Dust-free room electroplating transfer device

By designing a cleanroom electroplating transfer device, which utilizes a lifting mechanism and a chain to achieve the sliding transfer of components within a water tank, the problem of contamination during component transfer is solved, ensuring electroplating quality and expelling harmful gases, thereby improving the cleanliness and safety of the electroplating process.

CN223973416UActive Publication Date: 2026-03-06KUNSHAN LITAIXIANG MASCH EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

During the cleanroom electroplating process, components are easily contaminated during the transfer to the cleanroom, which affects the electroplating quality.

Method used

A cleanroom electroplating transfer device was designed, including components such as an acrylic partition, mounting frame, lifting unit, slider, fixing plate, tray, chain and exhaust fan. The lifting unit and chain work together to realize the sliding transfer of components in the water tank, and the anti-collision plate and exhaust fan prevent contamination and gas discharge.

Benefits of technology

It effectively avoids contamination of components during the transfer process, ensuring electroplating quality, while also venting acidic and alkaline gases during the electroplating process, thus improving the cleanliness and safety of the electroplating process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dust-free room electroplating, and discloses a dust-free room electroplating transfer device which comprises an acrylic partition plate, an installation frame is arranged on the outer side of the acrylic partition plate in a sliding mode, lifting parts are arranged on the two sides of the installation frame, sliding blocks are fixedly arranged at the output ends of the lifting parts, and the sliding blocks are installed on the inner walls of the lifting parts in a sliding mode. A first transverse plate is fixedly connected between the two sliding blocks, two fixing plates are fixedly arranged at the bottom of the first transverse plate, first supporting plates are fixedly arranged on one sides of the two fixing plates, and during use, an element is placed between the two first supporting plates through the placing structure, then the lifting part is started to drive the first supporting plates to move up and down, and then the element is placed on the first supporting plates. According to the invention, the motor is started, the motor drives the chain to rotate, so that the element slides in the water tank to be transferred, and when the element slides to one side in the water tank, the lifting part on the other side of the acrylic partition plate is started, so that the element is pulled out of the water tank, and the element is prevented from being polluted in the transferring process.
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Description

Technical Field

[0001] This utility model relates to the field of cleanroom electroplating technology, specifically to a cleanroom electroplating transfer device. Background Technology

[0002] Electroplating is a process that uses the principle of electrolysis to deposit a thin layer of another metal or alloy onto the surface of certain metals. Electroplating uses electrolysis to attach a metal film to the surface of metal or other material parts, thereby preventing metal oxidation (such as rust), improving wear resistance, conductivity, reflectivity, corrosion resistance, and enhancing aesthetics. However, during cleanroom electroplating, components may become contaminated during transfer to the cleanroom, affecting the quality of the electroplating. Therefore, a cleanroom electroplating transfer device is proposed. Utility Model Content

[0003] The purpose of this invention is to provide a cleanroom electroplating transfer device to solve the problem mentioned in the background art that components may be contaminated during the transfer process to the cleanroom, thereby affecting the quality of the component electroplating.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a cleanroom electroplating transfer device, comprising an acrylic partition and a workshop top, wherein the acrylic partition is installed at the bottom of the workshop top, a mounting frame is slidably arranged on the outer side of the acrylic partition, a lifting part is provided on the top of the mounting frame, sliders are slidably arranged on both sides of the inner side of the mounting frame, a first horizontal plate is fixedly connected between two sliders, the lifting part is connected to the first horizontal plate, two fixing plates are fixedly arranged at the bottom of the first horizontal plate, a first support plate is fixedly arranged on one side of each of the two fixing plates, a water tank is arranged below the acrylic partition, two fixing seats are fixedly arranged on one side of the water tank, a connecting rod is rotatably arranged between the two fixing seats, a first gear plate is fixedly arranged at both ends of the connecting rod, and the acrylic partition is rotatably arranged on both sides. Each component is fixedly equipped with side plates. Two of the side plates have a second geared disc rotatably mounted on one side. A chain meshes between the second and first geared discs. A motor is fixedly mounted on one side of one of the side plates, and the motor's output end is fixedly connected to the first geared disc. Multiple connecting seats are fixedly mounted on the outer side of the chain. A second support plate is mounted on the top of each connecting seat. A placement structure is provided between two second support plates at the same level. A handle is fixedly mounted on the outer side of the mounting frame. Mounting plates are fixedly mounted on both sides of the mounting frame. Two fixing bolts are fixedly mounted on the top of each mounting plate. A crash barrier is provided between the tops of the two mounting plates, and the fixing bolts penetrate the crash barrier. An exhaust pipe is fixedly connected to the top of the workshop roof, and an exhaust fan is fixedly mounted at the bottom of the workshop roof.

