A tin ash removing device for tinned copper wire production

By using a combination of cleaning rollers and sponges to wipe the copper wire during the tin-plating process, the problems of tin ash mixing into the solder layer and residual moisture on the copper wire surface were solved, achieving efficient cleaning and drying, and improving production efficiency and product quality.

CN117600130BActive Publication Date: 2025-12-12JIANGXI KANGCHENG COPPER CO LTD
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Patent Information

Application Number
CN202311586698.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-27
Publication Date
2025-12-12
Estimated Expiration
2043-11-27

AI Technical Summary

Technical Problem

In the existing technology, if tin ash is not cleaned in time during the production of tin-plated copper wire, it will be mixed into the solder layer, affecting the quality of the round wire solder strip. Furthermore, the residual moisture on the surface of the copper wire after cleaning will corrode the solder layer.

Method used

Design a device for removing tin dust in the production of tin-plated copper wire, including a cleaning roller and a wiping plate structure inside the wire guide housing. The cleaning roller rotates to sweep away the tin dust, and a cleaning solution is sprayed during the cleaning process. Then, a sponge is used to wipe the surface of the copper wire alternately and squeeze out the moisture.

Benefits of technology

It improves the efficiency of tin ash removal, prevents tin ash from mixing into the solder layer, and effectively removes moisture from the surface of copper wires, thereby improving production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a tinning ash removing device for tinned copper wire production, which comprises a wire passing sleeve with a cavity in the inside structure, a transmission chamber fixedly connected to one side of the wire passing sleeve, a driving motor installed on one side of the transmission chamber, a first rotating rod fixedly connected to the output end of the driving motor, a lower wiping plate fixedly connected to the inside of the wire passing sleeve, an upper wiping plate arranged in the cavity of the wire passing sleeve, a cleaning liquid chamber installed on the top of the wire passing sleeve, the bottom of the cleaning liquid chamber extending into the cavity of the wire passing sleeve, and a cleaning assembly arranged in the cavity of the wire passing sleeve. The opening at the bottom of the cleaning liquid chamber is intermittently opened to release the cleaning liquid onto the copper wire and the lower and upper cleaning rollers, thereby improving the cleaning efficiency of the copper wire. The water spraying drives the movement of the upper wiping plate to make it close to the copper wire, and the outer surface of the copper wire is in contact with the lower and upper wiping plates, thereby improving the cleaning efficiency.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of tinned copper wire production, and particularly relates to a tinned copper wire production tin ash removing device. BACKGROUND

[0002] In the process of round wire welding strip production, copper wire needs to be coated with a layer of tin, and then the thickness of the solder layer is controlled through an air knife, so that the excess tin liquid is oxidized into tin ash, and tin ash is gradually accumulated around the copper wire. If the tin ash is not cleaned in time, the tin ash will mix into the solder layer, affecting the quality of the round wire welding strip.

[0003] The patent application with the announcement number CN 216911243 U in the prior art comprises a water tank with an open top, first rotating rollers are rotatably arranged between inner tank walls close to the top end of the water tank, two second rotating rollers are rotatably arranged in the water tank and are symmetrical with respect to the first rotating rollers, the first rotating rollers and the two second rotating rollers are jointly connected with copper wire, a horizontal plate is arranged on the outer side wall close to the top end of the water tank, a shell with open ends is arranged above the horizontal plate, and a mounting assembly is arranged between the shell and the horizontal plate, two cleaning plates are slidably arranged in the shell and are symmetrically arranged above and below, cleaning sponges are arranged on the opposite sides of the two cleaning plates, and first screws are rotatably arranged on the opposite sides of the two cleaning plates through bearings. The utility model conveniently and efficiently removes the tin ash on the tinned copper wire, avoids the traditional wiping mode, and is beneficial to large-scale industrial production.

[0004] The above-mentioned prior art can effectively clean the tinned copper wire. The water in the water tank is conveniently introduced into the frame body and sprayed out through the spraying cleaning assembly, the copper wire is conveniently preliminarily cleaned, the tin ash on the copper wire is wetted, and finally the wetted tin ash is removed by the cleaning plates and the cleaning sponges. However, when the copper wire is cleaned, water remains on the surface of the copper wire, and the water remaining on the outer surface of the copper wire erodes the solder layer. Therefore, the application provides a tinned copper wire production tin ash removing device. SUMMARY

[0005] The application aims to provide a tinned copper wire production tin ash removing device to solve the problems in the background art.

