Copper wire cleaning device for electromagnetic wire production

By combining rinsing and cleaning mechanisms with a high-pressure water pump and filtration system, the problem of cleaning stubborn stains and verdigris on the surface of electromagnetic wires is solved, achieving a highly efficient copper wire cleaning effect.

CN120885481APending Publication Date: 2025-11-04SHANDONG SAINT ELECTRIC CO LTD
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Patent Information

Application Number
CN202511252167.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-11-04

AI Technical Summary

Technical Problem

Existing technologies are ineffective at removing stubborn stains and verdigris from the surface of electromagnetic wires, resulting in low cleaning efficiency.

Method used

The copper wires are treated with rinsing, sweeping, scraping, soaking and wiping by rinsing and cleaning mechanisms. Combined with a high-pressure water pump and filtration system, the cleaning solution is recycled and the filter screen is prevented from clogging. Acidic solution is used for deep cleaning.

Benefits of technology

It effectively removes stubborn stains and verdigris, improves the cleaning efficiency of electromagnetic wires, and ensures the cleanliness and corrosion resistance of copper wires.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a copper wire cleaning device for electromagnetic wire production, which comprises a cleaning mechanism, a flat plate is arranged below the cleaning mechanism, a flushing mechanism is mounted on one side of the cleaning mechanism, supporting legs are mounted at the ends of the flushing mechanism and the flat plate, and a cleaning mechanism and a drying mechanism are arranged on one side, away from the flushing mechanism, of the cleaning mechanism. The cleaning mechanism and the drying mechanism are both installed on the flat plate. According to the electromagnetic wire cleaning device, the copper wire can be sequentially washed, swept, scraped, infiltrated, wiped and the like through the washing mechanism and the cleaning mechanism, stubborn stains and verdigris on the surface can be effectively cleaned, therefore, the cleanliness of the copper wire is guaranteed, and the working efficiency of electromagnetic wire cleaning is improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of cable production, and particularly relates to a copper wire cleaning device for electromagnetic wire production. BACKGROUND

[0002] The electromagnetic wire refers to a copper wire or an aluminum wire with a thin layer of insulating paint, which is used for winding an inductance coil (such as a motor, a transformer, and an inductor). The cleaning before production is the lifeline for guaranteeing the electrical performance, mechanical performance, and long-term reliability. The copper wire is the main raw material of the electromagnetic wire. The copper wire is prone to stains, oxides, and other impurities during storage and use. These impurities can affect the electrical conductivity and appearance of the copper wire. Therefore, it is necessary to remove these impurities through cleaning treatment to restore the glossiness of the copper wire and enhance its corrosion resistance and service life.

[0003] After searching, the Chinese patent with the application number 2023224954425 discloses a cleaning device and electromagnetic wire production equipment. The cleaning device includes a cleaning box, a water inlet, a cleaning tank, and a cleaning auxiliary assembly. The cleaning box is provided with a water inlet, and the middle part of the cleaning box is provided with a cleaning tank. The cleaning tank is symmetrically connected at both ends with a turntable. The slot opening of one end of the cleaning tank is provided with a cleaning auxiliary assembly, and the cleaning auxiliary assembly is arranged below the lower side of the turntable. By arranging the cleaning auxiliary assembly at the side of the cleaning tank of the cleaning box, the arc-shaped auxiliary cleaning plate and the elastic cleaning cotton plate are used in cooperation to clean the dirt adhered and condensed on the electromagnetic wire, improve the cleaning efficiency, ensure the quality of the product, and meet the actual demand. However, the following defects still exist: although the arc-shaped auxiliary cleaning plate and the elastic cleaning cotton plate are used in cooperation, and the cleaning tank can remove the dirt adhered to the electromagnetic wire, sometimes the stains attached to the surface of the electromagnetic wire are stubborn, and the copper is exposed to humid air to form copper green. Only relying on cleaning and the cooperation of the cleaning plate and the cleaning cotton plate cannot clean the surface of the electromagnetic wire, thereby reducing the cleaning efficiency of the electromagnetic wire. SUMMARY

[0004] The purpose of the present application is to overcome the deficiencies in the prior art and provide a copper wire cleaning device for electromagnetic wire production. The flushing mechanism and the cleaning mechanism can sequentially perform flushing, cleaning, scraping, soaking, and wiping on the copper wire. The stubborn stains and copper green on the surface can be effectively cleaned, thereby ensuring the cleanliness of the copper wire and improving the cleaning efficiency of the electromagnetic wire.

[0005] In order to achieve the above-mentioned purpose, the technical solution adopted by the present application is as follows: A copper wire cleaning device for electromagnetic wire production, comprising a cleaning mechanism, a flat plate is arranged below the cleaning mechanism, a flushing mechanism is installed on one side of the cleaning mechanism, support legs are installed on the end of the flat plate, a cleaning mechanism is arranged on the side away from the flushing mechanism, the cleaning mechanism and the drying mechanism are both installed on the flat plate, the cleaning mechanism comprises a U-shaped box, a liquid conveying assembly, a cleaning assembly, a scraping assembly, an infiltration assembly and a wiping assembly, the U-shaped box is installed on the end of the flat plate, the two ends of the U-shaped box are connected with the flushing box, a vertical plate is arranged in the U-shaped box, the vertical plate is installed on the flat plate, the cleaning assembly is installed between the vertical plate and the flushing box, the liquid conveying assembly is installed on one side of the U-shaped box and connected with the cleaning assembly, the scraping assembly is installed on the side of the vertical plate away from the cleaning assembly, the infiltration assembly is arranged on one side of the scraping assembly, the wiping assembly is arranged on one side of the infiltration assembly, the infiltration assembly and the wiping assembly are both installed on the scraping assembly through a connecting frame, and the infiltration assembly is also connected with the liquid conveying assembly.

[0006] The flushing mechanism comprises a flushing tank, a motor one, a plug valve, a filter tank, a high-pressure water pump and a shunt tank, the flushing tank is connected with the flat plate, two support rods one, two support rods two and two support rods three are symmetrically installed inside the flushing tank, the two support rods one are located on both sides of the upper part of the flushing tank, the two support rods three are located on both sides of the lower part of the flushing tank, the two support rods two are located on both sides of the middle part of the flushing tank, the support rod three is located between the support rod one and the support rod two, the middle part of the two support rods one is rotatably installed with a groove wheel two, the middle part of the two support rods two and the two support rods three is rotatably installed with a groove wheel one, the flushing tank contains cleaning liquid, the liquid level of the cleaning liquid is higher than the support rod two and lower than the support rod one, the cleaning liquid can completely immerse the groove wheel one on the support rod two, the copper wire to be cleaned is wound on the groove wheel two on the support rod one, the groove wheel one on the support rod three, the groove wheel one on the two support rods two, the groove wheel one on the support rod three and the groove wheel two on the support rod one in sequence, a rotating cylinder is rotatably installed inside the flushing tank and below the two support rods two, a plurality of stirring blades are uniformly installed in the circumferential direction of the rotating cylinder, the motor one is installed on one side outside the flushing tank, the output shaft end of the motor one is connected with one end of the rotating cylinder, the filter tank is installed below the middle part of the flushing tank, a filter screen is installed at the middle position inside the filter tank, one side of the bottom of the flushing tank is communicated with one side of the bottom of the filter tank through a U-shaped pipe, the plug valve is installed on the vertical section of the U-shaped pipe, a water outlet cylinder is installed on the top wall inside the filter tank, a plurality of water outlet holes are uniformly arranged in the bottom of the water outlet cylinder, both ends of the water outlet cylinder are connected with the flushing tank through L-shaped pipes, a valve is installed on the L-shaped pipe between the flushing tank and the filter tank, a blowdown pipe is installed at the bottom of the filter tank, a valve is also installed on the blowdown pipe, the high-pressure water pump is installed on the outer side wall of the filter tank, the input end of the high-pressure water pump extends to the inside of the filter tank and is located above the filter screen, the output end of the high-pressure water pump is connected with a connecting pipe, the end of the connecting pipe is installed with the shunt tank, the shunt tank is installed at the bottom of the flushing tank through a connecting rod, a plurality of water delivery pipes are uniformly installed at the bottom of the shunt tank, the end of the water delivery pipe extends to the inside of the flushing tank and is located below the support rod one.

