Electroplating workpiece cleaning device

By using a multi-angle cleaning structure and drying device driven by a rotary motor, the problem of dead corners in the cleaning of electroplated parts is solved, achieving a more uniform cleaning and drying effect and improving the cleaning and processing efficiency of electroplated parts.

CN224294072UActive Publication Date: 2026-05-29HARBIN YINGUANG PLATING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HARBIN YINGUANG PLATING CO LTD
Filing Date
2025-05-23
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Traditional electroplating cleaning equipment is prone to creating cleaning dead zones during the cleaning process, resulting in incomplete cleaning and reduced cleaning uniformity and efficiency.

Method used

A cleaning structure and drying device driven by a rotary motor were designed. The rotary motor drives the storage basket and frame tube to perform multi-angle cleaning. Combined with the thermal conductivity of aluminum alloy and the buffer protection of polyurethane elastic layer, multi-directional cleaning and uniform drying are achieved.

Benefits of technology

It enables multi-angle and multi-directional cleaning of electroplated parts, avoids cleaning dead corners, improves cleaning uniformity and efficiency, and enhances drying effect and processing efficiency through hot air replacement and filtration systems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to electroplating technical field discloses a kind of electroplated piece cleaning device of electroplating processing, including cleaning box, trapezoidal groove and sealing door, the cleaning box one side center upper place is equipped with rotary motor, the rotary motor output end is equipped with storage basket, the storage basket one side center place is equipped with connecting rod, the cleaning box upper end face center rear place is equipped with cleaning structure, the cleaning structure includes cleaning assembly and moving assembly, the cleaning assembly includes water inlet, the water inlet is set on cleaning box upper end face, the water inlet output end is equipped with spring pipe, the storage basket outside is equipped with frame tube, the frame tube inboard wall place is equipped with multiple spray heads. In the utility model, through cleaning structure, cleaning fluid can be more evenly covered on the surface of electroplated piece, avoid cleaning dead angle, improve cleaning uniformity, thereby improve the cleaning efficiency of electroplated piece.
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Description

Technical Field

[0001] This utility model relates to the field of electroplating technology, and in particular to a cleaning device for electroplated parts during electroplating. Background Technology

[0002] Electroplated parts are workpieces in which one or more layers of metal or alloy are deposited on the surface of a substrate through an electroplating process. Cleaning is a crucial step in the electroplating process, and its purpose is to remove dirt, grease, metal ions and other impurities from the surface of the electroplated parts to ensure the quality of the electroplated layer.

[0003] Traditional electroplating cleaning devices, due to their fixed spray angle and position during the cleaning process, make it difficult for the cleaning solution to fully cover the surface of the electroplated parts, easily creating cleaning dead zones and resulting in incomplete cleaning. This reduces the uniformity of cleaning and thus lowers the cleaning efficiency of the electroplated parts. Therefore, those skilled in the art provide an electroplating cleaning device to solve the problems mentioned in the background art. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a cleaning device for electroplated parts. Through its cleaning structure, the cleaning solution can more evenly cover the surface of the electroplated parts, avoiding cleaning dead corners, improving cleaning uniformity, and thus improving the cleaning efficiency of electroplated parts.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a cleaning device for electroplated parts, comprising a cleaning chamber, a trapezoidal groove, and a sealing door. The trapezoidal groove is located at the center of the front face of the cleaning chamber, and the sealing door is located at the front center of the trapezoidal groove and is rotatably connected to the cleaning chamber via a hinge. A rotary motor is located at the upper center of one side of the cleaning chamber, and the output end of the rotary motor passes through one side wall of the cleaning chamber to the interior of the cleaning chamber. A storage basket is located at the output end of the rotary motor, and a connecting rod is located at the center of one side of the storage basket. The connecting rod is rotatably connected to one inner side wall of the cleaning chamber via a bearing. A drain outlet is located at the lower center of one side of the cleaning chamber, and a cleaning structure is located at the rear center of the upper face of the cleaning chamber.

