A rotary roll plating cell system
Patent Information
- Application Number
- CN202611096491.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-23
- Publication Date
- 2026-08-21
AI Technical Summary
[0003]轧辊在加工的过程中也需要对其表面进行电镀,而在对轧辊进行电镀的过程中,轧辊表面缝隙的内部容易存在气泡滞留,会导致镀层空洞或厚度不均的问题;
本发明通过设置循环侧向喷流机构,可通过将轧辊挂在挂钩上,之后启动液压杆控制支撑块向下移动,使挂钩上的轧辊进入电镀槽内部,与此同时启动循环泵,电镀槽本体内的电镀液会经过进液管进入辅助循环槽内部,之后再由传输管进入分流箱中,最后由分流管喷出,使电镀液冲击在轧辊的表面,促进电镀液在微小孔道内的更新与传质,减少气泡滞留,避免镀层空洞或厚度不均进而提高电镀的效果,同时循环泵循环抽出电镀液还可以保持电镀液成分均匀;
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Figure CN122610184A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electroplating tank technology, specifically a rotary roll electroplating tank system. Background Technology
[0002] Electroplating tanks are the core equipment in the electroplating process, used to hold the electroplating solution and achieve metal ion deposition. They are widely used in various fields such as industrial manufacturing, electronics, automotive, and decoration. Essentially, it is a special type of electrolytic cell where a current is generated between the cathode (the workpiece to be plated) and the anode by a DC power supply, causing metal ions to be reduced on the workpiece surface and deposited into a uniform coating. Depending on the application, process, and level of automation, electroplating tanks come in various types and structural designs.
[0003] During the processing of the rolls, the surface of the rolls also needs to be electroplated. However, during the electroplating process, air bubbles can easily get trapped inside the gaps on the roll surface, which can lead to problems such as voids or uneven thickness in the coating. To address this problem, we propose a rotary roll electroplating tank system. Summary of the Invention
[0004] The purpose of this invention is to provide a rotary roll electroplating tank system to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a rotary roller electroplating tank system, comprising an electroplating tank body, a vertical rod fixedly connected to one side of the electroplating tank body, a sliding sleeve slidably connected to the surface of the vertical rod, a support plate fixedly connected to one side of the sliding sleeve, a hook for connecting a roller provided at the bottom of the support plate, and a hydraulic rod for controlling the lifting and lowering of the support plate fixedly installed at the top of the vertical rod; A circulating lateral jetting mechanism is fixedly mounted on the electroplating tank body; A heating mechanism is fixedly mounted on the circulating lateral jet mechanism and is capable of controlling the temperature of the electroplating solution. A stirring mechanism is fixedly mounted on the circulating lateral jet mechanism.
[0006] Preferably, the circulating lateral jet mechanism includes an auxiliary circulation tank fixedly installed on one side of the electroplating tank body. One side of the auxiliary circulation tank is fixedly connected to an inlet pipe, one end of which is fixedly connected to one side of the electroplating tank body. A circulation pump is fixedly installed on one side of the auxiliary circulation tank. The outlet end of the circulation pump is fixedly connected to a transmission pipe. One end of the transmission pipe is fixedly connected to a distribution box, and one side of the distribution box is fixedly connected to several distribution pipes.
[0007] Preferably, the heating mechanism includes a controller and a heating box fixedly installed on one side of the auxiliary circulation tank. An electric heating plate is fixedly installed inside the heating box. Three heat-conducting rods are fixedly connected to one side of the electric heating plate, and one end of each heat-conducting rod extends into the interior of the auxiliary circulation tank.
[0008] Preferably, the agitation mechanism includes a transmission box fixedly installed on the top of the auxiliary circulation tank. A transmission motor is fixedly installed on one side of the transmission box. The output end of the transmission motor extends into the interior of the transmission box and is fixedly connected to a first bevel gear. A second bevel gear is meshed with the bottom of the first bevel gear. A rotating rod is fixedly connected to the bottom of the second bevel gear. The bottom of the rotating rod extends into the interior of the auxiliary circulation tank. Several agitation rods are fixedly connected to the circumferential side of the rotating rod. A swing mechanism is provided on one side of the first bevel gear.
