Waste silk treatment equipment
Through heating fuse and high-pressure cutting, combined with clamping mechanism and fuse tool device, the problem of time-consuming and labor-intensive stripping of waste wire in online cable production is solved, and automatic waste wire peeling is achieved, reducing labor costs and improving efficiency.
Patent Information
- Application Number
- CN202422328242.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-24
AI Technical Summary
During the production process of online cables, the stripping of waste wires requires manual operation, which is time-consuming and labor-intensive, inefficient and costly.
The method of heating and fuse and high-voltage cutting is adopted. The clamping mechanism and fuse tool device are used to realize automatic waste wire peeling of the disc tool, and the coordination of the electric push rod and the slider is used to ensure the stability of clamping and cutting.
It realizes automatic peeling of waste wire, saves time and effort, reduces labor costs, improves efficiency, and can be applied to different specifications of discs, expanding the scope of application.
Smart Images

Figure CN223123682U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable production, and particularly relates to a waste wire processing device. Background Art
[0002] During the production process of cables, there will be some surplus; after stranding, the remaining waste wires are wound on the spools, and the spools need to be recycled, so the waste wires on the spools need to be stripped. At present, the waste wires are generally stripped manually, which is time-consuming and laborious, not only consuming labor costs, but also having low efficiency. Therefore, the above problems need to be solved urgently. Summary of the Invention
[0003] The technical problem to be solved by the utility model is to provide a waste wire processing device, which adopts the method of heating and fusing plus high-pressure cutting to realize automatic waste wire stripping of the spool, saving time and labor, reducing labor costs and improving efficiency.
[0004] To solve the above technical problem, the utility model adopts the following technical scheme: A waste wire processing device of the utility model, its innovation lies in: including a gantry frame, a housing, a clamping mechanism and a fusing cutter device; the two gantry frames are arranged horizontally and spaced apart from each other on the left and right, and their open slots are all arranged horizontally, and their open ends are respectively fixedly installed on the ground; the housing is a horizontally arranged hollow cuboid structure, and its lower surface is open, and the left and right ends of its lower surface are respectively fixedly connected to the corresponding positions on the upper surface of the corresponding gantry frame, and then the whole is formed into a convex-shaped structure with an internally connected shape; the spool is horizontally placed on the ground directly below the housing, and clamping mechanisms are symmetrically arranged on the left and right sides of the spool inside the corresponding gantry frames. After vertical and horizontal movements, the clamping mechanisms are respectively abutted and fixed against the left and right end faces of the spool, so as to position the spool; a fusing cutter device is also arranged directly above the spool inside the housing, and the fusing cutter device moves vertically and horizontally directly above the spool to soften and cut the waste wires on the spool.
[0005] Preferably, each of the clamping mechanisms includes a first electric push rod, a first lifting plate, a first slide rail, and a first slider; a first lifting plate matching the gantry is horizontally and longitudinally provided at the middle position inside each gantry, and a first electric push rod is vertically provided on the upper surface of each gantry relative to the center position of the first lifting plate. The pushing end of each first electric push rod extends vertically downward into the corresponding gantry and is screwed and fixed to the corresponding position on the upper surface of the first lifting plate, respectively driving the first lifting plate to move vertically up and down inside the corresponding gantry; two first slide rails are vertically provided at intervals on the front and rear inner sides of each gantry relative to the corresponding first lifting plate, and first sliders matching the first slide rails are respectively provided at the front and rear end faces of each first lifting plate relative to the corresponding first slide rails. Through the cooperation of the first slide rail and the first slider, the stability of the vertical up and down movement of the first lifting plate is ensured.
[0006] Preferably, each also includes a second electric push rod, a fixed rod, and a clamping plate; second electric push rods are horizontally and coaxially symmetrically provided on the left and right sides of the coil reel. Each second electric push rod is arranged inside the corresponding gantry, and its cylinder body is fixedly connected to the lower surface of the corresponding first lifting plate through a fixed rod; the pushing end of each second electric push rod is horizontally and transversely arranged towards the coil reel, and is respectively screwed and fixed to the corresponding vertically and longitudinally arranged clamping plate. Each clamping plate is a circular structure with an outer diameter smaller than the outer diameters of both end faces of the coil reel. Under the drive of the first electric push rod, the second electric push rod adjusts its vertical position with the first lifting plate. After ensuring that the clamping plate is coaxially arranged with the coil reel, under the drive of the second electric push rod, the clamping plate performs a horizontal and transverse movement and respectively abuts against the left and right end faces of the coil reel, thereby clamping and fixing the coil reel.
