Diamond wire bus cleaning equipment
By designing a diamond line bus cleaning equipment that combines electrolytic cleaning, ultrasonic cleaning, wind blowing and drying, the problems of low cleaning efficiency and graphite milk residue in the prior art are solved, and efficient and effective cleaning effects are achieved, ensuring the pass rate of diamond line bus.
Patent Information
- Application Number
- CN202421717426.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-19
AI Technical Summary
In the prior art, the diamond wire busbar has low cleaning efficiency when removing graphite milk, and there are still graphite milk residues after cleaning, which seriously affects the qualified product rate.
设计了一种金刚线母线清洗设备,包括放丝机构、电解机构、清洗机构、烘干机构和收丝机构,通过电解清洗和超声波清洗的结合,结合风吹和烘干处理,提高清洗效果和效率。
Through the dual treatment of electrolytic cleaning and ultrasonic cleaning, the cleaning effect of the diamond wire bus is significantly improved. Wind blowing and drying speed up the drying process, improve the cleaning efficiency, and ensure the passing rate of the diamond wire bus.
Smart Images

Figure CN222856163U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cleaning equipment, in particular to a diamond wire busbar cleaning device. Background Art
[0002] At present, diamond wire cutting technology is gradually replacing traditional internal circular saw and mortar cutting technology in the cutting of hard and brittle materials such as semiconductor silicon wafers and sapphire, becoming the mainstream cutting process due to its advantages of high chip yield, high cutting efficiency, low material loss and low environmental pollution. Diamond wire busbar 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 speed of product innovation and iteration of diamond wire busbar is accelerating.
[0003] During the drawing process of the diamond wire busbar, due to the production process technology requirements, it is necessary to coat the diamond wire busbar with graphite emulsion, and the graphite emulsion needs to be removed before the actual use of the diamond wire busbar, so that the diamond wire busbar is in its own metallic color state for application in the fields of cutting, semiconductors, etc.; however, in the prior art, when removing the graphite emulsion from the diamond wire busbar, it is generally washed multiple times with clean water and then wiped with a cloth, which results in low cleaning efficiency of the diamond wire busbar, and there will still be graphite emulsion residue after cleaning, which seriously affects the qualified product rate of the diamond wire busbar. Utility Model Content
[0004] The utility model aims to provide a diamond wire busbar cleaning device which can improve the cleaning efficiency and cleaning effect and ensure the qualified rate.
[0005] In order to solve the above technical problems, the present invention can be implemented by adopting the following technical solutions:
[0006] A diamond wire busbar cleaning device comprises a wire-releasing mechanism, an electrolysis mechanism, a cleaning mechanism, a drying mechanism and a wire-collecting mechanism which are sequentially arranged along a cleaning direction, a tensioning adjustment mechanism is further arranged between the wire-releasing mechanism and the electrolysis mechanism, and a wind-blowing mechanism is arranged between the cleaning mechanism and the drying mechanism, the wire-releasing mechanism is used for conveying the diamond wire busbar, the electrolysis mechanism and the cleaning mechanism are used for cleaning the conveyed diamond wire busbar, the wind-blowing mechanism is used for blowing the cleaned diamond wire busbar, the drying mechanism is used for baking the diamond wire busbar after blowing, and the wire-collecting mechanism is used for winding and arranging the baked diamond wire busbar.
[0007] In one embodiment, the wire-releasing mechanism includes a wire-releasing frame, a wire-releasing motor and a wire-releasing wheel. The wire-releasing motor and the wire-releasing wheel are respectively arranged on the wire-releasing frame, and the wire-releasing motor is connected to the wire-releasing wheel. The wire-releasing motor drives the wire-releasing wheel to rotate, thereby transporting the diamond wire busbar.
[0008] In one embodiment, the electrolysis mechanism includes an electrolysis guide wheel, an electrolysis box and an electrolysis cell. The electrolysis guide wheel is located in front of the electrolysis box along the cleaning direction. The electrolysis cell is arranged in the electrolysis box, and electrolyte is injected into the electrolysis cell. The electrolysis box is also covered with an electrolysis cover plate, and a first transparent window is specifically provided in the middle of the electrolysis cover plate.