[0006] The cleaning structure includes a cleaning component and a moving component. The cleaning component is located on the upper surface of the cleaning chamber, and the moving component is located at the upper center of the inside of the cleaning chamber.

[0007] The cleaning assembly includes a water inlet located on the upper surface of the cleaning tank. The water inlet extends through the upper surface of the cleaning tank to the inner wall of the cleaning tank. A spring tube is provided at the output end of the water inlet. A frame tube is provided on the outer side of the storage basket. The spring tube and the frame tube are connected through each other. Multiple nozzles are provided on the inner wall of the frame tube.

[0008] Through the above technical solution, driven by a rotary motor, the storage basket rotates the electroplated parts, and then the cleaning solution is delivered to the spring tube through the water inlet, and then delivered to the inside of the frame tube through the spring tube. Finally, the cleaning solution is sprayed through the nozzle, so that it forms a multi-angle and multi-directional cleaning effect on the electroplated parts inside the storage basket.

[0009] Furthermore, a reciprocating lead screw is provided at the upper center of the cleaning chamber. The two ends of the reciprocating lead screw are rotatably connected to the two inner side walls of the cleaning chamber via bearings. A guide post is provided at the center of the cleaning chamber. A sleeve block is fitted at the center of the outer side of both the reciprocating lead screw and the guide post. The upper sleeve block is threadedly connected to the reciprocating lead screw and slidably connected to the guide post. The two sleeve blocks are fixedly connected to the frame tube. A first transmission wheel is provided at one end of the outer center of the upper reciprocating lead screw. A second transmission wheel is fitted at one side of the outer center of the output end of the rotary motor. A transmission belt is fitted at the outer side of the first and second transmission wheels.

[0010] The above technical solution utilizes a rotary motor to drive a second transmission wheel, which in turn drives a first transmission wheel via a transmission belt. The first transmission wheel then drives a reciprocating screw. A threaded connection between a sleeve block and the reciprocating screw ensures the reciprocating motion of the frame tube. A sliding connection between the lower sleeve block and the guide post allows for smooth movement of the frame tube, enabling the cleaning fluid sprayed from the nozzle to more evenly cover the electroplated surface, avoiding cleaning dead zones and improving cleaning uniformity. This enhances the cleaning efficiency of the electroplated parts. A spring tube further facilitates the effective transport of the cleaning fluid within the moving frame tube.

[0011] Furthermore, a drying device is provided at the center of the upper end face of the cleaning box. The drying device includes a drying box, which is located at the upper end face of the cleaning box. Multiple heating rods are arranged in a rectangular pattern at the center of the interior of the drying box. Conveying grooves are provided on both sides of the center of the lower inner wall of the drying box. The two conveying grooves pass through the drying box and the cleaning box respectively and lead to the upper inner wall of the cleaning box. A first fan is provided at the center of the interior of each of the two conveying grooves. The output end of the first fan on one side faces downward and the output end of the first fan on the other side faces upward.

[0012] The above technical solution involves using a first fan with its output end facing downwards on one side and upwards on the other, to deliver air from the cleaning chamber to the drying chamber. The air is then heated by an electric heating rod, and the heated air is then delivered to the cleaning chamber by another first fan. This ensures that hot air is directed onto the surface of the electroplated parts, achieving heating and drying, accelerating moisture evaporation, avoiding uneven drying, and thus improving the drying effect.

[0013] Furthermore, solenoid valves are provided on both sides of the center of the upper end face of the drying chamber, and a first filter screen is provided at the upper end of each of the two solenoid valves. The lower ends of the two solenoid valves pass through the upper end face of the drying chamber and lead to the upper inner wall of the drying chamber. A connecting pipe is provided at the lower end of each of the two solenoid valves. The two connecting pipes pass through the drying chamber and the cleaning chamber in sequence and lead to the upper inner wall of the cleaning chamber. A protective sleeve is provided at the center of the outer side of each connecting pipe. A second fan is provided at the lower end of the center of the two connecting pipes. The output end of the second fan on one side faces downward and the output end of the second fan on the other side faces upward.

