Imitation pitched roof waste male die assembly

By setting the end step area and the side step area on the top surface of the punch assembly, combined with the clamping design of the connecting rod and pins, the problem of flip and twisting of waste during the die sampling process is solved, reducing the occurrence of copper wire or copper chips and the waste remains on the punch assembly.

CN222830509UActive Publication Date: 2025-05-06SICHUAN JINWAN ELECTRONICS
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Patent Information

Application Number
CN202420888002.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-26
Publication Date
2025-05-06
Estimated Expiration
2034-04-26

AI Technical Summary

Technical Problem

During the die sampling process, the waste is easily flipped and twisted when it is pulled out, resulting in the point at the top of the mould being flushed out, and the waste is difficult to completely remove and remains on the mould assembly.

Method used

A imitation of oblique top waste punch assembly is designed. By setting the end step area and the side step area on the top surface of the punch body, and using it in conjunction with the connecting rod and pins, it reduces the flip and twist of waste when it is pulled out, reduces the generation of copper wire or copper chips, and reduces the possibility of waste remaining on the punch assembly.

Benefits of technology

It effectively reduces the occurrence of copper wire or copper chips caused by flip twisting when the waste is pulled, reduces the part of the punch assembly being washed away, and reduces the situation where the scrap remains on the punch assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an imitation pitched roof waste male die assembly which is applied to the field of male die assemblies, when the male die assembly is used for imitation pitched roof waste, pins can be matched with a left die assembly and a right die assembly for clamping use, the left die assembly is mainly composed of the left die assembly, and the right die assembly is mainly composed of the right die assembly. The first end step area and the first side step area are matched with the left module for use, the right module is mainly composed of a right module, the second end step area and the second side step area are matched with the right module for use, and through the arrangement of the first end step area and the second end step area, the first end step area and the second side step area are matched with the left module for use; copper wires or copper cuttings generated by the left die assembly and the right die assembly due to overturning and twisting when the waste materials are snapped are reduced, the part, finally punched away, of the male die assembly is reduced, and meanwhile the waste materials left on the male die assembly are reduced.
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Description

Technical Field

[0001] The utility model belongs to the field of male die components, in particular to an imitation inclined top waste male die component. Background Art

[0002] In the field of punching die layout, it is used to separate thick and thin materials. The punch is composed of two "7" shapes. At the top of both sides of the punch, there is a slope that clamps the waste in the Y direction, so the waste will not move at the top point in the Y direction when falling. Since the two "7"-shaped punches have vertical opposite surfaces, when the waste is pulled apart, the waste will flip and twist. The part remaining on the frame will pull the position point at the top of the punch, causing the opposite surfaces of the two punches to move upward, that is, the waste is twisted. Finally, the waste is scratched with the inclined surface of the thick material, thereby producing copper wire or copper chips. The position point at the top of the punch is finally partially washed away, but the waste area will still remain on the punch assembly. Utility Model Content

[0003] The utility model aims to provide a waste material convex die assembly with the imitation tilting top function, which has the advantage of increasing the anti-tilting top effect of the waste material.

[0004] The above technical purpose of the utility model is achieved through the following technical solutions: a simulated inclined top waste punch assembly, including a punch body and a connecting rod, the punch body including a left mold assembly and a right mold assembly, the left mold assembly including a left mold piece, the top of the left mold piece is formed with a top end surface one, and the two ends of the top of the left mold piece are respectively provided with an end step area one and a side step area one, the right mold assembly includes a right mold piece, the top of the right mold piece is formed with a top end surface two, and the two ends of the top of the right mold piece are respectively provided with an end step area two and a side step area two.

[0005] The above technical solution is adopted: when the punch assembly is used to imitate the inclined top of waste material, it can be clamped and used with the left mold assembly and the right mold assembly through the pins. The left mold assembly is mainly composed of the left mold part, and is used in conjunction with the left mold part through the end step area 1 and the side step area 1, and the right mold assembly is mainly composed of the right mold part, and is used in conjunction with the right mold part through the end step area 2 and the side step area 2. Through the setting of the end step area 1 and the end step area 2, the generation of copper wire or copper chips in the left mold assembly and the right mold assembly due to flipping and twisting of the waste when it is pulled apart is reduced, the part of the punch assembly that is finally washed away is reduced, and the part of the waste left on the punch assembly is reduced.

[0006] The utility model is further configured such that the end step region 1 and the side step region 1 are respectively and simultaneously located on both sides of the top end surface 1.

[0007] The above technical solution is adopted: the end step area 1 and the side step area 1 are used in conjunction with the left module respectively.

[0008] The utility model is further configured such that the second end step region and the second side step region are respectively and simultaneously located on both sides of the second top end surface.

[0009] The above technical solution is adopted: the end step area 2 and the side step area 2 are used in conjunction with the right module respectively.

