Intelligentized copper plating equipment for bead wire
Through the intelligent pickling tank and cleaning box design of the tire bead wire copper plating equipment, impurities are removed by using the friction and centrifugal force of the rotating tube, which solves the problems of drying cotton sleeve wear and poor water spraying effect, and realizes efficient cleaning and drying of the steel wire.
Patent Information
- Application Number
- CN202310414946.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-18
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2043-04-18
AI Technical Summary
In the prior art, the drying cotton sleeve of the tire bead wire is easily worn, resulting in poor drying effect, and water spraying is difficult to remove residual impurities in the acidic liquid, which affects the subsequent processing of the steel wire.
Intelligent bead wire copper plating equipment is used, which includes a pickling tank and a cleaning box. The pickling liquid is cleaned and dried through flushing components and auxiliary components. Impurities are removed by friction and centrifugal force of the rotating tube, and impurities and water are separated through a filtering mechanism.
It improves the cleaning effect and drying reliability of the steel wire, ensures the cleanliness of the steel wire surface, and improves the quality of subsequent processing.
Smart Images

Figure CN116445926B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to intelligent bead wire copper plating equipment and belongs to the field of bead wire production equipment. Background Art
[0002] Bead wire is used in the bead part of the tire and is one of the main skeleton materials of the tire. It is used to manufacture the bead wire bundle of the tire of passenger cars and other carriers. Its function is to tightly fix the tire on the rim and withstand various interaction forces between the tire and the rim. The bead wire needs to be copper-plated during the production process. The copper plating process of the bead wire is: steel wire pretreatment, water washing, acid washing, water washing, electroplating, water rinsing, and lime dipping.
[0003] The utility model patent with application number CN202123426168.3 discloses a tire bead wire electrolytic pickling device, including an electrolytic pickling mechanism, a cleaning and drying mechanism for cleaning the steel wire after electrolytic pickling is provided on the side of the electrolytic pickling mechanism, and the electrolytic pickling mechanism includes a pickling electrolytic cell, and a second guide roller is provided on the right side of the top of the pickling electrolytic cell. The utility model is provided with a cleaning and drying mechanism on the side of the electrolytic pickling mechanism. The cleaning chamber inside the cleaning and drying mechanism can flush and clean the incoming steel wire, so that the impurities and liquid remaining on the surface of the steel wire after electrolytic pickling are cleaned in time, avoiding the continuous corrosion of the steel wire by the acidic liquid. The flushed steel wire is then wiped and dried in the drying chamber, thereby thoroughly and timely removing the moisture and impurities remaining on the surface of the steel wire, making the surface of the steel wire after electrolytic pickling cleaner, so as to facilitate the subsequent winding of the steel wire. However, in the prior art, the steel wire is dried by using a drying cotton sleeve, which is easily worn after long-term use, resulting in a gap between the drying cotton sleeve and the steel wire. The drying cotton sleeve cannot dry the steel wire normally, affecting the drying effect of the steel wire. In addition, when water is sprayed on the steel wire to flush the acidic liquid on the steel wire, it is difficult to flush away the fixed impurities remaining on the steel wire, affecting the subsequent processing of the steel wire.
[0004] Therefore, there is a need for an intelligent tire bead wire copper plating equipment to improve the cleaning effect of the steel wire and increase the reliability of the steel wire drying. Summary of the Invention
[0005] The technical problem to be solved by the present invention is: in order to overcome the shortcomings of the existing technology, an intelligent tire bead wire copper plating equipment is provided to improve the steel wire cleaning effect and the reliability of steel wire drying.
[0006] The technical solution adopted by the present invention to solve the above-mentioned problem is: an intelligent tire bead wire copper plating equipment, including a pickling tank and a cleaning box, the pickling tank and the cleaning box are arranged on the left and right, the pickling tank is provided with a pickling liquid, the pickling tank is provided with a supply pipe, the supply pipe is externally connected to a pickling liquid delivery system, a liquid level gauge is provided on the inner wall of the pickling tank, the liquid level gauge is immersed in the pickling liquid, the liquid level gauge is connected to the external pickling liquid delivery system, and a cleaning mechanism is provided in the cleaning box;
[0007] The cleaning mechanism includes a flushing assembly and two auxiliary assemblies. The flushing assembly is located between the two auxiliary assemblies. The two auxiliary assemblies are arranged symmetrically on the left and right. Clean water is applied to the steel wire through the flushing assembly to flush the pickling liquid on the steel wire. Of the two auxiliary assemblies, the auxiliary assembly on the left is used to remove impurities on the steel wire, and the auxiliary assembly on the right is used to dry the steel wire.