[0009] In one embodiment, the cleaning mechanism includes a cleaning box, an ultrasonic generator and a cleaning tank. Cleaning liquid is injected into the cleaning box, and a cleaning cover is provided on the top of the cleaning box, and a second transparent window is provided in the middle of the cleaning cover. The ultrasonic generator and the cleaning tank are respectively arranged in the cleaning box, and the ultrasonic generator is located in front of the cleaning tank along the cleaning direction.
[0010] In one embodiment, the drying mechanism includes an oven and a heating plate. The heating plate is arranged in the oven, and the oven also has a closable oven cover.
[0011] In one of the embodiments, the wire collecting mechanism includes a wire collecting guide wheel and a wire collecting unit. The wire collecting guide wheel is located in front of the wire collecting unit along the cleaning direction. The wire collecting unit includes a fixed seat, a movable seat, a wire collecting motor and a wire collecting wheel. The fixed seat is provided with a movable motor and a screw rod, and the movable seat is connected to the screw rod. The wire collecting motor and the wire collecting wheel are respectively arranged on the movable seat, and the wire collecting wheel is connected to the wire collecting motor. The wire collecting motor drives the wire collecting wheel to rotate, thereby winding the diamond wire busbar.
[0012] In one embodiment, the tensioning adjustment mechanism includes a tensioning bracket, a tensioning guide wheel, a tensioning mounting plate, a tensioning swing arm and a tensioning wheel. The tensioning guide wheel and the tensioning mounting plate are respectively arranged on the tensioning bracket, the middle part of the tensioning swing arm is rotatably connected to the tensioning mounting plate, and the tensioning wheel is arranged at one end of the tensioning swing arm.
[0013] In one of the embodiments, the wind blowing mechanism includes a bellows and an air inlet pipe. The air inlet pipe is located at the bottom of the bellows and communicated with the interior of the bellows. An air outlet is provided at the top of the bellows.
[0014] In one of the embodiments, the diamond wire busbar cleaning equipment also includes a cabinet, and the wire unwinding mechanism, the tensioning adjustment mechanism, the electrolysis mechanism, the cleaning mechanism, the drying mechanism and the wire collecting mechanism are respectively arranged on the cabinet. Beneficial Effects
[0015] The utility model discloses a diamond wire busbar cleaning device, in which a wire unwinding mechanism automatically conveys the diamond wire busbar, and in the conveying process, the electrolytic mechanism firstly electrolytically cleans the diamond wire busbar, and then the cleaning mechanism ultrasonically cleans the diamond wire busbar, and the electrolytic cleaning and ultrasonic cleaning are combined to improve the cleaning effect of the diamond wire busbar, and after cleaning, the diamond wire busbar is firstly blown by a wind blowing mechanism, and then baked by a drying mechanism, so as to improve the cleaning efficiency of the diamond wire busbar, and finally the wire collecting mechanism automatically reels and arranges the diamond wire busbar, so as to realize the automatic cleaning of the diamond wire busbar, improve the cleaning efficiency and cleaning effect, and ensure the cleaning pass rate of the diamond wire busbar. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure of the diamond wire busbar cleaning device of the utility model;
[0017] Figure 2 It is a schematic diagram of the wire unwinding mechanism of the diamond wire busbar cleaning device of the utility model;
[0018] Figure 3 This is a schematic diagram of the electrolysis mechanism of the diamond wire busbar cleaning device of the utility model;
[0019] Figure 4 This is a schematic diagram of the cleaning mechanism of the diamond wire busbar cleaning device of the utility model;
[0020] Figure 5 This is a schematic diagram of the drying mechanism of the diamond wire busbar cleaning device of the utility model;
[0021] Figure 6 This is a schematic diagram of the wire collection mechanism of the diamond wire busbar cleaning device of the utility model;
[0022] Figure 7 This is a schematic diagram of the wire collection unit of the diamond wire busbar cleaning device of the utility model;
[0023] Figure 8 It is a schematic diagram of the tensioning adjustment mechanism of the diamond wire busbar cleaning device of the utility model;
[0024] Fig. 9 The utility model is a schematic diagram of the wind blowing mechanism of the diamond wire busbar cleaning device.