[0006] In order to achieve the above object, the present application provides the following technical scheme: A tin ash removing device for tinned copper wire production, comprising a wire passing sleeve with a cavity in the inside, a transmission chamber is fixedly connected to one side of the wire passing sleeve, a driving motor is installed on one side of the transmission chamber, a first rotating rod is fixedly connected to the output end of the driving motor, the first rotating rod extends into the cavity of the wire passing sleeve and is fixedly connected with a limiting roller, a second rotating rod is rotatably connected in the transmission chamber, the second rotating rod extends into the cavity of the wire passing sleeve and is fixedly connected with a lower roller, a third rotating rod is rotatably connected in the inside of the transmission chamber, the third rotating rod extends into the cavity of the wire passing sleeve and is fixedly connected with an upper roller, a lower wiping plate is fixedly connected in the inside of the wire passing sleeve, an upper wiping plate is arranged in the cavity of the wire passing sleeve, a cleaning liquid chamber is installed on the top of the wire passing sleeve, the bottom of the cleaning liquid chamber extends into the cavity of the wire passing sleeve, and a cleaning assembly is arranged in the cavity of the wire passing sleeve.

[0007] Preferably, the cleaning assembly comprises a first rotating shaft rotatably connected in the cavity of the wire passing sleeve, a lower cleaning roller is fixedly connected to the outer surface of the first rotating shaft, a second rotating shaft is rotatably connected above the first rotating shaft in the cavity of the wire passing sleeve, and an upper cleaning roller is fixedly connected to the outer surface of the second rotating shaft.

[0008] Preferably, a first driving wheel is fixedly connected to the outer surface of the first rotating rod in the transmission chamber, a first driven wheel is fixedly connected to the outer surface of the second rotating rod, a first synchronous wheel is fixedly connected to one end of the first rotating shaft extending into the inside of the transmission chamber, and the first synchronous wheel, the first driving wheel and the first driven wheel are connected through a synchronous belt.

[0009] Preferably, a fourth rotating rod is rotatably connected in the inside of the transmission chamber, a second driving wheel is fixedly connected to the outer surface of the fourth rotating rod, a second driven wheel is fixedly connected to the outer surface of the third rotating rod, a second synchronous wheel is fixedly connected to one end of the second rotating shaft extending into the inside of the transmission chamber, the second synchronous wheel, the second driven wheel and the first driving wheel are connected through a synchronous belt, a driving gear is fixedly connected to the outer surface of the first rotating rod, a driven gear is fixedly connected to the outer surface of the fourth rotating rod, and the driving gear and the driven gear are engaged.

[0010] Preferably, through grooves are formed in the two sides of the wire passing sleeve, a bearing seat is installed on each end of the third rotating rod, the bearing seat is arranged in the through groove, a telescopic rod is fixedly connected in the through groove, the telescopic end of the telescopic rod is fixedly connected with the bearing seat, a spring is sleeved on the outer surface of the bearing seat, the top of the spring is fixedly connected with the bottom of the bearing seat, and the bottom of the spring is fixedly connected with the bottom of the through groove.

[0011] Preferably, the bottom of the cleaning liquid chamber is slidingly connected with a movable plate, one end of the movable plate is provided with a liquid outlet gap for the liquid in the cleaning liquid chamber to flow out, the second rotating shaft is fixedly connected with a gap gear at both ends, and the bottom of the movable plate is fixedly connected with a rack.

[0012] Preferably, the inside of the wire passing sleeve is fixedly connected with a fixed plate, one end of the fixed plate is fixedly connected with a gas pipe, the inside of the gas pipe is provided with a gas storage groove, the inside of the gas pipe is slidingly connected with a gas rod, one end of the gas rod is fixedly connected with a movable plate, the outer surface of the gas rod is sleeved with a return spring, one end of the return spring is fixedly connected with the movable plate, and the other end of the gas rod is fixedly connected with the gas pipe.

[0013] Preferably, the top of the upper wiping plate is fixedly connected with a transmission rod, the top of the transmission rod is fixedly connected with a movable rod, the outer surface of the movable rod is sleeved with a gas cylinder, and the gas cylinder is in communication with the gas storage groove of the gas pipe.

[0014] Preferably, the inside of the gas cylinder is provided with a gas groove, the top of the movable rod extends into the gas groove of the gas cylinder and is fixedly connected with a piston, the top of the piston is fixedly connected with a pressure spring, the top of the pressure spring is fixedly connected with the top of the gas groove of the gas cylinder, the middle end of the upper wiping plate is fixedly connected with a sponge, and the two sides of the sponge are provided with squeezing assemblies.