[0010] The utility model is further configured that an outer lead is fixedly installed on the inner side of the connecting rod, and an inner lead is fixedly installed on the top of the connecting rod.

[0011] The above technical solution is adopted: the outer lead wire and the inner lead wire are used in conjunction with the connecting rod respectively.

[0012] The utility model is further configured that one side of the left module and the right module are both provided with a pin fixedly connected to the connecting rod.

[0013] The above technical solution is adopted: the left mold component and the right mold component are clamped and used through pins.

[0014] The utility model is further configured that the tops of the left module and the right module are both provided with carriers that are clamped with the connecting rod, and a bottom rib is fixedly installed on one side of the connecting rod.

[0015] The above technical solution is adopted: the component is used in conjunction with the carrier, and the bottom rib is used to support the connecting rod.

[0016] The utility model is further configured that a heat sink is provided on the top of the carrier, a top rib is fixedly installed on the top of the heat sink, and a positioning hole and a square hole are respectively opened inside the heat sink.

[0017] The above technical solution is adopted: the heat sink is used in conjunction with the component for heat dissipation, the top ribs are used to support the heat sink, and the positioning holes and square holes are used to increase the positioning of the heat sink.

[0018] The utility model is further configured that a partition wall is formed on one side of the heat sink, and transverse steps are formed on both sides of the partition wall.

[0019] The above technical solution is adopted: partition walls and horizontal steps are used in conjunction with heat sinks.

[0020] In summary, the utility model has the following beneficial effects:

[0021] When the punch assembly of the utility model is used for imitating the inclined top of waste material, the left mold assembly and the right mold assembly can be clamped and used through the pins. The left mold assembly is mainly composed of the left mold part, and the end step area 1 and the side step area 1 are respectively used in conjunction with the left mold part, and the right mold assembly is mainly composed of the right mold part, and the end step area 2 and the side step area 2 are respectively used in conjunction with the right mold part. Through the arrangement of the end step area 1 and the end step area 2, the generation of copper wire or copper chips by the left mold assembly and the right mold assembly due to flipping and twisting of the waste material when it is pulled apart is reduced, the part of the punch assembly that is finally washed away is reduced, and the part of the waste material left on the punch assembly is reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0023] Figure 2 It is a schematic diagram of the utility model for use in conjunction with each other.

[0024] Figure numerals: 1. punch body; 101. left mold assembly; 1011. left mold piece; 1012. end step area one; 1013. side step area one; 1014. top surface one; 102. right mold assembly; 1021. right mold piece; 1022. end step area two; 1023. side step area two; 1015. top surface two; 2. pin; 3. carrier; 4. partition wall; 5. square hole; 6. heat sink; 7. positioning hole; 8. bottom rib; 9. horizontal step; 10. connecting rod; 11. external lead; 12. top rib; 13. internal lead. DETAILED DESCRIPTION

[0025] The utility model is further described in detail below in conjunction with the accompanying drawings.

[0026] Embodiment 1:

[0027] refer to Figure 1 and Figure 2A waste convex mold assembly for simulating inclined top, comprising a convex mold body 1 and a connecting rod 10, wherein the convex mold body 1 comprises a left mold assembly 101 and a right mold assembly 102, wherein the left mold assembly 101 comprises a left mold part 1011, wherein a top surface 1014 is formed at the top of the left mold part 1011, and an end step area 1012 and a side step area 1013 are respectively provided at two ends of the top of the left mold part 1011, wherein the right mold part 1021 comprises a right mold part 1021, wherein a top surface 1024 is formed at the top of the right mold part 1021, and an end step area 1022 and a side step area 1023 are respectively provided at two ends of the top of the right mold part 1021, wherein when the convex mold assembly is used for simulating inclined top waste, the left mold assembly 101 and the right mold assembly can be matched with each other through a pin 2 The left mold component 101 is mainly composed of the left mold component 1011, and the end step area 1012 and the side step area 1013 are used in conjunction with the left mold component 1011 respectively, and the right mold component 102 is mainly composed of the right mold component 1021, and the end step area 2 1022 and the side step area 2 1023 are used in conjunction with the right mold component 1021 respectively. Through the setting of the end step area 1012 and the end step area 2 1022, the generation of copper wire or copper chips in the left mold component 101 and the right mold component 102 due to flipping and twisting of the waste when it is pulled apart is reduced, the part of the punch component that is finally punched out is reduced, and the part of the waste remaining on the punch component is reduced.

[0028] refer to Figure 1 The end step area 1012 and the side step area 1013 are respectively located on both sides of the top surface 1014, and the end step area 1012 and the side step area 1013 are used in conjunction with the left module 1011.

[0029] refer to Figure 1 The end step area 1022 and the side step area 1023 are respectively located on both sides of the top end surface 1024, and the end step area 1022 and the side step area 1023 are respectively used in conjunction with the right module 1021.