[0007] Preferably, positioning holes are vertically and embeddedly opened at intervals on the left and right end faces of the coil reel, and positioning blocks are vertically and fixedly provided at intervals on one side of each clamping plate close to the coil reel. Each positioning block matches each positioning hole, and its setting position corresponds to the opening position of each positioning hole. Through the cooperation of the positioning block and the corresponding positioning hole, the stability after the clamping plate abuts against and fixes the end face of the coil reel is ensured.
[0008] Preferably, it further includes a third electric push rod, a second lifting plate, a second slide rail, and a second slider; the left and right inner sides of the housing are respectively flush with the corresponding sides of the corresponding portal frame up and down, and a second lifting plate matching the inside of the housing is horizontally and longitudinally provided at a position directly above the coil reel inside the housing. Four third electric push rods are vertically and symmetrically provided at the four right angles of the housing corresponding to the second lifting plate. The actions of the four third electric push rods are synchronized, and their pushing ends vertically extend downward into the interior of the housing and are respectively screwed and fixed to the corresponding positions on the upper surface of the second lifting plate, thereby driving the second lifting plate to move vertically up and down directly above the coil reel inside the housing. Two second slide rails are vertically and spaced left and right at positions corresponding to the second lifting plate on the left and right inner sides of the housing, and second sliders matching the second slide rails are respectively provided at positions corresponding to the second slide rails on the left and right end faces of the second lifting plate. Therefore, through the cooperation of the second slide rail and the second slider, the stability of the vertical up and down movement of the second lifting plate is ensured.
[0009] Preferably, limit plates are respectively horizontally and fixedly provided at the upper and lower ends of each second slide rail, and each limit plate is fixedly connected to the corresponding position on the left and right inner sides of the housing, thereby limiting the vertical up and down movement of the second lifting plate through the limit plates.
[0010] Preferably, it further includes side plates, lead screws, motors, guide rails, and third sliders; side plates are vertically and symmetrically provided at intervals left and right on the lower surface of the second lifting plate, and two lead screws are horizontally and transversely provided at intervals front and back in the middle between the two side plates. The right end of each lead screw is respectively rotatably connected to the corresponding side plate, and its left end horizontally and perpendicularly extends out of the corresponding side plate and is respectively linked to the output end of the corresponding motor; the two motors are horizontally and transversely arranged at intervals front and back, and their actions are synchronized and are respectively screwed and fixed to the left side plate; guide rails are horizontally and symmetrically provided in parallel at intervals above and below each lead screw. Each guide rail is arranged within the square area surrounded by the two side plates, and its left and right ends are respectively screwed and fixed to the corresponding side plates; a third slider is sleeved on each lead screw. Each third slider is respectively screwed to the corresponding lead screw and is horizontally and transversely slidably connected to the corresponding two guide rails, and it is ensured that the lower surfaces of the two third sliders are on the same horizontal plane; the fixed end of the fusing cutter device is screwed and fixed to the lower surfaces of the two third sliders, and its heating and cutting end is arranged downward, thereby contacting the waste wire on the coil reel vertically downward with the second lifting plate, heating and softening the waste wire, and then moving vertically downward and horizontally and transversely with the third slider to cut the waste wire on the coil reel.
[0011] Preferably, the horizontal lateral movement stroke of the fusing cutter device along with the third slider needs to be greater than the length of the coil, and the distance between the lower surface of the third slider and the lower end surface of the side plate needs to ensure that there is no interference between the side plate and the second electric push rod when the heating and cutting end of the fusing cutter device performs soft cutting operation.
[0012] Advantages of the present utility model:
[0013] (1) The present utility model adopts the method of heating and fusing plus high-pressure cutting to realize automatic waste wire stripping of the coil, which saves time and effort, reduces labor costs, and improves efficiency;
[0014] (2) The present utility model only needs to replace the clamping plate, and then through the coordinated use of the first electric push rod, the second electric push rod, the third electric push rod and the moving component, it can be applicable to the waste wire stripping operation of coils of different specifications, with a wide application range and cost savings. Description of the drawings
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the drawings required to be used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0016] Figure 1 It is a schematic structural diagram of a waste wire treatment device of the present utility model.
[0017] Figure 2 It is a schematic diagram of the working state of the present utility model.