[0015] Preferably, the squeezing assembly comprises a contact plate connected between two transmission rods, the inside of the fixed plate is movably connected with a movable plate, the bottom of the movable plate is fixedly connected with a squeezing plate, the contact plate can be in contact with the top of the movable plate, the squeezing plate is matched with the sponge, one side of the movable plate is fixedly connected with a tension spring, the other end of the tension spring is fixedly connected with the fixed plate, another set of upper wiping plates and sponges and squeezing assemblies are arranged in the cavity, one side of each of the two upper wiping plates is fixedly connected with a rack, and a transmission gear is rotatably connected between the two racks and meshes with the two racks, respectively.

[0016] Compared with the prior art, the present application has the following advantages:

[0017] The copper wire gradually transports in the inner wall of the wire sleeve shell, passes between the lower cleaning roller and the upper cleaning roller, the lower cleaning roller and the upper cleaning roller continuously rotate to clean the tin ash on the surface of the copper wire, and the opening at the bottom of the cleaning liquid chamber is intermittently opened to release the cleaning liquid on the copper wire and the lower cleaning roller and the upper cleaning roller, so that the cleaning efficiency of the copper wire is improved, the movement of the upper wiping plate is driven by the water spray to make the upper wiping plate close to the copper wire, and the outer surface of the copper wire is in contact with the lower wiping plate and the upper wiping plate respectively, so that the cleaning efficiency is improved, the two sponges are staggered and in contact with the copper wire, the sponge is extruded by the extrusion plate when being lifted to be squeezed to drain water, and the next time of cleaning the copper wire is prepared, the cleaning efficiency of the copper wire is improved, the two sponges 407 are staggered to clean and absorb water, the sponges can be drained in the staggered mode without stopping, and the working efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the application;

[0019] Figure 2 It is a schematic diagram of the cross-sectional structure of the transmission chamber in the application;

[0020] Figure 3 It is a schematic diagram of the cross-sectional structure of the wire sleeve shell in the application;

[0021] Figure 4 It is a first schematic diagram of the three-dimensional structure of the application without the wire sleeve shell and the transmission chamber;

[0022] Figure 5 It is a second schematic diagram of the three-dimensional structure of the application without the wire sleeve shell and the transmission chamber;

[0023] Figure 6 It is a schematic diagram of the local structure of the cleaning liquid chamber in the application;

[0024] Figure 7 It is a schematic diagram of the local structure of the transmission gear and the rack in the application;

[0025] Figure 8 It is a schematic diagram of the local structure of the upper wiping plate and the abutting plate in the application;

[0026] Figure 9 It is a schematic diagram of the local structure of the two upper wiping plates in the application;

[0027] Figure 10 It is a schematic diagram of the local cross-sectional structure of the upper wiping plate in the application;

[0028] Figure 11 It is a schematic diagram of the cross-sectional structure of the air cylinder in the application.

[0029] In the figure: 100 - the shell of the overline; 101 - the transmission chamber; 102 - the driving motor; 103 - the first rotating rod; 104 - the second rotating rod; 105 - the third rotating rod; 106 - the fourth rotating rod; 107 - the driving gear; 108 - the driven gear; 109 - the limiting roller; 110 - the lower roller; 111 - the upper roller; 112 - the first driving wheel; 113 - the second driving wheel; 114 - the second driven wheel; 115 - the first driven wheel; 116 - the bearing seat; 117 - the spring; 118 - the telescopic rod; 200 - the first synchronous wheel; 201 - the second synchronous wheel; 202 - the first rotating shaft; 203 - the second rotating shaft; 204 - the lower cleaning roller; 205 - the upper cleaning roller; 300 - the cleaning liquid chamber; 301 - the movable plate; 302 - the liquid outlet gap; 303 - the rack; 304 - the gap gear; 305 - the fixed plate; 306 - the inflating pipe; 307 - the inflating rod; 308 - the reset spring; 400 - the upper wiping plate; 401 - the air cylinder; 402 - the movable rod; 403 - the transmission rod; 404 - the piston; 405 - the pressure spring; 406 - the lower wiping plate; 407 - the sponge; 500 - the transmission gear; 501 - the rack; 502 - the extruding plate; 503 - the movable plate; 504 - the abutting plate; 505 - the tension spring. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work are within the protection scope of the present application.

