Splicing color line joint processing die

Through the design of power components and pressing components, the problem of inconvenient alignment and adhesion of colored wire ends in existing splicing colored wire molds is solved, and the effect of rapid alignment and anti-adhesion is achieved, which improves processing efficiency and convenience.

CN120287591APending Publication Date: 2025-07-11GUANGDONG KAITAI ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202510682402.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing machining mold cannot quickly align the ends of the color line at the connection of the existing splicing color line, which leads to inconvenient operation and easy adhesion, affecting processing efficiency and convenience.

Method used

Power components and pressing components are adopted to achieve rapid alignment and fixation of the ends of the color line through telescopic rods, sliders, sliders and limit structures, and combined with the welding treatment of the extruded column and the melting plate to prevent adhesion.

Benefits of technology

It realizes rapid alignment and freeing of the ends of the color wire, improves processing efficiency, prevents adhesion problems after welding, and improves work convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a splicing color line joint processing mold, relates to the technical field of equipment for splicing color lines, and aims to solve the problems that an existing processing mold cannot conveniently and quickly align the ends of two color lines needing to be spliced, cannot reduce the step of continuous hand fixing and cannot reduce adhesion between the color lines and a welding structure. According to the technical scheme, the color line splicing mold is characterized by comprising a mold body, a power assembly and a pressing assembly, by using the power assembly, the pressing assembly and a fixing assembly, the ends, needing to be spliced, of color lines on the two sides can be rapidly clamped, and the ends, needing to be spliced, of the color lines on the two ends can be rapidly aligned; according to the color line welding device, the time for continuously holding and fixing by hands can be shortened, the two hands can be quickly liberated in the operation process, the working convenience can be improved, the machining efficiency can be better improved, meanwhile, after welding is completed, spliced color lines can be conveniently and quickly taken down, and use is convenient.
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Description

Technical Field

[0001] The present invention belongs to the technical field of equipment for splicing colored threads, specifically a processing mold, and relates to a processing mold for the connection of spliced colored threads. Background Art

[0002] ‌Spliced colored threads‌ refer to threads formed by splicing two or more colors of threads together. Spliced colored threads can increase the richness of colors in terms of visual perception. This design has a unique three-dimensional sense and aesthetic feeling visually. Spliced colored threads are widely used in wall decoration, clothing design, and product design. During the splicing process of spliced colored threads, it is necessary to connect and fix each thread, and a processing mold for the connection of spliced colored threads is required. The processing mold for the connection of spliced colored threads can perform melting and splicing processing on each thread.

[0003] The existing processing mold for the connection of spliced colored threads can only perform extrusion connection on the connection of colored threads during use, and cannot limit and support the ends of the colored threads on both sides that need to be spliced, and cannot quickly align the ends of the colored threads on both sides that need to be spliced. Before the splicing is completed, the staff needs to continuously hold the two ends of the threads by hand. Only after removing the two spliced threads can the next group of threads be picked up for splicing. During the operation process, it is impossible to better free the hands, improve the work convenience, and improve the processing efficiency better. At the same time, after the fusion is completed, there is easily a problem of sticky adhesion between the connection and the fusion processing structure, which is not convenient to quickly remove the spliced colored threads.

[0004] In summary, the present invention provides a processing mold for the connection of spliced colored threads to solve the above problems. Summary of the Invention

[0005] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a processing mold for the connection of spliced colored threads, and its advantages are that it can quickly align the ends of the colored threads on both sides that need to be spliced. During the splicing process, it can reduce the step of the staff continuously holding the two ends of the threads by hand. During the operation process, it can quickly free the hands, improve the work convenience, and improve the processing efficiency better. At the same time, after the fusion is completed, it can quickly remove the spliced colored threads to prevent adhesion between the colored threads and the fusion structure.

[0006] To achieve the above purpose, the present invention provides the following technical solutions: A processing die for the joint of spliced color threads, comprising a die body, a power component and a pressing component. A die groove is formed in the central part of the die body. The power component and the pressing component are both installed on the die body. The power component includes a telescopic rod installed directly above the die groove. A bracket is fixedly sleeved on the telescopic end of the telescopic rod. Two slide rails are symmetrically installed at both ends of the bracket. A slider is penetrated inside each slide rail. The pressing component includes two limiting structures symmetrically installed on both sides of the die body. The limiting structure includes two symmetrically installed pressing blocks. A clamping groove is formed between the two pressing blocks. The lower pressing block is fixedly connected to the die body. A rotating rod is fixedly installed on the side wall of the upper pressing block. A first connecting rod is fixedly installed on the side wall of the rotating rod. A second connecting rod sleeved outside the slider is sleeved on the first connecting rod.

