Plating equipment for cable core
The cable core plating equipment with a multi-guide module, a rotating water-absorbing sponge and a self-rotating brush structure solves the problems of poor positioning, uneven plating, incomplete electrolyte removal and low oil recovery rate, achieves efficient plating and straightening, and improves production efficiency and product quality.
Patent Information
- Application Number
- CN202511171017.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-21
- Publication Date
- 2025-10-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional cable core plating equipment has problems such as poor positioning effect, poor plating uniformity, incomplete electrolyte removal, uneven oil spraying effect and low oil recovery rate. In addition, there is no effective straightening mechanism, which makes the cable core easy to bend and deform during the processing.
A multi-guide module is used to ensure the stable operation of the cable core. Combined with a rotating water-absorbing sponge and a self-rotating brush structure, all-round wiping and uniform oil spraying are achieved. Automated clamping and straightening are achieved through cylinders and stepper motors, and an oil recovery system is set up for recycling.
It improves the coating quality and drying effect, reduces electrolyte waste, improves production efficiency and reduces costs, and ensures the straightness and surface cleanliness of the cable core during processing.
Smart Images

Figure CN120748862A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable core plating, in particular to a plating device for a cable core. Background Art
[0002] During cable manufacturing, surface plating of the core is a crucial process for improving its conductivity, corrosion resistance, and service life. Conventional cable core plating equipment typically includes a plating tank, a guide mechanism, and a drying mechanism. However, existing technologies present the following challenges: Conventional guide modules have limited effectiveness in positioning the cable core, which can easily cause the core to shift or vibrate during the electroplating process, impacting the uniformity of the coating. Inadequate removal of residual electrolyte from the surface of the plated cable core can lead to oxidation of the coating or reduced effectiveness in subsequent processes. Existing drying mechanisms often employ fixed wiping structures, making them difficult to adapt to cables of varying diameters and resulting in uneven wiping. Oil spray mechanisms typically employ static spraying or simple rotating brushes, which are ineffective in removing impurities from the core surface. Furthermore, the oil recovery rate after oil spraying is low, resulting in resource waste. Some equipment lacks an effective straightening mechanism after plating, which can easily cause the cable core to bend and deform during subsequent processing or use, impacting product quality. To solve the above problems, there is an urgent need for an efficient cable core plating equipment that integrates plating, straightening, drying and oil spraying functions to improve the coating quality, optimize the drying effect, and achieve efficient oil recycling. Summary of the Invention
[0003] In response to the above technical problems, the present invention adopts the following technical solutions: a cable core plating device, comprising a plating mechanism for performing surface plating and straightening on the cable core, the plating mechanism comprising an electroplating tank, the plating mechanism being provided with a drying mechanism for removing excess liquid on the surface of the cable core after plating, and an oil spraying mechanism for spraying oil on the plated cable core; The drying mechanism comprises an inner rotating seat, three connecting rods are fixedly installed on the inner rotating seat, and a drying box is fixedly installed on the electroplating pool.
[0004] Furthermore, the plating mechanism includes an outer rod and an inner rod fixedly mounted on the electroplating tank. The electroplating tank is filled with electrolyte for electroplating and is provided with electrodes for electroplating. Two guide modules are provided in the electroplating tank, and one guide module is provided on each of the outer rod and the inner rod.
[0005] Furthermore, the guide module includes a steering seat, the steering seat of the guide module arranged in the electroplating pool is fixedly installed on the electroplating pool, the steering seat of the guide module arranged on the outer rod is fixedly installed on the outer rod, and the steering seat of the guide module arranged on the inner rod is fixedly installed on the inner rod. Three lower wheels are rotatably installed on the steering seat, two upper sliders and a lower push rod are slidably installed on the steering seat, an upper sticking wheel is rotatably installed on the upper slider, and a tightening spring is arranged between the lower push rod and the upper slider.