[0018] Wherein, 1 - gantry; 2 - housing; 3 - coil; 4 - first electric push rod; 5 - first lifting plate; 6 - second electric push rod; 7 - fixed rod; 8 - clamping plate; 9 - positioning block; 10 - third electric push rod; 11 - second lifting plate; 12 - second slide rail; 13 - second slider; 14 - side plate; 15 - lead screw; 16 - guide rail; 17 - motor; 18 - third slider; 19 - fusing cutter device. Detailed implementation manners
[0019] The technical solutions of the present utility model will be clearly and completely described below through specific implementation manners.
[0020] A waste wire treatment device of the present utility model includes a gantry 1, a housing 2, a clamping mechanism and a fusing cutter device 19; the specific structure is as Figure 1 、 Figure 2As shown in the figure, two gantry frames 1 are arranged horizontally and spaced apart from each other at equal intervals, and their open slots are all arranged horizontally in the transverse direction. Their open ends are respectively fixedly installed on the ground. The housing 2 is a horizontally arranged hollow cuboid structure, and its lower surface is open. The left and right ends of its lower surface are respectively fixedly connected to the corresponding positions on the upper surface of the corresponding gantry frame 1, and then the whole is formed into a convex-shaped structure with an internal connection. The coil reel 3 is horizontally placed on the ground directly below the housing 2. Clamping mechanisms are symmetrically arranged on the left and right sides of the coil reel 3 relative to the corresponding gantry frame 1. After the clamping mechanisms move vertically up and down and horizontally, they respectively abut and fix against the left and right end faces of the coil reel 3, thereby positioning the coil reel 3.
[0021] Among them, each clamping mechanism includes a first electric push rod 4, a first lifting plate 5, a first slide rail, a first slider, a second electric push rod 6, a fixed rod 7 and a clamping plate 8; as Figure 1 , Figure 2 shown, a first lifting plate 5 matching it is also horizontally and longitudinally arranged at the middle position inside each gantry frame 1. A first electric push rod 4 is vertically arranged at the center position of the first lifting plate 5 on the upper surface of each gantry frame 1. The pushing end of each first electric push rod 4 extends vertically downward into the interior of the corresponding gantry frame 1, and is respectively screwed and fixed to the corresponding position on the upper surface of the corresponding first lifting plate 5, and respectively drives the first lifting plate 5 to move vertically up and down inside the corresponding gantry frame 1. Two first slide rails are respectively arranged vertically and spaced apart from each other on the front and rear inner sides of each gantry frame 1 relative to the corresponding first lifting plate 5. First sliders matching the first slide rails are respectively arranged on the front and rear end faces of each first lifting plate 5 relative to the corresponding first slide rails. Then, through the coordinated use of the first slide rails and the first sliders, the stability of the vertical up and down movement of the first lifting plate 5 is ensured.
[0022] As Figure 1 , Figure 2 shown, second electric push rods 6 are also horizontally and coaxially symmetrically arranged on the left and right sides of the coil reel 3. Each second electric push rod 6 is arranged inside the corresponding gantry frame 1, and its cylinder body is respectively fixedly connected to the lower surface of the corresponding first lifting plate 5 through a fixed rod 7. The pushing end of each second electric push rod 6 is horizontally arranged towards the coil reel 3, and is respectively screwed and fixed to the corresponding clamping plate 8 arranged vertically and longitudinally. Each clamping plate 8 is a circular structure with an outer diameter smaller than the outer diameter of the two end faces of the coil reel 3. Under the drive of the first electric push rod 4, the second electric push rod 6 adjusts its vertical position along with the first lifting plate 5. After ensuring that the clamping plate 8 is coaxially arranged with the coil reel 3, under the drive of the second electric push rod 6, the clamping plate 8 moves horizontally, and respectively abuts and contacts the left and right end faces of the coil reel 3, thereby clamping and fixing the coil reel 3.
[0023] As Figure 1, Figure 2 As shown, positioning holes are vertically embedded and opened at upper and lower intervals on the left and right end faces of the coil holder 3 respectively. And on one side of each clamping plate 8 close to the coil holder 3, positioning blocks 9 are fixedly arranged at upper and lower intervals respectively. Each positioning block 9 matches each positioning hole, and their setting positions correspond to the opening positions of each positioning hole. Thus, through the cooperation of the positioning block 9 and the corresponding positioning hole, the stability after the clamping plate 8 is tightly abutted and fixed against the end face of the coil holder 3 is ensured.
