Conductive nickel particle hole structure of forming die

By designing conductive nickel holes with trumpet-shaped conductors and arc-shaped R-angle conductive nickel holes in the conductive nickel hole structure of the molding mold, the problems of conductive nickel particles are solved, the quality and production efficiency are improved, and the production cost is reduced.

CN222959074UActive Publication Date: 2025-06-10DONGGUAN PULUDA ELECTRONICS TECH
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Patent Information

Application Number
CN202421673772.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-06-10
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

The design of conductive nickel particles under existing molding molds can easily lead to conductive nickel particles being crushed, glue spilled, shedded or nickel wire drawn, which poses quality risks and affects production continuity and cost efficiency.

Method used

A molding mold conductive nickel particle pore structure is designed, including a lower template, a mold cavity, a conductive nickel particle pressing bump, a conductive nickel particle hole and a guide hole. The lower end of the conductive nickel particle hole is provided with an arc-shaped R angle, and the upper end of the conductive nickel particle hole is provided with a trumpet-shaped guide hole.

Benefits of technology

Through this design, conductive nickel particles are easy to be pressed into the hole, effectively solving the problems of crushing and glue spilling, greatly improving quality and production efficiency, and reducing production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a conductive nickel particle hole structure of a forming die, which comprises a lower die plate, at least one die cavity is arranged at the upper end of the lower die plate, a plurality of conductive nickel particle press-in convex blocks which are arranged in a convex shape are arranged at the upper end of the die cavity, and at least one conductive nickel particle hole is arranged at the upper end of each conductive nickel particle press-in convex block. Trumpet-shaped guide holes are formed in the upper end parts of the conductive nickel particle holes, and arc-shaped R angles are arranged at the lower end parts of the conductive nickel particle holes. According to the utility model, the horn-shaped guide holes are arranged at the upper end parts of the conductive nickel particle holes, and the arc-shaped R angles are arranged at the lower end parts of the conductive nickel particle holes, so that the conductive nickel particles are conveniently pressed into the conductive nickel particle holes, the problems of crushing of the conductive nickel particles, glue overflow and the like are effectively solved, the quality and the production efficiency are greatly improved, and the production cost is reduced; therefore, the utility model has the advantages of novel design and simple structure, effectively solves the problems of crushing the conductive nickel particles, overflowing glue and the like, greatly improves the quality and the production efficiency, and reduces the production cost.
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Description

Technical Field

[0001] The utility model relates to the technical field of injection molds, in particular to a conductive nickel particle hole structure of a forming mold. Background Art

[0002] At present, in the design of the lower conductive nickel particle holes of domestic forming molds, problems such as crushing the conductive nickel particles, overflowing glue of the conductive nickel particles, falling off, and pulling up the nickel wires of the conductive nickel particles are likely to occur, which pose great potential risks to the screen quality and seriously affect the production continuity and cost efficiency. Content of the Utility Model

[0003] The purpose of the utility model is to provide a conductive nickel particle hole structure of a forming mold for the deficiencies of the prior art. The conductive nickel particle hole structure of the forming mold has a novel design and a simple structure, effectively solves problems such as crushing the conductive nickel particles and overflowing glue, greatly improves the quality and production efficiency, and reduces the production cost.

[0004] To achieve the above purpose, the utility model is realized through the following technical solutions.

[0005] A conductive nickel particle hole structure of a forming mold includes a lower template. At least one mold cavity is arranged at the upper end of the lower template, and a number of conductive nickel particle pressing protrusions arranged in a convex shape are arranged at the upper end of the mold cavity. At least one conductive nickel particle hole is arranged at the upper end of the conductive nickel particle pressing protrusion. A guide hole in a horn shape is arranged at the upper end of the conductive nickel particle hole, and an arc-shaped R angle is arranged at the lower end of the conductive nickel particle hole.

[0006] Wherein, two of the mold cavities are arranged at the upper end of the lower template.

[0007] Wherein, two of the conductive nickel particle pressing protrusions arranged in a convex shape are arranged at the upper end of the mold cavity.

[0008] Wherein, two of the conductive nickel particle holes are arranged at the upper end of the conductive nickel particle pressing protrusion.