[0031] Embodiment 1

[0032] Please refer to Figures 1-11The application provides a technical scheme: a tinning ash removing device for tinned copper wire production, which comprises a wire passing sleeve 100 internally provided with a cavity, a transmission chamber 101 fixedly connected to one side of the wire passing sleeve 100, a driving motor 102 mounted on one side of the transmission chamber 101, a first rotating rod 103 fixedly connected to an output end of the driving motor 102, the first rotating rod 103 extending into the cavity of the wire passing sleeve 100 and being fixedly connected to a limiting roller 109, a second rotating rod 104 rotatably connected to the transmission chamber 101, the second rotating rod 104 extending into the cavity of the wire passing sleeve 100 and being fixedly connected to a lower roller 110, a third rotating rod 105 rotatably connected to the inside of the transmission chamber 101, the third rotating rod 105 extending into the cavity of the wire passing sleeve 100 and being fixedly connected to an upper roller 111, a first driving wheel 112 fixedly connected to the outer surface of the first rotating rod 103 located in the transmission chamber 101, a first driven wheel 115 fixedly connected to the outer surface of the second rotating rod 104, the first driving wheel 112 and the first driven wheel 115 being connected through a synchronous belt, a fourth rotating rod 106 rotatably connected to the inside of the transmission chamber 101, a second driving wheel 113 fixedly connected to the outer surface of the fourth rotating rod 106, a second driven wheel 114 fixedly connected to the outer surface of the third rotating rod 105, the second driven wheel 114 and the first driving wheel 112 being connected through a synchronous belt, a driving gear 107 fixedly connected to the outer surface of the first rotating rod 103, and a driven gear 108 fixedly connected to the outer surface of the fourth rotating rod 106, the driving gear 107 being engaged with the driven gear 108.

[0033] In the preferable technical scheme of the embodiment, through grooves are formed in the two sides of the wire passing sleeve 100, a bearing seat 116 is mounted at each end of the third rotating rod 105, the bearing seat 116 is arranged in the through groove, a telescopic rod 118 is fixedly connected in the through groove, the telescopic end of the telescopic rod 118 is fixedly connected with the bearing seat 116, a spring 117 is sleeved on the outer surface of the bearing seat 116, the top of the spring 117 is fixedly connected with the bottom of the bearing seat 116, and the bottom of the spring 117 is fixedly connected with the bottom of the through groove.

[0034] Further, by connecting the driving motor 102 with an external power source, the copper pipe that needs to be removed of tin ash is passed through the lower roller 110 and the upper roller 111 through the limiting roller 109, the driving motor 102 is started to drive the first rotating rod 103 to rotate and further drive the limiting roller 109 to rotate, thereby driving the copper pipe to move, at this time, the first rotating rod 103 drives the first driving wheel 112 to rotate, and the first driving wheel 112 is connected with the first driven wheel 115 through the synchronous belt, thereby driving the second rotating rod 104 to rotate, thereby driving the lower roller 110 to rotate, at the same time, the first rotating rod 103 drives the driving gear 107 to rotate, the driving gear 107 is engaged with the driven gear 108, thereby driving the fourth rotating rod 106 to rotate, further driving the second driving wheel 113 to rotate, the second driving wheel 113 is connected with the second driven wheel 114 through the synchronous belt, thereby driving the third rotating rod 105 to rotate, thereby driving the upper roller 111 to rotate.

[0035] It is worth mentioning that, at this time, the first rotating rod 103 and the fourth rotating rod 106 are driven to rotate in opposite directions by the engagement of the driving gear 107 and the driven gear 108, and the force transmitted to the upper roller 111 and the lower roller 110 is also opposite, thereby further improving the conveying force of the copper wire.

[0036] In summary, when the copper wire passes between the lower roller 110 and the upper roller 111, the diameter of the copper wire is different, thereby pushing the lower roller 110 and the upper roller 111 away from each other, at this time, the upper roller 111 is pushed by the force, thereby driving the bearing seat 116 to move upward, thereby driving the telescopic rod 118 to stretch and retract, further driving the spring 117 to be stretched, thereby changing the distance between the lower roller 110 and the upper roller 111, by setting the telescopic rod 118, it can be adapted to convey copper wires of different diameters.