[0024] In the present utility model, a fusing cutter device 19 is further provided inside the housing 2 directly above the coil holder 3. And the fusing cutter device 19 moves vertically up and down and horizontally left and right directly above the coil holder 3 to soften and cut the waste wire on the coil holder 3; as Figure 1 , Figure 2 As shown, the left and right inner side faces of the housing 2 are respectively flush with the corresponding side faces of the corresponding portal frames 1 up and down. And inside the housing 2 directly above the coil holder 3, a second lifting plate 11 matching the inside of the housing 2 is horizontally and longitudinally arranged. And at the four right angles of the second lifting plate 11 on the upper surface of the housing 2, four third electric push rods 10 are vertically and symmetrically arranged. The actions of the four third electric push rods 10 are synchronous, and their pushing ends all extend vertically downward into the inside of the housing 2 and are respectively screwed and fixed to the corresponding positions on the upper surface of the second lifting plate 11, thus driving the second lifting plate 11 to move vertically up and down directly above the coil holder 3 inside the housing 2; at the positions of the left and right inner side faces of the housing 2 corresponding to the second lifting plate 11, two second slide rails 12 are vertically arranged at left and right intervals respectively. And at the positions of the left and right end faces of the second lifting plate 11 corresponding to the corresponding second slide rails 12, second sliders 13 matching the second slide rails 12 are respectively arranged. Thus, through the cooperation of the second slide rails 12 and the second sliders 13, the stability of the vertical up and down movement of the second lifting plate 11 is ensured; among them, limiting plates are horizontally and fixedly arranged at the upper and lower ends of each second slide rail 12 respectively, and each limiting plate is fixedly connected to the corresponding position of the left and right inner side faces of the housing 2. Thus, the vertical up and down movement of the second lifting plate 11 is limited by the limiting plates.
[0025] As Figure 1 , Figure 2As shown in the figure, on the lower surface of the second lifting plate 11, side plates 14 are vertically and symmetrically arranged at intervals left and right. Between the two side plates 14, two lead screws 15 are horizontally arranged at intervals front and back. The right end of each lead screw 15 is rotatably connected to the corresponding side plate 14, and its left end horizontally and perpendicularly extends out of the corresponding side plate 14 and is respectively linked to the output end of the corresponding motor 17. The two motors 17 are horizontally arranged at intervals front and back, and their actions are synchronized and are respectively screwed and fixed to the left side plate 14. On the upper and lower sides of each lead screw 15, guide rails 16 are horizontally arranged in parallel and symmetrically at intervals. Each guide rail 16 is arranged within the square area enclosed by the two side plates 14, and its left and right ends are respectively screwed and fixed to the corresponding side plates 14. A third slider 18 is sleeved on each lead screw 15. Each third slider 18 is screwed to the corresponding lead screw 15 and is horizontally slidably connected to the corresponding two guide rails 16, and it is ensured that the lower surfaces of the two third sliders 18 are on the same horizontal plane. The fixed end of the fuse cutter device 19 of the present invention is screwed and fixed to the lower surfaces of the two third sliders 18, and its heating and cutting end is arranged downward, and then it vertically moves downward with the second lifting plate 11 to contact the waste wire on the coil 3, heats and softens the waste wire, and then vertically and horizontally moves with the third slider 18 to cut the waste wire on the coil 3.
[0026] Among them, the horizontal moving stroke of the fuse cutter device 19 with the third slider 18 needs to be greater than the length of the coil 3, and the distance between the lower surface of the third slider 18 and the lower end surface of the side plate 14 needs to ensure that when the heating and cutting end of the fuse cutter device 19 performs softening and cutting operations, there is no interference between the side plate 14 and the second electric push rod 6.
[0027] The fuse cutter device 19 of the present invention is an existing device. After its cutter is powered on, it has a high temperature and can heat the waste wire to make it soft. Then, by the downward movement of the cutter of the fuse cutter device 19, the softened waste wire on the coil 3 is cut. Therefore, it will not be elaborated here.
[0028] In addition, the motors 17 and electric push rods involved in the present invention are all existing general products, and they are all controlled by a controller so as to accurately control the actions of the motors 17, the first electric push rod 4, the second electric push rod 6, and the third electric push rod 10 according to different specifications of the coil 3. The start and end of each action of the motors 17, the first electric push rod 4, the second electric push rod 6, and the third electric push rod 10 are obtained through repeated tests and stored in the controller for convenient subsequent direct calling. In this way, when performing the softening and cutting operation of the waste wire of a certain specification of the coil 3, only the corresponding program instruction needs to be selected. This is the conventional control setting of the motors 17 and electric push rods, which is a technology known to those skilled in the art, so it will not be elaborated here.