[0007] The cleaning assembly comprises a second rotating shaft, a worm, a collar, a worm wheel and a second sprocket, the second rotating shaft is horizontally arranged and rotatably installed on the U-shaped box, one end of the second rotating shaft extends to the outside of the U-shaped box, the second sprocket is installed on the second rotating shaft outside the U-shaped box, the second sprocket is connected with the first sprocket through a chain, the two ends of the collar are rotatably installed on the side wall of the washing box and the vertical plate respectively, the collar is located above the second rotating shaft, the worm is installed on the middle part of the second rotating shaft, the worm wheel is installed on the collar and engaged with the worm, a plurality of cleaning brushes are uniformly installed on the inside of the collar in the circumferential and radial directions, the infusion assembly comprises a cam, a cylinder, a movable rod, a pressing plate and a solution tank, the solution tank is located inside the U-shaped box and installed on the flat plate, the inside of the solution tank contains an acidic solution, a liquid adding pipe is installed on the solution tank, the end of the liquid adding pipe penetrates through the U-shaped box and extends to the outside of the U-shaped box, the cylinder is installed above the solution tank, a piston is slidably installed in the inside of the cylinder, the movable rod is slidably installed on the cylinder and connected with the piston at the bottom, the cam is located above the cylinder and installed on the second rotating shaft, the pressing plate is installed on the top of the movable rod, a spring one is installed between the outside of the movable rod, the cylinder and the pressing plate, the pressing plate can be in real-time abutment with the cam under the action of the spring one, a liquid suction pipe is installed at the bottom of the cylinder, the bottom end of the liquid suction pipe extends to the inside below the solution tank, a liquid outlet pipe is installed on the side wall of the bottom of the cylinder, the end of the liquid outlet pipe is connected with the infiltration mechanism, a one-way valve is installed on the liquid suction pipe and the liquid outlet pipe, the one-way valve on the liquid suction pipe can only make the liquid flow to the inside of the cylinder, and the one-way valve on the liquid outlet pipe can only make the liquid flow to the outside of the cylinder.

[0008] The scraping assembly comprises a support block, a movable column, a support seat and a scraper, the number of the support blocks is two and they are symmetrically installed on the two sides of the upper part of the vertical plate, the movable column is slidably installed on the support block, the support seat is installed on one end of the movable column close to each other, the support seat is semicircular, the scraper is installed on the support seat to scrape the impurities cleaned from the surface of the copper wire, lock bolts are installed on the two ends of the support seat on different sides, the scraper is installed on the support seat through the lock bolts, a spring two is installed between the periphery of the movable column, the support seat and the support block, the infiltration assembly comprises a ring one, an atomizing nozzle and a sponge layer, the two sides of the ring one are installed on the support block through a connecting frame, the number of the atomizing nozzles is multiple and they are uniformly installed in the inside of the ring one, the sponge layer is installed in the inside of the ring one and in contact with the atomizing nozzle, the bottom of the ring one is connected with the liquid outlet pipe, the acidic solution in the liquid outlet pipe enters the ring one and is sprayed into the sponge layer through the atomizing nozzle, the wiping assembly comprises a ring two and a wiping layer, the two sides of the ring two are installed on the support block through a connecting frame, the wiping layer is installed in the inside of the ring two.

[0009] The cleaning mechanism comprises a water tank, a bearing frame one, a bearing frame two and a bearing frame three, the water tank is installed on the flat plate, the water tank contains clean water, the bearing frame one and the bearing frame three are installed on the top of the sidewall of the water tank, the height of the bearing frame one is higher than that of the bearing frame three, the bearing frame two is installed in the water tank, and groove wheels three are rotatably installed on the bearing frame one, the bearing frame two and the bearing frame three, and the cleaned copper wire is wound on the groove wheels three in sequence.

[0010] The drying mechanism comprises a drying box, a heating rod and a fan, the drying box is installed on the flat plate through a supporting leg, a partition plate is vertically installed in the drying box, a dispersion plate is arranged in the drying box, the dispersion plate is installed between the inner wall of the drying box and the partition plate, an air outlet pipe two is installed at the middle position of the bottom of the dispersion plate, air outlet pipes one are symmetrically installed at the both sides of the bottom of the dispersion plate, the air outlet pipes one are in L shape and are located at the both sides of the copper wire, the air outlet pipe two is vertical and is located above the copper wire, the heating rod is in plurality and is located above the dispersion plate, the both ends of the heating rod are installed on the inner wall of the drying box and the partition plate respectively, the fan is located above the heating rod and is installed on the top of the drying box, the partition plate is provided with bearing plates away from the air outlet pipes one, the bearing plates are in plurality and are symmetrically and slidably installed on the drying box, one end of the bearing plate abuts against the partition plate, and the other end of the bearing plate extends to the outside of the drying box, and water absorption cotton is installed on the bearing plate.

[0011] Preferably, one side of the drying mechanism is provided with a winding mechanism, the winding mechanism comprises a second motor, a bidirectional threaded rod, a winding drum, a third motor, a U-shaped frame, a fourth motor, a gear one, a half gear, a gear two, the end of the flat plate is provided with a groove, the bidirectional threaded rod is rotatably installed in the groove, one end of the bidirectional threaded rod extends to the end of the flat plate, the second motor is installed on the flat plate and the output shaft end is connected with one end of the bidirectional threaded rod, the sliding block is threadedly installed on different threaded segments of the bidirectional threaded rod, the sliding block is slidably connected with the groove, the top of the sliding block is provided with a vertical plate, the top of the vertical plate is rotatably provided with a receiving rod, the third motor is installed on one of the vertical plates and connected with the end of the receiving rod, the winding drum is arranged between the two receiving rods, the receiving plates are symmetrically installed at the two ends of one side of the groove, the top between the two receiving plates is provided with a guide rod, the U-shaped frame is slidably installed on the guide rod, the inside of the U-shaped frame is vertically and symmetrically rotatably provided with a rotating roller, one side of the two receiving plates is provided with a supporting plate, the supporting plate is installed on the flat plate, the side of the supporting plate close to the receiving plate is provided with an ear plate at the middle of the two ends, the same moving rod is slidably installed on the two ear plates, the moving rod penetrates through the two ear plates, a plurality of disc plates are installed at the middle of the moving rod at equal distances, two vertical rods are symmetrically installed on the moving rod, the end of the disc plate is spaced apart from the two vertical rods, the top of the two vertical rods is connected with the bottom of the U-shaped frame, the fourth rotating shaft is rotatably installed on the side of the supporting plate close to the moving rod, the gear two is installed on the fourth rotating shaft, the third rotating shaft is arranged above and below the fourth rotating shaft, the third rotating shaft is rotatably installed on the supporting plate, the gear one and the half gear are installed on the third rotating shaft, the half gear is located on the outside of the gear one, the gear one is meshedly connected with the gear two, the installation angles of the two half gears are the same, one of the half gears is meshedly connected with the plurality of disc plates on the moving rod, the fourth motor is installed on the side of the supporting plate away from the moving rod, and the output shaft of the fourth motor is connected with one of the third rotating shafts.