[0009] Preferably, the swing mechanism includes a transmission rod fixedly connected to one side of the first bevel gear. A transmission block is sleeved on the surface of the transmission rod. A transmission groove for cooperating with the transmission rod is opened on one side of the transmission block. A traction rod is fixedly connected to one side of the transmission block. One end of the traction rod extends through to the outside of the transmission box and is fixedly connected to a toothed plate. A transmission gear is meshed with one side of the toothed plate. The bottom of the transmission gear is fixedly connected to the top of the distributor box. A rotating shaft is provided on the top of the transmission gear, and a positioning plate is rotatably connected through the rotating shaft. One side of the positioning plate is fixedly connected to one side of the transmission box. A rotating mechanism is provided on the top of the support plate.
[0010] Preferably, the rotating mechanism includes a rotating box fixedly mounted on the top of the support plate, a rotating motor fixedly mounted on the top of the rotating box, the output end of the rotating motor penetrating into the interior of the rotating box and fixedly connected to a small gear, a large gear meshing with one side of the small gear, the bottoms of the large gear and the small gear being rotatably connected to the inner wall of the rotating box, and the top of the hook penetrating into the interior of the rotating box and fixedly connected to the bottom of the large gear.
[0011] Preferably, a guide rod is fixedly connected to the inner wall of the transmission box, and a guide hole is provided on one side of the transmission block to cooperate with the guide rod.
[0012] Preferably, the inner wall of the transmission box is provided with a bearing seat, and the surface of the rotating rod is rotatably connected to the inner wall of the transmission box through the bearing seat.
[0013] Preferably, a temperature sensor is fixedly installed on one side of the auxiliary circulation tank, and the probe of the temperature sensor extends into the interior of the auxiliary circulation tank.
[0014] Preferably, the transmission pipe is a stainless steel flexible tube that can be bent.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: This invention, by setting up a circulating lateral jetting mechanism, allows the roller to be hung on a hook, and then the hydraulic rod is activated to control the support block to move downward, so that the roller on the hook enters the electroplating tank. At the same time, the circulation pump is activated, and the electroplating solution in the electroplating tank body enters the auxiliary circulation tank through the inlet pipe, then enters the distribution box through the transmission pipe, and finally is sprayed out through the distribution pipe, so that the electroplating solution impacts the surface of the roller, promotes the renewal and mass transfer of the electroplating solution in the micro-channels, reduces the retention of bubbles, avoids the plating voids or uneven thickness, and thus improves the electroplating effect. At the same time, the circulation pump also keeps the composition of the electroplating solution uniform by circulating and extracting the electroplating solution. This invention incorporates a heating mechanism. When the electroplating solution enters the auxiliary circulation tank, a temperature sensor detects the temperature of the solution and transmits the signal to the controller. The controller's built-in PLC module then activates the electric heating plate, which transfers heat to the heat-conducting rods to heat the electroplating solution, ensuring that the solution maintains a suitable temperature and thus improving the electroplating effect. This invention incorporates a stirring mechanism. When the electroplating solution enters the auxiliary circulation tank for heating, the motor drives the first bevel gear to rotate. Subsequently, the first bevel gear drives the second bevel gear and the rotating rod to rotate, which in turn drives the stirring rod to rotate. This stirring process makes the electroplating solution more uniform and ensures a consistent temperature inside the auxiliary circulation tank, thereby improving the subsequent electroplating effect. This invention incorporates a swing mechanism. When the first bevel gear rotates, it drives the transmission rod to rotate. During the rotation of the transmission rod, its surface presses against the inner wall of the transmission groove, causing the transmission block to move back and forth. Subsequently, the transmission block drives the traction rod and the toothed plate to move back and forth. During the reciprocating movement of the toothed plate, it drives the transmission gear to swing around the rotating shaft, which in turn drives the distribution box to swing. By continuously adjusting the position of the electrolyte sprayed from the distribution box, the electrolyte is evenly impacted on the roller, thereby improving the electroplating effect. This invention incorporates a rotating mechanism. When the roller is hung on the hook, a rotating motor can be started, which drives a small gear to rotate. The small gear then drives a large gear and the hook to rotate slowly. The roller on the hook also rotates in the electroplating solution, making the electroplating more uniform and thus improving the electroplating effect. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the three-dimensional structure in this invention; Figure 2 This is a perspective view taken in cross-section in this invention; Figure 3 For the present invention Figure 2 A magnified view of a section at point A in the middle; Figure 4 This is a perspective view of a partial structure in this invention; Figure 5 This is a perspective view of the rotating box in this invention. Figure 6 This is a perspective view of the rotating mechanism in this invention; Figure 7 This is a perspective view of the stirring mechanism in this invention; Figure 8 This is a perspective view of the swing mechanism in this invention.