[0025] As shown in the attached figure:
[0026] 100, wire releasing mechanism; 110, wire releasing frame; 120, wire releasing motor; 130, wire releasing wheel;
[0027] 200, electrolysis mechanism; 210, electrolysis guide wheel; 220, electrolysis box; 230, electrolysis cell; 240, electrolysis cover plate; 241, first transparent window;
[0028] 300, cleaning mechanism; 310, cleaning box; 320, ultrasonic generator; 330, cleaning tank; 340, cleaning cover; 341, second transparent window;
[0029] 400, drying mechanism; 410, oven; 420, heating plate; 430, oven cover;
[0030] 500, wire collecting mechanism; 510, wire collecting guide wheel; 520, wire collecting unit; 521, fixed seat; 522, movable seat; 523, wire collecting motor; 524, wire collecting wheel; 525, movable motor; 526, screw rod;
[0031] 600, tensioning adjustment mechanism; 610, tensioning bracket; 620, tensioning guide wheel; 630, tensioning mounting plate; 640, tensioning swing arm; 650, tensioning wheel;
[0032] 700, wind blowing mechanism; 710, bellows; 720, air outlet;
[0033] 800. Cabinet. DETAILED DESCRIPTION
[0034] In order to make the above-mentioned purposes, features and advantages of the utility model more obvious and easy to understand, the specific implementation methods of the utility model are described in detail below in conjunction with the accompanying drawings. In the following description, many specific details are set forth to facilitate a full understanding of the utility model. However, the 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 violating the connotation of the utility model, so the utility model is not limited by the specific embodiments disclosed below.
[0035] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may also be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. In contrast, 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."
[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art in the technical field of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more related listed items.
[0037] See also Figure 1A diamond wire busbar cleaning device comprises a wire-releasing mechanism 100, an electrolysis mechanism 200, a cleaning mechanism 300, a drying mechanism 400 and a wire-collecting mechanism 500 which are sequentially arranged along a cleaning direction. A tensioning adjustment mechanism 600 is further arranged between the wire-releasing mechanism 100 and the electrolysis mechanism 200, and a wind-blowing mechanism 700 is arranged between the cleaning mechanism 300 and the drying mechanism 400. The wire-releasing mechanism 100 is used to transport the diamond wire busbar, the electrolysis mechanism 200 and the cleaning mechanism 300 are used to clean the transported diamond wire busbar, the wind-blowing mechanism 700 is used to blow the cleaned diamond wire busbar, the drying mechanism 400 is used to bake the diamond wire busbar after wind blowing, and the wire-collecting mechanism 500 is used to wind and arrange the baked diamond wire busbar.
[0038] Specifically, in the present embodiment, when cleaning the diamond wire busbar, the raw material of the diamond wire busbar is fixed to the wire-releasing mechanism 100, and the diamond wire busbar is sequentially passed through the tensioning adjustment mechanism 600, the electrolysis mechanism 200, the cleaning mechanism 300, the air-blowing mechanism 700, the drying mechanism 400 to the wire-collecting mechanism 500. When the diamond wire busbar is being transported, it will be electrolytically cleaned by the electrolysis mechanism 200, and then ultrasonically cleaned by the cleaning mechanism 300. After cleaning, the diamond wire busbar will be air-blown by the air-blowing mechanism 700, and baked by the drying mechanism 400, and finally wound and arranged by the wire-collecting mechanism 500, thereby completing the automatic cleaning of the diamond wire busbar. Moreover, through the electrolytic cleaning of the electrolysis mechanism 200 and the ultrasonic cleaning of the cleaning mechanism 300, the double cleaning of the diamond wire busbar is achieved, thereby improving the cleaning quality of the diamond wire busbar. At the same time, by blowing first and then baking, the drying and cleaning of the diamond wire busbar can be accelerated, the cleaning processing efficiency of the diamond wire busbar can be improved, and finally the cleaning pass rate of the diamond wire busbar can be ensured. In order to ensure that the diamond wire busbar is smoothly transported and cleaned, the diamond wire busbar will first pass through the tensioning adjustment mechanism 600 during the transportation process. The tensioning adjustment mechanism 600 will adjust the transportation tightness of the diamond wire busbar to avoid the diamond wire busbar being too loose or too tight during transportation, and to prevent the diamond wire busbar from being broken or knotted and entangled, thereby improving the transportation smoothness of the diamond wire busbar.
