Copper wire storage device

By fixing the copper wire with a flexible inner plate and outer cylinder structure, the problem of coating damage caused by bending and friction during storage and transportation of copper wire is solved, and the copper wire is stably positioned and its shape is protected.

CN224118515UActive Publication Date: 2026-04-14NINGBO LINXIAO BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Copper wires are prone to coating damage due to bending and friction during long-term storage, and are also prone to deformation due to shaking and collision during handling.

Method used

It adopts a flexible inner plate and outer cylinder structure. The flexible inner plate is provided with wire clamping grooves to fix the copper wires. The copper wires are clamped in rows in the wire clamping grooves and then rolled into a roll and placed into the outer cylinder. The outer cylinder is provided with cylinder caps at both ends to enhance the sealing performance.

Benefits of technology

It effectively prevents coating damage to copper wires during storage and handling due to friction, shaking and collision, keeps the copper wires straight, and ensures coating integrity and shape stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a copper wire storage device which comprises a flexible inner plate, the left side and the right side of the flexible inner plate are provided with line clamping grooves in rows, and the line clamping grooves in the left side and the right side are symmetrically distributed. And the flexible inner plate is rolled into a roll and is placed in the outer cylinder. The copper wire storage device has the advantages that the copper wire storage device is fixed on the flexible inner plate, the copper wire is stably positioned, and friction caused by mutual collision and sliding in the storage process is avoided. The coating may be scratched by friction between the copper wires or friction between the copper wires and other objects in a storage environment, while the copper wires are fixed on the flexible inner plate, so that the risk can be effectively reduced, the integrity of the coating can be kept, and meanwhile, the copper wires can be always kept in a linear state and cannot be bent and deformed randomly due to extrusion of external force, collision or self gravity.
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Description

Technical Field

[0001] This utility model relates to a device for storing copper wire. Background Technology

[0002] The transportation and storage of copper wire is a methodological process.

[0003] If the copper wire is only being stored for a short period, overly complicated storage measures are not necessary. Simply keep the storage environment relatively dry and clean, and avoid contact with corrosive substances. The copper wire can be placed anywhere in a well-ventilated area, but care should be taken to avoid external pressure and impact.

[0004] For copper wires requiring long-term storage, more comprehensive and stringent storage measures must be taken. In addition to controlling the temperature and humidity of the storage environment, regular inspection and maintenance of the copper wires are necessary. Periodic visual inspections should be conducted, and if necessary, repackaging or protective treatment should be performed to ensure that the copper wires maintain good performance even after long-term storage.

[0005] Some copper wires are individually packaged coated copper wires. Because copper wires are very soft, they are easily bent and shaken when in motion. Due to prolonged shaking, the surface coating will peel off.

[0006] Furthermore, if the copper wire is bent excessively, it will deform into a curved shape and will no longer be straight. Utility Model Content

[0007] In order to overcome the shortcomings of current copper wire storage methods which are prone to bending and damage, this utility model provides a copper wire storage device.

[0008] The technical solution of this utility model to solve its technical problem is: a copper wire storage device, including a flexible inner plate, on which rows of wire-holding grooves are provided on the left and right sides, and the wire-holding grooves on the left and right sides are symmetrically distributed; it also includes an outer cylinder, and the flexible inner plate is rolled into a roll and placed in the outer cylinder.

[0009] Furthermore, the flexible inner panel is a square sheet, and the flexible inner panel has a left side and a right side of equal length.

[0010] Furthermore, the diameter of the cylinder formed by the flexible inner plate is smaller than that of the outer cylinder, and it automatically expands and adheres to the outer cylinder after being placed inside the outer cylinder.

[0011] The width of the wire slot is between 0.1 mm and 1.5 mm to match different copper wire diameters.

[0012] In one preferred embodiment, the flexible inner panel is a flexible inner panel made of EVA material, and the outer cylinder is an outer cylinder made of rigid material, including but not limited to PVC, paper, and metal materials.

[0013] In another preferred embodiment, the flexible inner panel is made of EVA material, and the outer cylinder is made of paper.

[0014] Alternatively, the outer cylinder is a metal outer cylinder.