[0037] Example 2

[0038] Please refer to Figures 1-11The application provides a technical scheme: a tinning ash removing device for tinned copper wire production, which comprises a wire passing sleeve 100 internally provided with a cavity, a transmission chamber 101 fixedly connected to one side of the wire passing sleeve 100, a driving motor 102 mounted on one side of the transmission chamber 101, a first rotating rod 103 fixedly connected to an output end of the driving motor 102, the first rotating rod 103 extending into the cavity of the wire passing sleeve 100 and being rotationally connected and fixedly connected to a limiting roller 109, a second rotating rod 104 rotationally connected in the transmission chamber 101, the second rotating rod 104 extending into the cavity of the wire passing sleeve 100 and being fixedly connected to a lower roller 110, a third rotating rod 105 rotationally connected in the transmission chamber 101, the third rotating rod 105 extending into the cavity of the wire passing sleeve 100 and being fixedly connected to an upper roller 111, a cleaning liquid chamber 300 mounted on the top of the wire passing sleeve 100, the bottom of the cleaning liquid chamber 300 extending into the cavity of the wire passing sleeve 100, a cleaning assembly arranged in the cavity of the wire passing sleeve 100, the cleaning assembly comprising a first rotating shaft 202 rotationally connected in the cavity of the wire passing sleeve 100, a lower cleaning roller 204 fixedly connected to the outer surface of the first rotating shaft 202, a second rotating shaft 203 rotationally connected in the cavity of the wire passing sleeve 100 and located above the first rotating shaft 202, an upper cleaning roller 205 fixedly connected to the outer surface of the second rotating shaft 203, a first driving wheel 112 fixedly connected to the outer surface of the first rotating rod 103 located in the transmission chamber 101, a first driven wheel 115 fixedly connected to the outer surface of the second rotating rod 104, a first synchronous wheel 200 fixedly connected to one end of the first rotating shaft 202 extending into the interior of the transmission chamber 101, the first synchronous wheel 200, the first driving wheel 112 and the first driven wheel 115 being connected through a synchronous belt. A fourth rotating rod 106 is rotationally connected in the interior of the transmission chamber 101, a second driving wheel 113 is fixedly connected to the outer surface of the fourth rotating rod 106, a second driven wheel 114 is fixedly connected to the outer surface of the third rotating rod 105, a second synchronous wheel 201 is fixedly connected to one end of the second rotating shaft 203 extending into the interior of the transmission chamber 101, the second synchronous wheel 201, the second driven wheel 114 and the first driving wheel 112 being connected through a synchronous belt, a driving gear 107 is fixedly connected to the outer surface of the first rotating rod 103, a driven gear 108 is fixedly connected to the outer surface of the fourth rotating rod 106, and the driving gear 107 is engaged with the driven gear 108.

[0039] In the preferred technical scheme in the embodiment, the bottom of the cleaning liquid chamber 300 is slidingly connected with a movable plate 301, one end of the movable plate 301 is provided with a liquid outlet gap 302 for the liquid in the cleaning liquid chamber 300 to flow out, the two ends of the second rotating shaft 203 are fixedly connected with a gap gear 304, the bottom of the movable plate 301 is fixedly connected with a rack 303, the gap gear 304 is engaged with the rack 303, the inside of the wire passing sleeve 100 is fixedly connected with a fixed plate 305, one end of the fixed plate 305 is fixedly connected with a gas pipe 306, the inside of the gas pipe 306 is provided with a gas storage groove, the inside of the gas pipe 306 is slidingly connected with a gas rod 307, one end of the gas rod 307 is fixedly connected with the movable plate 301, the outer surface of the gas rod 307 is sleeved with a return spring 308, one end of the return spring 308 is fixedly connected with the movable plate 301, the other end of the gas rod 307 is fixedly connected with the gas pipe 306.

[0040] Further, when the second driven wheel 114 and the synchronous belt of the second driving wheel 113 support are driven, the second synchronous wheel 201 is rotated, and at the same time, the synchronous belt between the first driving wheel 112 and the first driven wheel 115 is driven to rotate the first synchronous wheel 200, at this time, the lower cleaning roller 204 is rotated when the first synchronous wheel 200 rotates, and at the same time, the upper cleaning roller 205 is rotated when the second synchronous wheel 201 rotates, wherein a plurality of soft hair brushes are arranged between the lower cleaning roller 204 and the upper cleaning roller 205, which are sufficient to clean the top and bottom of the copper wire and the two sides, so as to realize the cleaning.

[0041] Further, when the second rotating shaft 203 rotates, the gap gear 304 rotates, at this time, the gap gear 304 is engaged with the rack 303 at the bottom of the movable plate 301, so as to dislocate the movable plate 301 and the bottom of the cleaning liquid chamber 300, so that the liquid outlet gap 302 gradually approaches the bottom of the cleaning liquid chamber 300, when the liquid outlet gap 302 coincides with the bottom of the cleaning liquid chamber 300, the liquid in the cleaning liquid chamber 300 is discharged through the liquid outlet gap 302, and at the same time, when the movable plate 301 moves, the gas rod 307 moves to compress the return spring 308, when the gas rod 307 moves, it gradually enters the inside of the gas pipe 306 to compress the air in the gas pipe 306, the gap gear 304 continues to rotate, when the gap gear 304 is disengaged from the engagement with the rack 303, the elastic force of the return spring 308 drives the movable plate 301 to reset, and the cleaning liquid chamber 300 is re-sealed.