[0039] In addition, in order to facilitate the layout of each mechanism, the diamond wire busbar cleaning equipment in this embodiment also includes a cabinet 800, and the wire releasing mechanism 100, the tensioning adjustment mechanism 600, the electrolysis mechanism 200, the cleaning mechanism 300, the drying mechanism 400 and the wire collecting mechanism 500 are all arranged on the cabinet 800, and the wind blowing mechanism 700 can be connected to the side wall of the cleaning mechanism 300, or can be directly arranged on the cabinet 800, and is arranged according to actual needs. At the same time, the wire releasing mechanism 100, the tensioning adjustment mechanism 600, the electrolysis mechanism 200, the cleaning mechanism 300, the wind blowing mechanism 700, the drying mechanism 400 and the wire collecting mechanism 500 in this embodiment are respectively arranged in six groups, and the six groups of mechanisms are arranged side by side on the cabinet 800. Six diamond wire busbars can be cleaned at the same time through the six groups of mechanisms, thereby improving the cleaning efficiency of the diamond wire busbar. Of course, it is not limited to six groups of mechanisms, and different numbers of mechanisms can be set according to the actual production layout.
[0040] See also Figure 2 In order to realize the automatic conveying of the diamond wire busbar, the wire-releasing mechanism 100 in this embodiment includes a wire-releasing frame 110, a wire-releasing motor 120 and a wire-releasing wheel 130. The wire-releasing motor 120 and the wire-releasing wheel 130 are respectively arranged on the wire-releasing frame 110, and the wire-releasing motor 120 is connected to the wire-releasing wheel 130. The wire-releasing motor 120 drives the wire-releasing wheel 130 to rotate, thereby conveying the diamond wire busbar. During automatic conveying, the diamond wire busbar raw material is placed on the wire-releasing wheel 130, and the wire-releasing motor 120 is started. The wire-releasing motor 120 drives the wire-releasing wheel 130 to rotate, and when the wire-releasing wheel 130 rotates, the diamond wire busbar is conveyed, thereby realizing the automatic conveying of the diamond wire busbar, thereby improving the efficiency of the diamond wire busbar during cleaning.
[0041] See also Figure 3 In order to realize the electrolytic cleaning of the diamond wire busbar, the electrolysis mechanism 200 in this embodiment includes an electrolytic guide wheel 210, an electrolytic box 220 and an electrolytic cell 230. The electrolytic guide wheel 210 is located in front of the electrolytic box 220 along the cleaning direction, and the electrolytic cell 230 is arranged in the electrolytic box 220, and the electrolytic cell 230 is injected with electrolyte. The electrolytic box 220 is also covered with an electrolytic cover plate 240, and the middle part of the electrolytic cover plate 240 specifically has a first transparent window 241.