[0006] Furthermore, a straightening frame is fixedly mounted on the inner rod, two straightening blocks are fixedly mounted on the straightening frame, a lower straightening wheel is rotatably mounted on the straightening frame, a straightening wheel block is slidably mounted on the straightening frame, an upper straightening wheel is rotatably mounted on the straightening wheel block, an upper adjusting rod is rotatably mounted on the straightening frame through a thread, the upper adjusting rod and the straightening wheel block are rotatably mounted, a side fixing plate is fixedly mounted on the side of the electroplating pool, a cylinder is fixedly mounted on the side fixing plate, a side slide is slidably mounted on the side fixing plate, the side slide is fixedly mounted on the output end of the cylinder, two inclined slots are provided on the side slide, two wire clamping blocks are slidably mounted on the side fixing plate, a guide column is fixedly mounted on the wire clamping block, the guide column slides in the inclined slot, and a stepping motor for driving the upper straightening wheel to rotate is provided on the straightening wheel block.
[0007] When in use, first pass the cable core to be plated through the straightening block, and pass it between the upper straightening wheel and the lower straightening wheel, pass the cable core through the two clamping blocks, then pass the cable core through the three absorbent sponges in the drying box, and then pass it through the three brushes in the brush oil tank. The cylinder extends, causing the side slide to slide along the side fixed plate, and drives the two guide columns and the clamping blocks to move toward each other through the inclined slide groove. The end of the cable core is clamped by the clamping block, and then the cable core to be plated is passed from the upper of the four guide modules. The upper and lower wheels pass through the cable core respectively, and the tightening spring is used to limit the cable core and straighten the cable core. Then the cylinder contracts so that the clamping block no longer clamps the end of the cable core. The stepper motor on the straightening wheel block rotates, driving the upper straightening wheel to rotate, thereby driving the cable core to move continuously, transporting the cable core, and electroplating the cable core through the electrolyte and electrodes in the electroplating tank. Then the plated cable core is straightened by the straightening frame to prevent the cable core from detaching.
[0008] Furthermore, the drying mechanism also includes a ball bearing fixedly mounted on the drying box, an outer rotating seat fixedly mounted on the inner ring of the ball bearing, three sponge columns rotatably mounted on the outer rotating seat, a water-absorbing sponge fixedly mounted on the sponge column, a self-rotating gear fixedly mounted on the sponge column, the sponge column and the inner rotating seat are rotatably mounted, an outer gear ring is fixedly mounted in the drying box, and the outer gear ring is engaged with the self-rotating gear.
[0009] Furthermore, a water squeezing plate is rotatably installed in the drying box, and a plurality of slots are provided on the water squeezing plate. A horizontal column is fixedly installed in the drying box, and a slider is slidably installed on the horizontal column. A slider spring is provided between the slider and the drying box, and an extrusion rod is rotatably installed on the slider, and the extrusion rod is rotatably installed with the water squeezing plate.
[0010] The rotation of the inner rotating seat drives the three sponge columns and the water-absorbing sponge to rotate together. At the same time, under the action of the outer gear ring, the rotating gear, sponge column and water-absorbing sponge rotate quickly and automatically, that is, the water-absorbing sponge rotates while revolving. The cable core after plating enters the drying box and then enters between the three water-absorbing sponges. The cable core is squeezed by the water-absorbing sponge to wipe off the excess electrolyte on the surface of the cable core. The slider is driven by the slider spring to slide along the horizontal column, and the squeezing plate is driven to rotate relative to the drying box by the squeezing rod, so that the squeezing plate squeezes the water-absorbing sponge that moves to the bottom of the squeezing plate, and the electrolyte in the water-absorbing sponge is squeezed out to the bottom of the drying box and discharged into the electroplating tank through the holes at the bottom of the drying box for recycling.
[0011] Furthermore, the oil injection mechanism includes a rotating frame rotatably mounted in the oil brush tank, a rotating frame gear is fixedly mounted on the rotating frame, an oil brush motor is fixedly mounted on the oil brush tank, a motor gear is fixedly mounted on the motor shaft of the oil brush motor, the motor gear is engaged with the rotating frame gear, three brushes are rotatably mounted on the rotating frame, a brush gear is fixedly mounted on the brush, an outer frame is fixedly mounted on the connecting rod, the brush is rotatably mounted with the outer frame, a fixed inner gear ring is fixedly mounted in the oil brush tank, and the fixed inner gear ring is engaged with the brush gear.