[0029] Working principle of the utility model: First, horizontally place the coil holder 3 horizontally on the ground directly below the fusing tool device 19. Then, under the drive of the first electric push rod 4, the second electric push rod 6 adjusts its position in the vertical direction. After ensuring that the clamping plate 8 is coaxially arranged with the coil holder 3, under the drive of the second electric push rod 6, the clamping plate 8 moves horizontally and comes into tight contact with the left and right end faces of the coil holder 3 respectively, thereby clamping and fixing the coil holder 3. Then, under the drive of the third electric push rod 10, the fusing tool device 19 moves vertically downward to contact the waste wire on the coil holder 3 and heat and soften the waste wire. Then, the fusing tool device 19 further presses down and moves horizontally along with the third slider 18, so as to cut the waste wire on the coil holder 3, achieving the purpose of peeling the waste wire from the coil holder 3.
[0030] Beneficial effects of the utility model:
[0031] (1) The utility model adopts the method of heating and fusing plus high-pressure cutting to realize the automatic waste wire peeling of the coil holder 3, which saves time and effort, reduces the labor cost, and improves the efficiency.
[0032] (2) The utility model only needs to replace the clamping plate 8, and through the coordinated use of the first electric push rod 4, the second electric push rod 6, the third electric push rod 10 and the moving component, it can be applicable to the waste wire peeling operation of coil holders 3 of different specifications, with a wide application range and cost savings.
[0033] The above-described embodiments are only described as the preferred embodiments of the utility model, and do not limit the concept and scope of the utility model. Without departing from the design concept of the utility model, various variations and improvements made by ordinary engineering and technical personnel in the field to the technical solution of the utility model should fall within the protection scope of the utility model. The technical content claimed by the utility model has been fully recorded in the claims.
Claims
1. A waste silk treatment device, characterized in that: It includes a gantry, a housing, a clamping mechanism and a fusing tool device; the two gantries are arranged horizontally and spaced apart from each other on the left and right, and their open slots are all arranged horizontally, and their open ends are respectively fixedly installed on the ground; the housing is a horizontally arranged hollow cuboid structure, and its lower surface is open, and the left and right ends of its lower surface are respectively fixedly connected to the corresponding positions on the upper surface of the corresponding gantry, and then the whole is formed into a convex-shaped structure with an internal connection; the coil holder is placed horizontally on the ground directly below the housing, and clamping mechanisms are symmetrically arranged on the left and right sides of the coil holder relative to the corresponding gantries. After the clamping mechanisms move vertically up and down and horizontally, they are respectively in tight contact with the left and right end faces of the coil holder, so as to position the coil holder; a fusing tool device is also arranged directly above the coil holder inside the housing, and the fusing tool device moves vertically up and down and horizontally directly above the coil holder to soften and cut the waste wire on the coil holder.
2. The waste silk processing device according to claim 1, characterized in that: Each clamping mechanism includes a first electric push rod, a first lifting plate, a first slide rail and a first slide block; a first lifting plate matching with it is horizontally and longitudinally arranged in the middle position inside each gantry, and a first electric push rod is vertically arranged at the center position of the first lifting plate relative to the upper surface of each gantry. The pushing end of each first electric push rod extends vertically downward into the corresponding gantry, and is respectively screwed and fixed to the corresponding position on the upper surface of the corresponding first lifting plate, and drives the first lifting plate to move vertically up and down inside the corresponding gantry; two first slide rails are vertically arranged at intervals on the left and right relative to the corresponding first lifting plate on the front and rear inner sides of each gantry, and first slide blocks matching with the first slide rails are respectively arranged at the front and rear end faces of each first lifting plate relative to the corresponding first slide rails. Then, through the cooperation of the first slide rail and the first slide block, the stability of the vertical up and down movement of the first lifting plate is ensured.