[0014] Through the above technical solution, after drying is completed, the hot air inside the cleaning chamber is transported to the outside by the second fan on one side, and then the cold air in the environment is transported into the cleaning chamber by another second fan. This satisfies the need to replace the hot air inside the cleaning chamber with the cold air outside, which can cool the electroplated parts to a certain extent, thereby improving processing efficiency. Furthermore, the first filter screen prevents foreign objects and impurities from entering the cleaning chamber and affecting the cleaning effect of the electroplated parts.

[0015] Furthermore, filter plates are provided on both sides of the lower center of the cleaning chamber, and pretreatment devices are provided on both sides of the lower center of the cleaning chamber. The pretreatment devices include a storage chamber, which is located on one side of the cleaning chamber. A first through groove is provided on the upper center of the inner wall of the storage chamber, a guide plate is provided on the lower inner wall of the storage chamber, and a second through groove is provided on the lower center of the inner wall of the storage chamber. The first and second through grooves pass through the storage chamber and the cleaning chamber respectively and lead to the inner wall of the cleaning chamber. A slot is provided on the center of one side of the storage chamber, which passes through the side wall of the storage chamber and leads to the inner wall of the storage chamber. A sliding frame is slidably connected inside the slot. The sliding frame is magnetically connected to the slot. A second filter screen is provided at the lower center of the sliding frame.

[0016] The above technical solution allows for the initial filtration of the cleaning solution after cleaning via a filter plate. Foreign objects and particles are then directed through the filter plate into the storage tank via the first channel. The sliding frame and the second filter screen work together to store these foreign objects and particles. Excess cleaning solution is then transported into the cleaning tank via the second channel and discharged through the drain for further processing and filtration. The sliding frame and slot are slidably connected and magnetically connected, enabling quick assembly and disassembly of the sliding frame and slot. This facilitates rapid cleaning and replacement by staff, thus improving convenience.

[0017] Furthermore, the storage basket is made of aluminum alloy, and the center of the inner wall is coated with a polyurethane elastic layer.

[0018] Through the above technical solution, the storage basket is made of aluminum alloy, which has thermal conductivity, so that it can conduct heat during the drying process and quickly and evenly heat and dry the electroplated parts, thereby improving the heating efficiency. The polyurethane elastic layer gives it good elasticity, wear resistance and chemical corrosion resistance, which can effectively buffer the impact and vibration of the electroplated parts during the cleaning process, prevent the electroplated parts from colliding and rubbing in the storage basket, and protect the surface of the electroplated parts from damage. The protective sleeve provides thermal insulation protection for the connecting pipe, so as to avoid damage to the connecting pipe (7) by high heat and affect the temperature of the outside cold air.

[0019] This utility model has the following beneficial effects:

[0020] 1. In this utility model, when the electroplated parts cleaning device is used in electroplating processing, the storage basket rotates under the drive of a rotary motor. The storage basket rotates again under the drive of the rotary motor. The cleaning liquid is then delivered to the spring tube through the water inlet, and then delivered to the inside of the frame tube through the spring tube. The cleaning liquid is then sprayed through the nozzle, which forms a multi-angle and multi-directional cleaning effect on the electroplated parts inside the storage basket. The reciprocating screw is rotated to satisfy the reciprocating motion of the frame tube, so that the cleaning liquid sprayed by the nozzle can more evenly cover the surface of the electroplated parts, avoiding cleaning dead corners, improving cleaning uniformity, and thus improving the cleaning efficiency of the electroplated parts.

