Diamond wire bus anti-shake wire drawing machine

CN222931568UActive Publication Date: 2025-06-03HUIZHOU YIDIAN INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202421626127.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-10
Publication Date
2025-06-03
Estimated Expiration
2034-07-10

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Abstract

The utility model discloses a diamond wire bus anti-shake wire drawing machine which comprises a machine frame, a wire feeding mechanism, a wire drawing mechanism and a wire collecting mechanism, the wire feeding mechanism, the wire drawing mechanism and the wire collecting mechanism are sequentially arranged on the machine frame in the wire drawing direction, and a wire guiding anti-shake mechanism is arranged between the wire feeding mechanism and the wire drawing mechanism. The guide wire anti-shake mechanism comprises a center shaft, a guide wire wheel and an anti-shake mounting plate, the center shaft is rotatably sleeved with the guide wire wheel, the anti-shake mounting plate is arranged at the end of the center shaft, and a magnetic part is arranged on the anti-shake mounting plate. According to the anti-shake wire drawing machine for the diamond wire bus, the wire guide wheel at the end part of the central shaft can generate magnetic attraction force with the magnetic piece in the rotating process, and the magnetic attraction force has a damping effect on the rotation of the wire guide wheel, so that the diamond wire bus can be effectively prevented from shaking when being conveyed to a wire drawing mechanism through damping; therefore, the quality of the diamond wire bus in the wire drawing process is ensured, the bamboo joint phenomenon is avoided, and the qualified rate of wire drawing finished products of the diamond wire bus is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of wire drawing machines, and particularly relates to a wire drawing machine for preventing the shaking of the mother wire of a diamond wire Background Art

[0002] At present, due to the advantages of high wafering rate, high cutting efficiency, low material loss, and small environmental pollution, the diamond wire cutting technology is gradually replacing the traditional internal circular saw and slurry cutting technology in the cutting fields of hard and brittle materials such as semiconductor silicon wafers and sapphires, and has become the mainstream cutting process. The mother wire of the diamond wire has both ultra-high strength and good toughness, and is widely used in important occasions such as hard material cutting. With the continuous development of the market, the product innovation and iteration speed of the mother wire of the diamond wire are accelerating

[0003] When the mother wire (tungsten wire) of the diamond wire is drawn, the diamond wire is conveyed from the wire feeding mechanism to the wire drawing mechanism. Due to the certain distance between the wire feeding mechanism and the wire drawing mechanism, the small diameter of the wire during the wire drawing process, and the environmental factors and production factors, etc., the diamond wire will shake when it is conveyed to the wire drawing mechanism, resulting in the formation of a "bamboo joint" phenomenon after the diamond wire is drawn, seriously affecting the wire drawing quality of the mother wire of the diamond wire, and further affecting the qualification rate of the wire drawing finished product Summary of the Utility Model

[0004] The purpose of the utility model is to provide a wire drawing machine for preventing the shaking of the mother wire of a diamond wire, which can ensure the wire drawing quality and improve the qualification rate

[0005] To solve the above technical problems, the utility model can adopt the following technical solutions to achieve:

[0006] A wire drawing machine for preventing the shaking of the mother wire of a diamond wire, comprising a frame, a wire feeding mechanism, a wire drawing mechanism, and a wire winding mechanism. The wire feeding mechanism, the wire drawing mechanism, and the wire winding mechanism are sequentially arranged on the frame along the wire drawing direction, and a wire guiding and shaking prevention mechanism is arranged between the wire feeding mechanism and the wire drawing mechanism. The wire guiding and shaking prevention mechanism comprises a central shaft, a wire guiding wheel, and a shaking prevention mounting plate. A plurality of wire guiding wheels are provided and are rotatably sleeved on the central shaft. The shaking prevention mounting plate is arranged at the end of the central shaft, and a magnetic part is arranged on the shaking prevention mounting plate. The magnetic attraction of the magnetic part generates a damping effect on the rotating wire guiding wheel

[0007] In one embodiment, the magnetic part is a magnet, and the damping value generated by the magnetic part on the wire guiding wheel is 0.3N - 0.9N

[0008] In one embodiment, the plurality of wire guiding wheels are sequentially sleeved, and the wire guiding wheels are made of a magnetizable metal material

[0009] In one embodiment, threaded through-holes are provided on the anti-vibration mounting plate, and adjusting screws are threadedly connected in the threaded through-holes. The magnetic members are fixed to the ends of the adjusting screws. By turning the adjusting screws, the magnetic members can be driven to approach or move away from the wire guiding wheel at the end of the central axis.