[0012] Preferably, the circumference direction of the groove wheel one is uniformly provided with bristles.

[0013] Preferably, the middle of the connecting pipe is in communication with a bearing cylinder, a rotating shaft one is rotatably installed in the bearing cylinder, one end of the rotating shaft one extends to the outside of the bearing cylinder and is provided with a chain wheel one, the chain wheel one is connected with the cleaning mechanism, and an impeller is installed on the rotating shaft one in the bearing cylinder.

[0014] The application has the following beneficial effects: 1) The copper wire can be sequentially washed, cleaned, scraped, soaked and wiped through the washing mechanism and the cleaning mechanism, so that the stubborn stains and copper green on the surface can be effectively cleaned, the cleanliness of the copper wire is ensured, and the working efficiency of the electromagnetic wire cleaning is improved.

[0015] 2) When the cleaning liquid in the washing tank needs to be discharged, the plug valve on the U-shaped pipe is closed, the valves on the two L-shaped pipes and the drain pipe are opened, and the cleaning liquid in the washing tank can only enter the water outlet cylinder through the L-shaped pipe and flow downward through the water outlet hole of the water outlet cylinder. When the cleaning liquid flowing out of the water outlet cylinder contacts the filter screen, the filter screen will be flushed, thereby preventing the filter screen from being clogged, and there is no need to clean the filter screen separately. The cleaning liquid passes through the filter screen and then passes through the drain pipe together with the impurities in the lower part of the filter tank to the outside of the filter tank.

[0016] 3) The circumference of the first groove wheel is uniformly provided with bristles. When the copper wire contacts the first groove wheel, the bristles clean the surface of the copper wire. At the same time, the flowing cleaning liquid helps to remove the impurities on the surface of the copper wire, thereby improving the working efficiency of cleaning the copper wire.

[0017] 4) A bearing cylinder is installed in the middle of the connecting pipe. A rotating shaft one is rotatably installed in the bearing cylinder. One end of the rotating shaft one extends to the outside of the bearing cylinder and is provided with a chain wheel one. The chain wheel one is connected with the cleaning mechanism. A impeller is installed on the rotating shaft one in the bearing cylinder. When the impeller is impacted by the cleaning liquid, it will rotate to drive the rotating shaft one to rotate, and the chain wheel one on the rotating shaft one will rotate to drive the cleaning mechanism to work.

[0018] 5) The chain wheel one drives the chain wheel two to rotate through the chain. The rotating shaft two connected with the chain wheel two rotates synchronously. The worm on the rotating shaft two rotates synchronously. The worm gear drives the sleeve ring to rotate on the vertical plate and the washing tank. The cleaning brush in the sleeve ring rotates to clean the surface of the copper wire after washing to remove the impurities on the surface of the copper wire.

[0019] 6) When the rotating shaft two rotates, the cam on the rotating shaft two rotates synchronously. When the cam rotates, it drives the pressing plate to reciprocate up and down under the action of the spring one. When the pressing plate moves downward, the spring one is compressed. When the movable rod drives the piston to move downward along the cylinder, the acid solution in the cylinder is delivered to the soaking assembly through the liquid outlet pipe. When the pressing plate moves upward, the spring one slowly returns to the initial state. When the movable rod drives the piston to move upward along the cylinder, the acid solution in the solution tank is sucked into the cylinder through the liquid suction pipe, achieving the purpose of delivering the acid solution.

[0020] 7) When the copper wire enters the drying box for drying, the heating rod generates heat. The wind generated by the fan contacts the heat to form hot air. The hot air contacts the two sides and the top of the copper wire through the air outlet pipe one and the air outlet pipe two for drying. When the copper wire passes through the water absorption cotton, the water absorption cotton can wipe off the water stains and water remaining on the surface of the copper wire, thereby realizing the cleaning of the copper wire.

[0021] 8) the copper wire is wound after cleaning, the copper wire is passed through two rotating rollers and fixed on the winding drum, the motor three works to drive the connecting rod connected therewith to rotate, the winding drum is driven to rotate through the connecting rod, the motor four works to drive the rotating shaft three to rotate, the half gear on the rotating shaft three rotates with the gear one, the gear one drives the gear two to rotate, the gear two drives the other gear one to rotate, the two rotating shaft threes rotate in the same direction, the reciprocating rod is driven to reciprocate through the meshing of different half gears and multiple discs on the reciprocating rod, so that the U-shaped frame reciprocates along the guide rod under the action of the vertical rod, thereby adjusting the position of the copper wire, so that the copper wire is uniformly wound on the winding drum, when the winding drum needs to be replaced, the motor two drives the bidirectional threaded rod to rotate, the two sliding blocks on the bidirectional threaded rod move away from each other, thereby driving the two vertical plates to move away from each other, so that the winding drum is separated from the connecting rod, facilitating the replacement of the winding drum, and being conducive to improving the work efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0022] ATTACHMENT Figure 1 It is a copper wire cleaning device structure schematic diagram for electromagnetic wire production.

[0023] ATTACHMENT Figure 2 It is a flushing mechanism structure schematic diagram in the copper wire cleaning device for electromagnetic wire production.

[0024] ATTACHMENT Figure 3 It is a flushing box internal structure schematic diagram in the copper wire cleaning device for electromagnetic wire production.

[0025] ATTACHMENT Figure 4 It is an attachment Figure 3 It is a partial A enlarged view.

[0026] ATTACHMENT Figure 5 It is a flushing box and filter box longitudinal sectional view in the copper wire cleaning device for electromagnetic wire production.

[0027] ATTACHMENT Figure 6 It is a cleaning mechanism structure schematic diagram in the copper wire cleaning device for electromagnetic wire production.

[0028] ATTACHMENT Figure 7 It is a chain wheel one and chain wheel two connection structure schematic diagram in the copper wire cleaning device for electromagnetic wire production.

[0029] ATTACHMENT Figure 8 It is a structure schematic diagram of the infusion assembly in the copper wire cleaning device for electromagnetic wire production.

[0030] ATTACHMENT Figure 9 It is a structure schematic diagram of the cleaning assembly in the copper wire cleaning device for electromagnetic wire production.