[0008] The auxiliary component includes a rotating tube and two guide tubes. The rotating tube is parallel to the left and right directions. The two guide tubes are coaxially arranged with the rotating tube. The two guide tubes are respectively located on the left and right sides of the rotating tube. Among the two guide tubes, one guide tube passes through the cleaning box, and the other guide tube is fixedly connected to the inner wall of the cleaning box. Two bearings are installed on the outer wall of the rotating tube. The two bearings are distributed on the left and right. The outer rings of the bearings are fixedly connected to the inner wall of the cleaning box. A driving unit is provided on the rotating tube. The driving unit drives the rotating tube to rotate around its own axis. A rotating tube is fixedly provided in the rotating tube. The rotating tube is parallel to the rotating tube. The rotating tube is eccentrically arranged with the rotating tube. A connecting tube is fixedly provided on the side of the rotating tube away from the axis of the rotating tube. The connecting tube passes through the rotating tube and is connected to the rotating tube.
[0009] Preferably, the driving unit includes a driven gear mounted on the outer wall of the rotating tube, the driven gear is meshed with a driving gear, and the driving gear is driven by a motor.
[0010] Preferably, the flushing assembly includes a delivery pipe vertically passing through the top of the cleaning box, a cleaning pipe is horizontally arranged at the bottom end of the delivery pipe, both ends of the cleaning pipe are sealed, and a plurality of spray heads are installed at the bottom of the cleaning pipe. The cleaning pipe and the spray head are both located above the conduit, and the delivery pipe is connected to each spray head through the cleaning pipe. A drain pipe is provided on the right side of the cleaning box, and the drain pipe is located below the conduit.
[0011] Preferably, the plurality of sprinkler heads are arranged in sequence from left to right.
[0012] Preferably, a filtering mechanism is further provided in the cleaning box, and the filtering mechanism is located between the drain pipe and the conduit. The filtering mechanism includes a partition that is horizontally sealed and fixedly arranged on the inner wall of the cleaning box, and a lifting pipe is vertically penetrated on the partition, and the lifting pipe is slidably and sealedly connected to the partition, and a filter screen is installed on the top of the lifting pipe, and the filter screen is arranged opposite to the flushing assembly. A slag discharge pipe is provided on the right side of the cleaning box, and the slag discharge pipe is located between the conduit and the partition. Two lifting assemblies are provided on the lifting pipe, and the two lifting assemblies correspond one-to-one to the two connecting pipes. The lifting assembly drives the lifting pipe to lift and lower reciprocatingly through the rotation of the connecting pipe around the axis of the rotating pipe.
[0013] Preferably, the lifting assembly includes a lifting rod, a spring and a connecting plate. The lifting rod passes vertically through the partition, and the lifting rod is slidably and sealedly connected to the partition. A push plate is horizontally fixed on the top of the lifting plate, and the push plate is located below the rotating tube. The push plate and the connecting tube are arranged opposite each other. The spring is located between the partition and the push plate, and the spring is sleeved on the lifting rod. One end of the spring is fixed on the push plate, and the other end of the spring is fixed on the partition. The connecting plate is horizontally fixed on the bottom end of the lifting rod, and the connecting plate is fixed on the outer wall of the lifting tube, and the connecting plate fits the bottom of the partition.
[0014] Preferably, two guide rods are provided at the bottom of the push plate, the two guide rods are arranged front to back, the guide rods vertically pass through the partition, and the guide rods are slidably and sealedly connected to the partition.
[0015] Preferably, both ends of the conduit are provided with chamfers.
[0016] Preferably, the axis of the connecting tube is perpendicular to and intersects with the axis of the rotating tube.