[0009] The beneficial effects of the present utility model are as follows: A conductive nickel particle hole structure of a forming die according to the present utility model includes a lower template. At least one mold cavity is provided at the upper end of the lower template, and a number of conductive nickel particle pressing convex blocks arranged in a convex shape are provided at the upper end of the mold cavity. At least one conductive nickel particle hole is provided at the upper end of the conductive nickel particle pressing convex block. A guiding hole in a horn shape is provided at the upper end of the conductive nickel particle hole, and an arc-shaped R angle is provided at the lower end of the conductive nickel particle hole. By providing a guiding hole in a horn shape at the upper end of the conductive nickel particle hole and an arc-shaped R angle at the lower end of the conductive nickel particle hole, the present utility model makes it convenient for the conductive nickel particles to be pressed into the conductive nickel particle holes, effectively solves problems such as damage to the conductive nickel particles and overflow of glue, greatly improves the quality and production efficiency, and reduces the production cost. Therefore, the present utility model has the advantages of novel design, simple structure, effectively solving problems such as damage to the conductive nickel particles and overflow of glue, greatly improving the quality and production efficiency, and reducing the production cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] The present utility model will be further described below with reference to the drawings, but the embodiments in the drawings do not constitute any limitation to the present utility model.

[0011] Figure 1 is a schematic structural diagram of the present utility model;

[0012] Figure 2 is a schematic structural diagram of the conductive nickel particle hole of the present utility model.

[0013] In Figure 1-2 include:

[0014] 1 - lower template 11 - mold cavity

[0015] 12 - conductive nickel particle pressing convex block 13 - conductive nickel particle hole

[0016] 131 - guiding hole. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The present utility model will be described below in conjunction with specific embodiments.

[0018] As Figure 1-2 shown, a conductive nickel particle hole structure of a forming die includes a lower template 1. At least one mold cavity 11 is provided at the upper end of the lower template 1, and a number of conductive nickel particle pressing convex blocks 12 arranged in a convex shape are provided at the upper end of the mold cavity 11. At least one conductive nickel particle hole 13 is provided at the upper end of the conductive nickel particle pressing convex block 12. A guiding hole 131 in a horn shape is provided at the upper end of the conductive nickel particle hole 13, and an arc-shaped R angle is provided at the lower end of the conductive nickel particle hole 13.

[0019] Preferably in this embodiment, two mold cavities 11 are provided at the upper end of the lower template 1.

[0020] Preferably in this embodiment, two convexly arranged conductive nickel grain pressing bumps 12 are provided at the upper end of the mold cavity 11.

[0021] Preferably in this embodiment, two conductive nickel grain holes 13 are provided at the upper end of the conductive nickel grain pressing bump 12.

[0022] It should be further explained that in the present utility model, a horn-shaped guide hole 131 is provided at the upper end of the conductive nickel grain hole 13, and an arc-shaped R angle is provided at the lower end of the conductive nickel grain hole 13, so that the conductive nickel grains are easily pressed into the conductive nickel grain holes 13, and problems such as damage to the conductive nickel grains and overflow of glue are effectively solved, greatly improving the quality and production efficiency and reducing the production cost; therefore, the present utility model has the advantages of novel design, simple structure, effectively solving problems such as damage to the conductive nickel grains and overflow of glue, greatly improving the quality and production efficiency, and reducing the production cost.

[0023] The above content is only a preferred embodiment of the present utility model. For those of ordinary skill in the art, according to the idea of the present utility model, there will be changes in the specific implementation manner and application scope. The content of this specification should not be construed as a limitation to the present utility model.

Claims

1. A conductive nickel particle pore structure of a forming die, characterized in that: The invention comprises a lower template (1), wherein at least one mold cavity (11) is arranged at the upper end of the lower template (1), and a plurality of convexly arranged conductive nickel particle press-in bumps (12) are arranged at the upper end of the mold cavity (11), and at least one conductive nickel particle hole (13) is arranged at the upper end of the conductive nickel particle press-in bump (12), a trumpet-shaped guide hole (131) is arranged at the upper end of the conductive nickel particle hole (13), and an arc-shaped R angle is arranged at the lower end of the conductive nickel particle hole (13).

2. The conductive nickel particle pore structure of a forming die according to claim 1, characterized in that: The upper end of the lower mold plate (1) is provided with two mold cavities (11).

3. The conductive nickel particle pore structure of a forming die according to claim 1, characterized in that: The upper end of the mold cavity (11) is provided with two conductive nickel particle press-in bumps (12) arranged in a convex shape.

4. The conductive nickel particle pore structure of a forming die according to claim 1, characterized in that: Two conductive nickel particle holes (13) are provided at the upper end of the conductive nickel particle press-in protrusion (12).