[0031] ATTACHMENT Figure 10It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the scraping assembly of the present application.

[0032] Attached Figure 11 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the infiltration assembly of the present application.

[0033] Attached Figure 12 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the wiping assembly of the present application.

[0034] Attached Figure 13 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the cleaning mechanism of the present application.

[0035] Attached Figure 14 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the drying mechanism of the present application.

[0036] Attached Figure 15 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the winding mechanism of the present application.

[0037] Attached Figure 16 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the U-shaped frame of the present application.

[0038] Attached Figure 17 It is a kind of copper wire cleaning device for electromagnetic wire production in the structure diagram of the gear one, gear two and half gear connection of the present application.

[0039] In the figure: 1, flat plate; 11, groove; 2, support leg; 3, flushing mechanism; 301, flushing box; 302, motor one; 303, groove wheel one; 304, plug valve; 305, rotating cylinder; 306, support rod one; 307, stirring blade; 308, groove wheel two; 309, support rod two; 310, support rod three; 311, U-shaped tube; 312, filter box; 313, filter screen; 314, high-pressure water pump; 315, water delivery pipe; 316, connecting rod; 317, connecting pipe; 318, bearing cylinder; 319, rotating shaft one; 320, impeller; 321, sprocket one; 322, flow divider box; 323, L-shaped pipe; 324, water outlet cylinder; 325, water outlet hole; 4, cleaning mechanism; 41, U-shaped box; 42, infusion assembly; 421, cam; 422, cylinder; 423, piston; 424, movable rod; 425, spring one; 426, pressing plate; 427, suction tube; 428, solution box; 429, liquid feeding pipe; 4210, liquid outlet pipe; 43, cleaning assembly; 431, rotating shaft two; 432, worm; 433, collar; 434, worm gear; 435, cleaning brush; 436, chain; 437, sprocket two; 44, scraping assembly; 441, support block; 442, movable column; 443, support seat; 444, scraper; 445, locking bolt; 446, spring two; 45, soaking assembly; 451, annular ring one; 452, atomizing nozzle; 453, sponge layer; 46, wiping assembly; 461, annular ring two; 462, wiping layer; 47, vertical plate; 5, cleaning mechanism; 51, water tank; 52, bearing frame one; 53, bearing frame two; 54, bearing frame three; 55, groove wheel three; 6, drying mechanism; 601, drying box; 602, support leg; 603, partition; 604, dispersing plate; 605, heating rod; 606, fan; 607, air outlet pipe one; 608, bearing plate; 609, water-absorbing cotton; 610, air outlet pipe two; 7, winding mechanism; 701, motor two; 702, bidirectional threaded rod; 703, sliding block; 704, vertical plate; 705, receiving rod; 706, winding drum; 707, motor three; 708, receiving plate; 709, guide rod; 710, U-shaped frame; 711, rotating roller; 712, support plate; 713, lug plate; 714, moving rod; 715, vertical rod; 716, circular plate; 717, motor four; 718, rotating shaft three; 719, gear one; 720, half gear; 721, rotating shaft four; 722, gear two. DETAILED DESCRIPTION

[0040] The technical solutions in the embodiments of the present application will be described below in conjunction with the accompanying drawings. Figures 1-17 It is obvious that the embodiments described are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present application.

[0041] In the description of the present application, it should be understood that the terms "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0042] A copper wire cleaning device for electromagnetic wire production, comprising a cleaning mechanism 4, a flat plate 1 is arranged below the cleaning mechanism 4, a flushing mechanism 3 is installed on one side of the cleaning mechanism 4, the flushing mechanism 3 is provided with support legs 2 at the end of the flat plate, a cleaning mechanism 4 is arranged on the side away from the flushing mechanism 3, and a cleaning mechanism 5 and a drying mechanism 6 are arranged on the flat plate 1, the cleaning mechanism 4 comprises a U-shaped box 41, a liquid conveying assembly 42, a cleaning assembly 43, a scraping assembly 44, an infiltration assembly 45 and a wiping assembly 46, the U-shaped box 41 is installed at the end of the flat plate 1, both ends of the U-shaped box 41 are connected with a flushing box 301, a vertical plate 47 is arranged in the U-shaped box 41, the vertical plate 47 is installed on the flat plate 1, the cleaning assembly 43 is installed between the vertical plate 47 and the flushing box 301, the liquid conveying assembly 42 is installed on one side of the inside of the U-shaped box 41 and connected with the cleaning assembly 43, the scraping assembly 44 is installed on the side of the vertical plate 47 away from the cleaning assembly 43, the infiltration assembly 45 is arranged on one side of the scraping assembly 44, the wiping assembly 46 is arranged on one side of the infiltration assembly 45, the infiltration assembly 45 and the wiping assembly 46 are installed on the scraping assembly 44 through connecting frames, and the infiltration assembly 45 is also connected with the liquid conveying assembly 42.

[0043] The cleaning assembly 43 comprises a rotating shaft two 431, a worm 432, a collar 433, a worm wheel 434, a sprocket wheel two 437, the rotating shaft two 431 is horizontally and rotatably installed on the U-shaped box 41, one end of the rotating shaft two 431 extends to the outside of the U-shaped box 41, the sprocket wheel two 437 is installed on the rotating shaft two 431 located outside the U-shaped box 41, the sprocket wheel two 437 is connected with the sprocket wheel one 321 through a chain 436, the two ends of the collar 433 are rotatably installed on the side wall of the washing box 301 and the vertical plate 47 respectively, the collar 433 is located above the rotating shaft two 431, the worm 432 is installed on the middle part of the rotating shaft two 431, the worm wheel 434 is installed on the collar 433 and engages with the worm 432, a plurality of cleaning brushes 435 are uniformly installed in the collar 433 in the circumferential and radial directions, the sprocket wheel one 321 drives the sprocket wheel two 437 to rotate through the chain 436, the rotating shaft two 431 connected with the sprocket wheel two 437 rotates synchronously, the worm 432 located on the rotating shaft two 431 rotates synchronously, the worm wheel 434 engages with the worm 432 to drive the collar 433 to rotate on the vertical plate 47 and the washing box 301, the cleaning brushes 435 in the collar 433 rotate synchronously to clean the surface of the copper wire after washing, and remove impurities on the surface of the copper wire, the solution conveying assembly 42 comprises a cam 421, a cylinder 422, a movable rod 424, a pressing plate 426, a solution tank 428, the solution tank 428 is located inside the U-shaped box 41 and is installed on the flat plate 1, the solution tank 428 contains an acidic solution inside, and a liquid adding pipe 429 is installed on the solution tank 428, one end of the liquid adding pipe 429 penetrates through the U-shaped box 41 and extends to the outside of the U-shaped box 41, the cylinder 422 is installed above the solution tank 428, a piston 423 is slidably installed in the cylinder 422, the movable rod 424 is slidably installed on the cylinder 422 and is connected with the piston 423 at the bottom, the cam 421 is located above the cylinder 422 and is installed on the rotating shaft two 431, the pressing plate 426 is installed on the top of the movable rod 424, a spring one 425 is installed between the outside of the movable rod 424, the cylinder 422 and the pressing plate 426, the pressing plate 426 can be in real time abutted with the cam 421 under the action of the spring one 425, a liquid suction pipe 427 is installed at the bottom of the cylinder 422, the bottom end of the liquid suction pipe 427 extends to the lower part of the inside of the solution tank 428, a liquid outlet pipe 4210 is installed on the side wall of the bottom of the cylinder 422, one end of the liquid outlet pipe 4210 is connected with the infiltration mechanism, a one-way valve is installed on the liquid suction pipe 427 and the liquid outlet pipe 4210, the one-way valve on the liquid suction pipe 427 can only make liquid flow to the inside of the cylinder 422, the one-way valve on the liquid outlet pipe 4210 can only make liquid flow to the outside of the cylinder 422, when the rotating shaft two 431 rotates, the cam 421 located on the rotating shaft two 431 rotates synchronously, after the cam 421 rotates, the pressing plate 426 reciprocates up and down under the action of the spring one 425, when the pressing plate 426 moves downward, the spring one 425 is compressed, when the movable rod 424 drives the piston 423 to move downward along the cylinder 422,The acidic solution inside the cylinder 422 is delivered to the infiltration assembly 45 through the outlet pipe 4210. When the pressing plate 426 moves upward, the spring 425 slowly recovers to the initial state, and when the movable rod 424 drives the piston 423 to move upward along the cylinder 422, the acidic solution in the solution tank 428 is sucked into the cylinder 422 through the suction pipe 427, achieving the purpose of delivering the acidic solution.