[0017] Preferably, two upper rollers are fixedly provided on the top of the pickling tank, and the two upper rollers are distributed on the left and right. Two lower rollers are fixedly provided on the bottom of the pickling tank, and the two lower rollers are arranged on the left and right. The two lower rollers are located between the two upper rollers, and the lower rollers are immersed in the pickling liquid.
[0018] Compared with the prior art, the advantages of the present invention are:
[0019] The application is a kind of intelligentized tire bead steel wire copper plating equipment, through the cleaning mechanism, the pickling solution on the steel wire is cleaned, at the same time, through the friction between the steel wire and the rotating tube, the impurities on the steel wire are also removed, the cleaning effect of the steel wire is improved, and during the rotation of the rotating tube, not only the centrifugal force is generated to facilitate the separation of water on the steel wire, but also the air flow rate in the rotating tube is improved to improve the drying speed of water on the steel wire, secondly, when the rotating tube is worn, the drying of the steel wire can still be realized, the reliability of the steel wire drying is improved, in addition, through the filtering mechanism, the filter screen separates the impurities and water, and the reciprocating lifting of the lifting pipe avoids the blockage of the filter screen. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a perspective view of the intelligentized tire bead steel wire copper plating equipment of the application;
[0021] Figure 2 It is a front view of Figure 1 ;
[0022] Figure 3 It is a top view of Figure 1 ;
[0023] Figure 4 It is a left view of Figure 1 ;
[0024] Figure 5 It is a schematic view of the internal structure of the pickling tank;
[0025] Figure 6 It is a schematic view of the internal structure of the cleaning box;
[0026] Figure 7 It is a perspective view of the auxiliary assembly;
[0027] Figure 8 It is a perspective view of Figure 7 ;
[0028] Figure 9 It is a schematic view of the structure of the flushing assembly;
[0029] Figure 10 It is a first schematic view of the filtering mechanism;
[0030] Figure 11 It is a second schematic view of the filtering mechanism.
[0031] Among them: pickling tank 1, cleaning box 2, supply pipe 3, liquid level gauge 4, upper roller 5, lower roller 6, cleaning mechanism 7, flushing assembly 71, conveying pipe 71.1, cleaning pipe 71.2, spray head 71.3, drain pipe 71.4, auxiliary assembly 72, rotating pipe 72.1, guide pipe 72.2, bearing 72.3, drive unit 72.4, driven gear 72.41, drive gear 72.42, motor 72.43, rotating pipe 72.5, connecting pipe 72.6, filtering mechanism 8, partition 81, lifting pipe 82, filter screen 83, slag discharge pipe 84, lifting assembly 85, lifting rod 85.1, spring 85.2, connecting plate 85.3, push plate 85.4, guide rod 85.5, steel wire 9. DETAILED DESCRIPTION
[0032] like Figure 1-11 As shown, an intelligent bead wire copper plating equipment in this embodiment includes a pickling tank 1 and a cleaning box 2, which are arranged on the left and right. A pickling liquid is provided in the pickling tank 1, a supply pipe 3 is provided on the pickling tank 1, and a liquid level gauge 4 is provided on the inner wall of the pickling tank 1. Two upper rollers 5 are fixedly provided on the top of the pickling tank 1, and the two upper rollers 5 are distributed on the left and right. Two lower rollers 6 are fixedly provided on the bottom of the pickling tank 1, and the two lower rollers 6 are arranged on the left and right. The two lower rollers 6 are located between the two upper rollers 5, and the lower rollers 6 and the liquid level gauge 4 are fixedly provided. All are immersed in the pickling liquid. A cleaning mechanism 7 is provided in the cleaning box 2. The steel wire 9 enters from the left side, passes through the left upper roller 5, the left lower roller 6, the right lower roller 6 and the right upper roller 5 in sequence, and is then transported to the cleaning box 2. The steel wire 9 is immersed in the pickling liquid for pickling. The pickling liquid level is measured by the liquid level meter 4. When the pickling liquid level is lower than the set level, the supply pipe 3 transports the pickling liquid into the pickling tank 1. The supply pipe 3 is connected to the external pickling liquid delivery system. The liquid level data measured by the liquid level meter 4 enables the external pickling liquid delivery system to automatically deliver the pickling liquid, thereby realizing intelligence.