[0010] In one embodiment, at least one threaded through-hole is provided, and the number of adjusting screws and magnetic members provided is the same as the number of threaded through-holes provided.

[0011] In one embodiment, the wire feeding mechanism includes a slide rail, a movable column, a wire releasing wheel, a swinging wheel, and a first tensioning unit. The slide rail is arranged on the frame, and the bottom of the movable column is connected to the slide rail and can move along the slide rail. The wire releasing wheel, the swinging wheel, and the first tensioning unit are sequentially arranged on the movable column along the wire drawing direction.

[0012] In one embodiment, the wire drawing mechanism includes a lubricating groove, a furnace plate unit, a die holder, and a wire guiding unit arranged in sequence along the wire drawing direction. The lubricating groove is filled with graphite emulsion. The furnace plate unit includes a box body, a heating tube, and a protective cover. The heating tube is laid on the inner bottom of the box body, and the protective cover can cover the box body. The wire guiding unit includes a wire guiding shaft and a plurality of wire guiding discs, and the plurality of wire guiding discs are rotatably sleeved on the wire guiding shaft.

[0013] In one embodiment, a pulley mechanism is further arranged between the wire drawing mechanism and the wire winding mechanism, and the diamond wire bus bar travels back and forth between the wire guiding anti-vibration mechanism and the pulley mechanism for several times.

[0014] In one embodiment, the wire winding mechanism includes a second tensioning unit, a fixed seat, a movable seat, and a wire winding wheel. The second tensioning unit and the fixed seat are respectively installed on the frame, and the second tensioning unit is located in front of the fixed seat along the wire drawing direction. A first driving motor and a lead screw are arranged on the fixed seat. The lead screw is connected to the first driving motor, and the first driving motor drives the lead screw to rotate. The movable seat is connected to the lead screw, and when the lead screw rotates, the movable seat follows and slides. A second driving motor is arranged on the movable seat, and the wire winding wheel is arranged on the movable seat and is connected to the second driving motor. The second driving motor drives the wire winding wheel to rotate.

[0015] In one embodiment, liquid collecting boxes are arranged on both sides of the box body, and the liquid collecting boxes are connected to the bottom of the box body. Beneficial effects

[0016] The anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model is provided with a wire guiding and anti-vibration mechanism between the wire feeding mechanism and the wire drawing mechanism. When the wire feeding mechanism conveys the bus bar of diamond wire to the wire drawing mechanism, several wire guiding wheels of the wire guiding and anti-vibration mechanism will conduct multiple round trips of conveying and guiding the bus bar of diamond wire. During the rotation process of the wire guiding wheel at the end of the central shaft, a magnetic attraction force will be generated with the magnetic part on the anti-vibration mounting plate, and this magnetic attraction force will produce a certain damping effect on the rotation of the wire guiding wheel. Through this damping, it can effectively avoid the shaking of the bus bar of diamond wire when it is conveyed to the wire drawing mechanism, thereby ensuring the quality of the bus bar of diamond wire during the wire drawing process, avoiding the occurrence of the 'bamboo joint' phenomenon, and improving the qualified rate of the wire drawing finished product of the bus bar of diamond wire. Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0018] Figure 2 It is a top view of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0019] Figure 3 It is a schematic diagram of the wire guiding and anti-vibration mechanism of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0020] Figure 4 It is a sectional view of the wire guiding and anti-vibration mechanism of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0021] Figure 5 It is a schematic diagram of the installation of the magnetic part of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0022] Figure 6 It is a schematic diagram of the wire feeding mechanism of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0023] Figure 7 It is a schematic diagram of the wire drawing mechanism of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model;

[0024] Figure 8 It is a schematic diagram of the wire winding mechanism of the anti-vibration wire drawing machine for the bus bar of diamond wire in the utility model.