[0012] Furthermore, an oil guide plate is fixedly installed on the outer frame, an oil injection pipe is fixedly installed in the brush oil tank, the oil injection pipe is connected to the external oil pipe, a center wheel is fixedly installed on the rotating frame, a recovery box is fixedly installed in the brush oil tank, two conveying shafts are rotatably installed in the recovery box, lower conveying wheels are fixedly installed on the conveying shafts, and a transmission belt is wrapped around the center wheel and the two lower conveying wheels.
[0013] Furthermore, the recovery box is provided with a plurality of recovery holes, a filter chamber and a delivery chamber are provided in the recovery box, a filter screen for blocking debris is provided in the filter chamber, the delivery shaft is located in the delivery chamber, a lower oil pipe is fixedly installed below the delivery chamber, the lower oil pipe is connected to the oil injection pipe, and a pump is provided in the lower oil pipe.
[0014] The oil is then passed through the oil pipe to the oil pump, and then the oil is pumped into ...
[0015] Compared with the prior art, the present invention has the following advantages: (1) The present invention ensures that the cable core maintains stable operation during the electroplating process and avoids deviation or shaking by setting a plurality of guide modules. The straightening frame and the adjustable upper straightening wheel further optimize the straightness of the core. (2) The drying mechanism provided by the present invention adopts a rotary water-absorbing sponge, which rotates while revolving, so as to achieve all-round wiping of the cable core and effectively remove the residual electrolyte on the surface. The water squeezing plate can automatically squeeze the water-absorbing sponge, recover the electrolyte and recycle it, thereby reducing waste and maintaining a stable drying effect. (3) The oil spraying mechanism provided by the present invention adopts a brush structure that rotates and revolves, which can not only evenly apply oil but also remove impurities on the surface of the core. The oil guide plate and the oil recovery system can collect and filter excess oil and pump it back to the oil spray pipe for recycling, thereby improving oil utilization and reducing production costs. (4) The present invention realizes automatic clamping, transportation and straightening of the cable core through automatic components such as cylinders and stepper motors, reduces manual intervention, enables continuous plating, cleaning, rust prevention and other processes, and significantly improves production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0017] Figure 2 Schematic diagram of the plating mechanism structure of the present invention Figure 1 .
[0018] Figure 3 This is a structural diagram of the guide module of the present invention.
[0019] Figure 4 Schematic diagram of the plating mechanism structure of the present invention Figure 2 .
[0020] Figure 5 Schematic diagram of the drying mechanism structure of the present invention Figure 1 .
[0021] Figure 6 Schematic diagram of the drying mechanism structure of the present invention Figure 2 .
[0022] Figure 7 Schematic diagram of the fuel injection mechanism structure of the present invention Figure 1 .
[0023] Figure 8 Schematic diagram of the fuel injection mechanism structure of the present invention Figure 2 .
[0024] Figure 9 Schematic diagram of the fuel injection mechanism structure of the present invention Figure 3 .
[0025] Figure 10 Schematic diagram of the fuel injection mechanism structure of the present invention Figure 4 .
[0026] Reference numerals: 101 - electroplating tank; 102 - outer rod; 103 - inner rod; 104 - steering seat; 105 - lower wheel; 106 - upper slider; 107 - upper sticking wheel; 108 - lower push rod; 109 - tightening spring; 110 - straightening frame; 111 - straightening block; 112 - upper straightening wheel; 113 - straightening wheel block; 114 - upper adjusting rod; 115 - cylinder; 116 - side slide; 117 - side fixing plate; 118 - clamping block; 119 - guide column; 120 - inclined slide; 121 - lower straightening wheel; 201 - drying box; 202 - water squeezing plate; 203 - cross column; 204 - slider; 205 - slider spring; 206 - squeezing rod; 207 - roller Ball bearing; 208-outer swivel seat; 209-sponge column; 210-water-absorbing sponge; 211-outer gear ring; 212-inner swivel seat; 213-rotating gear; 214-connecting rod; 301-brush oil tank; 302-brush oil motor; 303-motor gear; 304-rotating frame; 305-rotating frame gear; 306-brush; 307-outer frame; 308-brush gear; 309-fixed inner gear ring; 310-oil guide plate; 311-oil spray pipe; 312-center wheel; 313-transmission belt; 314-lower conveying wheel; 315-recovery box; 316-lower oil pipe; 317-conveying shaft; 318-recovery hole; 319-filter chamber; 320-conveying chamber. DETAILED DESCRIPTION
[0027] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings.
