Wire inlay copper wire processing mechanism

By designing a filament copper wire processing mechanism, the copper flat wire is merged into a wiring line and applied glue to fix it, the problem of low working efficiency of copper flat wire is solved and efficient copper flat wire processing and storage is achieved.

CN223148089UActive Publication Date: 2025-07-25LAISHUI COUNTY XINGHAO COPPER ARTS CO LTD
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Patent Information

Application Number
CN202422559541.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-07-25
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

In the prior art, the working efficiency of filament copper wire is low, making it difficult to efficiently prefabricate and combine copper wires.

Method used

A filament copper wire processing mechanism is designed, and several copper flat wires are combined into a wiring line through the material rolling assembly, and the feeding assembly is applied to the glue to fix it, so as to achieve unified filament and storage of the copper flat wires.

Benefits of technology

It improves the working efficiency of copper flat wire, prevents knotting or entanglement of copper flat wire, simplifies the subsequent filament pinching process, and improves the overall processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire inlay copper wire processing mechanism which comprises a mounting plate, two supports are fixedly connected to the top face of the mounting plate, a sliding rod and a material rolling column are arranged between the two supports respectively, the two ends of the material rolling column are rotationally connected with the two supports respectively, a spiral groove is formed in the outer side face of the material rolling column, and a material rolling assembly is fixedly connected into the spiral groove. A sliding cover is slidably connected to the outer side of the rolling assembly, the top surface of the sliding cover is fixedly connected and communicated with a feeding assembly, the feeding assembly is slidably connected with the sliding rod, one end of the rolling column is in transmission connection with a driving motor, and the driving motor is fixedly connected with the support; and a plurality of copper flat wires are clamped in the coiling assembly. According to the utility model, a plurality of copper flat wires can be combined by using glue, a single copper flat wire can be integrated into a plurality of flat cables, and the working efficiency is improved through wire inlay and flat cable arrangement.
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Description

Technical Field

[0001] The utility model relates to the technical field of cloisonné, in particular to a wire embedding copper wire processing mechanism. Background Technique

[0002] Cloisonné, also known as "copper body wire embedding enamel", is a special handicraft. It uses thin flat copper wires as lines, pinches out various pattern designs on a copper body, then fills colorful enamel in the patterns, and is formed through firing, grinding, and gilding. Among them, the wire embedding process plays a crucial role in cloisonné production. As the old saying goes, "The wire work is more important than the enamel work", which shows the importance of the wire embedding technique.

[0003] The wire embedding process requires the production of copper wires, which are pressed into thin and flat copper wires according to a certain height and width. The specifications of the copper wires depend on the needs. Some are high and thin, and some are short and thick, which are determined according to the different body and different cloisonné paintings. And the patterns formed by the wire embedding are usually composed of repeated graphics and need to prefabricate the copper wires in advance. For wire embedding of single copper wires or copper flat wires, the work efficiency is low. Therefore, it is necessary to provide a wire embedding copper wire processing mechanism to improve the work efficiency of wire embedding. Content of the Utility Model

[0004] To solve the above technical problems, the utility model proposes a wire embedding copper wire processing mechanism, which can combine several copper flat wires with glue, can integrate single copper flat wires into several wire rows, and improve the work efficiency through wire embedding of the wire rows.

[0005] To achieve the above purpose, the utility model provides the following scheme:

[0006] A wire embedding copper wire processing mechanism includes a mounting plate. Two brackets are fixedly connected to the top surface of the mounting plate. A sliding rod and a coiling column are respectively arranged between the two brackets. Both ends of the coiling column are rotatably connected to the two brackets. A spiral groove is formed on the outer side surface of the coiling column. A coiling component is fixedly connected in the spiral groove. A sliding cover is slidably connected to the outside of the coiling component. The top surface of the sliding cover is fixedly connected and communicated with a feeding component. The feeding component is slidably connected to the sliding rod. One end of the coiling column is drivingly connected to a driving motor, and the driving motor is fixedly connected to the bracket; several copper flat wires are clamped in the coiling component.

[0007] Preferably, the coiling component includes a coiling frame. The coiling frame is of a spiral structure. A pressing device is fixedly installed at one end of the coiling frame. One end of the pressing device is detachably connected to one end of the copper flat wire. Adjacent copper flat wires are arranged in mutual contact. One side surface of the copper flat wire is in contact with the bottom surface of the spiral groove.