[0042] In summary, when the copper wire is gradually transported in the inner part of the through-line sleeve shell 100, it will pass through the lower cleaning roller 204 and the upper cleaning roller 205, wherein the lower cleaning roller 204 and the upper cleaning roller 205 continuously rotate to clean the tin ash on the surface of the copper wire, and at the same time, when the lower cleaning roller 204 and the upper cleaning roller 205 clean, the opening at the bottom of the cleaning liquid chamber 300 will be intermittently opened to release the cleaning liquid to the copper wire and the lower cleaning roller 204 and the upper cleaning roller 205, thereby improving the cleaning efficiency of the copper wire.

[0043] Embodiment 3

[0044] To further improve the cleaning efficiency of the copper wire, based on the concept of the previous embodiment, please refer to Figures 1-11 The present application provides a technical scheme: a tin ash removing device for tinned copper wire production, comprising a through-line sleeve shell 100 with a cavity inside, a transmission chamber 101 fixedly connected to one side of the through-line sleeve shell 100, a driving motor 102 installed on one side of the transmission chamber 101, a first rotating rod 103 fixedly connected to the output end of the driving motor 102, the first rotating rod 103 extending into the cavity of the through-line sleeve shell 100 and being rotatably connected, and being fixedly connected with a limiting roller 109, a second rotating rod 104 rotatably connected in the transmission chamber 101, the second rotating rod 104 extending into the cavity of the through-line sleeve shell 100 and being fixedly connected with a lower roller 110, a third rotating rod 105 rotatably connected inside the transmission chamber 101, the third rotating rod 105 extending into the cavity of the through-line sleeve shell 100 and being fixedly connected with an upper roller 111, a lower wiping plate 406 fixedly connected inside the through-line sleeve shell 100, an upper wiping plate 400 arranged in the cavity of the through-line sleeve shell 100, and a cleaning assembly arranged in the cavity of the through-line sleeve shell 100.

[0045] In the preferred technical scheme of the present embodiment, the top of the upper wiping plate 400 is fixedly connected with a transmission rod 403, the top of the transmission rod 403 is fixedly connected with a movable rod 402, the outer surface of the movable rod 402 is sleeved with an air cylinder 401, the air cylinder 401 is in communication with the gas storage groove of the inflating pipe 306, the inner part of the air cylinder 401 is structured with a gas groove, the top of the movable rod 402 extends into the gas groove of the air cylinder 401 and is fixedly connected with a piston 404, the top of the piston 404 is fixedly connected with a pressure spring 405, and the top of the pressure spring 405 is fixedly connected with the top of the gas groove of the air cylinder 401.

[0046] Further, when the inflating rod 307 moves inside the inflating pipe 306, it will compress the air inside the inflating pipe 306, at this time, the inflating pipe 306 is communicated with the air cylinder 401, the compressed air inside the inflating pipe 306 will be transported to the inside of the air cylinder 401, at this time, the air pressure inside the air cylinder 401 gradually increases to push the piston 404 to move and in turn drive the movable rod 402 to move, so that the movable rod 402 drives the transmission rod 403 to drive the upper wiping plate 400, and the upper wiping plate 400 gradually approaches the copper wire just cleaned, at this time, the upper wiping plate 400 and the lower wiping plate 406 clamp the copper wire to wipe off the cleaning liquid and moisture remaining on the surface of the copper wire.

[0047] In summary, under the movement of the upper wiping plate 400, it approaches the copper wire, and the outer surface of the copper wire is in contact with the lower wiping plate 406 and the upper wiping plate 400 respectively, thereby improving the cleaning efficiency, wherein the upper roller 111 and the lower roller 110 have drying properties, and the copper wire wiped by the upper wiping plate 400 and the lower wiping plate 406 can be further wiped.

[0048] Embodiment 4

[0049] To further improve the efficiency of cleaning the copper wire and reduce the replacement of the sponge, based on the concept of the previous embodiment, please refer to Figures 1-11 The present application provides a technical solution: a device for removing tin ash in tinned copper wire production, comprising a wire sleeve 100 with a cavity inside, one side of the wire sleeve 100 is fixedly connected with a transmission chamber 101, one side of the transmission chamber 101 is installed with a driving motor 102, the output end of the driving motor 102 is fixedly connected with a first rotating rod 103, the first rotating rod 103 extends into the cavity of the wire sleeve 100 and is connected with a limiting roller 109, the transmission chamber 101 is rotatably connected with a second rotating rod 104, the second rotating rod 104 extends into the cavity of the wire sleeve 100 and is fixedly connected with a lower roller 110, the transmission chamber 101 is rotatably connected with a third rotating rod 105, the third rotating rod 105 extends into the cavity of the wire sleeve 100 and is fixedly connected with an upper roller 111, the inside of the wire sleeve 100 is fixedly connected with a lower wiping plate 406, the cavity of the wire sleeve 100 is provided with an upper wiping plate 400, and the cavity of the wire sleeve 100 is provided with a cleaning assembly.