[0025] As shown in the drawings:

[0026] 100, frame;

[0027] 200, wire feeding mechanism; 210, slide rail; 220, movable column; 230, wire releasing wheel; 240, swing wheel; 240, first tensioning unit;

[0028] 300. Wire drawing mechanism; 310. Lubrication groove; 320. Furnace plate unit; 321. Box body; 322. Protection cover; 330. Die holder; 340. Wire guiding unit; 341. Wire guiding shaft; 342. Wire guiding disc; 350. Liquid collecting box;

[0029] 400. Wire collecting mechanism; 410. Second tensioning unit; 420. Fixed seat; 430. Moving seat; 440. Wire collecting wheel; 450. First driving motor; 460. Lead screw; 470. Second driving motor;

[0030] 500. Wire guiding anti-vibration mechanism; 510. Central shaft; 520. Wire guiding wheel; 530. Anti-vibration mounting plate; 531. Threaded through hole; 532. Adjusting screw; 540. Magnetic part;

[0031] 600. Cone pulley mechanism. Detailed implementation manners

[0032] To make the above objects, features and advantages of the present utility model more obvious and understandable, the following detailed description of the specific implementation manners of the present utility model will be given in conjunction with the accompanying drawings. Many specific details are set forth in the following description in order to fully understand the present utility model. However, the present utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the connotation of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed below.

[0033] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. On the contrary, when an element is referred to as being "directly on" another element, there is no intermediate element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.

[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific implementation manners and are not intended to limit the present utility model. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0035] Please refer to Figures 1 to 5, a wire drawing machine for preventing the vibration of the busbar of a diamond wire, comprising a frame 100, a wire feeding mechanism 200, a wire drawing mechanism 300 and a wire winding mechanism 400. The wire feeding mechanism 200, the wire drawing mechanism 300 and the wire winding mechanism 400 are sequentially arranged on the frame 100 along the wire drawing direction. A wire guiding and anti-vibration mechanism 500 is arranged between the wire feeding mechanism 200 and the wire drawing mechanism 300. The wire guiding and anti-vibration mechanism 500 includes a central shaft 510, a wire guiding wheel 520 and an anti-vibration mounting plate 530. A plurality of wire guiding wheels 520 are provided and rotatably sleeved on the central shaft 510. The anti-vibration mounting plate 530 is arranged at the end of the central shaft 510, and a magnetic member 540 is arranged on the anti-vibration mounting plate 530. The magnetic attraction of the magnetic member 540 generates a damping effect on the rotating wire guiding wheel 520.

[0036] In this embodiment, when the busbar of the diamond wire is being drawn, the wire feeding mechanism 200 conveys it and conveys it to the wire drawing mechanism 300. The wire drawing mechanism 300 then draws the busbar of the diamond wire and draws it to the required diameter. After drawing, the wire winding mechanism 400 winds it up, so as to realize the wire drawing of the busbar of the diamond wire. When the wire feeding mechanism 200 conveys the busbar of the diamond wire, it will first pass through the wire guiding and anti-vibration mechanism 500. The wire guiding and anti-vibration mechanism 500 conveys and conducts the conveyed busbar of the diamond wire and performs anti-vibration treatment on the conveyed busbar of the diamond wire, thereby ensuring the wire drawing quality.

[0037] Specifically, when performing anti-vibration treatment, one end of the central shaft 510 of the wire guiding and anti-vibration mechanism 500 is fixed. It can be fixed on the frame 100 or directly fixed on the wire drawing mechanism 300. A plurality of wire guiding wheels 520 are respectively rotatably sleeved on the central shaft 510, and the plurality of wire guiding wheels 520 are sequentially sleeved with each other. The wire guiding wheel 520 is made of a magnetizable metal material. At the same time, an anti-vibration mounting plate 530 is arranged at the outermost end of the central shaft 510, and a magnetic member 540 is arranged on the anti-vibration mounting plate 530. When the busbar of the diamond wire is being conveyed and conducted, the busbar of the diamond wire will be repeatedly drawn back and forth by a plurality of wire guiding wheels 520. Therefore, the diameter of the busbar of the diamond wire conveyed and conducted by the wire guiding wheel 520 at the innermost end of the central shaft 510 is the thickest, and the wire guiding wheel 520 adjacent to the anti-vibration mounting plate 530 at the outermost end conveys and conducts the busbar of the diamond wire with the thinnest diameter. When the outermost wire guiding wheel 520 is conveying and conducting and rotating, a magnetic attraction force will be generated between it and the magnetic member 540 on the anti-vibration mounting plate 530. The magnetic attraction force generates a certain damping effect on the rotation of this wire guiding wheel 520. Through this damping, the situation that the busbar of the diamond wire shakes when being conveyed from the wire guiding wheel 520 to the wire drawing mechanism 300 can be effectively avoided, thereby ensuring the quality of the busbar of the diamond wire during the wire drawing process, avoiding the "bamboo joint" phenomenon of the busbar of the diamond wire after wire drawing, and thus improving the qualified rate of the wire drawing finished product of the busbar of the diamond wire.