[0033] The cleaning mechanism 7 includes a flushing component 71 and two auxiliary components 72. The flushing component 71 is located between the two auxiliary components 72. The two auxiliary components 72 are arranged symmetrically on the left and right. Clean water is applied to the steel wire 9 through the flushing component 71 to flush the pickling liquid on the steel wire 9. Of the two auxiliary components 72, the auxiliary component 72 on the left is used to remove impurities on the steel wire 9, and the auxiliary component 72 on the right is used to dry the steel wire 9.
[0034] The auxiliary component 72 includes a rotating tube 72.1 and two guide tubes 72.2. The rotating tube 72.1 is parallel to the left and right directions. The two guide tubes 72.2 are coaxially arranged with the rotating tube 72.1. The two guide tubes 72.2 are respectively located on the left and right sides of the rotating tube 72.1. Both ends of the guide tubes 72.2 are provided with chamfers. Among the two guide tubes 72.2, one guide tube 72.2 passes through the cleaning box 2, and the other guide tube 72.2 is fixedly connected to the inner wall of the cleaning box 2. The outer wall of the rotating tube 72.1 is installed with two bearings 72.3. The two bearings 72.3 are distributed on the left and right. The outer rings of the bearings 72.3 are fixedly connected to the inner wall of the cleaning box 2. The rotating tube 72.1 is provided with a driving unit 72.4, and the driving unit 72.4 drives the rotating tube 72.1 to rotate around its own axis. A rotating tube 72.5 is fixedly provided inside the rotating tube 72.1. The rotating tube 72.5 is parallel to the rotating tube 72.1 and eccentrically arranged with respect to the rotating tube 72.1. A connecting tube 72.6 is fixedly provided on the side of the rotating tube 72.5 away from the axis of the rotating tube 72.1. The axis of the connecting tube 72.6 is perpendicular to and intersects with the axis of the rotating tube 72.5. The connecting tube 72.6 passes through the rotating tube 72.1 and is connected to the rotating tube 72.5.
[0035] When the left auxiliary assembly 72 is working, the steel wire 9 passes through the left guide tube 72.2, the rotating tube 72.1 and the rear guide tube 72.2 in sequence, and the steel wire 9 in the rotating tube 72.1 also passes through the rotating tube 72.5. The driving unit 72.4 causes the rotating tube 72.1 to rotate around its own axis on the bearing 72.3. The rotation of the rotating tube 72.1 drives the rotating tube 72.5 and the connecting tube 72.6 to rotate synchronously. During the rotation of the rotating tube 72.5, the steel wire 9 and the inner wall of the rotating tube 72.5 rotate relative to each other, so that the inner wall of the rotating tube 72.5 is pressed against the steel wire 9. The fixed impurities remaining on the steel wire 9 are rubbed to separate the fixed impurities from the steel wire 9, thereby removing the impurities on the steel wire 9 and improving the cleaning effect of the steel wire 9. In addition, through the rotation of the connecting tube 72.6, the air in the connecting tube 72.6 is discharged from the end of the connecting tube 72.6 away from the rotating tube 72.5 due to inertia, and the air and impurities in the rotating tube 72.5 are transported to the connecting tube 72.6 and then discharged, and the air in the rotating tube 72.1 is then transported to the rotating tube 72.5. In this way, the automatic discharge of impurities is achieved, and the flow of air can improve the impurity discharge effect.
[0036] When the right auxiliary assembly 72 is working, the steel wire 9 has been cleaned of impurities and rinsed with water. The steel wire 9 passes through the left guide tube 72.2, the rotating tube 72.1 and the rear guide tube 72.2 in sequence. The steel wire 9 in the rotating tube 72.1 also passes through the rotating tube 72.5. The driving unit 72.4 causes the rotating tube 72.1 to rotate around its own axis on the bearing 72.3. The rotation of the rotating tube 72.1 drives the rotating tube 72.5 and the connecting tube 72.6 to rotate synchronously. During the rotation of the rotating tube 72.5, the steel wire 9 is driven to rotate synchronously. Through centrifugal force The residual moisture on the steel wire 9 is separated from the steel wire 9, thereby improving the drying effect of the steel wire 9. In addition, the air in the connecting tube 72.6 is discharged from the end of the connecting tube 72.6 away from the rotating tube 72.5 due to inertia, while the air in the rotating tube 72.5 is transported into the connecting tube 72.6 and then discharged. The air in the rotating tube 72.1 is then transported into the rotating tube 72.5. The flow of air improves the drying efficiency of the steel wire 9. Moreover, when the rotating tube 72.5 is worn, the steel wire 9 can still be dried, thereby improving the reliability of the drying of the steel wire 9.