[0008] Preferably, the pressure applicator includes a pressure cover, the bottom surface of the pressure cover is fixedly connected to the outer side surface of the coiled material column, a pressure groove is formed on the bottom surface of the pressure cover, one end of the coiled material frame and one end of the copper flat wire are respectively arranged in the pressure groove; a pressure block is detachably connected to one side surface of the copper flat wire, the pressure block penetrates through the pressure cover and is slidably connected to the pressure cover, screw rods are respectively penetrated and screwed on the opposite side surfaces of the pressure cover, and a chamfer is formed at one end of the screw rod; a tapered pressure hole is formed on the side surface of the pressure block, and one end of the screw rod penetrates through the pressure hole and is detachably connected to the pressure block.

[0009] Preferably, the feeding assembly includes a slider, the slider is sleeved outside the sliding rod and is slidably connected to the sliding rod, a material box is fixedly connected to the bottom surface of the slider, and the material box is fixedly connected and communicated with the sliding cover through a plurality of pipelines; both ends of the bottom surface of the sliding cover are respectively slidably connected to the outer side surfaces of the coiled material frame, a feeding groove is formed on the bottom surface of the sliding cover, a wiping material roll is detachably connected in the feeding groove, the wiping material roll abuts against the side surface of the copper flat wire, and the wiping material roll is communicated with the pipeline.

[0010] Preferably, fixing plates are respectively fixedly connected to both ends of the sliding rod, and the fixing plates are fixedly connected to the bracket.

[0011] Preferably, the height of the top surface of the copper flat wire is lower than that of the coiled material frame.

[0012] Preferably, the wiping material roll is a water-absorbing cotton or a sponge roll.

[0013] Compared with the prior art, the present utility model has the following advantages and technical effects:

[0014] The present utility model can clamp one end of a plurality of single copper flat wires by using a coiling assembly and wind them around the coiled material column to form a coiled wire roll, and the sliding cover can apply glue to a plurality of juxtaposed copper flat wires by using the glue in the feeding assembly to fix the plurality of copper flat wires with the glue, and it is convenient to perform wire cutting on the coiled wire combination of the copper flat wires later, and it is also convenient to store the copper flat wires to prevent them from knotting or winding around each other, resulting in difficult use. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The drawings constituting a part of this application are used to provide a further understanding of this application. The schematic embodiments of this application and their descriptions are used to explain this application and do not constitute an improper limitation to this application. In the drawings:

[0016] Figure 1 is a side view three-dimensional structure schematic diagram of the present utility model;

[0017] Figure 2 is Figure 1Schematic enlarged structure diagram at location A in the [specific object];

[0018] Figure 3 Schematic perspective side view of the blank holder;

[0019] Figure 4 Schematic perspective side view of the pressure block;

[0020] Figure 5 Schematic perspective side view of the sliding cover;

[0021] Figure 6 Schematic perspective side view of the coil stock column;

[0022] Among them, 1. mounting plate; 2. bracket; 3. sliding rod; 4. coil stock column; 5. spiral groove; 6. sliding cover; 7. driving motor; 8. copper flat wire; 9. coil stock frame; 10. blank holder cover; 11. blank holding groove; 12. pressure block; 13. screw; 14. pressing hole; 15. slider; 16. material box; 17. pipeline; 18. coating roll; 19. fixing plate. Detailed implementation manners

[0023] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The following will describe this application in detail with reference to the drawings and in combination with the embodiments.

[0024] It should be noted that all components in the technical solution of this application require additional facilities for water supply, oil supply, power supply, and gas supply for driving or / and controlling. If not further elaborated, it is defaulted to be used and equipped according to the prior art without special explanation.

[0025] It should be noted that in order to make the above objects, features, and advantages of the present utility model more obvious and understandable, the present utility model will be further described in detail below with reference to the drawings and specific implementation manners.

[0026] As shown in Figure 1-2 A wire-wound copper wire processing mechanism shown in [figure number] and [figure number] includes a mounting plate 1. Two brackets 2 are fixedly connected to the top surface of the mounting plate 1. A sliding rod 3 and a coil stock column 4 are respectively arranged between the two brackets 2. Both ends of the coil stock column 4 are rotatably connected to the two brackets 2. A spiral groove 5 is formed on the outer side surface of the coil stock column 4. A coil stock assembly is fixedly connected in the spiral groove 5. A sliding cover 6 is slidably connected to the outside of the coil stock assembly. The top surface of the sliding cover 6 is fixedly connected and communicated with a material supply assembly for supplying glue to the sliding cover 6. The material supply assembly is slidably connected to the sliding rod 3. One end of the coil stock column 4 is drivingly connected to a driving motor 7, and the driving motor 7 is fixedly connected to the bracket 2; A plurality of copper flat wires 8 are clamped in the coil stock assembly.