[0005] Preferably, the placement structure includes a second horizontal plate positioned above the water tank. Vertical plates are fixedly mounted on both sides of the second horizontal plate, and a snap-on plate is fixedly mounted on one side of each vertical plate. Inclined blocks are fixedly mounted on both sides of each snap-on plate and snap onto the inside of a first support plate. A third horizontal plate is fixedly mounted between the bottoms of the two vertical plates. Multiple limiting blocks are evenly distributed on the top of the third horizontal plate. Two limiting pins are fixedly mounted on one side of the third horizontal plate. An annular plate is integrally machined on the outer side of each of the two limiting pins. A pressing plate is mounted on one side of the annular plate, and the limiting pins penetrate the pressing plate. Multiple pins are evenly distributed on one side of the pressing plate. Multiple component bodies are positioned below the third horizontal plate, and hanging plates are mounted on the top of each component body and snap onto the outer side of the third horizontal plate. The pins penetrate the third horizontal plate and the hanging plates.

[0006] Preferably, the mounting bracket is provided with a limiting groove inside, and the slider is slidably installed inside the limiting groove.

[0007] Preferably, the pressing plate has connecting holes on both sides, and the limiting pin and the annular plate are engaged with the connecting holes by interference fit.

[0008] Preferably, the first tray is processed into a V-shape, and the buckle plate and the beveled block are embedded inside the first tray.

[0009] Preferably, both the third horizontal plate and the hanging plate have through holes inside, and the pin passes through the through holes.

[0010] Preferably, the lifting unit includes a winding motor, a winding roller, and pull ropes. The winding motor is fixedly installed on one side of the mounting frame, and the winding roller is rotatably installed on the top of the mounting frame. The output end of the winding motor is fixedly connected to the winding roller, and two pull ropes are provided on the outer side of the winding roller. One end of the two pull ropes is fixedly connected to the top of the first horizontal plate.

[0011] Compared with the prior art, the present invention, by adopting the above technical solution, has the following technical effects:

[0012] This utility model, by setting up a lifting part, a slider, a first horizontal plate, a fixing plate, and a first support plate, allows the component body to be hung on the outside of the third horizontal plate via the hanging plate during use. Then, the pressing plate is fastened to one side of the third horizontal plate, and the lifting part is activated to place the component body inside the water tank. The motor is then started, allowing the component to slide and transfer inside the water tank. When the component slides to one side of the water tank, the lifting part on the other side of the acrylic partition is activated to pull the component out of the water tank, preventing the component from being contaminated during the transfer. At the same time, a collision protection plate is connected to the outside of the mounting frame via a mounting plate, which protects the mounting frame when it moves. Additionally, acidic and alkaline gases generated during the electroplating process are discharged through an exhaust fan. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a side view of the structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the connection structure between the water tank and the first toothed disc of this utility model;

[0016] Figure 3 This is a schematic diagram of the connection structure between the third horizontal plate and the pin of this utility model;

[0017] Figure 4 This is a schematic diagram of the connection structure between the first horizontal plate and the first support plate of this utility model;

[0018] Figure 5 This is a side view of the mounting bracket of this utility model.

[0019] Figure 6 For the present utility model Figure 1 A magnified structural diagram of A in the middle;

[0020] Figure 7 For the present utility model Figure 3 A magnified structural diagram of B in the diagram.

[0021] Explanation of reference numerals in the attached drawings: 1. Acrylic partition; 2. Mounting bracket; 3. Lifting part; 4. Slider; 5. First horizontal plate; 6. Fixing plate; 7. First support plate; 8. Water tank; 9. Fixing seat; 10. Connecting rod; 11. First gear plate; 12. Side plate; 13. Second gear plate; 14. Chain; 15. Motor; 16. Connecting seat; 17. Second support plate; 18. Second horizontal plate; 19. Vertical plate; 20. Buckle plate; 21. Inclined block; 22. Third horizontal plate; 23. Limiting block; 24. Limiting pin; 25. Ring plate; 26. Pressing plate; 27. Pin rod; 28. Component body; 29. ​​Hanging plate; 30. Handle; 31. Mounting plate; 32. Fixing bolt; 33. Anti-collision plate; 301. Rewinding motor; 302. Rewinding roller; 303. Pull rope. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] It should be noted that the structures, proportions, sizes, etc., shown in the accompanying drawings of this specification are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed in the specification, and are not intended to limit the conditions under which this application can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size should still fall within the scope of the technical content disclosed in this application, provided that they do not affect the effects and purposes that this application can produce.