[0050] In the preferable technical scheme of the embodiment, the sponge 407 is fixedly connected to the middle end of the upper wiping plate 400, and extrusion assemblies are arranged on both sides of the sponge 407. The extrusion assemblies comprise a contact plate 504 which is connected to two transmission rods 403. The inner part of the fixed plate 305 is movably connected to a movable plate 503. The bottom of the movable plate 503 is fixedly connected to an extrusion plate 502. The contact plate 504 can contact the top of the movable plate 503. The extrusion plate 502 is matched with the sponge 407. The side of the movable plate 503 is fixedly connected to a tension spring 505. The other end of the tension spring 505 is fixedly connected to the fixed plate 305. Another set of upper wiping plates 400, sponges 407 and extrusion assemblies are arranged in the cavity of the 100. The sides of the two upper wiping plates 400 are fixedly connected to two racks 501. The two racks 501 are rotatably connected to a transmission gear 500. The transmission gear 500 is engaged with the two racks 501 respectively.

[0051] Further, when the transmission rod 403 drives the upper wiping plate 400 to move downward, the upper wiping plate 400 drives the rack 501 to move. At the same time, the rack 501 is engaged with the transmission gear 500, thereby driving the other rack 501 to move. As a result, the two upper wiping plates 400 are staggered to move up and down. When the transmission rod 403 drives the contact plate 504 to move upward, the contact plate 504 contacts the two movable plates 503. As a result, the movable plates 503 drive the two extrusion plates 502 to move close to each other, thereby extruding the sponge 407. As a result, the internal moisture of the sponge 407 is extruded.

[0052] In summary, the two sponges 407 are staggered to contact the copper wire. When the sponge 407 is moved upward, the sponge 407 is extruded by the extrusion plate 502, thereby draining the water. The sponge is prepared for the next time of moving downward to clean the copper wire. The efficiency of cleaning the copper wire is improved.

[0053] It is worth mentioning that the two sponges 407 are staggered to clean and absorb water of the copper wire. The sponges can be staggered to drain water without stopping the machine, thereby improving the work efficiency.

[0054] It should be noted that, in the present document, the terms such as first and second are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.

[0055] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. A tin dross removing device for tinned copper wire production, comprising a wire passing sleeve (100) with a cavity inside, characterized in that: The side of the wire sleeve shell (100) is fixedly connected with a transmission chamber (101), one side of the transmission chamber (101) is provided with a driving motor (102), the output end of the driving motor (102) is fixedly connected with a first rotating rod (103), the first rotating rod (103) extends into the cavity of the wire sleeve shell (100) and is rotatably connected, and is fixedly connected with a limiting roller (109), a second rotating rod (104) is rotatably connected in the transmission chamber (101), the second rotating rod (104) extends into the cavity of the wire sleeve shell (100) and is fixedly connected with a lower roller (110), a third rotating rod (105) is rotatably connected in the transmission chamber (101), the third rotating rod (105) extends into the cavity of the wire sleeve shell (100) and is fixedly connected with an upper roller (111), a lower wiping plate (406) is fixedly connected in the wire sleeve shell (100), an upper wiping plate (400) is arranged in the cavity of the wire sleeve shell (100), a cleaning liquid chamber (300) is arranged on the top of the wire sleeve shell (100), the bottom of the cleaning liquid chamber (300) extends into the cavity of the wire sleeve shell (100), and a cleaning assembly is arranged in the cavity of the wire sleeve shell (100); The cleaning assembly comprises a first rotating shaft (202) rotatably connected in the cavity of the wire sleeve shell (100), a lower cleaning roller (204) is fixedly connected to the outer surface of the first rotating shaft (202), and a second rotating shaft (203) is rotatably connected above the first rotating shaft (202) in the cavity of the wire sleeve shell (100), an upper cleaning roller (205) is fixedly connected to the outer surface of the second rotating shaft (203); The bottom of the cleaning liquid chamber (300) is slidably connected with a movable plate one (301), one end of the movable plate one (301) is provided with a liquid outlet gap (302), the liquid outlet gap (302) is used for discharging liquid in the cleaning liquid chamber (300), gap gears (304) are fixedly connected to the two ends of the second rotating shaft (203), a rack one (303) is fixedly connected to the bottom of the movable plate one (301), and the gap gears (304) are in meshing connection with the rack one (303); The inside of the wire sleeve shell (100) is fixedly connected with a fixed plate (305), one end of the fixed plate (305) is fixedly connected with a gas pipe (306), the inside of the gas pipe (306) is provided with a gas storage groove, a gas rod (307) is slidably connected in the inside of the gas pipe (306), one end of the gas rod (307) is fixedly connected with the movable plate one (301), a reset spring (308) is sleeved on the outer surface of the gas rod (307), one end of the reset spring (308) is fixedly connected with the movable plate one (301), and the other end of the gas rod (307) is fixedly connected with the gas pipe (306). The top of the upper wiping plate (400) is fixedly connected with a transmission rod (403), the top of the transmission rod (403) is fixedly connected with a movable rod (402), the outer surface of the movable rod (402) is sleeved with a gas cylinder (401), and the gas cylinder (401) is in communication with the gas storage groove of the gas pipe (306).

