Insulation pad stamping device

By designing an insulating pad stamping device, the combination of jack, limit rod, stamping block and mold is used to solve the problem of manpower and low precision in cutting in insulating pad installation, and efficient and accurate insulating pad installation is achieved.

CN223029881UActive Publication Date: 2025-06-27JIANGSU HUANENG ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202422062312.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-24
Publication Date
2025-06-27
Estimated Expiration
2034-08-24

AI Technical Summary

Technical Problem

The existing insulating pads need to be cut during installation, which leads to labor consumption and low cutting accuracy, which affects the installation effect of the insulating pads.

Method used

An insulating pad stamping device is designed, including a base, a jack, a limit rod, a stamping block and a mold. By applying force through the jack, the stamping block applies force to the insulating pad and the mold, and the limit rod limits the mold to realize stamping and forming the insulating pad.

Benefits of technology

There is no need for an operator to cut the insulating pad. The stamped insulating pad has high accuracy, which is easy to install and improves installation efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an insulation pad stamping device, which belongs to the field of insulation pad processing and comprises a base, a jack and a limiting rod are fixedly connected onto the base, a stamping block and a die are arranged on the base, the stamping block is positioned between the output end of the jack and the limiting rod, and the die is positioned between the stamping block and the limiting rod. An insulation pad is placed between the stamping block and the die. The insulation pad is located between the stamping block and the die, then the jack is used, the output end of the jack applies acting force to the stamping block, the stamping block can apply acting force to the insulation pad and the die, the limiting rod can limit the die, and therefore stamping forming of the insulation pad can be achieved, cutting by operators is not needed, and the production efficiency is improved. And the punched insulation pad is high in precision, and the insulation pad is convenient to install.
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Description

Technical Field

[0001] This application relates to the field of insulating pad processing, and in particular to a stamping device for insulating pads. Background Art

[0002] Silicon aluminum alloy is a binary alloy composed of silicon and aluminum, and is an alloy material mainly used in aerospace, space technology and portable electronic devices. Due to its excellent properties such as controllable thermal expansion coefficient, good thermal conductivity, relatively high specific strength and stiffness, good plating performance with gold, silver, copper and nickel, weldability with substrates, and easy precision machining, it is an electronic packaging material with broad application prospects.

[0003] When installing components after die-casting of silicon aluminum alloy, an insulating pad needs to be installed below the silicon aluminum alloy. When installing the existing insulating pad, in order to match the structure of the component, the operator needs to cut the insulating pad to adapt to the structure of the component. However, the cutting by the operator is labor-consuming, and the cutting accuracy is relatively low, prone to errors, which affects the installation of the insulating pad. Utility Model Content

[0004] In order to improve the above problems, this application provides a stamping device for insulating pads.

[0005] The stamping device for insulating pads provided by this application adopts the following technical solutions:

[0006] A stamping device for insulating pads includes a base, on which a jack and a limiting rod are fixedly connected. A stamping block and a mold are arranged on the base. The stamping block is located between the output end of the jack and the limiting rod, and the mold is located between the stamping block and the limiting rod. An insulating pad is placed between the stamping block and the mold.

[0007] By adopting the above technical solutions, when the installation of the insulating pad is required, the operator moves the insulating pad to make it located between the stamping block and the mold, and then uses the jack to apply a force to the stamping block at the output end of the jack. The stamping block can apply forces to the insulating pad and the mold, and the limiting rod can limit the mold. Therefore, the insulating pad can be stamped into shape without the need for the operator to cut it. The precision of the stamped insulating pad is relatively high, which is convenient for the installation of the insulating pad.

[0008] Preferably, a limiting hole is opened at one end of the outer shell of the jack, and the limiting rod passes through the limiting hole.

[0009] By adopting the above technical solutions, when installing the limiting rod, move the limiting rod to make it pass through the limiting hole. The limiting hole can limit the limiting rod to make it installed at a specified position, which is convenient for the limiting rod to limit the mold.