[0044] The scraping assembly 44 comprises support blocks 441, movable columns 442, support seats 443 and scraping plates 444. The support blocks 441 are two in number and symmetrically installed on the upper two sides of the stand 47. The movable columns 442 are slidingly installed on the support blocks 441. The support seats 443 are installed on the ends of the movable columns 442 close to each other, and are semicircular in shape. The scraping plates 444 are installed on the support seats 443, and the impurities cleaned from the surface of the copper wire are scraped off by the scraping plates 444. Locking bolts 445 are installed on the two ends of the support seats 443 on different sides. The scraping plates 444 are installed on the support seats 443 through the locking bolts 445. Springs 446 are installed between the periphery of the movable columns 442, the support seats 443 and the support blocks 441. When the scraping plates 444 need to be disassembled for replacement or cleaning, the locking bolts 445 are first rotated to no longer fix the scraping plates 444. An external force is applied to the support seats 443, which moves along the support blocks 441 through the movable columns 442. At this time, the springs 446 are compressed. Then the scraping plates 444 are removed. The infiltration assembly 45 comprises annular rings 451, atomizing nozzles 452 and sponge layers 453. The annular rings 451 are installed on the support blocks 441 through connecting frames on both sides. The atomizing nozzles 452 are multiple in number and uniformly installed inside the annular rings 451. The sponge layers 453 are installed inside the annular rings 451 and in contact with the atomizing nozzles 452. The bottom of the annular rings 451 is connected with the outlet pipe 4210. The acidic solution in the outlet pipe 4210 enters the annular rings 451 and is sprayed out of the atomizing nozzles 452 into the sponge layers 453, which can be soaked. When the copper wire contacts the sponge layers 453, the surface of the copper wire will be attached with the acidic solution, and the copper wire surface can be rubbed by the sponge layers 453. The acidic solution can act on the copper green on the surface of the copper wire. The wiping assembly 46 comprises annular rings 461 and wiping layers 462. The annular rings 461 are installed on the support blocks 441 through connecting frames on both sides. The wiping layers 462 are installed inside the annular rings 461. When the wiping layers 462 contact the surface of the copper wire, the copper green on the surface of the copper wire can be wiped off. The cleaning mechanism 4 can clean the copper wire in all directions.

[0045] The flushing mechanism 3 comprises a flushing box 301, a motor 302, a plug valve 304, a filter box 312, a high-pressure water pump 314 and a shunt box 322. The flushing box 301 is connected with the flat plate 1. Two supporting rods 306, two supporting rods 309 and two supporting rods 310 are symmetrically arranged in the flushing box 301. The two supporting rods 306 are arranged on the upper sides of the flushing box 301, the two supporting rods 310 are arranged on the lower sides of the flushing box 301, and the two supporting rods 309 are arranged on the middle sides of the flushing box 301. The supporting rod 310 is arranged between the supporting rod 306 and the supporting rod 309. A groove wheel 308 is rotatably arranged on the middle of the two supporting rods 306. A groove wheel 303 is rotatably arranged on the middle of the two supporting rods 309 and the two supporting rods 310. The flushing box 301 contains cleaning liquid. The liquid level of the cleaning liquid is higher than the supporting rod 309 and lower than the supporting rod 306. The cleaning liquid can completely immerse the groove wheel 303 on the supporting rod 309. The copper wire to be cleaned is wound on the groove wheel 308 on the supporting rod 306, the groove wheel 303 on the supporting rod 310, the groove wheel 303 on the two supporting rods 309, the groove wheel 303 on the supporting rod 310 and the groove wheel 308 on the supporting rod 306 in sequence. A rotating cylinder 305 is rotatably arranged in the flushing box 301 and between the two supporting rods 309. A plurality of stirring blades 307 are uniformly arranged on the circumference of the rotating cylinder 305. The motor 302 is arranged on one side of the flushing box 301. The output shaft of the motor 302 is connected with one end of the rotating cylinder 305. The filter box 312 is arranged below the middle of the flushing box 301. A filter screen 313 is arranged on the middle of the inside of the filter box 312. One side of the bottom of the flushing box 301 is communicated with one side of the bottom of the filter box 312 through a U-shaped pipe 311. The plug valve 304 is arranged on the vertical section of the U-shaped pipe 311. A water outlet cylinder 324 is arranged on the top wall of the inside of the filter box 312. A plurality of water outlets 325 are uniformly arranged on the bottom of the water outlet cylinder 324. The two ends of the water outlet cylinder 324 are connected with the flushing box 301 through L-shaped pipes 323. Valves are arranged on the L-shaped pipes 323 between the flushing box 301 and the filter box 312. A sewage pipe is arranged on the bottom of the filter box 312. Valves are also arranged on the sewage pipe. The high-pressure water pump 314 is arranged on the outer wall of the filter box 312. The input end of the high-pressure water pump 314 extends into the inside of the filter box 312 and is arranged above the filter screen 313. The output end of the high-pressure water pump 314 is connected with a connecting pipe 317. The end of the connecting pipe 317 is connected with the shunt box 322. The shunt box 322 is arranged on the bottom of the flushing box 301 through a connecting rod 316. A plurality of water conveying pipes 315 are uniformly arranged on the bottom of the shunt box 322. The ends of the water conveying pipes 315 extend into the inside of the flushing box 301 and are arranged below the supporting rod 306. When the copper wire is flushed, the plug valve 304 on the U-shaped pipe 311 is opened, and the valves on the two L-shaped pipes 323 and the sewage pipe are closed.The copper wire moves along the groove wheel two 308, the plurality of groove wheels one 303, the groove wheel two 308 in turn, the motor one 302 works to drive the rotating cylinder 305 to rotate, the plurality of stirring blades 307 on the rotating cylinder 305 rotates to stir the cleaning liquid in the washing box 301, realizes the flow of the cleaning liquid, and the flowing cleaning liquid will flush the surface of the copper wire, and the impurities attached to the outside of the copper wire are preliminarily treated, at the same time, the cleaning liquid in the washing box 301 enters the filter box 312 through the U-shaped pipe 311, under the action of the high-pressure water pump 314, the cleaning liquid in the filter box 312 flows from bottom to top, in this process, the impurities in the cleaning liquid are intercepted in the lower part of the filter box 312 by the filter screen 313, and the cleaning liquid in the upper part of the filter box 312 is sent to the connecting pipe 317 by the high-pressure water pump 314 and finally enters the shunt box 322, because the water flowing out of the high-pressure water pump 314 has a certain pressure, the cleaning liquid in the shunt box 322 enters the washing box 301 again through the water delivery pipe 315, and the cleaning liquid is recycled after being filtered, when the cleaning liquid in the washing box 301 needs to be discharged, the plug valve 304 on the U-shaped pipe 311 is closed, the valves on the two L-shaped pipes 323 and the drain pipe are opened, the cleaning liquid in the washing box 301 can only enter the water outlet cylinder 324 through the L-shaped pipe 323, and flow downward through the water outlet hole 325 on the water outlet cylinder 324, when the cleaning liquid flowing out of the water outlet cylinder 324 contacts the filter screen 313, the filter screen 313 is flushed, thereby preventing the filter screen 313 from being blocked, and the filter screen 313 does not need to be cleaned separately, the cleaning liquid passes through the filter screen 313 and the impurities in the lower part of the filter box 312 together, and is discharged outside the filter box 312 through the drain pipe.