[0015] To further enhance the curling performance of the flexible inner panel, the flexible inner panel contains rows of rigid inserts, which are strip-shaped and have a longitudinal direction of left and right, so that the axis of the flexible inner panel when it is rolled inward is in the left and right direction.

[0016] To further enhance sealing and preservation, the outer cylinder is also equipped with caps at both ends.

[0017] In use, copper wires are inserted one by one into the wire slots. One end of the copper wire is inserted into the left wire slot and the other end into the right wire slot. After insertion, the copper wires are arranged in rows on the front of the flexible inner plate. Then, the flexible inner plate is rolled into a roll along the front, with the copper wires still arranged in a straight line inside the roll. Finally, the roll is placed into the outer cylinder to complete the installation.

[0018] The beneficial effects of this utility model are as follows: 1. Fixed to the flexible inner plate, the copper wire is stably positioned, avoiding friction caused by mutual collisions and sliding during storage. Friction between copper wires or with other objects in the storage environment may scratch the coating, while fixing it to the flexible inner plate effectively reduces this risk, maintains the integrity of the coating, and ensures that the copper wire always remains straight, preventing arbitrary bending and deformation due to external pressure, collision, or its own weight. 2. The flexible inner plate provides a relatively stable support structure for the copper wire. In storage environments where vibration may occur, the fixing method can greatly reduce the shaking and displacement of the copper wire caused by vibration, preventing the coating from separating and peeling off from the copper wire surface due to vibration impact. 3. When it is necessary to handle or move the inner plate containing the copper wire, because the copper wire is firmly fixed to the flexible inner plate, the copper wire is not easily bent due to shaking or collision during handling. Compared with loosely placed copper wire, this fixing method can better protect the shape of the copper wire, ensuring that it meets the usage requirements before and after handling. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of a flexible inner plate according to an embodiment of the present invention.

[0020] Figure 2 This is an enlarged schematic diagram of the end of the flexible inner panel.

[0021] Figure 3 This is a schematic diagram of copper wires and a flexible inner plate.

[0022] Figure 4 This is a schematic diagram of the flexible inner panel after it has been rolled up.

[0023] Figure 5 This is a schematic diagram of the rear end of the flexible inner panel when it is rolled up.

[0024] Figure 6 This is a cross-sectional view of the flexible inner plate fitted onto the outer cylinder. Detailed Implementation

[0025] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0026] Example 1

[0027] Combined with appendix Figures 1 to 5 A copper wire storage device includes a flexible inner plate 1, on which rows of wire-holding grooves 2 are provided on the left and right sides, and the wire-holding grooves 2 on the left and right sides are symmetrically distributed; it also includes an outer cylinder, in which the flexible inner plate 1 is rolled into a roll and placed inside the outer cylinder.

[0028] Furthermore, the flexible inner plate 1 is a square piece, and the flexible inner plate 1 has a left side and a right side of equal length.

[0029] Furthermore, the diameter of the cylinder formed by the flexible inner plate 1 is smaller than that of the outer cylinder, and it automatically expands and adheres to the outer cylinder after being placed inside the outer cylinder.

[0030] The width of the wire slot 2 is between 0.1 mm and 1.5 mm to match different copper wire diameters.

[0031] In a preferred embodiment, the flexible inner panel 1 is a flexible inner panel 1 made of EVA material, and the outer cylinder is a metal outer cylinder.

[0032] To further enhance sealing and preservation, the outer cylinder is also equipped with caps at both ends.

[0033] In this embodiment, the copper wires 5 are inserted one by one into the wire slots 2. When inserting, one end of the copper wire is inserted into the wire slot 2 on the left and the other end is inserted into the wire slot 2 on the right. After inserting, the copper wires are arranged in rows on the front of the flexible inner plate 1. Then, the flexible inner plate 1 is rolled into a roll along the front, and the copper wires are still arranged in a straight line inside the roll. Finally, the roll is placed into the outer cylinder 3 to complete the installation.

[0034] Example 2

[0035] Combined with appendix Figures 1 to 6 A copper wire storage device includes a flexible inner plate 1, on which rows of wire-holding grooves 2 are provided on the left and right sides, and the wire-holding grooves 2 on the left and right sides are symmetrically distributed; it also includes an outer cylinder 3, in which the flexible inner plate 1 is rolled into a roll and placed inside the outer cylinder 3.