[0021] 2. In this utility model, a second fan delivers hot air into the cleaning chamber, ensuring that hot air is directed onto the surface of the electroplated parts. The storage basket, made of aluminum alloy, provides thermal conductivity, allowing for heat conduction during the drying process. This heats and dries the electroplated parts, accelerating moisture evaporation and preventing uneven drying, thus improving the drying effect. After drying, a second fan on one side delivers the hot air from inside the cleaning chamber to the outside, while another second fan delivers cool air from the environment into the cleaning chamber. This exchange of hot air inside the cleaning chamber with cool air from the outside allows for a certain degree of cooling of the electroplated parts, thereby improving processing efficiency.

[0022] 3. In this utility model, the filter plate allows for the initial filtration of the cleaning solution after cleaning. Then, the filter plate allows foreign objects and particles to enter the storage tank through the first channel. The sliding frame and the second filter screen work together to store the foreign objects and particles. The second channel transports excess cleaning solution into the cleaning tank. Finally, the cleaning solution is discharged through the drain outlet for further processing and filtration for reuse. The sliding frame and slot allow for quick assembly and disassembly, facilitating rapid cleaning and replacement by staff, thus improving convenience. Attached Figure Description

[0023] Figure 1 This is a perspective view of a cleaning device for electroplated parts according to the present invention.

[0024] Figure 2 This is a front view of the electroplated parts cleaning device proposed in this utility model.

[0025] Figure 3 This is a front sectional view of a cleaning device for electroplated parts according to the present invention.

[0026] Figure 4 This is a partial side sectional view of the cleaning chamber of an electroplating parts cleaning device proposed in this utility model.

[0027] Figure 5 This is a front sectional view of a cleaning and drying device for electroplated parts according to the present invention.

[0028] Figure 6 for Figure 3 Enlarged diagram of point A in the middle.

[0029] Legend:

[0030] 1. Cleaning chamber; 2. Sealing door; 3. Rotary motor; 4. Storage basket; 5. Connecting rod; 6. Drain outlet; 7. Cleaning structure; 701. Water inlet; 702. Bourdon tube; 703. Frame tube; 704. Nozzle; 705. Reciprocating screw; 706. Guide column; 707. Sleeve block; 708. First transmission wheel; 709. Second transmission wheel; 710. Transmission belt; 8. Drying device; 801. Drying chamber; 802. Electric heating element 803. Rod; 804. Conveying trough; 805. First fan; 806. Solenoid valve; 807. First filter screen; 808. Connecting pipe; 809. Protective sleeve; 8000. Second fan; 9. Filter plate; 10. Pretreatment device; 1001. Storage box; 1002. First through groove; 1003. Guide plate; 1004. Second through groove; 1005. Slot; 1006. Sliding frame; 1007. Second filter screen; 11. Trapezoidal groove. Detailed Implementation

[0031] 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.

[0032] Reference Figure 1-6 This utility model provides an embodiment of a cleaning device for electroplated parts, comprising a cleaning chamber 1, a trapezoidal groove 11, and a sealing door 2. The trapezoidal groove 11 is located at the center of the front face of the cleaning chamber 1, and the sealing door 2 is located at the front center of the trapezoidal groove 11 and is rotatably connected to the cleaning chamber 1 via a hinge. A rotary motor 3 is located at the upper center of one side of the cleaning chamber 1, and the output end of the rotary motor 3 passes through one side wall of the cleaning chamber 1 and extends into the interior of the cleaning chamber 1. A storage basket 4 is located at the output end of the rotary motor 3, and a connecting rod 5 is located at the center of one side of the storage basket 4. The connecting rod 5 is rotatably connected to one inner side wall of the cleaning chamber 1 via a bearing. A drain outlet 6 is located at the lower center of one side of the cleaning chamber 1, and a cleaning structure 7 is located at the rear center of the upper face of the cleaning chamber 1. The cleaning structure 7 enables the cleaning liquid to cover the surface of the electroplated parts more evenly, avoiding cleaning dead corners, improving cleaning uniformity, and thus improving the cleaning efficiency of the electroplated parts.