[0046] The circumference of the groove wheel one 303 is uniformly provided with bristles, when the copper wire contacts the groove wheel one 303, the surface of the copper wire is cleaned by the bristles, and at the same time, the flowing cleaning liquid is beneficial to the removal of impurities on the surface of the copper wire, thereby improving the working efficiency of the copper wire cleaning.

[0047] The middle part of the connecting pipe 317 is communicated and installed with a bearing cylinder 318, the inside of the bearing cylinder 318 is rotatably installed with a rotating shaft one 319, one end of the rotating shaft one 319 extends to the outside of the bearing cylinder 318 and is installed with a chain wheel one 321, the chain wheel one 321 is connected with the cleaning mechanism 4, the rotating shaft one 319 in the bearing cylinder 318 is installed with an impeller 320, when the impeller 320 is impacted by the cleaning liquid, the rotating shaft one 319 rotates, the chain wheel one 321 on the rotating shaft one 319 rotates, and the cleaning mechanism 4 is driven to work.

[0048] The cleaning mechanism 5 comprises a water tank 51, a bearing frame one 52, a bearing frame two 53 and a bearing frame three 54. The water tank 51 is installed on the flat plate 1, and the water tank 51 contains a cleaning water source. The bearing frame one 52 and the bearing frame three 54 are installed on the top of the side walls at both ends of the water tank 51, and the height of the bearing frame one 52 is higher than that of the bearing frame three 54. The bearing frame two 53 is installed in the water tank 51. The groove wheels three 55 are rotatably installed on the bearing frame one 52, the bearing frame two 53 and the bearing frame three 54. The cleaned copper wire is wound on the groove wheels three 55 on the bearing frame one 52, the bearing frame two 53 and the bearing frame three 54 in sequence, and the copper wire can enter the water tank 51 for cleaning.

[0049] The drying mechanism 6 comprises a drying box 601, heating rods 605 and a fan 606. The drying box 601 is installed on the flat plate 1 through a supporting leg 602. A partition plate 603 is vertically installed in the drying box 601. A dispersion plate 604 is arranged in the drying box 601. The dispersion plate 604 is installed between the inner wall of the drying box 601 and the partition plate 603. An air outlet pipe two 610 is installed at the middle of the bottom of the dispersion plate 604. Air outlet pipes one 607 are symmetrically installed at both sides of the bottom of the dispersion plate 604. The air outlet pipes one 607 are in L shape and are located at both sides of the copper wire. The air outlet pipe two 610 is vertical and is located above the copper wire. The heating rods 605 are arranged above the dispersion plate 604. The two ends of the heating rods 605 are installed on the inner wall of the drying box 601 and the partition plate 603, respectively. The fan 606 is located above the heating rods 605 and is installed on the top of the drying box 601. A bearing plate 608 is arranged on the side of the partition plate 603 away from the air outlet pipe one 607. The bearing plate 608 is symmetrically and slidably installed on the drying box 601. One end of the bearing plate 608 abuts against the partition plate 603, and the other end extends to the outside of the drying box 601. A water absorbing cotton 609 is installed on the bearing plate 608. When the copper wire enters the drying box 601 for drying, the heating rods 605 work to generate heat. The fan 606 works to generate wind force, which contacts the heat to form hot air. The hot air contacts the copper wire at both sides and the top through the air outlet pipes one 607 and the air outlet pipe two 610 to dry the copper wire. When the copper wire passes through the water absorbing cotton 609, the water absorbing cotton 609 can wipe off the water stains and water on the surface of the copper wire, so as to clean the copper wire.