[0037] The driving unit 72.4 comprises a driven gear 72.41 mounted on the outer wall of the rotating tube 72.1, the driven gear 72.41 is meshed with a driving gear 72.42, and the driving gear 72.42 is driven by a motor 72.43;
[0038] The flushing assembly 71 includes a delivery pipe 71.1 that vertically passes through the top of the cleaning box 2. A cleaning pipe 71.2 is horizontally installed at the bottom end of the delivery pipe 71.1. Both ends of the cleaning pipe 71.2 are sealed. A plurality of spray heads 71.3 are installed at the bottom of the cleaning pipe 71.2. The plurality of spray heads 71.3 are arranged in sequence from left to right. The cleaning pipe 71.2 and the spray heads 71.3 are both located above the guide tube 72.2. The delivery pipe 71.1 is connected to each spray head 71.3 through the cleaning pipe 71.2. 3, the top of the delivery pipe 71.1 is connected to the outer diameter water supply system, and a drain pipe 71.4 is provided on the right side of the cleaning box 2. The drain pipe 71.4 is located below the guide tube 72.2. Clean water is sequentially delivered to the delivery pipe 71.1, the cleaning pipe 71.2 and the spray heads 71.3 through the water supply system. Each spray head 71.3 sprays water onto the steel wire 9 to rinse the acidic liquid on the steel wire 9. The rinsed water flows to the bottom of the cleaning box 2 and can be discharged through the drain pipe 71.4.
[0039] The cleaning box 2 is further provided with a filter mechanism 8, which is located between the drain pipe 71.4 and the conduit 72.2, and is used to separate water and impurities;
[0040] The filtering mechanism 8 includes a horizontally arranged partition 81, which divides the cleaning box 2 into a cleaning chamber and a water recovery chamber arranged in an upper and lower manner. A lifting pipe 82 is vertically movably penetrated on the partition 81. The lifting pipe 82 is slidably and sealedly connected to the partition 81. A filter screen 83 is installed on the top of the lifting pipe 82. The filter screen 83 is arranged opposite to the flushing component 71. A slag discharge pipe 84 is provided on the right side of the cleaning box 2. The slag discharge pipe 84 is located between the conduit 72.2 and the partition 81. Two There are two lifting assemblies 85, and the two lifting assemblies 85 correspond to the two connecting pipes 72.6 one by one. The connecting pipes 72.6 rotate around the axis of the rotating pipe 72.1 to drive the lifting assemblies 85 to drive the lifting pipes 82 to rise and fall back and forth. When the water and impurities on the steel wire 9 fall onto the filter screen 83, the water passes through the filter screen 83, while the impurities are trapped on the filter screen 83. The reciprocating rise and fall of the filter screen 83 driven by the lifting pipes 82 causes the impurities on the filter screen 83 to jump and fall to the top of the partition 81, thereby cleaning the filter screen 83 and preventing the filter screen 83 from being blocked;
[0041] The lifting assembly 85 includes a lifting rod 85.1, a spring 85.2 and a connecting plate 85.3. The lifting rod 85.1 vertically passes through the partition 81. The lifting rod 85.1 is slidably and sealedly connected to the partition 81. A push plate 85.4 is fixedly provided on the top of the lifting plate. The push plate 85.4 is located below the rotating tube 72.1. The push plate 85.4 is arranged opposite to the connecting tube 72.6. The spring 85.2 is located between the partition 81 and the push plate 85.4. The spring 85.2 is sleeved on the lifting rod 85.1. One end of the spring 85.2 is fixedly provided on the push plate 85.4. .2 is fixedly provided on the partition 81, and the connecting plate 85.3 is fixedly provided horizontally on the bottom end of the lifting rod 85.1. The connecting plate 85.3 is fixedly provided on the outer wall of the lifting tube 82. The connecting plate 85.3 is in contact with the bottom of the partition 81. When the rotating tube 72.1 drives the connecting tube 72.6 to rotate around the axis of the rotating tube 72.1, the connecting tube 72.6 intermittently pushes the push plate 85.4 to descend, and the elastic action of the spring 85.2 causes the push plate 85.4 to reciprocate. The reciprocating lifting of the push plate 85.4 drives the lifting tube 82 to reciprocate synchronously through the lifting rod 85.1 and the connecting plate 85.3.