[0024] Example

[0025] In the prior art, during cleanroom electroplating, components may become contaminated during the transfer process to the cleanroom, which can affect the quality of the electroplating.

[0026] Please see Figure 1-6This utility model provides a technical solution: it includes an acrylic partition 1 and a workshop top 34. The acrylic partition 1 is installed at the bottom of the workshop top 34. A mounting frame 2 is slidably arranged on the outer side of the acrylic partition 1. A lifting part 3 is arranged on the top of the mounting frame 2. Sliding blocks 4 are slidably arranged on both sides of the inner side of the mounting frame 2. A first horizontal plate 5 is fixedly connected between the two sliding blocks 4. The lifting part 3 is connected to the first horizontal plate 5. Two fixing plates 6 are fixedly arranged at the bottom of the first horizontal plate 5. A first support plate 7 is fixedly arranged on one side of each of the two fixing plates 6. A water tank 8 is arranged below the acrylic partition 1. A support plate 7 is fixedly arranged on one side of the water tank 8. The device has two fixed seats 9, with a connecting rod 10 rotatably mounted between them. A first gear 11 is fixedly mounted at both ends of the connecting rod 10. Side plates 12 are fixedly mounted on both sides of the acrylic partition 1. A second gear 13 is rotatably mounted on one side of each of the two side plates 12. A chain 14 meshes with the first gear 11 between the second gear 13 and the first gear 11. A motor 15 is fixedly mounted on one side of one of the side plates 12, and the output end of the motor 15 is fixedly connected to the first gear 11. Multiple connecting seats 16 are fixedly mounted on the outer side of the chain 14, and a second support plate 17 is mounted on the top of each of the multiple connecting seats 16. A placement structure is provided between two second pallets 17 at the same level. A handle 30 is fixedly installed on the outside of the mounting frame 2. Mounting plates 31 are fixedly installed on both sides of the mounting frame 2. Two fixing bolts 32 are fixedly installed on the top of the mounting plates 31. A crash barrier 33 is provided between the tops of the two mounting plates 31. The fixing bolts 32 pass through the crash barrier 33. An exhaust pipe 35 is fixedly connected to the top of the workshop roof 34. An exhaust fan 36 is fixedly installed at the bottom of the workshop roof 34. In use, the component is placed between the two first pallets 7 through the placement structure, and then the lifting unit 3 is activated to drive the first pallets 7. The plate 7 moves up and down to place the component inside the water tank 8. The motor 15 is started, and the motor 15 drives the chain 14 to rotate, so that the component slides inside the water tank 8 for transfer. When the component slides to one side of the water tank 8, the lifting part 3 on the other side of the acrylic partition 1 is activated to pull the component out of the water tank 8, so as to avoid contamination of the component during the transfer. At the same time, the outside of the mounting frame 2 is connected to the anti-collision plate 33 through the mounting plate 31. When the mounting frame 2 moves, the anti-collision plate 33 will protect it. Meanwhile, the acidic and alkaline gases generated during the electroplating process will be discharged through the exhaust fan 36.

[0027] The placement structure includes a second horizontal plate 18, which is positioned above the water tank 8. Vertical plates 19 are fixedly installed on both sides of the second horizontal plate 18. A snap plate 20 is fixedly installed on one side of each vertical plate 19. Inclined blocks 21 are fixedly installed on both sides of each snap plate 20, and the inclined blocks 21 snap into the interior of the first support plate 7. A third horizontal plate 22 is fixedly installed between the bottoms of the two vertical plates 19. Multiple limiting blocks 23 are evenly distributed on the top of the third horizontal plate 22. Two limiting pins 24 are fixedly installed on one side of the third horizontal plate 22. An annular plate 25 is integrally machined on the outer side of each of the two limiting pins 24. A pressing plate 26 is installed on one side of the annular plate 25, through which the limiting pins 24 pass. Multiple pins 27 are evenly distributed on one side of the pressing plate 26. Below the third horizontal plate 22, there are multiple component bodies 28. Each component body 28 has a hanging plate 29 on its top, which is fastened to the outside of the third horizontal plate 22. A pin 27 passes through the third horizontal plate 22 and the hanging plate 29. In use, the inclined block 21 is fastened inside the first support plate 7. The height of the second horizontal plate 18 is adjusted by the first support plate 7. The second horizontal plate 18 will cause the third horizontal plate 22 to be fastened inside the second support plate 17. Then, the component body 28 is hung on the outside of the third horizontal plate 22 by the hanging plate 29. Then, the pressing plate 26 is fastened to one side of the third horizontal plate 22. The pin 27 on one side of the third horizontal plate 22 will pass through the third horizontal plate 22 and the hanging plate 29, thereby preventing the component body 28 from sliding and colliding during the transfer process.

