold core is located within the second movable space and is connected to the upper flange. The upper mold cavity is fitted onto the upper mold core and can move up and down within the second movable space. Both the upper mold cavity and the upper mold core mate with the Haver block.

[0013] Preferably, in the above-described mold for flanging the mouth of a titanium thermos cup, the upper mold assembly further includes a third elastic component, and the upper mold cavity has an installation space, with the third elastic component disposed within the installation space.

[0014] The present invention has the following advantages through the above structural improvements:

[0015] This application has the advantages of facilitating the processing of the mouth of titanium insulated cups and achieving a high yield rate. First, the cup body to be processed is placed on the lower module. Then, the mouth of the cup body can be processed by pressing down on the upper module. After processing, the processed cup body can be quickly removed by the cooperation of the first elastic component, the second elastic component and the third elastic component. Attached Figure Description

[0016] Figure 1This is a schematic diagram of the main body of the mold of this utility model;

[0017] Figure 2 This is an exploded structural diagram of the main body of the mold of this utility model;

[0018] Figure 3 This utility model Figure 1 A magnified view of part A in the middle.

[0019] Reference numerals: 1. Mold body; 2. Cup body; 11. Upper mold assembly; 12. Lower mold assembly; 121. Lower flange; 122. Lower mold cavity; 123. Lower mold rod; 124. Lower mold core; 1221. First movable space; 125. First elastic component; 126. Mold core pusher block; 13. Haval fixing component; 131. Haval fixing ring; 132. Haval block; 133. Mating component; 1331. Bolt; 1332. Second elastic component; 1311. Through hole; 111. Upper flange; 112. Upper mold cylinder; 113. Upper mold cavity; 114. Upper mold core; 1121. Second movable space; 115. Third elastic component; 1131. Installation space. Detailed Implementation

[0020] The following is in conjunction with the appendix Figure 1-3 The present invention will be further described in detail with reference to specific embodiments, but these are not intended to limit the present invention: Example

[0021] like Figure 1 , Figure 2 , Figure 3 As shown, a mold for flanging the mouth of a titanium thermos cup includes a mold body 1 and a cup body 2. The mold body 1 includes an upper module 11 and a lower module 12. The cup body 2 is detachably placed on the lower module 12. The upper module 11 presses down to complete the flanging of the mouth of the cup body 2.

[0022] Preferably, the lower mold assembly 12 includes a lower flange 121, a lower mold cavity 122, a lower mold rod 123, and a lower mold core 124. The lower end of the lower mold cavity 122 is connected to the lower flange 121. A first movable space 1221 is provided on the lower mold cavity 122. The lower mold rod 123 is disposed in the first movable space 1221, and the lower end of the lower mold rod 123 is connected to the lower flange 121. The lower mold core 124 is connected to the upper end of the lower mold rod 123.

[0023] Preferably, the lower module 12 further includes a first elastic component 125 and a mold core pusher block 126. The mold core pusher block 126 is disposed at the lower end of the lower mold core 124. The first elastic component 125 is sleeved on the lower mold rod 123, and the upper end of the first elastic component 125 cooperates with the mold core pusher block 126. The lower end of the first elastic component 125 cooperates with the lower flange 121. The mold core pusher block 126 can move up and down within the first movable space 1221 through the cooperation of the first elastic component 125.

[0024] More specifically, during the implementation process, there will be a gap between the outer wall of the mold core pusher block 126 and the inner wall of the first active space 1221, so that the cup body 2 can be fitted onto the mold core pusher block 126;

[0025] After the cup body 2 is processed, the mold core pusher block 126 can lift the processed cup body 2 upward under the elastic action of the first elastic component 125, so that the worker can take out the processed cup body 2.

[0026] Preferably, the mold body 1 further includes a Haval fixing component 13, which includes a Haval fixing ring 131 and a Haval block 132. The Haval block 132 is disposed at the upper end of the lower mold cavity 122 and cooperates with the lower mold core 124. The Haval fixing ring 131 cooperates with the Haval block 132.

[0027] Specifically, during implementation, the main body of the mold 1 is circular, while the Haval blocks 132 consist of at least three blocks arranged in a circumferential direction on the lower mold cavity 122.

[0028] Preferably, the Haval fixing component 13 further includes a mating component 133, which includes a bolt 1331 and a second elastic component 1332. The Haval fixing ring 131 has a through hole 1311. The bolt 1331 passes through the through hole 1311 and is mated with the Haval block 132. The second elastic component 1332 is disposed between the bolt 1331 and the Haval fixing ring 131.

[0029] Specifically, the second elastic component 1332 in this application can be a spring or other elastic product.