[0027] Further optimization solution: The coiled material component includes a coiled material frame 9, which is in a spiral structure. The spiral coiled material frame 9 can increase the length of the coiled copper flat wire 8, reduce the segmentation of the copper flat wire 8, and improve the utilization rate of the copper flat wire 8. One end of the coiled material frame 9 is fixedly installed with a pressure holder, which is detachably connected to one end of the copper flat wire 8. The pressure holder is used to fix both ends of the copper flat wire 8, facilitating the glue application by the sliding cover 6. The adjacent copper flat wires 8 are arranged in contact with each other, and one side of the copper flat wire 8 is in contact with the bottom surface of the spiral groove 5. The spiral groove 5 is used to clamp and limit a plurality of copper flat wires 8, facilitating the smoothing of the wires.

[0028] Further optimization solution: As Figure 3 shown, the pressure holder includes a pressure cover 10. The bottom surface of the pressure cover 10 is fixedly connected to the outer side surface of the coiled material column 4. A pressure groove 11 is opened on the bottom surface of the pressure cover 10. One end of the coiled material frame 9 and one end of the copper flat wire 8 are respectively arranged in the pressure groove 11, facilitating the pressing of the copper flat wire 8 by the pressing block 12. One side surface of the copper flat wire 8 is detachably connected with a pressing block 12. The pressing block 12 passes through a sliding hole opened on the top surface of the pressure cover 10, and the pressing block 12 is slidably connected with the sliding hole. Threaded holes are opened on the opposite side surfaces of the pressure cover 10. Since the threaded holes communicate with the sliding hole, the threaded holes are divided into two by the sliding hole. One end of a screw rod 13 passes through one threaded hole of the pressure cover 10, and a chamfer is opened at one end of the screw rod 13 to achieve clearance fit with the other threaded hole. A tapered pressing hole 14 is opened on the side surface of the pressing block 12, facilitating the insertion of one end of the screw rod 13 into the pressing hole 14. One end of the screw rod 13 passes through the pressing hole 14 and is detachably connected with the pressing block 12.

[0029] Further optimization solution: As Figure 2 , 4 , 5 shown, the feeding component includes a slider 15. The slider 15 is sleeved on the outer side of the sliding rod 3 and is slidably connected with the sliding rod 3. The bottom surface of the slider 15 is fixedly connected with a material box 16. Glue is filled in the material box 16. The material box 16 is fixedly connected and communicated with the sliding cover 6 through a plurality of pipelines 17. The glue flows into the feeding groove below the sliding cover 6 through the pipelines 17. Both ends of the bottom surface of the sliding cover 6 are slidably connected with the two outer side surfaces of the coiled material frame 9. A feeding groove is opened on the bottom surface of the sliding cover 6. A coating roll 18 is detachably connected in the feeding groove. The coating roll 18 abuts against the side surface of the copper flat wire 8. The coating roll 18 is communicated with the pipeline 17. The coating roll 18 is a water-absorbing cotton or sponge roll. The coating roll 18 can fully absorb the glue and apply the glue to the side surface of the copper flat wire 8, and can also avoid the overflow of the glue.

[0030] Furthermore, an air pump or a high-pressure air source is fixedly installed at the top end of the material box 16. The air pump is fixedly connected and communicated with the material box 16. By introducing high-pressure gas into the material box 16, when using some viscous glue, the glue can flow smoothly for gluing and be applied to the copper flat wire 8. Among them, the air pump or the high-pressure air source is prior art and will not be elaborated here.

[0031] For a further optimized solution, fixed disks 19 are fixedly connected to both ends of the sliding rod 3, and the fixed disks 19 are fixedly connected to the support 2.

[0032] For a further optimized solution, the height of the top surface of the flat copper wire 8 is lower than that of the coil material frame 9, which is convenient for the glue applied to overflow, resulting in the jam of the sliding cover 6 and the coil material frame 9.

[0033] The working process of this embodiment is as follows:

[0034] Take out several flat copper wires 8, arrange one end of them side by side and press them tightly with the pressing block 12. The pressing block 12 is inserted into the sliding hole. At this time, the pressing hole 14 is communicated with the screw hole. Insert one end of the screw rod 13 through the screw hole and the pressing hole 14, and rotate the screw rod 13. The screw rod 13 will gradually fit against the side wall of the pressing hole 14 and press the flat copper wire 8 tightly to prevent the flat copper wire 8 from getting out of line during the working process.