[0028] Example: Reference Figures 1-10A cable core plating device includes a plating mechanism for performing surface plating and straightening on the cable core, the plating mechanism includes an electroplating tank 101, and the plating mechanism is provided with a drying mechanism for removing excess liquid on the surface of the cable core after plating and an oil spraying mechanism for spraying oil on the cable core after plating; The drying mechanism includes an inner rotating seat 212 , on which three connecting rods 214 are fixedly mounted, and a drying box 201 is fixedly mounted on the electroplating tank 101 .
[0029] like Figure 2-Figure 4 As shown, the plating mechanism includes an outer rod 102 and an inner rod 103 fixedly mounted on an electroplating cell 101. The electroplating cell 101 is filled with an electrolyte for electroplating and is provided with electrodes for electroplating. Two guide modules are provided in the electroplating cell 101, and one guide module is provided on each of the outer rod 102 and the inner rod 103.
[0030] like Figure 2-Figure 4 As shown, the guide module includes a steering seat 104, the steering seat 104 of the guide module arranged in the electroplating pool 101 is fixedly installed on the electroplating pool 101, the steering seat 104 of the guide module arranged on the outer rod 102 is fixedly installed on the outer rod 102, and the steering seat 104 of the guide module arranged on the inner rod 103 is fixedly installed on the inner rod 103, three lower wheels 105 are rotatably installed on the steering seat 104, two upper sliders 106 and a lower push rod 108 are slidably installed on the steering seat 104, an upper sticking wheel 107 is rotatably installed on the upper slider 106, and a tightening spring 109 is provided between the lower push rod 108 and the upper slider 106.
[0031] like Figure 2-Figure 4 As shown, a straightening frame 110 is fixedly mounted on the inner rod 103, two straightening blocks 111 are fixedly mounted on the straightening frame 110, a lower straightening wheel 121 is rotatably mounted on the straightening frame 110, a straightening wheel block 113 is slidably mounted on the straightening frame 110, an upper straightening wheel 112 is rotatably mounted on the straightening wheel block 113, an upper adjusting rod 114 is rotatably mounted on the straightening frame 110 through a thread, the upper adjusting rod 114 is rotatably mounted with the straightening wheel block 113, and a side fixing plate 11 is fixedly mounted on the side of the electroplating tank 101. 7. The cylinder 115 is fixedly mounted on the side fixing plate 117, and the side slide plate 116 is slidably mounted on the side fixing plate 117. The side slide plate 116 is fixedly mounted on the output end of the cylinder 115, and two inclined grooves 120 are provided on the side slide plate 116. Two clamping blocks 118 are slidably mounted on the side fixing plate 117, and a guide column 119 is fixedly mounted on the clamping block 118. The guide column 119 slides in the inclined groove 120. The straightening wheel block 113 is provided with a stepping motor for driving the upper straightening wheel 112 to rotate.