[0017] In the diagram: 1. Electroplating tank body; 2. Upright pole; 3. Sliding sleeve; 4. Support plate; 5. Hook; 6. Hydraulic rod; 7. Auxiliary circulation tank; 8. Inlet pipe; 9. Circulation pump; 10. Transmission pipe; 11. Diverter box; 12. Diverter pipe; 13. Controller; 14. Heating box; 15. Electric heating plate; 16. Heat-conducting rod; 17. Transmission box; 18. Transmission motor; 19. First bevel gear; 20. Second bevel gear; 21. Rotating rod; 22. Stirring rod; 23. Transmission rod; 24. Transmission block; 25. Transmission groove; 26. Traction rod; 27. Gear plate; 28. Transmission gear; 29. Rotating shaft; 30. Positioning plate; 31. Rotating box; 32. Rotary motor; 33. Small gear; 34. Large gear; 35. Guide rod; 36. Guide hole; 37. Bearing seat; 38. Temperature sensor. Detailed Implementation
[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0019] Please see Figures 1-8 As shown, Example 1: A rotary roller electroplating tank system includes an electroplating tank body 1, a vertical rod 2 fixedly connected to one side of the electroplating tank body 1, a sliding sleeve 3 slidably connected to the surface of the vertical rod 2, a support plate 4 fixedly connected to one side of the sliding sleeve 3, a hook 5 for connecting the roller is provided at the bottom of the support plate 4, and a hydraulic rod 6 for controlling the lifting and lowering of the support plate 4 is fixedly installed at the top of the vertical rod 2. A circulating side jet mechanism is fixedly mounted on the electroplating tank body 1; The heating mechanism is fixedly mounted on the circulating side jet mechanism and can control the temperature of the electroplating solution. The agitation mechanism is fixedly mounted on the circulating side jet mechanism.
[0020] The circulating side jet mechanism includes an auxiliary circulation tank 7 fixedly installed on one side of the electroplating tank body 1. An inlet pipe 8 is fixedly connected to one side of the auxiliary circulation tank 7. One end of the inlet pipe 8 is fixedly connected to one side of the electroplating tank body 1. A circulation pump 9 is fixedly installed on one side of the auxiliary circulation tank 7. A transmission pipe 10 is fixedly connected to the outlet end of the circulation pump 9. A diversion box 11 is fixedly connected to one end of the transmission pipe 10. Several diversion pipes 12 are fixedly connected to one side of the diversion box 11.
[0021] In this embodiment, by setting up a circulating lateral jetting mechanism, the roller is hung on the hook 5, and then the hydraulic rod 6 is activated to control the support block to move downward, so that the roller on the hook 5 enters the electroplating tank. At the same time, the circulating pump 9 is activated, and the electroplating solution in the electroplating tank body 1 enters the auxiliary circulating tank 7 through the liquid inlet pipe 8, and then enters the distribution box 11 through the transmission pipe 10. Finally, it is sprayed out through the distribution pipe 12, so that the electroplating solution impacts the surface of the roller, promotes the renewal and mass transfer of the electroplating solution in the micro-channels, reduces the retention of bubbles, avoids the plating voids or uneven thickness, and thus improves the electroplating effect. At the same time, the circulating pump 9 can also keep the composition of the electroplating solution uniform by circulating and extracting the electroplating solution.