[0042] When the diamond wire busbar is transported to the electrolysis mechanism 200, it will go from the electrolysis guide wheel 210 to the electrolytic cell 230, and the diamond wire busbar will be placed in the electrolyte in the electrolytic cell 230, and the electrolytic cell 230 has a positive electrode and a negative electrode. When the positive electrode and the negative electrode are energized, under the action of the current, the electrolyte will chemically react with the surface of the diamond wire busbar to corrode the oxide layer, thereby achieving electrolytic cleaning of the diamond wire busbar. During the cleaning process, the electrolytic box 220 can be covered by the electrolytic cover plate 240 to prevent debris from falling into the electrolytic box 220 or electrolyte from splashing out of the electrolytic cell 230, and the first transparent window 241 can observe the electrolytic cleaning of the diamond wire busbar in real time to ensure the cleaning effect of the diamond wire busbar.
[0043] See also Figure 4 After the diamond wire busbar is electrolytically cleaned, its surface needs to be cleaned again. Therefore, the diamond wire busbar will be transported to the cleaning mechanism 300. The cleaning mechanism 300 in this embodiment includes a cleaning box 310, an ultrasonic generator 320 and a cleaning tank 330. Cleaning liquid is injected into the cleaning box 310, and a cleaning cover 340 is provided on the top of the cleaning box 310, and a second transparent window 341 is provided in the middle of the cleaning cover 340. The ultrasonic generator 320 and the cleaning tank 330 are respectively arranged in the cleaning box 310, and the ultrasonic generator 320 is located in front of the cleaning tank 330 along the cleaning direction. When the diamond wire busbar is conveyed to the cleaning mechanism 300, it will be conveyed from the cleaning box 310 and placed in the cleaning liquid of the cleaning box 310. At this time, the ultrasonic generator 320 is started to realize ultrasonic cleaning of the diamond wire busbar. After cleaning, the diamond wire busbar will pass through the cleaning tank 330 and will be cleaned again by the cleaning liquid in the cleaning tank 330, thereby forming electrolytic cleaning-ultrasonic cleaning-liquid cleaning, realizing multiple cleanings, thereby ensuring the cleaning effect of the diamond wire busbar.
[0044] In addition, when the diamond wire busbar is subjected to ultrasonic cleaning and liquid cleaning, the cleaning cover 340 can be closed to ensure that the cleaning liquid does not splash out of the cleaning box 310 during ultrasonic cleaning, and to prevent debris from falling into the cleaning box 310. The cleaning effect of the diamond wire busbar can be observed in real time through the second transparent window 341, thereby ensuring the cleaning quality.
[0045] See also Figure 5In order to quickly reel the cleaned diamond wire busbar, the present embodiment sets a drying mechanism 400 behind the cleaning mechanism 300, wherein the drying mechanism 400 comprises an oven 410 and a heating plate 420, wherein the heating plate 420 is arranged in the oven 410, and the oven 410 also has a closable oven cover 430. After the diamond wire busbar passes through the cleaning mechanism 300, it will be transported to the oven 410, and the heating plate 420 in the oven 410 will quickly dry the transported diamond wire busbar, so that the cleaned diamond wire busbar can be quickly reeled, thereby improving the cleaning efficiency of the diamond wire busbar, and the oven cover 430 can close the oven 410 when the diamond wire busbar is baked, thereby improving the safety performance and ensuring the drying quality.
[0046] For further information, see Figure 1 and Fig. 9 When the diamond wire busbar is transported to the drying mechanism 400, it will first pass through the wind blowing mechanism 700, and the wind blowing mechanism 700 will first blow the cleaning liquid on the surface of the diamond wire busbar to speed up the drying speed of the diamond wire busbar. In order to achieve wind blowing on the diamond wire busbar, the wind blowing mechanism 700 in this embodiment includes a bellows 710 and an air inlet pipe (not shown in the figure), the air inlet pipe is located at the bottom of the bellows 710 and is connected to the inside of the bellows 710, and an air outlet 720 is opened at the top of the bellows 710. The air inlet pipe is connected to the external air source, and the gas is transported to the bellows 710, and then the air is exhausted from the air outlet 720 at the top of the bellows 710, so as to achieve wind blowing on the diamond wire busbar, so that the diamond wire busbar can be quickly dried and conveniently rolled up, thereby improving the cleaning efficiency of the diamond wire busbar.