[0010] Preferably, a positioning block is fixedly connected to the base, and a positioning groove is formed in the positioning block for placing the insulating pad.

[0011] By adopting the above technical solution, when it is necessary to place the insulating pad between the stamping block and the mold, the operator moves the insulating pad so that the insulating pad moves into the positioning groove. The positioning groove can limit the insulating pad, facilitating the stamping work of the insulating pad.

[0012] Preferably, a first limiting block is fixedly connected to the base. The stamping block can move to fit with the first limiting block. A first auxiliary component is provided on the base, and the first auxiliary component is used for anti-retreat limiting of the stamping block.

[0013] By adopting the above technical solution, the operator can move the stamping block to make it fit with the first limiting block, and the first auxiliary component is used for anti-retreat limiting of the stamping block, improving the position accuracy of the stamping block and reducing the possibility of deviation when the stamping block moves.

[0014] Preferably, a guiding strip is fixedly connected to the first limiting block, and a guiding groove is formed in the stamping block. The guiding strip slides in the guiding groove.

[0015] By adopting the above technical solution, when the stamping block fits with the first limiting block, the guiding strip is embedded in the guiding groove, and the guiding strip can guide the movement of the stamping block, further reducing the possibility of deviation when the stamping block moves.

[0016] Preferably, the first auxiliary component includes a first auxiliary rod, a first sliding rod and a first spring. The first auxiliary rod is fixedly connected to the base. The first sliding rod is slidably connected to the first auxiliary rod. A first sliding groove for the first sliding rod to slide is formed in the first auxiliary rod. The first sliding rod fits with the end of the stamping block away from the first limiting block. One end of the first spring is fixedly connected to the bottom of the first sliding groove, and the other end is fixedly connected to the first sliding rod.

[0017] By adopting the above technical solution, after the stamping block fits with the first limiting block, the first sliding rod slides away from the first auxiliary rod under the action of the first spring, and the first sliding rod moves to fit with the stamping block. The first sliding rod can limit the stamping block, making the stamping block and the first limiting block in a fitting state, improving the stability of the stamping block.

[0018] Preferably, a second limiting block is fixedly connected to the base. The mold can move to fit with the second limiting block. A second auxiliary component is provided on the base, and the second auxiliary component is used for anti-retreat limiting of the mold.

[0019] By adopting the above technical solution, the operator can move the mold to make the mold fit with the second limit block, and the second auxiliary component is used to limit the backward movement of the mold, improving the position accuracy of the mold and the stability of the mold.

[0020] Preferably, the second auxiliary component includes a second auxiliary rod, a second sliding rod and a second spring. The second auxiliary rod is fixedly connected to the base. The second sliding rod is slidably connected to the second auxiliary rod. A second sliding groove for the second sliding rod to slide is formed on the second auxiliary rod. The second sliding rod is in contact with one end of the mold away from the second limit block. One end of the second spring is fixedly connected to the bottom of the second sliding groove, and the other end is fixedly connected to the second sliding rod.

[0021] By adopting the above technical solution, after the mold fits with the second limit block, the second sliding rod slides away from the second auxiliary rod under the action of the second spring, and the second sliding rod moves to be in contact with the mold. The second sliding rod can limit the mold, reducing the possibility of the mold moving away from the second limit block and improving the stability of the mold.

[0022] In summary, the present application includes at least one of the following beneficial technical effects:

[0023] 1. Through the settings of the jack, the limit rod, the stamping block and the mold, when the installation of the insulating pad is required, the operator moves the insulating pad so that the insulating pad is located between the stamping block and the mold. Then the jack is used, and the output end of the jack applies a force to the stamping block. The stamping block can apply a force to the insulating pad and the mold, and the limit rod can limit the mold. Therefore, the insulating pad can be formed by stamping, which is convenient for the installation of the insulating pad.

