A mold for processing a flat cable

By incorporating moving and cooling components into the mold, the flat cable processing mold solves the accuracy and cooling efficiency problems of traditional molds when processing flat cables, achieving high-precision shaping and uniform cooling, thus ensuring the dimensional and shape accuracy of the cable.

CN224296526UActive Publication Date: 2026-05-29ANHUI KEYUAN CABLE GRP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI KEYUAN CABLE GRP CO LTD
Filing Date
2025-06-26
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

When processing flat cables, traditional molds are complex in structure and have low positioning accuracy, making it difficult to guarantee the size and shape accuracy of the flat cables, which can easily lead to dimensional deviations and uneven surfaces.

Method used

A mold including a forming frame and a processing mechanism was designed. A pair of mold bodies are merged to form a through groove by moving components, and a cooling component is provided for timely cooling to ensure the shaping accuracy and temperature stability of the cable.

Benefits of technology

It improves the dimensional and shape accuracy of flat cables, solves the problems of dimensional deviation and surface unevenness, and at the same time improves cooling efficiency and temperature stability, avoiding resource waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to cable mould technical field, concretely is a kind of mould for flat cable processing, including back-shaped frame, be provided with processing mechanism on the back-shaped frame, the processing mechanism includes: mould assembly, including the back-shaped frame both sides respectively and set up a group of sliding through slot, the sliding through slot is slidably connected with sliding block, a group of the sliding block between fixedly connected with mould body, and a pair of mould body is oppositely arranged, the moving assembly for driving a pair of mould body relative movement is provided on the back-shaped frame;Cooling assembly is set up on mould body for cooling cable, to solve the problem that the size and shape precision of flat cable are difficult to guarantee, and size deviation, surface unevenness problem is likely to appear, when traditional mould is processed flat cable, due to the complex mould structure, positioning accuracy is not high.
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Description

Technical Field

[0001] This utility model belongs to the field of cable mold technology, specifically a mold for processing flat cables. Background Technology

[0002] With the continuous development of electronic technology, flat cables have been increasingly widely used in many fields such as electronic equipment, communication equipment, and automotive electronics due to their advantages such as small size, good flexibility, and stable transmission performance. Their market demand continues to grow, showing broad development prospects.

[0003] In the existing technology, when processing flat cables, traditional molds have complex structures and low positioning accuracy, which makes it difficult to guarantee the size and shape accuracy of the flat cables, and easily leads to dimensional deviations and uneven surfaces.

[0004] Therefore, this utility model provides a mold for processing flat cables. Utility Model Content

[0005] To overcome the shortcomings of existing technologies and solve the problems of dimensional deviations and uneven surfaces that arise when traditional molds are used to process flat cables, which are difficult to guarantee in terms of size and shape accuracy due to the complex mold structure and low positioning accuracy, traditional molds are used to process flat cables.

[0006] The technical solution adopted by this utility model to solve its technical problem is as follows: The mold for processing flat cables according to this utility model includes a forming frame, and a processing mechanism is provided on the forming frame. The processing mechanism includes: a mold assembly, including a set of sliding through grooves respectively opened on both sides of the forming frame, a sliding block slidably connected in the sliding through groove, a mold body fixed between the set of sliding blocks, and a pair of mold bodies arranged opposite to each other, and a moving component for driving the pair of mold bodies to move relative to each other is provided on the forming frame; a cooling component is provided on the mold body for cooling the cable.

[0007] Preferably, the moving component includes a rotating unit, a moving unit, and an electric push rod fixed to the bottom of the circular frame. The telescopic end of the electric push rod is fixed with a concave rod, and the top of both ends of the concave rod are fixed with a first fixing rod. A first circular block is fixed to the side of the first fixing rod near the circular frame.

[0008] Preferably, the rotating unit includes a rotating rod that is rotatably connected to both sides of the spiral frame via a first rotating shaft. A first isosceles groove is provided on the end of the rotating rod near the first circular block. The first circular block is slidably connected in the first isosceles groove. A second circular block is fixed to both ends of the rotating rod near the spiral frame.

[0009] Preferably, the moving unit includes a pair of sliding blocks with a moving rod fixed to their sidewalls, the moving rod having a second isosceles groove, and the second circular block being slidably connected within the second isosceles groove.

[0010] Preferably, the cooling assembly includes an inner cavity opened on the mold body, a conveying pipe is fixedly connected to the top of the mold body, and the top of the conveying pipe passes through the top of the shaped frame and is slidably connected to the shaped frame. A set of circular pipes is fixedly connected to the bottom of the upper mold body of a pair of mold bodies, and a set of circular holes is opened on the top of the lower mold body of a pair of mold bodies, and the circular holes are adapted to the circular pipes.

[0011] Preferably, a concave block is fixed to the side wall of the mold body, and the inner wall of the concave block is an inclined surface. A collection hopper is fixed to the side wall of the lower mold body of the pair of mold bodies.