[0007] Preferably, a fixing component is installed on the pressing block, and the fixing component is used to fix the upper and lower pressing blocks on the same side.

[0008] Preferably, the fixing component includes two fixing structures symmetrically installed on both sides of the die body. The fixing structure includes a sleeve fixedly connected to the lower pressing block and a clamping plate fixedly connected to the bottom surface of the upper pressing block. A fixing hole communicating with the inside of the sleeve is formed in the lower pressing block. A spring and a pushing block penetrating through the fixing hole are penetrated inside the sleeve. The pushing block is fixedly connected to the spring and is movably connected to the clamping plate.

[0009] Preferably, a counterweight ball is fixedly installed on the top of each upper pressing block.

[0010] Preferably, an extrusion column located directly above the die groove is fixedly installed below the telescopic rod, and a melting plate located directly above the die groove is fixedly installed below the extrusion column.

[0011] Preferably, a heat dissipation fan located on one side of the die body is installed between the two rotating rods.

[0012] Preferably, a control box is installed above the extrusion column, and the fixed end of the telescopic rod is fixedly installed inside the control box.

[0013] Preferably, a bottom plate located below the die body is fixedly installed below the control box. One end of the rotating rod away from the pressing block is hinged to the top surface of the bottom plate, and the heat dissipation fan is fixedly installed above the bottom plate.

[0014] Preferably, clamping plates located above the bottom plate are symmetrically installed on both sides of the die body, and bolts threadedly connected to the bottom plate are installed on the clamping plates.

[0015] In summary, the beneficial technical effects of the present invention are as follows: 1. Through the settings of the power component and the pressing component, it is possible to achieve the effect of quickly aligning the ends of the color threads at both ends that need to be spliced, preventing the connection of the color threads on both sides from shifting and resulting in insufficient fitting during splicing. Before splicing is completed, it is possible to reduce the step of the staff continuously holding the lines at both ends by hand, reducing the burden on the staff, improving the convenience of work, and being able to free the hands to pick up the next set of color threads to be spliced before the previous set of color threads is spliced, and can better improve the processing efficiency.

[0016] Through the settings of the pressing component and the fixing component, it is possible to achieve the effect of preventing sticky adhesion between the completed connection and the welding processing structure, and it is convenient to quickly remove the spliced color threads.

[0017] The following further describes in detail the specific implementation manners of the present invention in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The following drawings in the description are only some embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. In the drawings: Figure 1 is the left view structural schematic diagram of the present invention; Figure 2 is the front view structural schematic diagram of the power component and the pressing component of the present invention; Figure 3 is the sectional structural schematic diagram of the fixing component of the present invention; Figure 4 is the bottom view structural schematic diagram of the present invention; Figure 5 is the sectional structural schematic diagram of the present invention; In the drawings, the list of components represented by each reference numeral is as follows: 1. Mold body; 2. Power component; 201. Telescopic rod; 202. Bracket; 203. Slide rail; 204. Slide block; 3. Pressing component; 301. Pressing block; 302. Rotating rod; 303. First connecting rod; 304. Second connecting rod; 4. Mold groove; 5. Card slot; 6. Fixing component; 601. Sleeve; 602. Card plate; 603. Spring; 604. Pushing block; 7. Fixing hole; 8. Counterweight ball; 9. Extrusion column; 10. Melting plate; 11. Cooling fan; 12. Control box; 13. Bottom plate; 14. Clamping plate; 15. Bolt. DETAILED DESCRIPTION OF THE INVENTION

[0019] The following further describes the present invention in detail in conjunction with the accompanying drawings.