[0038] In addition, in order to enable the magnetic member 540 to produce a damping effect on the outermost wire guiding wheel 520, in this embodiment, the magnetic member 540 is a magnet, and the damping value produced by the magnetic member 540 on the outermost wire guiding wheel 520 of the central axis 510 is 0.3N - 0.9N. With the damping value within this range, it can effectively ensure that the mother wire of the diamond wire does not shake during the conveying and conduction process, avoiding the 'bamboo joint' phenomenon. If the produced damping value is less than this range, the wire guiding wheel 520 cannot avoid shaking when conveying and conducting the mother wire of the diamond wire to the wire drawing mechanism 300, and the anti-shaking effect cannot be achieved. If the produced damping value is greater than this range, it will cause the outermost wire guiding wheel 520 to rotate too slowly, resulting in the fracture of the mother wire of the diamond wire during the wire drawing process, causing waste of resources and being unfavorable to the production of the enterprise.

[0039] Certainly, in order to adjust the magnitude of the damping value in this embodiment, a threaded through hole 531 is provided on the anti-shaking mounting plate 530, and an adjusting screw 532 is threadedly connected in the threaded through hole 531. The adjusting screw 532 can be a headless slotted screw, and the magnetic member 540 is fixed to the end of the adjusting screw 532. When it is necessary to adjust the magnitude of the damping value to reach the required range, a screwdriver can be used to turn the headless slotted screw, thereby driving the magnetic member 540 to approach or move away from the outermost wire guiding wheel 520 of the central axis 510. By approaching or moving away, the magnetic attraction force between the magnetic member 540 and the wire guiding wheel 520 is adjusted, and then the magnitude of its damping value is adjusted, so that the produced damping value reaches the optimal range, ensuring that the mother wire of the diamond wire does not shake during the conveying and conduction process, thereby improving the wire drawing quality of the mother wire of the diamond wire.

[0040] Furthermore, in order to meet the damping magnitude produced by the magnetic member 540 on the wire guiding wheel 520, at least one threaded through hole 531 is provided on the anti-shaking mounting plate 530. When different damping value magnitudes need to be achieved, an adjusting screw 532 with a magnetic member 540 can be threadedly connected in multiple threaded through holes 531. The number of threaded connections can be determined according to the actually required damping value magnitude. For example, if two magnetic members 540 can meet the damping value, then two adjusting screws 532 with magnetic members 540 can be threadedly connected. By increasing or decreasing the number of threaded connections, different damping value magnitude requirements can be conveniently met, thereby improving the overall practicality of the wire drawing machine.

[0041] Please refer to Figure 6, To achieve the conveyance of the diamond wire bus bar, the wire feeding mechanism 200 in this embodiment includes a slide rail 210, a movable column 220, a wire releasing wheel 230, a swing wheel 240, and a first tensioning unit 250. The slide rail 210 is arranged on the frame 100, and the bottom of the movable column 220 is connected to the slide rail 210 and can move along the slide rail 210. The wire releasing wheel 230, the swing wheel 240, and the first tensioning unit 250 are sequentially arranged on the movable column 220 along the wire drawing direction.

[0042] To achieve the conveyance of the diamond wire bus bar, the raw material of the diamond wire bus bar can be installed on the wire releasing wheel 230, and the diamond wire bus bar will sequentially pass through the swing wheel 240, the first tensioning unit 250 to the wire guiding and anti-vibration mechanism 500. The swing wheel 240 can make the conveyance of the diamond wire bus bar smoother, and the first tensioning unit 250 can adjust the tension of the diamond wire bus bar during conveyance to prevent the diamond wire bus bar from being too loose or too tight during conveyance. At the same time, to enable the diamond wire bus bar to better cooperate and link with the subsequent mechanisms during wire release, the slide rail 210 is arranged on the frame 100, and the bottom of the movable column 220 is connected to the slide rail 210. During wire feeding, the movable column 220 can be manually pushed to move on the slide rail 210, so that the wire releasing wheel 230 on the movable column 220 can cooperate and link with the subsequent mechanisms, thereby facilitating wire feeding and ensuring smoother conveyance of the diamond wire bus bar.