[0024] 2. Through the settings of the positioning block and the positioning groove, when the insulating pad needs to be placed between the stamping block and the mold, the operator moves the insulating pad so that the insulating pad moves into the positioning groove. The positioning groove can limit the insulating pad, facilitating the stamping work of the insulating pad. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is a schematic diagram of the overall structure of the stamping device in the first embodiment of the present application for showing.

[0026] Figure 2 is a schematic diagram of the overall structure of the stamping device in the first embodiment of the present application for showing.

[0027] Figure 3 is a schematic diagram of the overall structure of the mold in the first embodiment of the present application for showing.

[0028] Figure 4 is a schematic diagram of the overall structure of the stamping device in the second embodiment of the present application for showing.

[0029] Figure 5 It is a schematic diagram showing the overall structure of the base in the second embodiment of the present application.

[0030] Explanation of reference numerals: 1. Base; 11. Positioning block; 111. Positioning groove; 12. First limiting block; 121. Guide bar; 13. Second limiting block; 2. Jack; 21. Limiting hole; 3. Limiting rod; 4. Stamping block; 41. Guide groove; 5. Mold; 6. First auxiliary component; 61. First auxiliary rod; 611. First sliding groove; 62. First sliding rod; 63. First spring; 7. Second auxiliary component; 71. Second auxiliary rod; 711. Second sliding groove; 72. Second sliding rod; 73. Second spring. Detailed implementation manners

[0031] The following will further elaborate on the present application in conjunction with the attached Figures 1-5 drawings.

[0032] Embodiment 1:

[0033] The embodiment of the present application discloses an insulating pad stamping device. As Figure 1 shown, it includes a base 1, on which a jack 2 and a limiting rod 3 are fixedly connected. In the embodiment of the present application, the jack 2 adopts a Vetter ultra-thin jack 2, with the model number RSM-50. The length direction of the limiting rod 3 is vertical, and a limiting hole 21 is opened at one end of the outer shell of the jack 2, through which the limiting rod 3 passes.

[0034] As Figure 1 , 2 and 3 show, a stamping block 4 and a mold 5 are provided on the base 1. The stamping block 4 is located between the output end of the jack 2 and the limiting rod 3, and the mold 5 is located between the stamping block 4 and the limiting rod 3. The side of the mold 5 away from the stamping block 4 abuts against the limiting rod 3. An insulating pad can be placed between the stamping block 4 and the mold 5. An operator can place the insulating pad between the stamping block 4 and the mold 5, and then use the jack 2 to apply a force to the stamping block 4 at the output end of the jack 2. The stamping block 4 can press the insulating pad tightly and perform stamping, so that the insulating pad is stamped into shape, facilitating the subsequent use of the insulating pad.

[0035] The implementation principle of the insulating pad stamping device in the embodiment of the present application is as follows:

[0036] When the insulating pad needs to be stamped, the operator places the insulating pad between the stamping block 4 and the mold 5, and then uses the jack 2 to apply a force to the stamping block 4 at the output end of the jack 2. The stamping block 4 can apply a force to the insulating pad, and since the limiting rod 3 limits the mold 5, when the stamping block 4 applies a force to the insulating pad, the insulating pad can be stamped into shape, facilitating the subsequent use of the insulating pad.

[0037] Embodiment 2:

[0038] As Figure 4 and 5 shown, on the basis of Embodiment 1 of this application, a positioning block 11 is fixedly connected to the base 1, and a positioning groove 111 is provided in the positioning block 11 for placing the insulating pad. When the insulating pad needs to be stamped, the operator can place the insulating pad into the positioning groove 111. The positioning groove 111 can limit the position of the insulating pad and provide a moving guide for the insulating pad. Then, the insulating pad is continuously moved between the stamping block 4 and the mold 5, reducing the possibility of the insulating pad being displaced, and improving the stamping forming accuracy of the insulating pad.