[0022] Example 2: The heating mechanism includes a controller 13 and a heating box 14 fixedly installed on one side of the auxiliary circulation tank 7. An electric heating plate 15 is fixedly installed inside the heating box 14. Three heat-conducting rods 16 are fixedly connected to one side of the electric heating plate 15, and one end of the heat-conducting rods 16 penetrates into the interior of the auxiliary circulation tank 7.
[0023] In this embodiment, by setting a heating mechanism, when the electroplating solution enters the auxiliary circulation tank 7, the temperature sensor 38 will sense the temperature of the electroplating solution and transmit the signal to the controller 13. Then, the built-in PLC module of the controller 13 will start the electric heating plate 15. The electric heating plate 15 will then transfer heat to the heat conduction rod 16 to heat the electroplating solution, so that the electroplating solution always maintains a suitable temperature, thereby improving the electroplating effect.
[0024] A temperature sensor 38 is fixedly installed on one side of the auxiliary circulation tank 7, and the probe of the temperature sensor 38 extends into the interior of the auxiliary circulation tank 7.
[0025] In this embodiment, by setting a temperature sensor 38, when the temperature of the electroplating solution is too low, the temperature sensor 38 will transmit a signal to the controller 13. Then, the built-in PLC module of the controller 13 will start the electric heating plate 15 to heat the electroplating solution, thus realizing the function of intelligent temperature control.
[0026] Example 3: The agitation mechanism includes a transmission box 17 fixedly installed on the top of the auxiliary circulation tank 7. A transmission motor 18 is fixedly installed on one side of the transmission box 17. The output end of the transmission motor 18 extends into the interior of the transmission box 17 and is fixedly connected to a first bevel gear 19. A second bevel gear 20 is meshed with the bottom of the first bevel gear 19. A rotating rod 21 is fixedly connected to the bottom of the second bevel gear 20. The bottom of the rotating rod 21 extends into the interior of the auxiliary circulation tank 7. Several agitation rods 22 are fixedly connected to the circumferential side of the rotating rod 21. A swing mechanism is provided on one side of the first bevel gear 19.
[0027] In this embodiment, by setting up a stirring mechanism, when the electroplating solution enters the auxiliary circulation tank 7 for heating, the motor will drive the first bevel gear 19 to rotate. Then, the first bevel gear 19 will drive the second bevel gear 20 and the rotating rod 21 to rotate. The rotating rod 21 will drive the stirring rod to rotate. By stirring, the electroplating solution is made more uniform, and the temperature inside the auxiliary circulation tank 7 is made consistent, thereby improving the effect of subsequent electroplating.
[0028] The inner wall of the transmission box 17 is provided with a bearing seat 37, and the surface of the rotating rod 21 is rotatably connected to the inner wall of the transmission box 17 through the bearing seat 37.
[0029] In this embodiment, by providing a bearing seat 37, the rotating rod 21 and the stirring rod 22 can be supported, while improving the smoothness and stability of their rotation process.
[0030] Example 4: The swing mechanism includes a transmission rod 23 fixedly connected to one side of the first bevel gear 19. A transmission block 24 is sleeved on the surface of the transmission rod 23. A transmission groove 25 that cooperates with the transmission rod 23 is opened on one side of the transmission block 24. A traction rod 26 is fixedly connected to one side of the transmission block 24. One end of the traction rod 26 extends through to the outside of the transmission box 17 and is fixedly connected to a toothed plate 27. A transmission gear 28 is meshed on one side of the toothed plate 27. The bottom of the transmission gear 28 is fixedly connected to the top of the diverter box 11. A rotating shaft 29 is provided on the top of the transmission gear 28, and a positioning plate 30 is rotatably connected through the rotating shaft 29. One side of the positioning plate 30 is fixedly connected to one side of the transmission box 17. A rotating mechanism is provided on the top of the support plate 4.