[0032] When in use, first pass the cable core to be plated through the straightening block 111, and pass it between the upper straightening wheel 112 and the lower straightening wheel 121, pass the cable core through the two clamping blocks 118, then pass the cable core through the three absorbent sponges 210 in the drying box 201, and then pass it between the three brushes 306 in the brush oil tank 301. The cylinder 115 extends, causing the side slide 116 to slide along the side fixing plate 117, and drives the two guide columns 119 and the clamping block 118 to move toward each other through the inclined slide 120. The end of the cable core is clamped by the clamping block 118, and then the cable core to be plated is passed from the four The upper contact wheel 107 and the lower wheel 105 of the guide module pass through each other respectively, and the upper contact wheel 107 and the lower wheel 105 limit the cable core through the tightening spring 109, and straighten the cable core. Then the cylinder 115 contracts, so that the clamping block 118 no longer clamps the end of the cable core, and the stepper motor on the straightening wheel block 113 rotates, driving the upper straightening wheel 112 to rotate, thereby driving the cable core to move continuously, transporting the cable core, and electroplating the cable core through the electrolyte and electrodes in the electroplating tank 101, and then straightening the plated cable core through the straightening frame 110 to prevent the cable core from detaching.
[0033] like Figure 5 、 Figure 6 As shown, the drying mechanism also includes a ball bearing 207 fixedly mounted on the drying box 201, an outer rotating seat 208 fixedly mounted on the inner ring of the ball bearing 207, three sponge columns 209 rotatably mounted on the outer rotating seat 208, a water-absorbing sponge 210 fixedly mounted on the sponge column 209, a self-rotating gear 213 fixedly mounted on the sponge column 209, the sponge column 209 is rotatably mounted with the inner rotating seat 212, an outer gear ring 211 is fixedly mounted in the drying box 201, and the outer gear ring 211 is engaged with the self-rotating gear 213.
[0034] like Figure 5 、 Figure 6 As shown, a water squeezing plate 202 is rotatably installed in the drying box 201, and a plurality of slots are provided on the water squeezing plate 202. A horizontal column 203 is fixedly installed in the drying box 201, and a slider 204 is slidably installed on the horizontal column 203. A slider spring 205 is provided between the slider 204 and the drying box 201. A squeezing rod 206 is rotatably installed on the slider 204, and the squeezing rod 206 is rotatably installed with the water squeezing plate 202.
[0035] The rotation of the inner rotating seat 212 drives the three sponge columns 209 and the water-absorbing sponge 210 to rotate together. At the same time, under the action of the outer gear ring 211, the rotating gear 213, the sponge column 209 and the water-absorbing sponge 210 rotate quickly and automatically, that is, the water-absorbing sponge 210 rotates while revolving. The cable core after plating enters the drying box 201 and then enters between the three water-absorbing sponges 210. The water-absorbing sponge 210 squeezes the cable core to wipe off the excess electrolyte on the surface of the cable core. The slider spring 205 drives the slider 204 to slide along the cross column 203, and the squeezing plate 202 is driven by the squeezing rod 206 to rotate relative to the drying box 201, so that the squeezing plate 202 squeezes the water-absorbing sponge 210 that moves to the bottom of the squeezing plate 202, squeezes the electrolyte in the water-absorbing sponge 210 to the bottom of the drying box 201, and is discharged into the electroplating tank 101 through the holes at the bottom of the drying box 201 for recycling.
[0036] like Figure 7-10 As shown, the oil injection mechanism includes a rotating frame 304 rotatably mounted in the oil brush tank 301, a rotating frame gear 305 is fixedly mounted on the rotating frame 304, an oil brush motor 302 is fixedly mounted on the oil brush tank 301, a motor gear 303 is fixedly mounted on the motor shaft of the oil brush motor 302, the motor gear 303 is engaged with the rotating frame gear 305, three brushes 306 are rotatably mounted on the rotating frame 304, a brush gear 308 is fixedly mounted on the brush 306, an outer frame 307 is fixedly mounted on the connecting rod 214, the brush 306 is rotatably mounted with the outer frame 307, a fixed inner gear ring 309 is fixedly mounted in the oil brush tank 301, and the fixed inner gear ring 309 is engaged with the brush gear 308.