[0050] One side of the drying mechanism 6 is provided with a winding mechanism 7, the winding mechanism 7 includes motor two 701, two-way threaded rod 702, winding drum 706, motor three 707, U-shaped frame 710, motor four 717, gear one 719, half gear 720, gear two 722, the end of the flat plate 1 is provided with a groove 11, the two-way threaded rod 702 is rotatably installed in the groove 11, one end of the two-way threaded rod 702 extends to the end of the flat plate 1, the motor two 701 is installed on the flat plate 1 and the output shaft end is connected with one end of the two-way threaded rod 702, the sliding block 703 is threadedly installed on different threaded segments of the two-way threaded rod 702, the sliding block 703 is slidably connected with the groove 11, the vertical plate 704 is installed on the top of the sliding block 703, the receiving rod 705 is symmetrically rotatably installed on the top of the vertical plate 704, the motor three 707 is installed on one of the vertical plates 704 and connected with the end of the receiving rod 705, the winding drum 706 is arranged between the two receiving rods 705, the receiving plates 708 are symmetrically installed at the two ends of one side of the groove 11, the guide rod 709 is installed at the top between the two receiving plates 708, the U-shaped frame 710 is slidably installed on the guide rod 709, the rotating roller 711 is vertically and symmetrically rotatably installed in the U-shaped frame 710, the supporting plate 712 is arranged on one side of the two receiving plates 708, the ear plate 713 is installed at the middle of the two ends of the side of the supporting plate 712 close to the receiving plate 708, the same moving rod 714 is slidably installed on the two ear plates 713, the moving rod 714 penetrates through the two ear plates 713, a plurality of circular plates 716 are equidistantly installed on the middle of the moving rod 714, two vertical rods 715 are symmetrically installed on the moving rod 714, the two vertical rods 715 are spaced apart from the ends of the circular plates, the top of the two vertical rods 715 is connected with the bottom of the U-shaped frame 710, the rotating shaft four 721 is rotatably installed on the side of the supporting plate 712 close to the moving rod 714, the gear two 722 is installed on the rotating shaft four 721, the rotating shaft three 718 is arranged on the upper and lower sides of the rotating shaft four 721, the rotating shaft three 718 is rotatably installed on the supporting plate 712, the gear one 719 and the half gear 720 are installed on the rotating shaft three 718, the half gear 720 is located on the outer side of the gear one 719, the gear one 719 is meshedly connected with the gear two 722, the installation angles of the two half gears 720 are the same, one of the half gears 720 is meshedly connected with the plurality of circular plates on the moving rod 714, the motor four 717 is installed on the side of the supporting plate 712 away from the moving rod 714, the output shaft of the motor four 717 is connected with one of the rotating shaft threes 718, when the cleaned copper wire is wound, the copper wire is passed through the two rotating rollers 711 and fixed on the winding drum 706, the motor three 707 works to drive the receiving rod 705 connected therewith to rotate, the winding drum 706 is driven to rotate through the receiving rod 705, the motor four 717 works to drive the rotating shaft three 718 to rotate, the half gear 720 on the rotating shaft three 718 and the gear one 719 rotate therewith, the gear one 719 drives the gear two 722 to rotate through meshing,Gear two 722 drives another gear 719 to rotate, realizes two rotating shafts three 718 same direction rotation, through different half gear 720 and multiple disc on the moving rod 714 meshing, thereby drives the moving rod 714 can reciprocating motion, U-shaped frame 710 under the action of vertical rod 715 along the guide rod 709 reciprocating movement, in turn drive copper wire to adjust the position, so that the copper wire is uniformly wound on the reel 706, when need to replace the reel 706, motor two 701 drives the two-way threaded rod 702 to rotate, the two sliding blocks 703 on the two-way threaded rod 702 are away from each other, in turn drive two vertical plate 704 away from each other, so that the reel 706 and the receiving rod 705 separate, convenient for the replacement of reel 706, be favorable to the improvement of work efficiency.

[0051] The above is merely an example and description of the structure of the present application, those skilled in the art can make various modifications or supplements to the described specific embodiments or adopt similar ways to replace, as long as it does not deviate from the structure of the invention or beyond the scope defined by the present claims, should belong to the protection scope of the present application.

Claims

1. A copper wire cleaning device for electromagnetic wire production, comprising a cleaning mechanism, a flat plate is arranged below the cleaning mechanism, characterized in that, One side of the cleaning mechanism is provided with a flushing mechanism, the flushing mechanism is provided with support legs at the end of the flat plate, the cleaning mechanism is provided with a cleaning mechanism and a drying mechanism away from the flushing mechanism, the cleaning mechanism and the drying mechanism are installed on the flat plate, the cleaning mechanism comprises a U-shaped box, a liquid delivery assembly, a cleaning assembly, a scraping assembly, a soaking assembly and a wiping assembly, the U-shaped box is installed at the end of the flat plate, two ends of the U-shaped box are connected with the flushing box, an upright plate is arranged in the U-shaped box, the upright plate is installed on the flat plate, the cleaning assembly is installed between the upright plate and the flushing box, the liquid delivery assembly is installed on one side of the U-shaped box and is connected with the cleaning assembly, the scraping assembly is installed on one side of the upright plate away from the cleaning assembly, the soaking assembly is arranged on one side of the scraping assembly, the wiping assembly is arranged on one side of the soaking assembly, the soaking assembly and the wiping assembly are installed on the scraping assembly through connecting frames, and the soaking assembly is also connected with the liquid delivery assembly.

2. A copper wire cleaning device for electromagnetic wire production according to claim 1, characterized in that, The flushing mechanism comprises a flushing box, a motor one, a plug valve, a filter box, a high-pressure water pump and a shunt box, the flushing box is connected with the flat plate, two first supporting rods, two second supporting rods and two third supporting rods are symmetrically arranged in the flushing box, the two first supporting rods are arranged on the upper sides of the flushing box, the two third supporting rods are arranged on the lower sides of the flushing box, the two second supporting rods are arranged on the middle sides of the flushing box, the third supporting rods are arranged between the first supporting rods and the second supporting rods, groove wheels two are rotatably arranged at the middle portions of the two first supporting rods, groove wheels one are rotatably arranged at the middle portions of the two second supporting rods and the two third supporting rods, the flushing box contains cleaning liquid, the liquid level of the cleaning liquid is higher than the second supporting rods and lower than the first supporting rods, the cleaning liquid can completely immerse the groove wheels one on the second supporting rods, the copper wire to be cleaned is wound on the groove wheels two on the first supporting rods, the groove wheels one on the third supporting rods, the groove wheels one on the two second supporting rods, the groove wheels one on the third supporting rods and the groove wheels two on the first supporting rods in sequence, a rotating cylinder is rotatably arranged below the two second supporting rods in the flushing box, a plurality of stirring blades are uniformly arranged on the circumference of the rotating cylinder, the motor one is arranged on one side of the flushing box, and the output shaft of the motor one is connected with one end of the rotating cylinder, the filter box is arranged below the middle portion of the flushing box, a filter screen is arranged at the middle position in the filter box, one side of the bottom of the flushing box is communicated with one side of the bottom of the filter box through a U-shaped pipe, the plug valve is arranged on the vertical section of the U-shaped pipe, a water outlet cylinder is arranged on the top wall in the filter box, a plurality of water outlet holes are uniformly arranged on the bottom of the water outlet cylinder, the two ends of the water outlet cylinder are connected with the flushing box through L-shaped pipes, a valve is arranged on the L-shaped pipe between the flushing box and the filter box, a sewage pipe is arranged on the bottom of the filter box, and a valve is also arranged on the sewage pipe, the high-pressure water pump is arranged on the outer side wall of the filter box, the input end of the high-pressure water pump extends to the inside of the filter box and is located above the filter screen, the output end of the high-pressure water pump is connected with a connecting pipe, the end of the connecting pipe is provided with the shunt box, the shunt box is arranged on the bottom of the flushing box through a connecting rod, a plurality of water delivery pipes are uniformly arranged on the bottom of the shunt box, and the ends of the water delivery pipes extend to the inside of the flushing box and are located below the first supporting rods.

3. A copper wire cleaning device for electromagnetic wire production according to claim 2, characterized in that, The middle part of the connecting pipe is provided with a bearing cylinder, the inside of the bearing cylinder is rotatably provided with a rotating shaft I, one end of the rotating shaft I extends to the outside of the bearing cylinder and is provided with a chain wheel I, the chain wheel I is connected with a cleaning mechanism, and the rotating shaft I in the bearing cylinder is provided with an impeller.

4. A copper wire cleaning device for electromagnetic wire production according to claim 2, characterized in that, The circumferential direction of the groove wheel I is uniformly provided with brush hairs.