[0031] In this embodiment, a swing mechanism is provided. When the first bevel gear 19 rotates, it drives the transmission rod 23 to rotate. During the rotation of the transmission rod 23, its surface will press against the inner wall of the transmission groove 25, causing the transmission block 24 to move back and forth. Then, the transmission block 24 will drive the traction rod 26 and the toothed plate 27 to move back and forth. During the back and forth movement of the toothed plate 27, it will drive the transmission gear 28 to swing around the rotating shaft 29, thereby driving the diversion box 11 to swing. By constantly changing the position of the electrolyte sprayed from the diversion box 11, the electrolyte is evenly impacted on the roller, thereby improving the electroplating effect.
[0032] A guide rod 35 is fixedly connected to the inner wall of the transmission box 17, and a guide hole 36 is provided on one side of the transmission block 24 to cooperate with the guide rod 35.
[0033] In this embodiment, by setting guide rod 35 and guide hole 36, when transmission rod 23 presses transmission groove 25, it restricts transmission block 24 to only reciprocate, thus limiting the movement trajectory.
[0034] The transmission pipe 10 is a stainless steel flexible hose that can be bent.
[0035] In this embodiment, by setting up a transmission pipe 10, which is a stainless steel flexible tube, even if the swing mechanism drives the diversion box 11 to swing, it will affect the normal delivery of the electroplating solution.
[0036] Example 5: The rotating mechanism includes a rotating box 31 fixedly mounted on the top of the support plate 4. A rotating motor 32 is fixedly mounted on the top of the rotating box 31. The output end of the rotating motor 32 extends into the interior of the rotating box 31 and is fixedly connected to a small gear 33. A large gear 34 is meshed with one side of the small gear 33. The bottoms of both the large gear 34 and the small gear 33 are rotatably connected to the inner wall of the rotating box 31. The top of the hook 5 extends into the interior of the rotating box 31 and is fixedly connected to the bottom of the large gear 34.
[0037] In this embodiment, a rotating mechanism is set up so that when the roller is hung on the hook 5, the rotating motor 32 can be started. The rotating motor 32 will drive the small gear 33 to rotate, and then the small gear 33 will drive the large gear 34 and the hook 5 to rotate slowly. The roller on the hook 5 will also rotate in the electroplating solution, making the electroplating more uniform and thus improving the electroplating effect.
[0038] The working principle and usage process of this invention: The user can hang the roller on the hook 5, and then start the hydraulic rod 6 to control the support block to move downward, so that the roller on the hook 5 enters the electroplating tank. At the same time, the circulation pump 9 is started. The electroplating liquid in the electroplating tank body 1 will enter the auxiliary circulation tank 7 through the liquid inlet pipe 8, and then enter the distribution box 11 through the transmission pipe 10. Finally, it will be sprayed out through the distribution pipe 12, so that the electroplating liquid impacts the surface of the roller, promotes the renewal and mass transfer of the electroplating liquid in the micro-channels, reduces the retention of bubbles, avoids the plating voids or uneven thickness, and thus improves the electroplating effect. At the same time, the circulation pump 9 can also keep the electroplating liquid composition uniform by circulating and extracting the electroplating liquid. When the electroplating solution enters the auxiliary circulation tank 7, the temperature sensor 38 will sense the temperature of the electroplating solution and transmit the signal to the controller 13. Then the built-in PLC module of the controller 13 will start the electric heating plate 15. The electric heating plate 15 will then transfer heat to the heat conduction rod 16 to heat the electroplating solution, so that the electroplating solution always maintains a suitable temperature, thereby improving the electroplating effect. While the electroplating solution enters the auxiliary circulation tank 7 for heating, the motor drives the first bevel gear 19 to rotate. Then, the first bevel gear 19 drives the second bevel gear 20 and the rotating rod 21 to rotate. The rotating rod 21 drives the stirring rod to rotate. By stirring, the electroplating solution becomes more uniform, and the temperature inside the auxiliary circulation tank 7 becomes more consistent, thereby improving the effect of subsequent electroplating. When the first bevel gear 19 rotates, it drives the transmission rod 23 to rotate. During the rotation of the transmission rod 23, its surface will press against the inner wall of the transmission groove 25, causing the transmission block 24 to move back and forth. Then, the transmission block 24 will drive the traction rod 26 and the toothed plate 