[0035] After the flat copper wire 8 is pressed tightly, start the driving motor 7 to drive the coil material column 4 to rotate. The coil material column 4 drives the coil material frame 9 to rotate. The coil material frame 9 is slidably connected to the sliding cover 6, and then drives the sliding cover 6 to slide along the sliding rod 3. Thus, the coating roll 18 detachably connected to the bottom surface of the sliding cover 6 will gradually smooth out and apply glue to several flat copper wires 8 until the other end of the coil material frame 9. Keep it for a certain period of time. After the glue solidifies and hardens, peel off the flat copper wires 8 bonded together, and reverse the driving motor 7 to return the sliding cover 6 to one end of the presser for the production of the next row of wires.

[0036] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any changes or substitutions that can be easily thought of by those skilled in the art within the technical scope disclosed in the present application should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A wire inlay copper wire processing mechanism, characterized in that, It includes a mounting plate (1), on the top surface of the mounting plate (1), two brackets (2) are fixedly connected. Between the two brackets (2), a slide bar (3) and a coiling column (4) are respectively arranged. The two ends of the coiling column (4) are respectively rotationally connected to the two brackets (2). A spiral groove (5) is formed on the outer side surface of the coiling column (4). A coiling component is fixedly connected in the spiral groove (5). A sliding cover (6) is slidably connected to the outside of the coiling component. A feeding component is fixedly connected and communicated with the top surface of the sliding cover (6). The feeding component is slidably connected to the slide bar (3). One end of the coiling column (4) is drivingly connected to a driving motor (7), and the driving motor (7) is fixedly connected to the bracket (2); A number of copper flat wires (8) are clamped in the coiling component.

2. The wire embedding copper wire processing mechanism according to claim 1, characterized in that: The coiling component includes a coiling frame (9). The coiling frame (9) is of a spiral structure. A pressure applicator is fixedly installed at one end of the coiling frame (9). One end of the copper flat wire (8) is detachably connected to the pressure applicator. Adjacent copper flat wires (8) are arranged in mutual contact. One side surface of the copper flat wire (8) is in contact with the bottom surface of the spiral groove (5).

3. The wire embedding copper wire processing mechanism according to claim 2, characterized in that: The pressure applicator includes a pressure cover (10). The bottom surface of the pressure cover (10) is fixedly connected to the outer side surface of the coiling column (4). A pressure groove (11) is formed on the bottom surface of the pressure cover (10). One end of the coiling frame (9) and one end of the copper flat wire (8) are respectively arranged in the pressure groove (11); One side surface of the copper flat wire (8) is detachably connected to a pressure block (12). The pressure block (12) penetrates through the pressure cover (10) and is slidably connected to the pressure cover (10). The opposite side surfaces of the pressure cover (10) respectively penetrate through and are screwed with screw rods (13). A chamfer is formed at one end of the screw rod (13); A tapered pressure hole (14) is formed on the side surface of the pressure block (12). One end of the screw rod (13) penetrates through the pressure hole (14) and is detachably connected to the pressure block (12).

4. The wire embedding copper wire processing mechanism according to claim 2, wherein: The feeding component includes a slider (15). The slider (15) is sleeved outside the slide bar (3) and is slidably connected to the slide bar (3). A material box (16) is fixedly connected to the bottom surface of the slider (15). The material box (16) is fixedly connected and communicated with the sliding cover (6) through a number of pipes (17); The two ends of the bottom surface of the sliding cover (6) are respectively slidably connected to the two outer side surfaces of the coiling frame (9). A feeding groove is formed on the bottom surface of the sliding cover (6). A wiping roll (18) is detachably connected in the feeding groove. The wiping roll (18) abuts against the side surface of the copper flat wire (8). The wiping roll (18) is communicated with the pipe (17).

5. The wire embedding copper wire processing mechanism according to claim 1, characterized in that: Fixed disks (19) are respectively fixedly connected to the two ends of the slide bar (3). The fixed disks (19) are fixedly connected to the brackets (2).

6. The wire embedding copper wire processing mechanism according to claim 2, characterized in that: The height of the top surface of the copper flat wire (8) is lower than that of the coiling frame (9).

7. The wire embedding copper wire processing mechanism according to claim 4, characterized in that: The wiping roll (18) is a water-absorbing cotton or a sponge roll.