[0047] See also Figure 6 and Figure 7After the diamond wire busbar is dried, it will be reeled and arranged by the wire collection mechanism 500. Therefore, the wire collection mechanism 500 in this embodiment includes a wire collection guide wheel 510 and a wire collection unit 520. The wire collection guide wheel 510 is located in front of the wire collection unit 520 along the cleaning direction, and the wire collection unit 520 includes a fixed seat 521, a movable seat 522, a wire collection motor 523 and a wire collection wheel 524. A movable motor 525 and a screw rod 526 are arranged on the fixed seat 521, and the movable seat 522 is connected to the screw rod 526. The wire collection motor 523 and the wire collection wheel 524 are respectively arranged on the movable seat 523, and the wire collection wheel 524 is connected to the wire collection motor 523. The wire collection motor 523 drives the wire collection wheel 524 to rotate, thereby reeling the diamond wire busbar. When the diamond wire busbar is being collected, it will first be transported and conducted by the collection guide wheel 510, and then transported to the collection wheel 524 by the collection guide wheel 510, and the collection wheel 524 will rotate under the drive of the collection motor 523 to achieve winding; in addition, during the winding process of the collection wheel 523, the moving motor 525 will drive the lead screw 526 to rotate, and when the lead screw 526 rotates, it will drive the moving seat 522 to move, thereby moving the collection motor 523 and the collection wheel 524, so that the collection wheel 524 can reel in while moving the wire, and finally realize the automatic collection and arrangement of the diamond wire busbar, ensuring the winding quality of the diamond wire busbar.
[0048] Finally, see Figure 8 In order to prevent the diamond wire busbar from being too loose or too tight during the transportation process, a tensioning adjustment mechanism 600 is arranged between the wire releasing mechanism 100 and the electrolysis mechanism 200, and the tensioning adjustment mechanism 600 includes a tensioning bracket 640, a tensioning guide wheel 620, a tensioning mounting plate 630, a tensioning swing arm 640 and a tensioning wheel 650. The tensioning guide wheel 620 and the tensioning mounting plate 630 are respectively arranged on the tensioning bracket 610, the middle part of the tensioning swing arm 640 is rotatably connected to the tensioning mounting plate 630, and the tensioning wheel 650 is arranged at one end of the tensioning swing arm 640. When the wire-releasing mechanism 100 transports the diamond wire busbar, it will first be transported and conducted through the tensioning guide wheel 620, and then transported to the electrolysis mechanism 200 through the bottom of the tensioning wheel 650. When the diamond wire busbar is too loose during transportation, the tensioning swing arm 640 will rotate downward with the tensioning wheel 650 under its own gravity to adjust the transported diamond wire busbar; when the diamond wire busbar is too tight during transportation, the diamond wire busbar will act on the tensioning wheel 650, and the tensioning wheel 650 will act on the tensioning swing arm 640, so that the tensioning swing arm 640 will rotate upward, and the tensioning swing arm 640 will rotate upward with the tensioning wheel 650, thereby adjusting the transportation of the diamond wire busbar, thereby adjusting the transportation tension of the diamond wire busbar, making the transportation process of the diamond wire busbar smooth, and preventing the diamond wire busbar from being broken or knotted and entangled.
[0049] The above shows and describes the basic principle and main features of the utility model and the advantages of the utility model. Any technician in the industry can smoothly implement the utility model according to the drawings shown in the specification and the above description; however, any equivalent changes, modifications and evolutions made by any technician familiar with the profession without departing from the scope of the technical solution of the utility model using the technical content disclosed above are all equivalent embodiments of the utility model; at the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the utility model are still within the scope of protection of the technical solution of the utility model.