[0020] Refer to Figures 1-5, a processing mold for the joint of spliced color threads disclosed by the present invention, includes a mold body 1, a power component 2 and a pressing component 3. A mold groove 4 is provided at the central part of the mold body 1. The mold groove 4 can conveniently place the joint of the color threads. The power component 2 and the pressing component 3 are both installed on the mold body 1. The power component 2 includes a telescopic rod 201 installed directly above the mold groove 4. The telescopic rod 201 can drive the bracket 202 to lift and lower. The telescopic end of the telescopic rod 201 is fixedly sleeved with the bracket 202. The bracket 202 can support the slide rail 203. Two slide rails 203 are symmetrically installed at both ends of the bracket 202. The slide rail 203 can limit the slider 204. Each slide rail 203 internally penetrates through the slider 204. The slider 204 can support the top end of the connecting rod two 304. The pressing component 3 includes two limiting structures symmetrically installed on both sides of the mold body 1. The limiting structure includes two symmetrically installed pressing blocks 301. A clamping groove 5 can be formed on the pressing block 301 to clamp and limit the color thread. A clamping groove 5 is formed between the two pressing blocks 301. The clamping groove 5 can conveniently penetrate through the color thread. The lower pressing block 301 is fixedly connected to the mold body 1. A rotating rod 302 is fixedly installed on the side wall of the upper pressing block 301. The rotating rod 302 can support the pressing block 301. A connecting rod one 303 is fixedly installed on the side wall of the rotating rod 302. The connecting rod one 303 can conveniently support the bottom of the connecting rod two 304. A connecting rod two 304 sleeved outside the slider 204 is sleeved on the connecting rod one 303. The connecting rod two 304 can connect the connecting rod one 303 and the slider 204. A pressing column 9 located directly above the mold groove 4 is fixedly installed below the telescopic rod 201. The pressing column 9 can support the melting plate 10. A melting plate 10 located directly above the mold groove 4 is fixedly installed below the pressing column 9. After being heated, the melting plate 10 can melt the color thread.

[0021] The distance that the slider 204 slides inside the slide rail 203 is much greater than the height that the bottom end of the second connecting rod 304 rises and falls. Two color lines of different colors are respectively placed in the card slots 5 on the two pressing blocks 301 below both sides of the mold body 1. The connection parts of the color lines on both sides are located inside the mold groove 4, and the connection part of one end of the color line is located below the connection part of the other color line. The telescopic rod 201 is activated to drive the bracket 202 to descend. The descent of the bracket 202 can drive the slide rails 203 on both sides to descend. When the slide rails 203 descend, the slider 204 loses support. The slide rail 204 descends along with the slide rail 203. After the slider 203 descends, the second connecting rod 304 loses support. The second connecting rod 304 can descend along with the slider 204. The first connecting rod 303 can descend along with the second connecting rod 304. As the first connecting rod 303 descends, the rotating rod 302 can rotate downward around the central axis of the connection part with the bottom plate 13. The pressing block 301 on the rotating rod 302 can rotate downward and contact the pressing block 301 below. The card slot 5 on the upper pressing block 301 can cover the upper part of the color line. The color line can pass through the card slot 5 inside, which can quickly limit the position of the color line, can limit the connection parts of the two ends of the color line inside the mold groove 4, and can prevent the connection parts of the color lines on both sides from shifting and resulting in insufficient connection. At this time, both hands can be liberated, or two unconnected color lines can be picked up, which is convenient for subsequent splicing.

[0022] The continuous descent of the telescopic rod 201 can drive the extrusion column 9 to descend. The descent of the extrusion column 9 can drive the melting plate 10 to descend. After the melting plate 10 is heated, it can press the splicing part of the two color lines inside the mold groove 4, can melt the color line, and can quickly splice the two color lines. During the continuous descent of the telescopic rod 201, the telescopic rod 201 can drive the bracket 202 to continuously descend. The bracket 202 can drive the slide rails 203 to continuously descend. Since the upper pressing block 301 can support the rotating rod 302, and both ends of the rotating rod 302 are limited by the pressing block 301 and the bottom plate 13, the first connecting rod 303 can be fixed by the rotating rod 302. The first connecting rod 303 can limit the bottom end of the second connecting rod 304. The top end of the second connecting rod 304 is limited by the slider 204. Therefore, the second connecting rod 304 can push the slider 204 upward. The slider 204 remains stationary inside the slide rail 203 while the slide rail 203 continuously descends. After splicing is completed, when the telescopic rod 201 drives the extrusion column 9 and the melting plate 10 to rise, it can ensure that the melting plate 10 rises a certain distance while the spliced color line is continuously fixed inside the card slot 5.