2. The device for removing tin dross in the production of tinned copper wire according to claim 1, characterized in that: The outer surface of the first rotating rod (103) located in the transmission chamber (101) is fixedly connected with a first driving wheel (112), the outer surface of the second rotating rod (104) is fixedly connected with a first driven wheel (115), one end of the first rotating shaft (202) extends to the inside of the transmission chamber (101) and is fixedly connected with a first synchronous wheel (200), and the first synchronous wheel (200), the first driving wheel (112) and the first driven wheel (115) are connected through a synchronous belt.

3. The device for removing tin dross in tinplated copper wire production according to claim 2, characterized in that: The inside of the transmission chamber (101) is rotatably connected with a fourth rotating rod (106), the outer surface of the fourth rotating rod (106) is fixedly connected with a second driving wheel (113), the outer surface of the third rotating rod (105) is fixedly connected with a second driven wheel (114), one end of the second rotating shaft (203) extends to the inside of the transmission chamber (101) and is fixedly connected with a second synchronous wheel (201), and the second synchronous wheel (201), the second driven wheel (114) and the first driving wheel (112) are connected through a synchronous belt.

4. The device for removing tin dross in tinplated copper wire production according to claim 3, characterized in that: Both sides of the wire passing sleeve (100) are provided with through grooves, both ends of the third rotating rod (105) are respectively provided with bearing seats (116), the bearing seats (116) are arranged in the through grooves, the through grooves are fixedly connected with telescopic rods (118), the telescopic ends of the telescopic rods (118) are fixedly connected with the bearing seats (116), the outer surface of the bearing seat (116) is sleeved with a spring (117), the top of the spring (117) is fixedly connected with the bottom of the bearing seat (116), and the bottom of the spring (117) is fixedly connected with the bottom of the through groove.

5. The device for removing tin dross in the production of tinned copper wire according to claim 1, characterized in that: The inside of the gas cylinder (401) is provided with a gas groove, the top of the movable rod (402) extends into the gas groove of the gas cylinder (401) and is fixedly connected with a piston (404), the top of the piston (404) is fixedly connected with a pressure spring (405), the top of the pressure spring (405) is fixedly connected with the top of the gas groove of the gas cylinder (401), the middle end of the upper wiping plate (400) is fixedly connected with a sponge (407), and both sides of the sponge (407) are provided with extrusion assemblies.

6. The device for removing tin dross in tinplated copper wire production according to claim 5, characterized in that: Said extrusion assembly includes the resistance plate (504) which is connected between two transmission rods (403), the inside of the fixed plate (305) is movably connected with the movable plate two (503), the bottom of the movable plate two (503) is fixedly connected with the extrusion plate (502), the resistance plate (504) can contact with the top of the movable plate two (503), the extrusion plate (502) is matched with the sponge (407), one side of the movable plate two (503) is fixedly connected with the tension spring (505), the other end of the tension spring (505) is fixedly connected with the fixed plate (305), the cavity of the wire sleeve (100) is provided with another set of upper wiping plate (400) and sponge (407) and extrusion assembly, one side of two upper wiping plate (400) is fixedly connected with the rack two (501), two rack two (501) are rotatably connected with the transmission gear (500), the transmission gear (500) is engaged with two rack two (501) respectively.

Citation Information

Patent Citations

  • Automatic tin ash removing device for round wire welding strip production

    CN115125464A

  • Tinned copper wire surface tin ash cleaning device

    CN116197158A