[0037] like Figure 7-10 As shown, an oil guide plate 310 is fixedly installed on the outer frame 307, an oil injection pipe 311 is fixedly installed in the brush oil tank 301, and the oil injection pipe 311 is connected to the external oil pipe. A center wheel 312 is fixedly installed on the rotating frame 304, a recovery box 315 is fixedly installed in the brush oil tank 301, and two conveying shafts 317 are rotatably installed in the recovery box 315. The lower conveying wheels 314 are fixedly installed on the conveying shaft 317, and a transmission belt 313 is wrapped around the center wheel 312 and the two lower conveying wheels 314.
[0038] like Figure 7-10 As shown, a plurality of recovery holes 318 are provided on the recovery box 315, a filter chamber 319 and a delivery chamber 320 are provided in the recovery box 315, a filter screen for blocking debris is provided in the filter chamber 319, a delivery shaft 317 is located in the delivery chamber 320, a lower oil pipe 316 is fixedly installed below the delivery chamber 320, the lower oil pipe 316 is connected to the oil injection pipe 311, and a pump is provided in the lower oil pipe 316.
[0039] After the cable core is dried, it enters the oil brush tank 301. The oil brush motor 302 drives the motor gear 303 to rotate, driving the rotating frame gear 305, the rotating frame 304 and the center wheel 312 to rotate. The rotating frame 304 drives the three brushes 306 to rotate together, and drives the inner rotating seat 212 to rotate through the outer frame 307 and the connecting rod 214. At the same time, the outer frame 307 drives the oil guide plate 310 to rotate. Under the action of the fixed inner gear ring 309, the brush gear 308 and the brush 306 are driven to rotate rapidly, so that the brush 306 rotates while revolving, and the residue on the surface of the cable core is swept off by the brush 306. At the same time, the oil spray pipe 31 The oil is sprayed onto the brush 306, and the cable core is brushed with oil by the brush 306. The excess oil is moved to the bottom of the oil brush tank 301 by the oil guide plate 310, and enters the filter chamber 319 from the recovery hole 318. The filter screen in the filter chamber 319 blocks the debris, and the filtered oil enters the delivery chamber 320. The center wheel 312 drives the two lower delivery wheels 314 and the delivery shaft 317 to rotate through the transmission belt 313, and the oil in the delivery chamber 320 is then delivered. The oil then enters the lower oil pipe 316 and is sent to the oil spray pipe 311 by the pump in the lower oil pipe 316 for oil recycling.
[0040] The working principle of the cable core plating equipment disclosed in the present invention is as follows: when in use, the cable core to be plated is first passed through the straightening block 111 and passed between the upper straightening wheel 112 and the lower straightening wheel 121, and the cable core is passed between the two clamping blocks 118, and then the cable core is passed between the three absorbent sponges 210 in the drying box 201, and then passed between the three brushes 306 in the brush oil tank 301. The cylinder 115 is extended to make the side slide plate 116 slide along the side fixing plate 117, and the two guide columns 119 and the clamping block 118 are driven to move toward each other through the inclined slide groove 120, and the end of the cable core is clamped by the clamping block 118, and then The cable core to be plated is passed through the upper contact wheel 107 and the lower wheel 105 of the four guide modules respectively. The upper contact wheel 107 and the lower wheel 105 are used to limit the cable core through the tightening spring 109, and the cable core is straightened. Then the cylinder 115 contracts so that the clamping block 118 no longer clamps the end of the cable core. The stepper motor on the straightening wheel block 113 rotates, driving the upper straightening wheel 112 to rotate, thereby driving the cable core to move continuously, transporting the cable core, and electroplating the cable core through the electrolyte and electrodes in the electroplating tank 101. Then the plated cable core is straightened by the straightening frame 110 to prevent the cable core from detaching. The oil brushing motor 302 drives the motor gear 303 to rotate, driving the rotating frame gear 305, the rotating frame 304 and the center wheel 312 to rotate. The rotating frame 304 drives the three brushes 306 to rotate together, and drives the inner rotating seat 212 to rotate through the outer