[0030] Preferably, the upper module 11 includes an upper flange 111, an upper mold cylinder 112, an upper mold cavity 113, and an upper mold core 114. The upper mold cylinder 112 is connected to the upper flange 111. A second movable space 1121 is provided on the upper mold cylinder 112. The upper mold core 114 is located in the second movable space 1121 and is connected to the upper flange 111. The upper mold cavity 113 is fitted onto the upper mold core 114 and can move up and down within the second movable space 1121. Both the upper mold cavity 113 and the upper mold core 114 cooperate with the Haver block 132.

[0031] Preferably, the upper module 11 further includes a third elastic component 115, and the upper mold cavity 113 has an installation space 1131, and the third elastic component 115 is disposed in the installation space 1131.

[0032] More specifically, after the upper mold cavity 113 is processed, the third elastic component 115 can reset the upper mold cavity 113. The third elastic component 115 can be used to make elastic products such as beef tendon.

[0033] In actual use, the upper module 11 is in the default position and the Haver block 132 is in the outward expansion state. Then, the cup body 2 to be processed is installed on the mold core pusher block 126, and the cup mouth of the cup body 2 matches the shape of the Haver block 132. Then, the upper module 11 moves downward, and the upper mold core 114 of the upper module 11 will drive the Haver block 132 to move inward, so that the third elastic component 115 is in the tightened state. At this time, the cup mouth of the cup body 2 will be flanged through the upper mold core 114.

[0034] After processing is completed, the upper module 11 moves upward, and the third elastic component 115 drives the upper mold cavity 113 to reset. At this time, the Haver block 132 will automatically open under the action of the second elastic component 1332, and the processed cup body 2 will automatically pop up under the action of the first elastic component 125. Finally, the worker can take out the cup body 2.

[0035] In summary, the above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall be covered by the present utility model.

Claims

1. A mold for flanging the rim of a titanium thermos cup, comprising a mold body (1) and a cup body (2), characterized in that: The mold body (1) includes an upper mold (11) and a lower mold (12). The cup body (2) is detachably placed on the lower mold (12). The upper mold (11) presses down to complete the folding of the cup mouth of the cup body (2).

2. The mold for flanging the rim of a titanium thermos cup according to claim 1, characterized in that: The lower module (12) includes a lower flange (121), a lower mold cavity (122), a lower mold rod (123), and a lower mold core (124). The lower end of the lower mold cavity (122) is connected to the lower flange (121). A first movable space (1221) is provided on the lower mold cavity (122). The lower mold rod (123) is disposed in the first movable space (1221), and the lower end of the lower mold rod (123) is connected to the lower flange (121). The lower mold core (124) is connected to the upper end of the lower mold rod (123).

3. A mold for flanged rims of titanium thermos cups according to claim 2, characterized in that: The lower module (12) further includes a first elastic component (125) and a mold core pusher block (126). The mold core pusher block (126) is disposed at the lower end of the lower mold core (124). The first elastic component (125) is sleeved on the lower mold rod (123), and the upper end of the first elastic component (125) cooperates with the mold core pusher block (126). The lower end of the first elastic component (125) cooperates with the lower flange (121). The mold core pusher block (126) can move up and down in the first active space (1221) through the cooperation of the first elastic component (125).

4. A mold for flanged rims of titanium thermos cups according to claim 3, characterized in that: The mold body (1) also includes a Haval fixing component (13), which includes a Haval fixing ring (131) and a Haval block (132). The Haval block (132) is disposed at the upper end of the lower mold cavity (122), and the Haval block (132) cooperates with the lower mold core (124). The Haval fixing ring (131) cooperates with the Haval block (132).

5. A mold for flanged rims of titanium thermos cups according to claim 4, characterized in that: The Haval fixing component (13) also includes a mating component (133), which includes a bolt (1331) and a second elastic component (1332). The Haval fixing ring (131) has a through hole (1311). The bolt (1331) passes through the through hole (1311) and then engages with the Haval block (132). The second elastic component (1332) is disposed between the bolt (1331) and the Haval fixing ring (131).

6. A mold for flanged rims of titanium thermos cups according to claim 5, characterized in that: The upper module (11) includes an upper flange (111), an upper mold cylinder (112), an upper mold cavity (113), and an upper mold core (114). The upper mold cylinder (112) is connected to the upper flange (111). A second movable space (1121) is provided on the upper mold cylinder (112). The upper mold core (114) is located in the second movable space (1121) and is connected to the upper flange (111). The upper mold cavity (113) is fitted onto the upper mold core (114) and can move up and down in the second movable space (1121). Both the upper mold cavity (113) and the upper mold core (114) are engaged with the Haver block (132).

7. A mold for flanged rims of titanium thermos cups according to claim 6, characterized in that: The upper module (11) also includes a third elastic component (115), and an installation space (1131) is provided on the upper mold cavity (113), and the third elastic component (115) is disposed in the installation space (1131).