[0012] The beneficial effects of this utility model are as follows:

[0013] 1. The mold for processing flat cables described in this utility model, by merging a pair of mold bodies under the drive of a moving component, can form a through groove that can shape the flat cable, allowing the flat cable to pass through continuously. Moreover, by means of a cooling component, the flat cable can be cooled in time as it passes through. This solves the problem in the prior art where, when processing flat cables with traditional molds, the complex mold structure and low positioning accuracy make it difficult to guarantee the size and shape accuracy of the flat cable, and problems such as dimensional deviation and uneven surface are prone to occur.

[0014] 2. The mold for processing flat cables described in this utility model, through the design of the inner cavity, enables the coolant to form an effective cooling path within the mold body, thereby more evenly absorbing the heat generated by the mold during operation, improving cooling efficiency, and ensuring the temperature stability of the mold during processing for shaping. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings.

[0016] Figure 1 This is a perspective view of the present invention;

[0017] Figure 2 This is a schematic diagram of the electric actuator in this utility model;

[0018] Figure 3 This is a schematic diagram of the first circular block in this utility model;

[0019] Figure 4 This is a schematic diagram of the mold body in this utility model;

[0020] Figure 5 This is a sectional view of the mold body in this utility model;

[0021] In the diagram: 1. Rectangular frame; 2. Sliding groove; 3. Sliding block; 4. Mold body; 5. Electric push rod; 6. Concave rod; 7. First fixed rod; 8. First circular block; 9. Rotating rod; 10. First isosceles groove; 11. Second circular block; 12. Moving rod; 13. Second isosceles groove; 14. Conveying pipe; 15. Circular pipe; 16. Circular hole; 17. Concave block; 18. Inclined surface; 19. Collection hopper; 20. Inner cavity. Detailed Implementation

[0022] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0023] like Figures 1 to 5 As shown, a mold for processing flat cables according to an embodiment of the present invention includes a forming frame 1, on which a processing mechanism is provided. The processing mechanism includes:

[0024] The mold assembly includes a set of sliding grooves 2 opened on both sides of the back-shaped frame 1, a sliding block 3 slidably connected in the sliding groove 2, a mold body 4 fixed between the set of sliding blocks 3, and a pair of mold bodies 4 arranged opposite to each other. The back-shaped frame 1 is provided with a moving component for driving the pair of mold bodies 4 to move relative to each other.

[0025] A cooling assembly, mounted on the mold body 4, is used to cool the cable.

[0026] During operation, the pair of mold bodies 4 are merged under the drive of the moving component to form a through groove that can shape the flat cable, allowing the flat cable to pass through continuously. The cooling component can cool the flat cable in time as it passes through, thus solving the problem that in the existing technology, when processing flat cables with traditional molds, the complex mold structure and low positioning accuracy make it difficult to guarantee the size and shape accuracy of the flat cable, and the problem of dimensional deviation and uneven surface is easy to occur.

[0027] The moving component includes a rotating unit, a moving unit, and an electric push rod 5 fixed to the bottom of the circular frame 1. A concave rod 6 is fixed to the telescopic end of the electric push rod 5. A first fixing rod 7 is fixed to the top of both ends of the concave rod 6. A first circular block 8 is fixed to the side of the first fixing rod 7 near the circular frame 1.

[0028] The rotating unit includes a rotating rod 9 that is rotatably connected to both sides of the rotating frame 1 via a first rotating shaft. A first isosceles groove 10 is provided on one end of the rotating rod 9 near the first circular block 8. The first circular block 8 is slidably connected in the first isosceles groove 10. A second circular block 11 is fixedly connected to both ends of the rotating rod 9 near the rotating frame 1.

[0029] The moving unit includes a pair of sliding blocks 3 with a moving rod 12 fixed to the side wall. The moving rod 12 has a second isosceles groove 13, and a second circular block 11 is slidably connected in the second isosceles groove 13.

[0030] During operation, the concave rod 6 is moved by the electric actuator 5, which allows the fixed rod to move simultaneously. The first circular block 8 on the fixed rod is slidably connected to the first isosceles groove 10, which allows the rotating rod 9 to rotate around the first rotating axis. At the same time, the moving rod 12 is squeezed by a pair of second circular blocks 11, which achieves the effect of moving the pair of moving rods 12 towards each other, so that the pair of mold bodies 4 can be formed into the through groove of the flat cable.

[0031] The cooling assembly includes an inner cavity 20 opened on the mold body 4. A conveying pipe 14 is fixedly connected to the top of the mold body 4, and the top of the conveying pipe 14 passes through the top of the return frame 1 and is slidably connected to the return frame 1. A set of circular pipes 15 are fixedly connected to the bottom of the upper mold body 4 of a pair of mold bodies 4. A set of circular holes 16 are opened on the top of the lower mold body 4 of a pair of mold bodies 4, and the circular holes 16 are adapted to the circular pipes 15.