frame 307 and the connecting rod 214. At the same time, the outer frame 307 drives the oil guide plate 310 to rotate, and under the action of the fixed inner gear ring 309, drives the brush gear 308 and the brush 306 to rotate rapidly, so that the brush 306 rotates while revolving. The rotation of the inner rotating seat 212 drives the three sponge columns 209 and the water-absorbing sponge 210 to rotate together. At the same time, under the action of the outer gear ring 211, the self-rotating gear 213, the sponge column 209 and the water-absorbing sponge 210 are fast and automatic, that is, the water-absorbing sponge 210 is sucked. The water sponge 210 rotates while revolving, and the cable core after plating enters the drying box 201, and then enters between the three water-absorbing sponges 210. The water-absorbing sponge 210 squeezes the cable core to wipe off the excess electrolyte on the surface of the cable core. The slider spring 205 drives the slider 204 to slide along the cross column 203, and the squeezing rod 206 drives the squeezing plate 202 to rotate relative to the drying box 201, so that the squeezing plate 202 squeezes the water-absorbing sponge 210 that moves to the bottom of the squeezing plate 202, and squeezes the electrolyte in the water-absorbing sponge 210 to the bottom of the drying box 201, and is discharged into the electroplating tank 101 through the holes at the bottom of the drying box 201 for recycling.After drying, the cable core enters the oil brush tank 301, and the residue on the surface of the cable core is swept off by the brush 306. At the same time, the oil spray pipe 311 sprays oil onto the brush 306, and the cable core is brushed with oil by the brush 306. The excess oil is moved to the bottom of the oil brush tank 301 by the oil guide plate 310, and enters the filter chamber 319 from the recovery hole 318. The debris is blocked by the filter screen in the filter chamber 319, and the filtered oil enters the delivery chamber 320. The center wheel 312 drives the two lower delivery wheels 314 and the delivery shaft 317 to rotate through the transmission belt 313, and delivers the oil in the delivery chamber 320. Then the oil enters the lower oil pipe 316 and is sent to the oil spray pipe 311 through the pump in the lower oil pipe 316 for oil recycling.
[0041] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes based on the technical solution and inventive concept of the present invention within the technical scope of the present invention, which should be covered by the scope of protection of the present invention.
Claims
1. A cable core plating device, comprising a plating mechanism for surface plating and straightening the cable core, characterized in that: The plating mechanism comprises an electroplating pool (101), and the plating mechanism is provided with a drying mechanism for removing excess liquid on the surface of the cable fiber core after plating, and an oil spraying mechanism for spraying oil on the cable core after plating; The drying mechanism comprises an inner rotating seat (212), three connecting rods (214) are fixedly mounted on the inner rotating seat (212), and a drying box (201) is fixedly mounted on the electroplating tank (101).
2. A cable core plating device according to claim 1, characterized in that: The plating mechanism comprises an outer rod (102) and an inner rod (103) fixedly mounted on an electroplating cell (101); the electroplating cell (101) is filled with an electrolyte for electroplating and is provided with electrodes for electroplating; two guide modules are provided in the electroplating cell (101); one guide module is provided on each of the outer rod (102) and the inner rod (103).
3. A cable core plating device according to claim 2, characterized in that: The guide module comprises a steering seat (104), wherein the steering seat (104) of the guide module arranged in the electroplating pool (101) is fixedly mounted on the electroplating pool (101), the steering seat (104) of the guide module arranged on the outer rod (102) is fixedly mounted on the outer rod (102), and the steering seat (104) of the guide module arranged on the inner rod (103) is fixedly mounted on the inner rod (103), three lower wheels (105) are rotatably mounted on the steering seat (104), two upper sliders (106) and a lower push rod (108) are slidably mounted on the steering seat (104), an upper contact wheel (107) is rotatably mounted on the upper slider (106), and a tightening spring (109) is provided between the lower push rod (108) and the upper slider (106).