[0023] Refer to Figures 1-3 and Figure 5, a fixing component 6 is installed on the briquette 301 of this embodiment. The fixing component 6 is used to fix the upper and lower briquettes 301 on the same side. The fixing component 6 includes two fixing structures symmetrically installed on both sides of the mold body 1. The fixing structure includes a sleeve 601 fixedly connected to the lower briquette 301 and a clamping plate 602 fixedly connected to the bottom surface of the upper briquette 301. The sleeve 601 can limit the spring 603 and the push block 604. The clamping plate 602 can be clamped with the push block 604. A fixing hole 7 communicating with the inside of the sleeve 601 is opened on the lower briquette 301. The fixing hole 7 can facilitate the connection between the clamping plate 602 and the push block 604. A spring 603 is inserted into the sleeve 601 and a push block 604 is inserted into the fixing hole 7. The spring 603 can drive the push block 604 to reset. The push block 604 can fix the clamping plate 602. The push block 604 is fixedly connected to the spring 603 and movably connected to the clamping plate 602.

[0024] When the upper briquette 301 descends, it can drive the clamping plate 602 to descend. The clamping plate 602 can be inserted into the inside of the fixing hole 7. The clamping plate 602 presses the push block 604. After being pressed, the push block 604 moves towards the inside of the sleeve 601. When the push block 604 moves, it presses the spring 603. One end of the spring 603 away from the push block 604 is fixed by the sleeve 601. The spring 603 contracts and gives the push block 604 a thrust. When the triangular structure of the clamping plate 602 is stuck by the descending push block 604 inside the fixing hole 7, the spring 603 pushes the push block 604 to move. The push block 604 presses above the triangular structure of the clamping plate 602. The push block 604 can fix the clamping plate 602. The clamping plate 602 can fix the upper briquette 301, can drive the fixation between the upper and lower briquettes 301, and can fix the color thread inside the card slot 5.

[0025] After the splicing is completed, when the telescopic rod 201 drives the bracket 202 and the extrusion column 9 to move upward, the extrusion column 9 drives the melting plate 10 to move upward. According to the above steps, the bracket 202 drives the slide rail 203 to move upward. Before the bottom surface of the slider 204 contacts the inner bottom surface of the slide rail 203, the slider 204 remains stationary. At this time, the just-spliced color line is fixed by the card slot 5, and the connection of the placed spliced color line adheres to the melting plate 10 and moves upward with the melting plate 10. After the connection between the melting plate 10 and the spliced color line is separated, at this time, the bottom surface of the slider 204 contacts the inner bottom surface of the slide rail 203, and the slide rail 203 continues to move upward and drives the slider 204 to move upward. The slider 204 drives the second connecting rod 304 to move upward, the second connecting rod 304 drives the first connecting rod 303 to move upward, and the first connecting rod 303 drives the rotating rod 302 to rotate upward. The rotating rod 302 can pull the upper pressing block 301 upward. The upper pressing block 301 can pull the clamping plate 602 upward. The clamping plate 602 can squeeze the pushing block 604. The pushing block 604 can move into the sleeve 601 and squeeze the spring 603, and can pull the clamping plate 602 out of the fixing hole 7. The separation of the upper and lower pressing blocks 301 can drive the card slot 5 to open, and the spliced color line can be taken out.

[0026] Referring to Figures 1-2 and Figures 4-5 , a counterweight ball 8 is fixedly installed on the top of each upper pressing block 301 in this embodiment. The counterweight ball 8 can increase the weight of the upper pressing block 301. When the upper pressing block 301 descends, it can accelerate the descent of the clamping plate 602, and can ensure that the clamping plate 602 smoothly hits into the fixing hole 7 and is stuck below the pushing block 604.

[0027] Referring to Figure 1 and Figure 5 , a heat dissipation fan 11 is installed between the two rotating rods 302 on one side of the mold body 1 in this embodiment. The heat dissipation fan 11 can perform accelerated heat dissipation treatment on the splicing part of the spliced color line, and can quickly shape the splicing part of the spliced color line.

[0028] Referring to Figure 1 and Figures 4-5 , a control box 12 is installed above the extrusion column 9 in this embodiment. The control box 12 can control each power structure in the processing mold, and the fixed end of the telescopic rod 201 is fixedly installed in the control box 12.