[0042] Two guide rods 85.5 are provided at the bottom of the push plate 85.4. The two guide rods 85.5 are arranged front to back. The guide rods 85.5 vertically pass through the partition 81. The guide rods 85.5 are slidably and sealedly connected to the partition 81.
[0043] In addition to the above embodiments, the present invention also includes other implementation methods. Any technical solutions formed by equivalent transformation or equivalent replacement should fall within the scope of protection of the claims of the present invention.
Claims
1. An intelligent tire bead wire copper plating device, comprising a pickling tank (1) and a cleaning box (2), the pickling tank (1) and the cleaning box (2) being arranged on the left and right, a pickling liquid being provided in the pickling tank (1), a supply pipe (3) being provided on the pickling tank (1), the supply pipe (3) being externally connected to a pickling liquid delivery system, a liquid level gauge (4) being provided on the inner wall of the pickling tank (1), the liquid level gauge (4) being immersed in the pickling liquid, and the liquid level gauge (4) being connected to the external pickling liquid delivery system, characterized in that: A cleaning mechanism (7) is provided in the cleaning box (2); The cleaning mechanism (7) includes a flushing component (71) and two auxiliary components (72), wherein the flushing component (71) is located between the two auxiliary components (72), and the two auxiliary components (72) are arranged symmetrically on the left and right. Clean water is applied to the steel wire (9) through the flushing component (71) to flush the pickling liquid on the steel wire (9). Of the two auxiliary components (72), the auxiliary component (72) located on the left is used to remove impurities on the steel wire (9), and the auxiliary component (72) located on the right is used to dry the steel wire (9); The auxiliary component (72) includes a rotating tube (72.1) and two guide tubes (72.2), the rotating tube (72.1) is parallel to the left and right directions, the two guide tubes (72.2) are coaxially arranged with the rotating tube (72.1), and the two guide tubes (72.2) are respectively located on the left and right sides of the rotating tube (72.1). Among the two guide tubes (72.2), one guide tube (72.2) passes through the cleaning box (2), and the other guide tube (72.2) is fixedly connected to the inner wall of the cleaning box (2). Two bearings (72.3) are installed on the outer wall of the rotating tube (72.1), and the two bearings (72.3) are distributed on the left and right. The outer rings of the bearings (72.3) are aligned with the inner wall of the cleaning box (2). The inner wall is fixedly connected, a driving unit (72.4) is provided on the rotating tube (72.1), the driving unit (72.4) drives the rotating tube (72.1) to rotate around its own axis, a rotating tube (72.5) is fixedly provided inside the rotating tube (72.1), the rotating tube (72.5) is parallel to the rotating tube (72.1), the rotating tube (72.5) and the rotating tube (72.1) are eccentrically arranged, and a connecting tube (72.6) is fixedly provided on a side of the rotating tube (72.5) away from the axis of the rotating tube (72.1), the connecting tube (72.6) passes through the rotating tube (72.1), and the connecting tube (72.6) is in communication with the rotating tube (72.5); A filter mechanism (8) is further provided in the cleaning box (2). The filter mechanism (8) is located between the drain pipe (71.4) and the guide tube (72.2). The filter mechanism (8) comprises a partition (81) which is horizontally sealed and fixedly provided on the inner wall of the cleaning box (2). A lifting pipe (82) is vertically provided on the partition (81). The lifting pipe (82) is slidably and sealedly connected to the partition (81). A filter screen (83) is installed at the top end of the lifting pipe (82). The filter screen (83) Arranged opposite to the flushing assembly (71), a slag discharge pipe (84) is provided on the right side of the cleaning box (2), the slag discharge pipe (84) being located between the guide tube (72.2) and the partition (81), and