27 to move back and forth. During the back and forth movement of the toothed plate 27, it will drive the transmission gear 28 to swing around the rotating shaft 29, which in turn will drive the distribution box 11 to swing. By constantly changing the position of the electrolyte sprayed from the distribution box 11, the electrolyte is evenly impacted on the roller, thereby improving the electroplating effect. When the roller is hung on the hook 5, the rotary motor 32 can be started. The rotary motor 32 will drive the pinion 33 to rotate, and then the pinion 33 will drive the large gear 34 and the hook 5 to rotate slowly. The roller on the hook 5 will also rotate in the electroplating solution, making the electroplating more uniform and thus improving the electroplating effect.
[0039] The structure used in this application can be additionally fitted with protective measures that are common knowledge in the field of this technology under different usage environments, including but not limited to the following methods, such as protective covers for equipment protection, dustproof nets for equipment dust prevention, and sealing components or waterproof coatings for equipment waterproofing, which are commonly used by those skilled in the art.
[0040] It should be noted that (electroplating tank body 1, hydraulic rod 6, circulating pump 9, controller 13, electric heating plate 15, transmission motor 18, rotary motor 32, temperature sensor 38) are existing devices or equipment, or devices or equipment that can be implemented by existing technology. The power supply, connection method, usage method, power source, fixing method, installation method, control method, etc. of the equipment, as well as the materials of each accessory and the selection of various parameters are all common knowledge to those skilled in the art, and therefore will not be described in detail in this application document.
[0041] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape, and proportions of various elements, as well as parameter values (e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of the invention. The order or sequence of any process or method steps may be changed or rearranged according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structurally equivalent but also equivalent in structure. Other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments without departing from the scope of the invention. Therefore, the present invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.
[0042] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the best mode of carrying out the invention as currently considered, or those features that are not relevant to implementing the invention) may be omitted.
[0043] It should be understood that numerous specific implementation decisions can be made during the development of any practical implementation, such as in any engineering or design project. Such development efforts may be complex and time-consuming, but for those skilled in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.
[0044] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
[0045] It should be noted that, in this document, relational 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. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0046] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rotary roll electroplating tank system, comprising an electroplating tank body (1), characterized in that: A vertical rod (2) is fixedly connected to one side of the electroplating tank body (1), a sliding sleeve (3) is slidably connected to the surface of the vertical rod (2), a support plate (4) is fixedly connected to one side of the sliding sleeve (3), a hook (5) for connecting the roller is provided at the bottom of the support plate (4), and a hydraulic rod (6) for controlling the lifting and lowering of the support plate (4) is fixedly installed at the top of the vertical rod (2). A circulating side jet mechanism is fixedly mounted on the electroplating tank body (1); A heating mechanism is fixedly mounted on the circulating lateral jet mechanism and is capable of controlling the temperature of the electroplating solution. A stirring mechanism is fixedly mounted on the circulating lateral jet mechanism.
2. The rotary roll electroplating tank system according to claim 1, characterized in that: The circulating side jet mechanism includes an auxiliary circulation tank (7) fixedly installed on one side of the electroplating tank body (1). An inlet pipe (8) is fixedly connected to one side of the auxiliary circulation tank (7). One end of the inlet pipe (8) is fixedly connected to one side of the electroplating tank body (1). A circulation pump (9) is fixedly installed on one side of the auxiliary circulation tank (7). A transmission pipe (10) is fixedly connected to the outlet end of the circulation pump (9). A diversion box (11) is fixedly connected to one end of the transmission pipe (10). A plurality of diversion pipes (12) are fixedly connected to one side of the diversion box (11).