[0033] A drying device 8 is provided at the center of the upper end face of the cleaning chamber 1. The drying device 8 includes a drying chamber 801, which is located at the upper end face of the cleaning chamber 1. Multiple heating rods 802 are arranged in a rectangular pattern at the center of the interior of the drying chamber 801. Conveying grooves 803 are provided on both sides of the center of the lower inner wall of the drying chamber 801. The two conveying grooves 803 pass through the drying chamber 801 and the cleaning chamber 1 respectively, leading to the upper inner wall of the cleaning chamber 1. A first fan 804 is provided at the center of each conveying groove 803, with the output end of the first fan 804 facing downwards on one side. On the other side, the output end of the first fan 804 faces upwards. With the output end of the first fan 804 on one side facing downwards and the output end of the first fan 804 on the other side facing upwards, the air inside the cleaning chamber 1 is transported to the drying chamber 801. The air is then heated by the electric heating rod 802, and the hot air is then transported to the cleaning chamber 1 by the other first fan 804. This ensures that the hot air is blown onto the surface of the electroplated parts, thereby heating and drying the electroplated parts, accelerating the evaporation of moisture, avoiding the problem of uneven drying, and thus improving the drying effect.

[0034] Solenoid valves 805 are installed on both sides of the center of the upper end face of the drying chamber 801, near the rear. Each solenoid valve 805 has a first filter screen 806 at its upper end, and its lower end penetrates the upper end face of the drying chamber 801 to the inner wall of the drying chamber 801. Each solenoid valve 805 has a connecting pipe 807 at its lower end, which passes through the drying chamber 801 and the cleaning chamber 1 respectively, reaching the inner wall of the cleaning chamber 1. A protective sleeve 808 is fitted at the center of each connecting pipe 807. A second fan 809 is installed at the lower center of each connecting pipe 807. A second fan 809 is installed on one side of the connecting pipe. With the output end of the 9th fan facing downwards and the output end of the second fan 809 on the other side facing upwards, after drying is completed, the hot air inside the cleaning chamber 1 is transported to the outside by the second fan 809 on one side, and then the cold air in the environment is transported to the cleaning chamber 1 by the other second fan 809. This allows for the replacement of the hot air inside the cleaning chamber 1 with the cold air outside, which can cool the electroplated parts to a certain extent, thereby improving processing efficiency. The first filter screen 806 prevents foreign objects and impurities from entering the cleaning chamber 1 and affecting the cleaning effect of the electroplated parts.

[0035] Filter plates 9 are provided on both sides of the lower center of the cleaning chamber 1. Pretreatment devices 10 are provided on both sides of the lower center of the cleaning chamber 1. The pretreatment device 10 includes a storage chamber 1001, which is located on one side of the cleaning chamber 1. A first through groove 1002 is provided on the upper center of one inner wall of the storage chamber 1001. A guide plate 1003 is provided on the lower inner wall of the storage chamber 1001. A second through groove 1004 is provided on the lower center of one inner wall of the storage chamber 1001. The first through groove 1002 and the second through groove 1004 pass through the storage chamber 1001 and the cleaning chamber 1 respectively and lead to the inner wall of the cleaning chamber 1. A slot 1005 is provided on the center of one side of the storage chamber 1001. The slot 1005 passes through one side wall of the storage chamber 1001 and leads to the inner wall of the storage chamber 1001. A sliding frame 1006 is slidably connected inside the slot 1005. The sliding frame 1006 and the slot 1005 are connected by magnetic attraction. A second filter screen 1007 is provided at the lower center of the sliding frame 1006. The filter plate 9 is used to perform preliminary filtration of the cleaning solution after cleaning. Then, foreign objects and particles are passed through the filter plate 9 from the first channel 1002 into the storage box 1001. The sliding frame 1006 and the second filter screen 1007 cooperate to store foreign objects and particles. The second channel 1004 transports the excess cleaning solution into the cleaning box 1. The cleaning solution is discharged through the drain port 6 for further processing and filtration for reuse. The sliding frame 1006 and the slot 1005 are slidably connected and magnetically connected, which allows for quick installation and removal of the sliding frame 1006 and the slot 1005. This facilitates quick cleaning and replacement by the staff, thereby improving convenience.