[0028] The mounting bracket 2 is provided with a limiting groove inside, and the slider 4 is slidably installed inside the limiting groove. The first horizontal plate 5 is slidably installed inside the mounting bracket 2 via the slider 4.

[0029] Both sides of the pressing plate 26 have connecting holes. The limiting pin 24 and the annular plate 25 are fastened to the connecting holes by interference fit. The pressing plate 26 is fastened to one side of the third horizontal plate 22 by the limiting pin 24 and the annular plate 25.

[0030] The first support plate 7 is processed into a V-shape, and the buckle plate 20 and the inclined block 21 are embedded inside the first support plate 7. The second horizontal plate 18 can be easily connected through the first support plate 7.

[0031] Both the third horizontal plate 22 and the hanging plate 29 have through holes inside, and the pin 27 passes through the through holes to limit the hanging plate 29.

[0032] The lifting unit 3 includes a winding motor 301, a winding roller 302, and pull ropes 303. The winding motor 301 is fixedly installed on one side of the mounting frame 2. The winding roller 302 is rotatably mounted on the top of the mounting frame 2. The output end of the winding motor 301 is fixedly connected to the winding roller 302. Two pull ropes 303 are provided on the outer side of the winding roller 302. One end of the two pull ropes 303 is fixedly connected to the top of the first horizontal plate 5. When the first horizontal plate 5 is lifted or lowered, the winding motor 301 is started. The winding motor 301 drives the winding roller 302 to rotate, thereby winding the pull ropes 303 and pulling the first horizontal plate 5 upward.

[0033] The working principle or structural principle is as follows: During use, the inclined block 21 is fastened inside the first support plate 7. The height of the second horizontal plate 18 is adjusted by the first support plate 7, causing the third horizontal plate 22 to be fastened inside the second support plate 17. Then, the component body 28 is hung on the outside of the third horizontal plate 22 via the hanging plate 29. Next, the pressing plate 26 is fastened to one side of the third horizontal plate 22. The pin 27 on one side of the third horizontal plate 22 passes through the third horizontal plate 22 and the hanging plate 29, thus preventing the component body 28 from sliding and colliding during transfer. Then, the winding motor 301 is started, which drives the winding roller 302 to rotate, thereby winding the pull rope 303 and pulling the first horizontal plate 5 towards... The component moves upward, thereby causing the first pallet 7 to move up and down, thus placing the component body 28 inside the water tank 8. The motor 15 is started, and the motor 15 drives the first gear plate 11 to rotate, thereby causing the chain 14 to rotate. The chain 14 causes the component to slide inside the water tank 8 for transfer. When the component slides to one side inside the water tank 8, the lifting part 3 on the other side of the acrylic partition 1 is activated, thereby pulling the component out of the water tank 8 to avoid contamination of the component during the transfer. At the same time, the outside of the mounting frame 2 is connected to the anti-collision plate 33 through the mounting plate 31. When the mounting frame 2 moves, the anti-collision plate 33 will protect it. Meanwhile, the acidic and alkaline gases generated during the electroplating process will be discharged through the exhaust fan 36.

[0034] Those skilled in the art will understand that the features described in the various embodiments and / or claims of this utility model can be combined or combined in various ways, even if such combinations or combinations are not explicitly described in this utility model. In particular, the features described in the various embodiments and / or claims of this utility model can be combined or combined in various ways without departing from the spirit and teachings of this utility model. All such combinations and / or combinations fall within the scope of this utility model.