[0043] Please refer to Figure 7 , To achieve the drawing of the diamond wire bus bar, the wire drawing mechanism 300 in this embodiment includes a lubricating groove 310, a furnace plate unit 320, a die holder 330, and a wire guiding unit 340 arranged in sequence along the wire drawing direction. The lubricating groove 310 is filled with graphite emulsion. The furnace plate unit 320 includes a box body 321, a heating tube (not shown in the figure), and a protective cover 322. The heating tube is laid on the inner bottom of the box body 321, and the protective cover 322 can cover the box body 321. The wire guiding unit 400 includes a wire guiding shaft 410 and a plurality of wire guiding discs 420. The plurality of wire guiding discs 420 are rotatably sleeved on the wire guiding shaft 410. Specifically, when drawing the diamond wire bus bar, it is conveyed by the wire guiding and anti-vibration mechanism 500 into the box body 321 of the furnace plate unit 320, and the diamond wire bus bar is heated by the heating tube (not shown in the figure) on the inner bottom of the box body 321. The heated diamond wire bus bar then passes through the die holder 330 to the wire guiding disc 342 of the wire guiding unit 340 and is drawn back and forth a set number of times until the diamond wire bus bar is drawn to the required diameter. And when the diamond wire bus bar is conveyed and conducted to the box body of the furnace plate unit 320, it will first pass through the lubricating groove 310, and the graphite emulsion in the lubricating groove 310 lubricates the diamond wire bus bar, thereby facilitating the drawing of the diamond wire bus bar.

[0044] In addition, since the diamond wire busbar will drip downwards during the transportation and conduction process after being coated with graphite emulsion through the lubrication groove 310, in order to avoid contamination to the rack 100, liquid collecting boxes 350 are provided on both sides of the box body 321, and the liquid collecting box 350 is connected to the bottom of the box body 321. The dripping graphite emulsion is received through the liquid collecting box 350, thereby avoiding contamination of the rack 100 by the graphite emulsion, thereby keeping the rack 100 clean and tidy, and the received graphite emulsion can be reused, which effectively saves costs.

[0045] See also Figure 1 and Figure 2 In order to ensure the wire drawing of the diamond wire busbar, a pulley mechanism 600 is further provided between the wire drawing mechanism 300 and the wire collecting mechanism 400 in this embodiment, and the diamond wire busbar moves back and forth several times between the wire guide anti-shake mechanism 500 and the pulley mechanism 600. When the diamond wire busbar is drawn to the required diameter, the pulley mechanism 600 will pull it to the wire collecting mechanism 400, wherein the pulley mechanism 600 can dissipate heat and shape the diamond wire busbar, and when the diamond wire busbar is drawn, it will move back and forth 12 times between the wire guide anti-shake mechanism 500 and the pulley mechanism 600. By drawing back and forth 12 times, the diameter of the diamond wire busbar can be reduced successively, and finally reach the required diameter.

[0046] Finally, see Figure 8 In order to facilitate the wire collection and arrangement of the diamond wire busbar, the wire collection mechanism 400 in this embodiment includes a second tensioning unit 410, a fixed seat 420, a movable seat 430 and a wire collection wheel 440. The second tensioning unit 410 and the fixed seat 420 are respectively installed on the frame 100, and the second tensioning unit 410 is located in front of the fixed seat 420 along the wire drawing direction. A first driving motor 450 and a screw rod 460 are arranged on the fixed seat 420. The screw rod 460 is connected to the first driving motor 450. The first driving motor 450 drives the screw rod 460 to rotate. The movable seat 430 is connected to the screw rod 460. When the screw rod 460 rotates, the movable seat 430 follows and slides. A second driving motor 470 is arranged on the movable seat 430. The wire collection wheel 440 is arranged on the movable seat 430 and is connected to the second driving motor 470. The second driving motor 470 drives the wire collection wheel 440 to rotate.

[0047] After the diamond wire bus bar is heat-set by the tower pulley mechanism 600, it will be wound and collected by the wire take-up wheel 440. Specifically, during wire take-up, the second drive motor 470 drives the wire take-up wheel 440 to rotate, thereby realizing the winding of the diamond wire bus bar. During the winding process of the wire take-up wheel 440, the first drive motor 450 drives the lead screw 460 to rotate. When the lead screw 460 rotates, it drives the moving seat 430 to move, so that the second drive motor 470 and the wire take-up wheel 440 move, realizing the wire take-up and moving wire arrangement of the wire take-up wheel 440. Finally, it is convenient to wind and arrange the diamond wire bus bar, ensuring the winding quality of the diamond wire bus bar. During wire take-up, the second tensioning unit 410 can also be used to adjust the tightness during wire take-up, so as to avoid the situation of being too loose or too tight during the wire take-up process of the diamond wire bus bar and ensure the wire take-up quality.