4. A cable core plating device according to claim 3, characterized in that: A straightening frame (110) is fixedly mounted on the inner rod (103), two straightening blocks (111) are fixedly mounted on the straightening frame (110), a lower straightening wheel (121) is rotatably mounted on the straightening frame (110), a straightening wheel block (113) is slidably mounted on the straightening frame (110), an upper straightening wheel (112) is rotatably mounted on the straightening wheel block (113), an upper adjusting rod (114) is rotatably mounted on the straightening frame (110) through a thread, the upper adjusting rod (114) and the straightening wheel block (113) are rotatably mounted, and a side fixing plate (117) is fixedly mounted on the side of the electroplating tank (101) A cylinder (115) is fixedly mounted on the side fixing plate (117), a side slide plate (116) is slidably mounted on the side fixing plate (117), the side slide plate (116) is fixedly mounted to the output end of the cylinder (115), two inclined slide grooves (120) are provided on the side slide plate (116), two clamping blocks (118) are slidably mounted on the side fixing plate (117), a guide column (119) is fixedly mounted on the clamping block (118), the guide column (119) slides in the inclined slide groove (120), and a stepping motor for driving the upper straightening wheel (112) to rotate is provided on the straightening wheel block (113).
5. The cable core plating device according to claim 1, characterized in that: The drying mechanism further comprises a ball bearing (207) fixedly mounted on the drying box (201), an outer rotating seat (208) fixedly mounted on the inner ring of the ball bearing (207), three sponge columns (209) rotatably mounted on the outer rotating seat (208), a water-absorbing sponge (210) fixedly mounted on the sponge columns (209), a self-rotating gear (213) fixedly mounted on the sponge columns (209), the sponge columns (209) being rotatably mounted on the inner rotating seat (212), an outer gear ring (211) fixedly mounted in the drying box (201), and the outer gear ring (211) meshing with the self-rotating gear (213).
6. A cable core plating device according to claim 5, characterized in that: A water squeezing plate (202) is rotatably mounted in the drying box (201), and a plurality of slots are provided on the water squeezing plate (202). A horizontal column (203) is fixedly mounted in the drying box (201), and a slider (204) is slidably mounted on the horizontal column (203). A slider spring (205) is provided between the slider (204) and the drying box (201). A squeezing rod (206) is rotatably mounted on the slider (204), and the squeezing rod (206) is rotatably mounted on the water squeezing plate (202).
7. The cable core plating equipment according to claim 1, characterized in that: The oil injection mechanism comprises a rotating frame (304) rotatably mounted in an oil brush tank (301), a rotating frame gear (305) fixedly mounted on the rotating frame (304), an oil brush motor (302) fixedly mounted on the oil brush tank (301), a motor gear (303) fixedly mounted on the motor shaft of the oil brush motor (302), the motor gear (303) meshing with the rotating frame gear (305), three brushes (306) rotatably mounted on the rotating frame (304), a brush gear (308) fixedly mounted on the brush (306), an outer frame (307) fixedly mounted on the connecting rod (214), the brushes (306) and the outer frame (307) rotatably mounted, a fixed inner gear ring (309) fixedly mounted in the oil brush tank (301), the fixed inner gear ring (309) meshing with the brush gear (308).
8. The cable core plating equipment according to claim 7, characterized in that: An oil guide plate (310) is fixedly mounted on the outer frame (307), an oil spray pipe (311) is fixedly mounted in the oil brush tank (301), and the oil spray pipe (311) is connected to an external oil pipe. A central wheel (312) is fixedly mounted on the rotating frame (304), a recovery box (315) is fixedly mounted in the oil brush tank (301), two conveying shafts (317) are rotatably mounted in the recovery box (315), lower conveying wheels (314) are fixedly mounted on the conveying shafts (317), and a transmission belt (313) is wound around the central wheel (312) and the two lower conveying wheels (314).
9. A cable core plating device according to claim 8, characterized in that: The recovery box (315) is provided with a plurality of recovery holes (318). A filter chamber (319) and a delivery chamber (320) are provided in the recovery box (315). A filter screen for blocking debris is provided in the filter chamber (319). The delivery shaft (317) is located in the delivery chamber (320). A lower oil pipe (316) is fixedly installed below the delivery chamber (320). The lower oil pipe (316) is communicated with the oil injection pipe (311). A pump is provided in the lower oil pipe (316).
Citation Information
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