3. The waste silk processing equipment according to claim 2, characterized in that: It also includes a second electric push rod, a fixed rod and a clamping plate; second electric push rods are horizontally and coaxially symmetrically arranged on the left and right sides of the coil holder. Each second electric push rod is arranged inside the corresponding gantry, and its cylinder body is respectively fixedly connected to the lower surface of the corresponding first lifting plate through a fixed rod; the pushing end of each second electric push rod is horizontally arranged towards the coil holder, and is respectively screwed and fixed to the corresponding vertically arranged clamping plate. Each clamping plate is a circular structure with an outer diameter smaller than the outer diameter of the two end faces of the coil holder. Under the drive of the first electric push rod, the second electric push rod adjusts its vertical position with the first lifting plate. After ensuring that the clamping plate is coaxially arranged with the coil holder, under the drive of the second electric push rod, the clamping plate moves horizontally and is respectively in tight contact with the left and right end faces of the coil holder, so as to clamp and fix the coil holder.
4. A waste silk processing device according to claim 3, characterized in that: Positioning holes are vertically embedded and opened at upper and lower intervals on the left and right end faces of the coil holder, and positioning blocks are fixedly arranged at upper and lower intervals on the side of each clamping plate close to the coil holder. Each positioning block is matched with each positioning hole, and their setting positions correspond to the opening positions of each positioning hole. Therefore, through the cooperation of the positioning block and the corresponding positioning hole, the stability after the clamping plate is tightly fixed to the end face of the coil holder is ensured.
5. The waste silk treatment device according to claim 3, characterized in that: It further includes a third electric push rod, a second lifting plate, a second slide rail and a second slider; the left and right inner side faces of the housing are respectively arranged flush with the corresponding side faces of the corresponding portal frames up and down, and a second lifting plate matching the inside of the housing is horizontally and longitudinally arranged at a position directly above the coil holder inside the housing. Four third electric push rods are vertically and symmetrically arranged at the four right angles of the second lifting plate on the upper surface of the housing. The actions of the four third electric push rods are synchronized, and their pushing ends vertically extend downward into the inside of the housing and are respectively screwed and fixed to the corresponding positions on the upper surface of the second lifting plate, thereby driving the second lifting plate to move vertically up and down directly above the coil holder inside the housing; two second slide rails are vertically arranged at left and right intervals on the left and right inner side faces of the housing relative to the second lifting plate, and second sliders matching the second slide rails are respectively arranged on the left and right end faces of the second lifting plate relative to the corresponding second slide rails. Therefore, through the cooperation of the second slide rail and the second slider, the stability of the vertical up and down movement of the second lifting plate is ensured.
6. The waste silk processing device according to claim 5, characterized in that: Limiting plates are horizontally and fixedly arranged at the upper and lower ends of each second slide rail, and each limiting plate is fixedly connected to the corresponding position on the left and right inner side faces of the housing, thereby limiting the vertical up and down movement of the second lifting plate through the limiting plates.
7. The waste silk treatment device according to claim 5, characterized in that: It further includes side plates, lead screws, motors, guide rails and third sliders; on the lower surface of the second lifting plate, side plates are vertically and symmetrically arranged at left and right intervals, and between the two side plates, two lead screws are horizontally arranged at front and rear intervals; the right end of each lead screw is rotatably connected to the corresponding side plate, and its left end horizontally and perpendicularly extends out of the corresponding side plate and is respectively linked to the output end of the corresponding motor; the two motors are horizontally arranged at front and rear intervals, their actions are synchronized, and they are respectively screwed and fixed to the left side plate; on the upper and lower sides of each lead screw, guide rails are horizontally and symmetrically arranged at parallel intervals, each guide rail is arranged within the square area enclosed by the two side plates, and its left and right ends are respectively screwed and fixed to the corresponding side plates; on each lead screw, a third slider is sleeved, each third slider is respectively screwed to the corresponding lead screw, and is horizontally and slidably connected to the corresponding two guide rails, and it is ensured that the lower surfaces of the two third sliders are on the same horizontal plane; the fixed end of the fusing cutter device is screwed and fixed to the lower surfaces of the two third sliders, and its heating and cutting end is arranged downward, and then it vertically moves downward with the second lifting plate to contact the waste wire on the coil, softens the waste wire by heating, and then vertically moves downward and horizontally with the third slider to cut the waste wire on the coil.
8. The waste silk processing device according to claim 7, characterized in that: The horizontal moving stroke of the fusing cutter device along with the third slider needs to be greater than the length of the coil, and the distance between the lower surface of the third slider and the lower end surface of the side plate needs to ensure that when the heating and cutting end of the fusing cutter device performs the softening and cutting operation, there is no interference between the side plate and the second electric push rod.