two lifting assemblies (85) are provided on the lifting pipe (82), the two lifting assemblies (85) corresponding to the two connecting pipes (72.6) one by one, and the lifting assemblies (85) drive the lifting pipe (82) to reciprocate and rise and fall through the rotation of the connecting pipe (72.6) around the axis of the rotating pipe (72.1); The lifting assembly (85) includes a lifting rod (85.1), a spring (85.2) and a connecting plate (85.3). The lifting rod (85.1) vertically passes through the partition (81). The lifting rod (85.1) and the partition (81) are slidably and sealedly connected. A push plate (85.4) is fixedly provided horizontally on the top of the lifting rod (85.1). The push plate (85.4) is located below the rotating tube (72.1). The push plate (85.4) is arranged opposite to the connecting tube (72.6). The spring (85.2) is located at the bottom of the rotating tube (72.1). Between the partition (81) and the push plate (85.4), the spring (85.2) is sleeved on the lifting rod (85.1), one end of the spring (85.2) is fixedly arranged on the push plate (85.4), and the other end of the spring (85.2) is fixedly arranged on the partition (81), the connecting plate (85.3) is horizontally fixedly arranged on the bottom end of the lifting rod (85.1), the connecting plate (85.3) is fixedly arranged on the outer wall of the lifting tube (82), and the connecting plate (85.3) is in contact with the bottom of the partition (81); Two guide rods (85.5) are provided at the bottom of the push plate (85.4), and the two guide rods (85.5) are arranged front to back. The guide rods (85.5) vertically pass through the partition (81), and the guide rods (85.5) are slidably and sealedly connected to the partition (81).
2. The intelligent bead wire copper plating equipment according to claim 1, characterized in that: The driving unit (72.4) comprises a driven gear (72.41) mounted on the outer wall of the rotating tube (72.1), a driving gear (72.42) meshing with the driven gear (72.41), and the driving gear (72.42) is driven by a motor (72.43).
3. The intelligent bead wire copper plating equipment according to claim 1 or 2, characterized in that: The flushing assembly (71) comprises a delivery pipe (71.1) vertically passing through the top of the cleaning box (2); a cleaning pipe (71.2) is horizontally arranged at the bottom end of the delivery pipe (71.1); both ends of the cleaning pipe (71.2) are sealed; a plurality of spray heads (71.3) are installed at the bottom of the cleaning pipe (71.2); the cleaning pipe (71.2) and the spray heads (71.3) are both located above the conduit (72.2); the delivery pipe (71.1) is connected to each spray head (71.3) through the cleaning pipe (71.2); a drain pipe (71.4) is provided on the right side of the cleaning box (2); the drain pipe (71.4) is located below the conduit (72.2).
4. The intelligent bead wire copper plating equipment according to claim 3, characterized in that: A plurality of sprinkler heads (71.3) are arranged in sequence from left to right.
5. The intelligent bead wire copper plating equipment according to claim 1, characterized in that: Both ends of the conduit (72.2) are provided with chamfers.
6. The intelligent bead wire copper plating equipment according to claim 1, characterized in that: The axis of the connecting tube (72.6) is perpendicular to and intersects with the axis of the rotating tube (72.5).
7. The intelligent bead wire copper plating equipment according to claim 1, characterized in that: Two upper rollers (5) are fixedly provided on the top of the pickling tank (1), and the two upper rollers (5) are distributed left and right. Two lower rollers (6) are fixedly provided on the bottom of the pickling tank (1), and the two lower rollers (6) are arranged left and right. The two lower rollers (6) are located between the two upper rollers (5), and the lower rollers (6) are immersed in the pickling liquid.
Citation Information
Patent Citations
Drying device with cleaning function for steel wire machining
CN217094658U
Tire bead wire electrolytic pickling device
CN217733333U
Apparatus for cleaning wire
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