[0032] During operation, the design of the inner cavity 20 enables the coolant to form an effective cooling path within the mold body 4, thereby more evenly absorbing the heat generated by the mold during operation, improving cooling efficiency, and ensuring the temperature stability of the mold during processing for shaping.

[0033] A concave block 17 is fixed to the side wall of the mold body 4, and the inner wall of the concave block 17 is an inclined surface 18. A collection hopper 19 is fixed to the side wall of the lower mold body 4 of a pair of mold bodies 4.

[0034] During operation, the concave block 17 can be used to merge the two mold bodies 4 simultaneously, which guides the heating cable as it passes through. The collection hopper 19 can collect the rubber extruded from the cable, thus avoiding resource waste.

[0035] Working principle: By merging a pair of mold bodies 4 driven by the moving component, a through groove can be formed to shape the flat cable, allowing the flat cable to pass through continuously. The cooling component can cool the flat cable in time as it passes through, thus solving the problem that in the existing technology, when processing flat cables with traditional molds, the size and shape accuracy of the flat cable are difficult to guarantee due to the complex mold structure and low positioning accuracy, which easily leads to dimensional deviations and uneven surfaces.

[0036] The concave rod 6 is moved by the electric push rod 5, so that the fixed rod can move at the same time. The first circular block 8 on the fixed rod is slidably connected in the first isosceles groove 10, so that the first circular block 8 can make the rotating rod 9 rotate around the first rotating axis. At the same time, the moving rod 12 can be squeezed by a pair of second circular blocks 11, so that the pair of moving rods 12 can move towards each other, so that the pair of mold bodies 4 can be formed into the through groove of the flat cable.

[0037] The design of the inner cavity 20 enables the coolant to form an effective cooling path within the mold body 4, thereby more evenly absorbing the heat generated by the mold during operation, improving cooling efficiency, and ensuring the temperature stability of the mold during processing for shaping.

[0038] The concave block 17 can be used to merge the two mold bodies 4 simultaneously, which guides the heating cable as it passes through. The collection hopper 19 can collect the rubber extruded from the cable, thus avoiding resource waste.

[0039] The terms "front," "back," "left," "right," "top," and "bottom" all refer to the figures in the accompanying drawings. Figure 1 Based on the perspective of the observer, the side of the device facing the observer is defined as the front, the left side of the observer is defined as the left, and so on.

[0040] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this utility model.

[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A mold for processing flat cables, comprising a forming frame (1), characterized in that: The rotary frame (1) is provided with a processing mechanism, which includes: The mold assembly includes a set of sliding slots (2) opened on both sides of the back-shaped frame (1), a sliding block (3) is slidably connected in the sliding slot (2), a mold body (4) is fixed between the set of sliding blocks (3), and a pair of mold bodies (4) are arranged opposite to each other. The back-shaped frame (1) is provided with a moving component for driving the pair of mold bodies (4) to move relative to each other. A cooling assembly is provided on the mold body (4) for cooling the cable.

2. The mold for processing flat cables according to claim 1, characterized in that: The moving component includes a rotating unit, a moving unit, and an electric push rod (5) fixed to the bottom of the circular frame (1). A concave rod (6) is fixed to the telescopic end of the electric push rod (5). A first fixing rod (7) is fixed to the top of both ends of the concave rod (6). A first circular block (8) is fixed to the side of the first fixing rod (7) near the circular frame (1).

3. The mold for processing flat cables according to claim 2, characterized in that: The rotating unit includes a rotating rod (9) that is rotatably connected to both sides of the spiral frame (1) via a first rotating shaft. A first isosceles groove (10) is provided on one end of the rotating rod (9) near the first circular block (8). The first circular block (8) is slidably connected in the first isosceles groove (10). A second circular block (11) is fixedly connected to both ends of the rotating rod (9) near the spiral frame (1).

4. The mold for processing flat cables according to claim 3, characterized in that: The moving unit includes a pair of sliding blocks (3) with a moving rod (12) fixed to the side wall. The moving rod (12) has a second isosceles groove (13) and the second circular block (11) is slidably connected in the second isosceles groove (13).

5. The mold for processing flat cables according to claim 1, characterized in that: The cooling assembly includes an inner cavity (20) opened on the mold body (4). A conveying pipe (14) is fixedly connected to the top of the mold body (4), and the top of the conveying pipe (14) passes through the top of the ring frame (1) and is slidably connected to the ring frame (1). A set of circular pipes (15) is fixedly connected to the bottom of the upper mold body (4) of the pair of mold bodies (4). A set of circular holes (16) is opened on the top of the lower mold body (4) of the pair of mold bodies (4), and the circular holes (16) are adapted to the circular pipes (15).

6. The mold for processing flat cables according to claim 1, characterized in that: The mold body (4) has a concave block (17) fixed to its side wall, and the inner wall of the concave block (17) is an inclined surface (18). A collection hopper (19) is fixed to the side wall of the lower mold body (4) of the pair of mold bodies (4).