[0030] refer to Figure 2 An outer lead 11 is fixedly installed on the inner side of the connecting rod 10, and an inner lead 13 is fixedly installed on the top of the connecting rod 10. The outer lead 11 and the inner lead 13 are respectively used in conjunction with the connecting rod 10.

[0031] refer to Figure 2 One side of the left module 1011 and the right module 1021 is provided with a pin 2 fixedly connected to the connecting rod 10, and the left mold assembly 101 and the right mold assembly 102 are clamped and used through the pin 2.

[0032] refer to Figure 2The tops of the left module 1011 and the right module 1021 are both provided with a carrier 3 that is clamped with the connecting rod 10. A bottom rib 8 is fixedly installed on one side of the connecting rod 10. The carrier 3 is used in conjunction with the assembly, and the bottom rib 8 supports the connecting rod 10.

[0033] refer to Figure 2 A heat sink 6 is provided on the top of the carrier 3, and a top rib 12 is fixedly installed on the top of the heat sink 6. Positioning holes 7 and square holes 5 are respectively opened inside the heat sink 6. The heat sink 6 is used in conjunction with the component for heat dissipation. The top rib 12 supports the heat sink 6, and the positioning holes 7 and the square holes 5 increase the positioning of the heat sink 6.

[0034] refer to Figure 2 A partition wall 4 is formed on one side of the heat sink 6, and transverse steps 9 are formed on both sides of the partition wall 4. The heat sink 6 is used in conjunction with the partition wall 4 and the transverse steps 9.

[0035] Brief description of the use process: When the male mold assembly is used to simulate the inclined ejection waste, the left mold assembly 101 and the right mold assembly 102 can be clamped and used through the pin 2. The left mold assembly 101 is mainly composed of the left mold 1011, and the end step area 1012 and the side step area 1013 are respectively used to cooperate with the left mold 1011, and the right mold assembly 102 is mainly composed of the right mold 1021, and the end step area 1022 and the side step area 1023 are respectively used to cooperate with the right mold 1021. The setting of area one 1012 and end step area two 1022 reduces the generation of copper wire or copper chips in the left mold assembly 101 and the right mold assembly 102 due to flipping and twisting of the waste when it is pulled apart, reduces the portion of the punch assembly that is finally punched away, and reduces the portion of the waste remaining on the punch assembly. The heat sink 6 is used in conjunction with the assembly for heat dissipation, the positioning holes 7 and the square holes 5 increase the positioning of the heat sink 6, the top rib 12 is used to support the heat sink 6, the bottom rib 8 is used to support the connecting rod 10, and the partition wall 4 and the horizontal step 9 are used in conjunction with the heat sink 6.

[0036] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed. However, as long as they are within the scope of the claims of the present invention, they are protected by the patent law.

Claims

1. A waste punch assembly imitating a tilting top, comprising a punch body (1) and a connecting rod (10), characterized in that: The male mold body (1) comprises a left mold component (101) and a right mold component (102); the left mold component (101) comprises a left mold piece (1011); a top end surface 1 (1014) is formed at the top of the left mold piece (1011); an end step area 1 (1012) and a side step area 1 (1013) are respectively formed at two ends of the top of the left mold piece (1011); the right mold component (1021) comprises a right mold piece (1021); a top end surface 2 (1024) is formed at the top of the right mold piece (1021); an end step area 2 (1022) and a side step area 2 (1023) are respectively formed at two ends of the top of the right mold piece (1021).

2. The waste material imitation inclined top punch assembly according to claim 1, characterized in that: The end step region 1 (1012) and the side step region 1 (1013) are respectively located on both sides of the top end surface 1 (1014).

3. The waste material imitation inclined top punch assembly according to claim 1, characterized in that: The second end step region (1022) and the second side step region (1023) are respectively located on both sides of the second top surface (1024).

4. The waste material imitation inclined top punch assembly according to claim 1, characterized in that: An outer lead (11) is fixedly mounted on the inner side of the connecting rod (10), and an inner lead (13) is fixedly mounted on the top of the connecting rod (10).

5. The waste material imitation inclined top punch assembly according to claim 1, characterized in that: One side of the left module (1011) and the right module (1021) is provided with a tube pin (2) fixedly connected to the connecting rod (10).

6. The waste material imitation bevel top punch assembly according to claim 1, characterized in that: The tops of the left module (1011) and the right module (1021) are both provided with a carrier (3) that is clamped with a connecting rod (10), and a bottom rib (8) is fixedly mounted on one side of the connecting rod (10).

7. The waste material imitation inclined top punch assembly according to claim 6, characterized in that: A heat sink (6) is provided on the top of the carrier (3), a top rib (12) is fixedly mounted on the top of the heat sink (6), and a positioning hole (7) and a square hole (5) are respectively provided inside the heat sink (6).

8. The waste material imitation bevel top punch assembly according to claim 7, characterized in that: A partition wall (4) is formed on one side of the heat sink (6), and transverse steps (9) are formed on both sides of the partition wall (4).