[0036] The storage basket 4 is made of aluminum alloy, and the center of the inner wall is coated with a polyurethane elastic layer. The aluminum alloy material of the storage basket 4 gives it thermal conductivity, which allows it to conduct heat during the drying process, enabling rapid and uniform heating and drying of the electroplated parts, thereby improving heating efficiency. The polyurethane elastic layer gives it good elasticity, wear resistance and chemical corrosion resistance, which can effectively buffer the impact and vibration of the electroplated parts during the cleaning process, prevent the electroplated parts from colliding and rubbing inside the storage basket 4, and protect the surface of the electroplated parts from damage. The protective sleeve 808 provides thermal insulation protection for the connecting pipe 7, preventing high heat from damaging the connecting pipe 7 and affecting the temperature of the outside cold air of the connecting pipe (7).

[0037] like Figure 3 , 4As shown, the cleaning structure 7 includes a cleaning component and a moving component. The cleaning component is located on the upper surface of the cleaning chamber 1, and the moving component is located at the upper center of the cleaning chamber 1. The cleaning component includes a water inlet 701, which is located on the upper surface of the cleaning chamber 1 and extends through the upper surface of the cleaning chamber 1 to the upper inner wall of the cleaning chamber 1. A spring tube 702 is provided at the output end of the water inlet 701, and a frame tube 703 is provided on the outer side of the storage basket 4. The spring tube 702 and the frame tube 703 are connected. Multiple nozzles 704 are provided on the inner side wall of the frame tube 703. Driven by the rotary motor 3, the storage basket 4 rotates the electroplated parts, and the cleaning liquid is then transported to the spring tube 702 through the water inlet 701, and then transported to the inside of the frame tube 703 through the spring tube 702. The cleaning liquid is then sprayed through the nozzles 704, so that it forms a multi-angle and multi-directional cleaning effect on the electroplated parts inside the storage basket 4.

[0038] A reciprocating lead screw 705 is located at the upper center of the cleaning chamber 1. Both ends of the reciprocating lead screw 705 are rotatably connected to the two inner sidewalls of the cleaning chamber 1 via bearings. A guide post 706 is located at the center of the cleaning chamber 1. Sleeves 707 are fitted at the outer center of both the reciprocating lead screw 705 and the guide post 706. The upper sleeve 707 is threadedly connected to the reciprocating lead screw 705 and slidably connected to the guide post 706. The two sleeves 707 are fixedly connected to the frame tube 703. A first transmission wheel 708 is located at one end of the outer center of the upper reciprocating lead screw 705. A second transmission wheel 709 is fitted at one side of the outer center of the output end of the rotary motor 3. A transmission belt 710 is fitted on the outer sides of the first transmission wheel 708 and the second transmission wheel 709. The rotary motor 3 rotates, driving the second transmission wheel 709. The second transmission wheel 709 then drives the first transmission wheel 708 to rotate via the transmission belt 710. The first transmission wheel 708 then drives the reciprocating screw 705 to rotate. The sleeve 707 is threadedly connected to the reciprocating screw 705, allowing the frame tube 703 to reciprocate. The lower sleeve 707 is slidably connected to the guide post 706, allowing the frame tube 703 to move smoothly. This ensures that the cleaning fluid sprayed by the nozzle 704 can more evenly cover the surface of the electroplated parts, avoiding cleaning dead corners and improving cleaning uniformity, thereby improving the cleaning efficiency of the electroplated parts. The spring tube 702 can effectively deliver the cleaning fluid while moving within the frame tube 703.