Claims

1. Dust-free room electroplating transfer device, comprising acrylic partition (1) and workshop top (34), characterized in that: The acrylic partition (1) is installed at the bottom of the workshop top (34), the outer side of the acrylic partition (1) is slidably provided with a mounting frame (2), the top of the mounting frame (2) is provided with a lifting part (3), the inner sides of the mounting frame (2) are slidably provided with sliders (4), the two sliders (4) are fixedly connected with a first horizontal plate (5), the lifting part (3) is connected with the first horizontal plate (5), the bottom of the first horizontal plate (5) is fixedly provided with two fixed plates (6), the one sides of the two fixed plates (6) are fixedly provided with first supporting plates (7), the lower side of the acrylic partition (1) is provided with a water tank (8), the one side of the water tank (8) is fixedly provided with two fixed seats (9), the two fixed seats (9) are rotatably provided with a connecting rod (10), the two ends of the connecting rod (10) are fixedly provided with first toothed discs (11), the two sides of the acrylic partition (1) are fixedly provided with side plates (12), the one sides of the two side plates (12) are rotatably provided with second toothed discs (13), the second toothed discs (13) and the first toothed discs (11) are meshed with chains (14), the one side of one of the side plates (12) is fixedly provided with a motor (15), and the output end of the motor (15) is fixedly connected with the first toothed disc (11), the outer side of the chain (14) is fixedly provided with a plurality of connecting seats (16), the top of each of the connecting seats (16) is provided with a second supporting plate (17), the two second supporting plates (17) at the same horizontal are provided with a placing structure, the outer side of the mounting frame (2) is fixedly provided with a handle (30), the two sides of the mounting frame (2) are fixedly provided with mounting plates (31), the top of each of the mounting plates (31) is fixedly provided with two fixed bolts (32), the top of the two mounting plates (31) is provided with a collision plate (33), the fixed bolts (32) penetrate through the collision plate (33), the top of the workshop top (34) is fixedly and continuously provided with an exhaust pipeline (35), and the bottom of the workshop top (34) is fixedly provided with an exhaust fan (36).

2. The clean room electroplating transfer device of claim 1, wherein: The placing structure comprises a second horizontal plate (18) above the sink (8), vertical plates (19) fixedly arranged on both sides of the second horizontal plate (18), buckle plates (20) fixedly arranged on one side of the vertical plates (19), inclined blocks (21) fixedly arranged on both sides of the buckle plates (20) and buckled in the first supporting plate (7), a third horizontal plate (22) fixedly arranged between the bottoms of the two vertical plates (19), a plurality of limiting blocks (23) uniformly arranged on the top of the third horizontal plate (22), two limiting pins (24) fixedly arranged on one side of the third horizontal plate (22), annular plates (25) integrally formed on the outer sides of the two limiting pins (24), pressing plates (26) arranged on one side of the annular plates (25), the limiting pins (24) penetrating through the pressing plates (26), a plurality of pin rods (27) uniformly arranged on one side of the pressing plates (26), a plurality of element main bodies (28) arranged below the third horizontal plate (22), hanging plates (29) arranged on the top of the plurality of element main bodies (28) and buckled on the outer side of the third horizontal plate (22), and the pin rods (27) penetrating through the third horizontal plate (22) and the hanging plates (29).

3. The clean room electroplating transfer device of claim 1, wherein: The inside of the mounting frame (2) is provided with a limiting sliding groove, and the sliding block (4) is slidingly installed in the limiting sliding groove.

4. The clean room electroplating transfer device of claim 2, wherein: Both sides of the pressing plate (26) are provided with connecting holes in the inside, and the limiting pins (24) and the annular plates (25) are buckled with the connecting holes through interference fit.

5. The clean room electroplating transfer device of claim 2, wherein: The first supporting plate (7) is processed into a V-shaped type, and the buckle plates (20) and the inclined blocks (21) are embedded in the inside of the first supporting plate (7).

6. The clean room electroplating transfer device of claim 2, wherein: The third horizontal plate (22) and the hanging plate (29) are both provided with through holes in the inside, and the pin rods (27) penetrate through the through holes.

7. The clean room electroplating transfer device of claim 1, wherein: The lifting part (3) comprises a winding motor (301), a winding roller (302) and a pull rope (303), the winding motor (301) is fixedly installed on one side of the mounting frame (2), the winding roller (302) is rotatably arranged on the top of the mounting frame (2), the output end of the winding motor (301) is fixedly connected with the winding roller (302), two pull ropes (303) are arranged on the outer side of the winding roller (302), and one end of each of the two pull ropes (303) is fixedly connected with the top of the first horizontal plate (5).