Claims
1. A diamond wire busbar cleaning device, characterized in that: It includes a wire-releasing mechanism, an electrolysis mechanism, a cleaning mechanism, a drying mechanism and a wire-collecting mechanism which are sequentially arranged along the cleaning direction, a tensioning adjustment mechanism is also arranged between the wire-releasing mechanism and the electrolysis mechanism, and a wind blowing mechanism is arranged between the cleaning mechanism and the drying mechanism; The wire unwinding mechanism is used to convey the diamond wire busbar, the electrolysis mechanism and the cleaning mechanism are used to clean the conveyed diamond wire busbar, the wind blowing mechanism is used to blow the cleaned diamond wire busbar, the drying mechanism is used to bake the wind-blown diamond wire busbar, and the wire collecting mechanism is used to wind and arrange the baked diamond wire busbar.
2. The diamond wire busbar cleaning device according to claim 1, characterized in that: The wire-releasing mechanism comprises a wire-releasing frame, a wire-releasing motor and a wire-releasing wheel. The wire-releasing motor and the wire-releasing wheel are respectively arranged on the wire-releasing frame, and the wire-releasing motor is connected to the wire-releasing wheel. The wire-releasing motor drives the wire-releasing wheel to rotate, thereby conveying the diamond wire busbar.
3. The diamond wire busbar cleaning device according to claim 1, characterized in that: The electrolysis mechanism includes an electrolysis guide wheel, an electrolysis box and an electrolysis cell. The electrolysis guide wheel is located in front of the electrolysis box along the cleaning direction. The electrolysis cell is arranged in the electrolysis box, and electrolyte is injected into the electrolysis cell. The electrolysis box is also covered with an electrolysis cover plate, and a first transparent window is specifically provided in the middle of the electrolysis cover plate.
4. The diamond wire busbar cleaning device according to claim 1, characterized in that: The cleaning mechanism comprises a cleaning box, an ultrasonic generator and a cleaning tank. Cleaning liquid is injected into the cleaning box, a cleaning cover is provided on the top of the cleaning box, and a second transparent window is provided in the middle of the cleaning cover. The ultrasonic generator and the cleaning tank are respectively arranged in the cleaning box, and the ultrasonic generator is located in front of the cleaning tank along the cleaning direction.
5. The diamond wire busbar cleaning device according to claim 1, characterized in that: The drying mechanism comprises an oven and a heating plate, wherein the heating plate is arranged in the oven, and the oven also has a closable oven cover.
6. The diamond wire busbar cleaning device according to claim 1, characterized in that: The wire collecting mechanism includes a wire collecting guide wheel and a wire collecting unit. The wire collecting guide wheel is located in front of the wire collecting unit along the cleaning direction. The wire collecting unit includes a fixed seat, a movable seat, a wire collecting motor and a wire collecting wheel. The movable motor and the screw rod are arranged on the fixed seat, and the movable seat is connected to the screw rod. The wire collecting motor and the wire collecting wheel are respectively arranged on the movable seat. The wire collecting wheel is connected to the wire collecting motor. The wire collecting motor drives the wire collecting wheel to rotate, thereby winding the diamond wire busbar.
7. The diamond wire busbar cleaning device according to claim 1, characterized in that: The tensioning adjustment mechanism includes a tensioning bracket, a tensioning guide wheel, a tensioning mounting plate, a tensioning swing arm and a tensioning wheel. The tensioning guide wheel and the tensioning mounting plate are respectively arranged on the tensioning bracket, the middle part of the tensioning swing arm is rotatably connected to the tensioning mounting plate, and the tensioning wheel is arranged at one end of the tensioning swing arm.
8. The diamond wire busbar cleaning device according to claim 1, characterized in that: The wind blowing mechanism comprises a bellows and an air inlet pipe, wherein the air inlet pipe is located at the bottom of the bellows and communicated with the inside of the bellows, and an air outlet is provided at the top of the bellows.
9. The diamond wire busbar cleaning device according to claim 1, characterized in that: It also includes a cabinet, on which a wire-releasing mechanism, a tensioning and adjusting mechanism, an electrolysis mechanism, a cleaning mechanism, a drying mechanism and a wire-collecting mechanism are respectively arranged.