[0039] As Figure 4 and 5 shown, a first limiting block 12 is fixedly connected to the base 1. One end of the stamping block 4 can move to fit with the first limiting block 12, and the first limiting block 12 can limit the stamping block 4. A guiding strip 121 is fixedly connected to the first limiting block 12, and a guiding groove 41 is provided in the stamping block 4, and the guiding strip 121 slides in the guiding groove 41. When one end of the stamping block 4 fits with the first limiting block 12, at this time, the guiding strip 121 is located in the guiding groove 41. When the output end of the jack 2 drives the stamping block 4 to move, the guiding strip 121 slides in the guiding groove 41. The guiding strip 121 can guide and limit the movement of the stamping block 4, reducing the possibility of the stamping block 4 being displaced during movement, and facilitating the stamping block 4 to apply a force to the insulating pad.

[0040] As Figure 4 and 5As shown, a first auxiliary assembly 6 for preventing the stamping block 4 from moving backward and limiting its position is provided on the base 1. The first auxiliary assembly 6 includes a first auxiliary rod 61, a first sliding rod 62, and a first spring 63. The first auxiliary rod 61 is fixedly connected to the base 1. The first sliding rod 62 is slidably connected to the first auxiliary rod 61. The sliding direction of the first sliding rod 62 is the same as the length direction of the first auxiliary rod 61. A first sliding groove 611 for the first sliding rod 62 to slide is formed on the first auxiliary rod 61. One end of the first spring 63 is fixedly connected to the bottom of the first sliding groove 611, and the other end is fixedly connected to the first sliding rod 62. In the natural state, the first spring 63 applies a force to the first sliding rod 62, causing the first sliding rod 62 to move away from the first auxiliary rod 61. When installing the stamping block 4, the operator presses the first sliding rod 62 to make the first sliding rod 62 slide into the first sliding groove 611. Then, the stamping block 4 is moved to the output end of the jack 2. The first sliding rod 62 can move away from the first auxiliary rod 61 under the action of the first spring 63, and the first sliding rod 62 can move to fit with the end of the stamping block 4 away from the first limiting block 12. The first sliding rod 62 can prevent the stamping block 4 from moving backward and limiting its position, further reducing the possibility of the stamping block 4 shifting during movement and facilitating the stamping work of the stamping block 4.

[0041] As Figure 4 and 5 shown, a second limiting block 13 is fixedly connected to the base 1. One end of the mold 5 can be moved to fit with the second limiting block 13. A second auxiliary assembly 7 for preventing the mold 5 from moving backward and limiting its position is provided on the base 1. The second auxiliary assembly 7 includes a second auxiliary rod 71, a second sliding rod 72, and a second spring 73. The second auxiliary rod 71 is fixedly connected to the base 1. The second sliding rod 72 is slidably connected to the second auxiliary rod 71. The sliding direction of the second sliding rod 72 is the same as the length direction of the second auxiliary rod 71. A second sliding groove 711 for the second sliding rod 72 to slide is formed on the second auxiliary rod 71. One end of the second spring 73 is fixedly connected to the bottom of the second sliding groove 711, and the other end is fixedly connected to the second sliding rod 72. In the natural state, the second spring 73 applies a force to the second sliding rod 72, causing the second sliding rod 72 to move away from the second auxiliary rod 71. When installing the mold 5, the operator presses the second sliding rod 72 to make the second sliding rod 72 slide into the second sliding groove 711. Then, the mold 5 is moved to fit with the second limiting block 13. The second limiting block 13 can limit the position of the mold 5. The second sliding rod 72 can move away from the second auxiliary rod 71 under the action of the second spring 73, and the second sliding rod 72 can move to fit with the end of the mold 5 away from the second limiting block 13. The second sliding rod 72 can prevent the mold 5 from moving backward and limiting its position, reducing the possibility of the mold 5 shifting and facilitating the stamping work of the insulating pad.