[0039] Working Principle: In the electroplating cleaning device, driven by the rotary motor 3, the storage basket 4 rotates the electroplated parts. The cleaning solution is then delivered through the inlet 701 to the spring tube 702, and then through the spring tube 702 to the inside of the frame tube 703. The cleaning solution is then sprayed through the nozzle 704, creating a multi-angle, multi-directional cleaning effect on the electroplated parts inside the storage basket 4. The rotary motor 3 drives the storage basket 4 to rotate the electroplated parts, and the cleaning solution is then delivered through the inlet 701... The cleaning fluid is delivered to the spring tube 702, and then through the spring tube 702 to the inside of the frame tube 703. The cleaning fluid is then sprayed through the nozzle 704, which creates a multi-angle and multi-directional cleaning effect on the electroplated parts inside the storage basket 4. The reciprocating screw 705 is rotated to enable the frame tube 703 to reciprocate, so that the cleaning fluid sprayed by the nozzle 704 can more evenly cover the surface of the electroplated parts, avoiding cleaning dead corners, improving cleaning uniformity, and thus improving the cleaning efficiency of the electroplated parts.

[0040] The hot air is delivered into the cleaning chamber 1 by another first fan 804, ensuring that the hot air is directed onto the surface of the electroplated parts. The storage basket 4 is made of aluminum alloy, which has thermal conductivity, allowing it to conduct heat during the drying process. This achieves heating and drying of the electroplated parts, accelerates moisture evaporation, avoids uneven drying, and improves the drying effect. After drying, the hot air inside the cleaning chamber 1 is delivered to the outside by a second fan 809 on one side, and then cold air from the environment is delivered into the cleaning chamber 1 by another second fan 809. This allows for the exchange of hot air inside the cleaning chamber 1 with cold air from the outside, which can cool the electroplated parts to a certain extent and improve processing efficiency.

[0041] The filter plate 9 allows for the initial filtration of the cleaning solution after cleaning. Foreign objects and particles then pass through the first channel 1002 into the storage tank 1001. The sliding frame 1006 and the second filter screen 1007 work together to store these foreign objects and particles. Excess cleaning solution is then transported to the cleaning tank 1 through the second channel 1004. Finally, the cleaning solution is discharged through the drain port 6 for further processing and filtration. The sliding frame 1006 and slot 1005 allow for quick assembly and disassembly, facilitating rapid cleaning and replacement by staff and improving convenience.

[0042] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A cleaning device for electroplated parts, comprising a cleaning chamber (1), a trapezoidal groove (11), and a sealing door (2), wherein the trapezoidal groove (11) is located at the center of the front end face of the cleaning chamber (1), and the sealing door (2) is located at the front center of the trapezoidal groove (11) and is rotatably connected to the cleaning chamber (1) by a hinge, characterized in that: A rotary motor (3) is provided at the upper center of one side of the cleaning box (1). The output end of the rotary motor (3) passes through one side wall of the cleaning box (1) and extends into the interior of the cleaning box (1). A storage basket (4) is provided at the output end of the rotary motor (3). A connecting rod (5) is provided at the center of one side of the storage basket (4). The connecting rod (5) is rotatably connected to one inner side wall of the cleaning box (1) through a bearing. A drain outlet (6) is provided at the lower center of one side of the cleaning box (1). A cleaning structure (7) is provided at the rear center of the upper surface of the cleaning box (1). The cleaning structure (7) includes a cleaning component and a moving component. The cleaning component is located on the upper end face of the cleaning chamber (1), and the moving component is located at the upper center of the cleaning chamber (1). The cleaning assembly includes a water inlet (701) located on the upper surface of the cleaning chamber (1). The water inlet (701) extends through the upper surface of the cleaning chamber (1) to the inner wall of the cleaning chamber (1). A spring tube (702) is provided at the output end of the water inlet (701). A frame tube (703) is provided on the outer side of the storage basket (4). The spring tube (702) and the frame tube (703) are connected in a continuous manner. Multiple nozzles (704) are provided on the inner wall of the frame tube (703).