[0029] Referring to Figure 1 and Figures 4-5 , a bottom plate 13 located below the mold body 1 is fixedly installed below the control box 12 in this embodiment. The bottom plate 13 can support the mold body 1 and the rotating rod 302. One end of the rotating rod 302 away from the pressing block 301 is hinged to the top surface of the bottom plate 13, and the heat dissipation fan 11 is fixedly installed above the bottom plate 13.

[0030] Referring toFigure 1 On both sides of the mold body 1 of this embodiment, clamping plates 14 located above the bottom plate 13 are symmetrically installed. The clamping plates 14 can limit the mold body 1, and bolts 15 threadedly connected to the bottom plate 13 are installed on the clamping plates 14. The bolts 15 can fix the clamping plates 14 on the bottom plate 13.

[0031] The embodiments of this specific implementation manner are all preferred embodiments of the present invention, and do not limit the protection scope of the present invention accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.

Claims

1. A processing mold for the joint of spliced colored threads, comprising a mold body (1), a power component (2) and a pressing component (3), characterized in that: A mold groove (4) is provided at the center of the mold body (1). The power assembly (2) and the pressing assembly (3) are both mounted on the mold body (1). The power assembly (2) comprises a telescopic rod (201) mounted directly above the mold groove (4). A bracket (202) is fixedly sleeved on the telescopic end of the telescopic rod (201). Two slide rails (203) are symmetrically mounted at both ends of the bracket (202). A slider (204) is inserted into each of the slide rails (203). The pressing assembly (3) comprises symmetrical Two limiting structures are installed on both sides of the mold body (1), and the limiting structures include two symmetrically installed pressure blocks (301). A slot (5) is provided between the two pressure blocks (301). The lower pressure block (301) is fixedly connected to the mold body (1). A rotating rod (302) is fixedly installed on the side wall of the upper pressure block (301). A connecting rod 1 (303) is fixedly installed on the side wall of the rotating rod (302). A connecting rod 2 (304) which is sleeved on the outside of the sliding block (204) is sleeved on the connecting rod 1 (303).

2. The processing die for the joint of spliced color threads according to claim 1, characterized in that, The pressing block (301) is provided with a fixing assembly (6), and the fixing assembly (6) is used to fix the upper and lower pressing blocks (301) on the same side.

3. The processing die for the joint of spliced color threads according to claim 2, wherein, The fixing assembly (6) comprises two fixing structures symmetrically mounted on both sides of the mold body (1), the fixing structures comprising a sleeve (601) fixedly connected to the lower pressing block (301) and a clamping plate (602) fixedly connected to the bottom surface of the upper pressing block (301), the lower pressing block (301) is provided with a fixing hole (7) connected to the inside of the sleeve (601), a spring (603) and a push block (604) inserted into the fixing hole (7) are inserted into the sleeve (601), and the push block (604) is fixedly connected to the spring (603) and movably connected to the clamping plate (602).

4. A processing mold for the joint of spliced color threads according to claim 3, characterized in that, A counterweight ball (8) is fixedly mounted on the top of each of the upper pressing blocks (301).

5. A processing die for the joint of spliced color threads according to claim 4, characterized in that, An extrusion column (9) located just above the mold groove (4) is fixedly mounted below the telescopic rod (201), and a melting plate (10) located just above the mold groove (4) is fixedly mounted below the extrusion column (9).

6. The processing die for the joint of spliced color threads according to claim 5, wherein, A heat dissipation fan (11) located on one side of the mold body (1) is installed between the two rotating rods (302).

7. The processing die for the joint of spliced color threads according to claim 6, characterized in that, A control box (12) is installed above the extrusion column (9), and the fixed end of the telescopic rod (201) is fixedly installed in the control box (12).

8. A processing mold for the joint of spliced color threads according to claim 7, characterized in that, A bottom plate (13) located below the mold body (1) is fixedly mounted below the control box (12); one end of the rotating rod (302) away from the pressing block (301) is hinged to the top surface of the bottom plate (13); and the heat dissipation fan (11) is fixedly mounted above the bottom plate (13).

9. A processing mold for the joint of spliced color threads according to claim 8, characterized in that, Clamping plates (14) are symmetrically installed on both sides of the mold body (1) above the bottom plate (13), and bolts (15) threadedly connected to the bottom plate (13) are installed on the clamping plates (14).