5. A copper wire cleaning device for electromagnetic wire production according to claim 1, characterized in that, The cleaning assembly comprises a rotating shaft II, a worm, a sleeve ring, a worm wheel and a chain wheel II, the rotating shaft II is horizontally rotatably arranged on the U-shaped box, one end of the rotating shaft II extends to the outside of the U-shaped box, the chain wheel II is arranged on the rotating shaft II outside the U-shaped box, the chain wheel II is connected with the chain wheel I through a chain, the sleeve ring is rotatably arranged on the side wall of the flushing box and the vertical plate, the sleeve ring is located above the rotating shaft II, the worm is arranged on the middle part of the rotating shaft II, the worm wheel is arranged on the sleeve ring and is engaged with the worm, a plurality of cleaning brushes are uniformly arranged on the inside of the sleeve ring in the circumferential direction and the radial direction, the infusion assembly comprises a cam, a cylinder, a movable rod, a pressing plate, a solution tank, the solution tank is arranged in the inside of the U-shaped box and is arranged on the flat plate, the inside of the solution tank contains an acidic solution, the solution tank is provided with a liquid adding pipe, the end of the liquid adding pipe penetrates through the U-shaped box and extends to the outside of the U-shaped box, the cylinder is arranged above the solution tank, a piston is slidably arranged in the inside of the cylinder, the movable rod is slidably arranged on the cylinder and is connected with the piston, the cam is arranged above the cylinder and is arranged on the rotating shaft II, the pressing plate is arranged on the top of the movable rod, a spring I is arranged between the outside of the movable rod, the cylinder and the pressing plate, the pressing plate can be in real-time abutment with the cam under the action of the spring I, the bottom of the cylinder is provided with a liquid suction pipe, the bottom end of the liquid suction pipe extends to the inside below the solution tank, a liquid outlet pipe is arranged on the side wall of the bottom of the cylinder, the end of the liquid outlet pipe is connected with a soaking mechanism, a one-way valve is arranged on the liquid suction pipe and the liquid outlet pipe, the one-way valve on the liquid suction pipe can only make liquid flow to the inside of the cylinder, and the one-way valve on the liquid outlet pipe can only make liquid flow to the outside of the cylinder.

6. A copper wire cleaning device for electromagnetic wire production according to claim 1, characterized in that, The scraping assembly comprises a supporting block, a movable column, a supporting seat and a scraper, the number of the supporting blocks is two and the supporting blocks are symmetrically arranged on the two sides of the upper part of the vertical plate, the movable column is slidably arranged on the supporting block, the supporting seat is arranged on one end of the movable column close to each other, the supporting seat is semicircular, the scraper is arranged on the supporting seat, locking bolts are arranged on the two ends of the supporting seat, the scraper is arranged on the supporting seat through the locking bolts, a spring II is arranged between the periphery of the movable column, the supporting seat and the supporting block, the soaking assembly comprises a ring I, atomizing nozzles and a sponge layer, the two sides of the ring I are arranged on the supporting blocks through connecting frames, the number of the atomizing nozzles is multiple and the atomizing nozzles are uniformly arranged in the inside of the ring I, the sponge layer is arranged in the inside of the ring I and is in contact with the atomizing nozzles, the bottom of the ring I is connected with the liquid outlet pipe, the wiping assembly comprises a ring II and a wiping layer, the two sides of the ring II are arranged on the supporting blocks through connecting frames, and the wiping layer is arranged in the inside of the ring II.

7. A copper wire cleaning device for electromagnetic wire production according to claim 1, characterized in that, The cleaning mechanism comprises a water tank, a bearing frame one, a bearing frame two and a bearing frame three, the water tank is installed on the flat plate, the water tank contains clean water, the bearing frame one and the bearing frame three are installed on the top of the side wall of the water tank, the height of the bearing frame one is higher than that of the bearing frame three, the bearing frame two is installed in the water tank, groove wheels three are rotatably installed on the bearing frame one, the bearing frame two and the bearing frame three, and the cleaned copper wire is wound on the groove wheels three in sequence.

8. A copper wire cleaning device for electromagnetic wire production according to claim 1, characterized in that, The drying mechanism comprises a drying box, a heating rod and a fan, the drying box is installed on the flat plate through the supporting legs, a partition plate is vertically installed in the drying box, a dispersion plate is arranged in the drying box, the dispersion plate is installed between the inner wall of the drying box and the partition plate, an air outlet pipe two is installed at the middle position of the bottom of the dispersion plate, air outlet pipes one are symmetrically installed at the both sides of the bottom of the dispersion plate, the air outlet pipes one are in L shape and are located at the both sides of the copper wire, the air outlet pipe two is vertical and is located above the copper wire, the heating rod is in plurality and is located above the dispersion plate, the both ends of the heating rod are installed on the inner wall of the drying box and the partition plate respectively, the fan is located above the heating rod and is installed on the top of the drying box, the partition plate is provided with bearing plates away from the air outlet pipes one, the bearing plates are in plurality and are symmetrically and slidably installed on the drying box, one end of the bearing plate is abutted against the partition plate, the other end of the bearing plate extends to the outside of the drying box, and water absorbing cotton is installed on the bearing plate.

9. A copper wire cleaning device for electromagnetic wire production according to claim 1, characterized in that, One side of the drying mechanism is provided with a winding mechanism, the winding mechanism comprises a motor two, a bidirectional threaded rod, a winding drum, a motor three, a U-shaped frame, a motor four, a gear one, a half gear, a gear two, recesses are formed in the end of the flat plate, the bidirectional threaded rod is rotatably installed in the recess, one end of the bidirectional threaded rod extends to the end of the flat plate, the motor two is installed on the flat plate and the output shaft end is connected with one end of the bidirectional threaded rod, the sliding block is threadedly installed on different threaded sections of the bidirectional threaded rod, the sliding block is slidably connected with the recess, the vertical plate is installed on the top of the sliding block, the supporting rods are symmetrically and rotatably installed on the top of the vertical plate, the motor three is installed on one of the vertical plates and connected with the end of the supporting rod, the winding drum is arranged between the two supporting rods, the supporting plates are symmetrically installed at the two ends of one side of the recess, the guide rods are installed at the top between the two supporting plates, the U-shaped frame is slidably installed on the guide rods, the rotating rollers are vertically and symmetrically rotatably installed in the U-shaped frame, the supporting plate is installed on the flat plate, the ear plates are installed on the middle of the two ends of the side of the supporting plate close to the supporting plates, the same moving rod is slidably installed on the two ear plates, the moving rod penetrates through the two ear plates, a plurality of circular plates are installed at the middle of the moving rod at equal distances, two vertical rods are symmetrically installed on the moving rod, the vertical rods are spaced from the ends of the circular plates, the top of the vertical rods is connected with the bottom of the U-shaped frame, the rotating shaft four is rotatably installed on the side of the supporting plate close to the moving rod, the gear two is installed on the rotating shaft four, the rotating shaft threes are arranged above and below the rotating shaft four, the rotating shaft threes are rotatably installed on the supporting plate, the gear one and the half gear are installed on the rotating shaft three, the half gear is located outside the gear one, the gear one is meshedly connected with the gear two, the installation angles of the two half gears are the same, one of the half gears is meshedly connected with the plurality of circular plates on the moving rod, the motor four is installed on the side of the supporting plate away from the moving rod, and the output shaft of the motor four is connected with one of the rotating shaft threes.