[0048] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry can smoothly implement the present invention according to what is shown in the accompanying drawings of the specification and what is described above; however, any equivalent changes made by those skilled in the art in the field without departing from the technical solution of the present invention and using the technical content disclosed above for some modifications, decorations and evolutions are equivalent embodiments of the present invention; at the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention still fall within the protection scope of the technical solution of the present invention.

Claims

1. A diamond wire busbar anti-shake wire drawing machine, characterized in that: It includes a frame, a wire feeding mechanism, a wire drawing mechanism and a wire collecting mechanism, wherein the wire feeding mechanism, the wire drawing mechanism and the wire collecting mechanism are sequentially arranged on the frame along the wire drawing direction, and a wire guide anti-shake mechanism is arranged between the wire feeding mechanism and the wire drawing mechanism; The wire guide anti-shake mechanism includes a central axis, a wire guide wheel and an anti-shake mounting plate. The wire guide wheel is provided with a plurality of wire guide wheels and is rotatably mounted on the central axis. The anti-shake mounting plate is arranged at the end of the central axis, and a magnetic part is arranged on the anti-shake mounting plate. The magnetic attraction of the magnetic part produces a damping effect on the rotating wire guide wheel.

2. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: The magnetic component is a magnet, and the damping value generated by the magnetic component on the wire guide wheel is 0.3N-0.9N.

3. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: The plurality of guide wire wheels are sleeved in sequence, and the guide wire wheels are made of magnetically absorbable metal material.

4. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: The anti-shake mounting plate is provided with a threaded through hole, and an adjusting screw is threadedly connected in the threaded through hole. The magnetic part is fixed to the end of the adjusting screw. Turning the adjusting screw can drive the magnetic part to approach or move away from the wire guide wheel at the end of the central axis.

5. The diamond wire busbar anti-shake drawing machine according to claim 4, characterized in that: At least one threaded through hole is provided, and the number of adjusting screws and magnetic parts provided is the same as the number of threaded through holes provided.

6. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: The wire feeding mechanism includes a slide rail, a movable column, a wire unwinding wheel, a balance wheel and a first tensioning unit. The slide rail is arranged on the frame, and the bottom of the movable column is connected to the slide rail and can move along the slide rail. The wire unwinding wheel, the balance wheel and the first tensioning unit are arranged on the movable column in sequence along the wire drawing direction.

7. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: The wire drawing mechanism comprises a lubrication groove, a furnace plate unit, a die frame and a wire guide unit arranged in sequence along the wire drawing direction, and the lubrication groove is filled with graphite emulsion; The stove unit includes a box body, a heating tube and a protective cover. The heating tube is laid on the inner bottom of the box body, and the protective cover can cover the box body. The wire guide unit comprises a wire guide shaft and a plurality of wire guide discs, and the plurality of wire guide discs are rotatably sleeved on the wire guide shaft.

8. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: A tower pulley mechanism is also arranged between the wire drawing mechanism and the wire collecting mechanism, and the diamond wire busbar goes back and forth between the wire guide anti-shake mechanism and the tower pulley mechanism for several times.

9. The diamond wire busbar anti-shake drawing machine according to claim 1, characterized in that: The wire collecting mechanism includes a second tensioning unit, a fixed seat, a movable seat and a wire collecting wheel. The second tensioning unit and the fixed seat are respectively installed on the frame, and the second tensioning unit is located in front of the fixed seat along the wire drawing direction. A first driving motor and a screw rod are arranged on the fixed seat. The screw rod is connected to the first driving motor. The first driving motor drives the screw rod to rotate. The movable seat is connected to the screw rod. When the screw rod rotates, the movable seat follows and slides. A second driving motor is arranged on the movable seat. The wire collecting wheel is arranged on the movable seat and connected to the second driving motor. The second driving motor drives the wire collecting wheel to rotate.

10. The diamond wire busbar anti-shake drawing machine according to claim 7, characterized in that: Liquid collecting boxes are arranged on both sides of the box body, and the liquid collecting boxes are connected to the bottom of the box body.

Citation Information

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