2. The electroplating cleaning device for electroplated parts according to claim 1, characterized in that: A reciprocating lead screw (705) is provided at the upper center of the cleaning chamber (1). The two ends of the reciprocating lead screw (705) are rotatably connected to the two inner side walls of the cleaning chamber (1) via bearings. A guide post (706) is provided at the center of the cleaning chamber (1). A sleeve block (707) is fitted at the center of the outer side of both the reciprocating lead screw (705) and the guide post (706). A threaded sleeve is formed between the upper sleeve block (707) and the reciprocating lead screw (705). The two sleeves (707) are fixedly connected to the frame tube (703) respectively. A first transmission wheel (708) is provided at one end of the outer center of the reciprocating screw (705) near the top. A second transmission wheel (709) is sleeved at one side of the outer center of the output end of the rotary motor (3). A transmission belt (710) is sleeved on the outer side of the first transmission wheel (708) and the second transmission wheel (709).

3. The electroplating cleaning device for electroplated parts according to claim 1, characterized in that: A drying device (8) is provided at the center of the upper end face of the cleaning box (1). The drying device (8) includes a drying box (801). The drying box (801) is located at the upper end face of the cleaning box (1). Multiple heating rods (802) are arranged in a rectangular pattern at the center of the interior of the drying box (801). Conveying grooves (803) are provided on both sides of the center of the lower inner wall of the drying box (801). The two conveying grooves (803) pass through the drying box (801) and the cleaning box (1) respectively and lead to the upper inner wall of the cleaning box (1). A first fan (804) is provided at the center of the interior of each of them. The output end of the first fan (804) on one side faces downward and the output end of the first fan (804) on the other side faces upward.

4. The electroplating cleaning device for electroplated parts according to claim 3, characterized in that: Solenoid valves (805) are provided on both sides of the center of the upper end face of the drying chamber (801) at the rear. A first filter screen (806) is provided at the upper end of each of the two solenoid valves (805), and the lower ends of the two solenoid valves (805) pass through the upper end face of the drying chamber (801) to the upper inner wall of the drying chamber (801). A connecting pipe (807) is provided at the lower end of each of the two solenoid valves (805). The two connecting pipes (807) pass through the drying chamber (801) and the cleaning chamber (1) respectively to the upper inner wall of the cleaning chamber (1), and a protective sleeve (808) is provided at the center of the outer side of each of the two connecting pipes (807). A second fan (809) is provided at the lower end of the center of the two connecting pipes (807). The output end of the second fan (809) on one side faces downward, and the output end of the second fan (809) on the other side faces upward.

5. The electroplating cleaning device for electroplated parts according to claim 1, characterized in that: The cleaning chamber (1) has filter plates (9) located on both sides of its interior center near the bottom. Pretreatment devices (10) are located on both sides of the cleaning chamber (1) near the bottom center. Each pretreatment device (10) includes a storage chamber (1001) located on one side of the cleaning chamber (1). A first through groove (1002) is located on the upper part of the center of one inner wall of the storage chamber (1001). A guide plate (1003) is located on the center of the lower inner wall of the storage chamber (1001). A second through groove (1004) is located on the lower part of the center of one inner wall of the storage chamber (1001). The through groove (1002) and the second through groove (1004) pass through the storage box (1001) and the cleaning box (1) respectively and lead to an inner side wall of the cleaning box (1). A slot (1005) is provided at the center of one side of the storage box (1001). The slot (1005) passes through one side wall of the storage box (1001) and leads to an inner side wall of the storage box (1001). A sliding frame (1006) is slidably connected inside the slot (1005). The sliding frame (1006) and the slot (1005) are magnetically connected. A second filter screen (1007) is provided at the lower end of the center of the sliding frame (1006).

6. The electroplating cleaning device for electroplated parts according to claim 1, characterized in that: The storage basket (4) is made of aluminum alloy and has a polyurethane elastic layer coated at the center of its inner wall.