3. The rotary roll electroplating tank system according to claim 2, characterized in that: The heating mechanism includes a controller (13) and a heating box (14) fixedly installed on one side of the auxiliary circulation tank (7). An electric heating plate (15) is fixedly installed inside the heating box (14). Three heat-conducting rods (16) are fixedly connected to one side of the electric heating plate (15). One end of the heat-conducting rods (16) penetrates into the interior of the auxiliary circulation tank (7).
4. The rotary roll electroplating tank system according to claim 3, characterized in that: The agitation mechanism includes a transmission box (17) fixedly installed on the top of the auxiliary circulation tank (7). A transmission motor (18) is fixedly installed on one side of the transmission box (17). The output end of the transmission motor (18) extends into the interior of the transmission box (17) and is fixedly connected to a first bevel gear (19). A second bevel gear (20) is meshed with the bottom of the first bevel gear (19). A rotating rod (21) is fixedly connected to the bottom of the second bevel gear (20). The bottom of the rotating rod (21) extends into the interior of the auxiliary circulation tank (7). Several agitation rods (22) are fixedly connected to the circumferential side of the rotating rod (21). A swing mechanism is provided on one side of the first bevel gear (19).
5. A rotary roll electroplating tank system according to claim 4, characterized in that: The swing mechanism includes a transmission rod (23) fixedly connected to one side of the first bevel gear (19). A transmission block (24) is sleeved on the surface of the transmission rod (23). A transmission groove (25) is opened on one side of the transmission block (24) to cooperate with the transmission rod (23). A traction rod (26) is fixedly connected to one side of the transmission block (24). One end of the traction rod (26) extends to the outside of the transmission box (17) and is fixedly connected to a toothed plate (27). A transmission gear (28) is meshed on one side of the toothed plate (27). The bottom of the transmission gear (28) is fixedly connected to the top of the diverter box (11). A rotating shaft (29) is provided on the top of the transmission gear (28), and a positioning plate (30) is rotatably connected through the rotating shaft (29). One side of the positioning plate (30) is fixedly connected to one side of the transmission box (17). A rotating mechanism is provided on the top of the support plate (4).
6. A rotary roll electroplating tank system according to claim 5, characterized in that: The rotating mechanism includes a rotating box (31) fixedly mounted on the top of the support plate (4). A rotating motor (32) is fixedly mounted on the top of the rotating box (31). The output end of the rotating motor (32) extends through the interior of the rotating box (31) and is fixedly connected to a small gear (33). A large gear (34) is meshed with one side of the small gear (33). The bottoms of the large gear (34) and the small gear (33) are rotatably connected to the inner wall of the rotating box (31). The top of the hook (5) extends through the interior of the rotating box (31) and is fixedly connected to the bottom of the large gear (34).
7. A rotary roll electroplating tank system according to claim 5, characterized in that: The inner wall of the transmission box (17) is fixedly connected with a guide rod (35), and a guide hole (36) is provided on one side of the transmission block (24) to cooperate with the guide rod (35).
8. A rotary roll electroplating tank system according to claim 4, characterized in that: The inner wall of the transmission box (17) is provided with a bearing seat (37), and the surface of the rotating rod (21) is rotatably connected to the inner wall of the transmission box (17) through the bearing seat (37).
9. A rotary roll electroplating tank system according to claim 3, characterized in that: A temperature sensor (38) is fixedly installed on one side of the auxiliary circulation tank (7), and the probe of the temperature sensor (38) extends into the interior of the auxiliary circulation tank (7).
10. A rotary roll electroplating tank system according to claim 2, characterized in that: The transmission pipe (10) is a stainless steel flexible tube that can be bent.