[0036] Furthermore, the flexible inner plate 1 is a square piece, and the flexible inner plate 1 has a left side and a right side of equal length.

[0037] Furthermore, the diameter of the cylinder formed by the flexible inner plate 1 is smaller than that of the outer cylinder 3, and it automatically expands and adheres to the outer cylinder 3 after being placed inside the outer cylinder 3.

[0038] The width of the wire slot 2 is between 0.1 mm and 1.5 mm to match different copper wire diameters.

[0039] In a preferred embodiment, the flexible inner panel 1 is made of EVA material, and the outer cylinder 3 is made of paper.

[0040] To further enhance the curling performance of the flexible inner plate 1, the flexible inner plate 1 contains rows of rigid inserts 4, the rigid inserts 4 being strip-shaped and having a longitudinal direction of left and right, so that the axis of the flexible inner plate 1 when it is rolled inward is in the left and right direction.

[0041] In this embodiment, the copper wires 5 are inserted one by one into the wire slots 2. When inserting, one end of the copper wire is inserted into the wire slot 2 on the left and the other end is inserted into the wire slot 2 on the right. After inserting, the copper wires are arranged in rows on the front of the flexible inner plate 1. Then, the flexible inner plate 1 is rolled into a roll along the front, and the copper wires are still arranged in a straight line inside the roll. Finally, the roll is placed into the outer cylinder 3 to complete the installation.

[0042] The beneficial effects of this utility model are as follows: 1. Fixed to the flexible inner plate, the copper wire is stably positioned, avoiding friction caused by mutual collisions and sliding during storage. Friction between copper wires or with other objects in the storage environment may scratch the coating, while fixing it to the flexible inner plate effectively reduces this risk, maintains the integrity of the coating, and ensures that the copper wire always remains straight, preventing arbitrary bending and deformation due to external pressure, collision, or its own weight. 2. The flexible inner plate provides a relatively stable support structure for the copper wire. In storage environments where vibration may occur, the fixing method can greatly reduce the shaking and displacement of the copper wire caused by vibration, preventing the coating from separating and peeling off from the copper wire surface due to vibration impact. 3. When it is necessary to handle or move the inner plate containing the copper wire, because the copper wire is firmly fixed to the flexible inner plate, the copper wire is not easily bent due to shaking or collision during handling. Compared with loosely placed copper wire, this fixing method can better protect the shape of the copper wire, ensuring that it meets the usage requirements before and after handling.

Claims

1. A copper wire storage device, characterized in that: It includes a flexible inner plate with rows of wire-locking grooves on the left and right sides, the wire-locking grooves on the left and right sides being symmetrically distributed; it also includes an outer cylinder, the flexible inner plate being rolled into a roll and placed inside the outer cylinder.

2. The copper wire preservation device according to claim 1, characterized in that: The flexible inner panel is a square sheet with equal left and right sides.

3. The copper wire preservation device according to claim 1, characterized in that: The diameter of the cylinder formed by the flexible inner plate is smaller than that of the outer cylinder. After being placed into the outer cylinder, it automatically expands and adheres to the outer cylinder.

4. The copper wire preservation device according to claim 1, characterized in that: The width of the wire slot is between 0.1 mm and 1.5 mm.

5. The copper wire preservation device according to claim 1, characterized in that: The flexible inner panel is made of EVA material, and the outer cylinder is made of rigid material.

6. The copper wire preservation device according to claim 5, characterized in that: The flexible inner panel is made of EVA material, and the outer cylinder is made of paper.

7. The copper wire preservation device according to claim 5, characterized in that: The flexible inner panel is made of EVA material, and the outer cylinder is a metal outer cylinder.

8. The copper wire preservation device according to claim 1, characterized in that: The flexible inner plate contains rows of rigid inserts, which are strip-shaped and have a longitudinal direction of left and right, so that the axis of the flexible inner plate when it is rolled inward is in the left and right direction.

9. The copper wire preservation device according to claim 1, characterized in that: The outer cylinder is also equipped with cylinder caps at both ends.