[0042] The implementation principle of an insulating pad stamping device according to an embodiment of the present application is as follows:

[0043] The operator presses the first sliding rod 62, then moves the stamping block 4 so that one end of the stamping block 4 abuts against the first limiting block 12, and the guiding strip 121 is inserted into the guiding groove 41. After that, the first sliding rod 62 is released. The first sliding rod 62 moves away from the first auxiliary rod 61 under the action of the first spring 63 and moves to abut against the end of the stamping block 4 away from the first limiting block 12, thereby limiting the stamping block 4 and reducing the possibility of deviation when the stamping block 4 moves; the operator presses the second sliding rod 72, then moves the mold 5 so that one end of the mold 5 abuts against the second limiting block 13. After that, the second sliding rod 72 is released. The second sliding rod 72 moves away from the second auxiliary rod 71 under the action of the second spring 73 and moves to abut against the end of the mold 5 away from the second limiting block 13, thereby limiting the mold 5 and reducing the possibility of deviation of the mold 5, facilitating the stamping work of the insulating pad.

[0044] The above are all the preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An insulating pad punching device, characterized in that: The invention comprises a base (1), to which a jack (2) and a limiting rod (3) are fixedly connected, and a punching block (4) and a die (5) are provided on the base (1), wherein the punching block (4) is located between the output end of the jack (2) and the limiting rod (3), and the die (5) is located between the punching block (4) and the limiting rod (3), and an insulating pad is placed between the punching block (4) and the die (5).

2. The insulating pad punching device according to claim 1, characterized in that: A limiting hole (21) is provided at one end of the outer shell of the jack (2), and the limiting hole (21) is used for the limiting rod (3) to pass through.

3. The insulating pad punching device according to claim 1, characterized in that: A positioning block (11) is fixedly connected to the base (1), and a positioning groove (111) is provided on the positioning block (11), wherein the positioning groove (111) is for an insulating pad to be placed.

4. The insulating pad punching device according to claim 1, characterized in that: A first limit block (12) is fixedly connected to the base (1), and the punching block (4) can be moved to fit with the first limit block (12). A first auxiliary component (6) is provided on the base (1), and the first auxiliary component (6) is used to stop and limit the punching block (4).

5. The insulating pad punching device according to claim 4, characterized in that: A guide bar (121) is fixedly connected to the first limiting block (12), a guide groove (41) is provided on the punching block (4), and the guide bar (121) is located in the guide groove (41) and slides.

6. The insulating pad punching device according to claim 4, characterized in that: The first auxiliary component (6) comprises a first auxiliary rod (61), a first sliding rod (62) and a first spring (63); the first auxiliary rod (61) is fixedly connected to the base (1); the first sliding rod (62) and the first auxiliary rod (61) are slidably connected; the first auxiliary rod (61) is provided with a first sliding groove (611) for the first sliding rod (62) to slide; the first sliding rod (62) is in contact with one end of the stamping block (4) away from the first limiting block (12); one end of the first spring (63) is fixedly connected to the bottom of the first sliding groove (611), and the other end is fixedly connected to the first sliding rod (62).

7. The insulating pad punching device according to claim 1, characterized in that: A second limit block (13) is fixedly connected to the base (1), and the mold (5) can be moved to fit with the second limit block (13). A second auxiliary component (7) is provided on the base (1), and the second auxiliary component (7) is used to stop and limit the mold (5).

8. The insulating pad punching device according to claim 7, characterized in that: The second auxiliary component (7) comprises a second auxiliary rod (71), a second sliding rod (72) and a second spring (73); the second auxiliary rod (71) is fixedly connected to the base (1); the second sliding rod (72) and the second auxiliary rod (71) are slidably connected; the second auxiliary rod (71) is provided with a second sliding groove (711) for the second sliding rod (72) to slide; the second sliding rod (72) is in contact with one end of the mold (5) away from the second limit block (13); one end of the second spring (73) is fixedly connected to the bottom of the second sliding groove (711), and the other end is fixedly connected to the second sliding rod (72).