Part cleaning device for faucet machining
By using a servo motor-driven multi-angle brushing and spraying system, combined with an automatic cleaning solution addition and drying system, the problem of incomplete cleaning of faucet parts is solved, achieving efficient and automated cleaning and drying results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional faucet parts cleaning equipment struggles to achieve comprehensive cleaning from multiple angles, especially failing to thoroughly clean the bottom, back, and concave structural areas of the parts, thus affecting product quality.
A cleaning device for faucet processing parts was designed. It uses a servo motor to drive the connecting shaft and the placement plate to rotate. With the help of the brush on the inner wall of the cleaning tank, the parts are brushed from multiple angles. At the same time, clean water is sprayed by the ring spray pipe. Combined with the automatic cleaning solution addition system and the drying system, it can achieve comprehensive cleaning and efficient drying.
It enables comprehensive cleaning of parts from multiple angles, improves cleaning efficiency and automation, reduces water waste, prevents parts from rusting due to moisture, and ensures product quality.
Smart Images

Figure CN224072830U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of parts cleaning technology, and in particular to a parts cleaning device for faucet processing. Background Technology
[0002] In the faucet manufacturing industry, the cleaning quality of parts directly determines the quality and performance of the product. As consumers' demands for the appearance and functionality of faucet products continue to rise, more stringent challenges are being placed on the precision and comprehensiveness of faucet parts cleaning. Currently, traditional faucet parts cleaning equipment struggles to achieve comprehensive multi-angle cleaning of parts during the cleaning process, primarily due to significant deficiencies in the brush layout and the movement patterns of the parts.
[0003] Many existing cleaning devices often only place brushes in a single location. When parts are placed in a fixed position for cleaning, the bottom, back, and some concave structural parts of the parts cannot fully contact the brushes due to the parts themselves and the limitations of the brush placement. This results in incomplete cleaning of these areas, leaving serious residue of dirt and impurities. For example, the main body of a faucet, with its complex internal cavity structure and the back with mounting holes, is difficult to reach with a brush in only one location, significantly affecting product quality. Utility Model Content
[0004] In order to overcome the shortcomings mentioned in the background art, this utility model provides a cleaning device for faucet processing parts.
[0005] The technical solution is as follows: A cleaning device for faucet parts includes a support, a cleaning tank, a drain valve, a partition plate, a lid, a placement plate, a servo motor, a connecting shaft, brushes, and a spray assembly. The support is stably supported at the bottom of the cleaning tank, which serves as the main space for cleaning parts. A drain valve is installed on the lower front side of the cleaning tank. The lid is rotatably connected to the top of the cleaning tank via a hinge. A partition plate is connected to the lower part of the cleaning tank. A servo motor is installed in the middle of the bottom of the cleaning tank. A connecting shaft is connected to the output shaft of the servo motor and passes through the partition plate. A placement plate is rotatably connected to the middle of the cleaning tank and is connected to the connecting shaft. Multiple drainage holes are evenly opened on the placement plate. Multiple brushes are evenly spaced along the circumferential direction on the outer side of the upper end of the connecting shaft. At the same time, multiple brushes are also spacedly connected to the area of the inner wall of the cleaning tank above the placement plate. A spray assembly is provided on the cleaning tank.
[0006] Furthermore, the spray assembly includes a water pipe, a water pump, and an annular spray pipe. A water pipe is connected to the right side of the cleaning tank, with its lower end connected to the lower part of the cleaning tank and its upper end penetrating the top of the cleaning tank. An annular spray pipe is connected to the top of the cleaning tank, with its upper end connected to and communicating with the annular spray pipe. A water pump is installed on the water pipe.
[0007] Furthermore, it also includes a collection filter frame and a handle. The collection filter frame is slidably connected to the lower front side of the cleaning tub. The collection filter frame is located above the lower end of the water pipe and in front of the dividing inclined plate. A handle is connected to the front side of the collection filter frame.
[0008] Furthermore, it also includes a storage box, an injection port, a connecting pipe, a mixing chamber, and a sponge ball. The top right side of the cleaning tank is connected to a storage box for storing cleaning fluid. The top of the storage box is provided with an injection port. The front side of the storage box is connected to and communicates with a connecting pipe. The front end of the connecting pipe is connected to a mixing chamber. The mixing chamber runs through a water pipe and separates the two ends of the water pipe. A sponge ball is movably connected to the connecting pipe at a position communicating with the mixing chamber. The sponge ball is located in the separation area at both ends of the water pipe.
[0009] Furthermore, it also includes a first transparent plate and a second transparent plate. The second transparent plate is connected to the right side of the storage box, and the first transparent plate is connected to both the left and right sides of the front side of the collection filter frame.
[0010] Furthermore, it also includes a heating fan and an annular conical ventilation duct. The heating fan is installed on the front side of the top of the cleaning tank, and the annular conical ventilation duct is connected to the top of the inside of the cleaning tank. It is located outside the annular spray pipe, and the air outlet pipe of the heating fan is connected to and interconnected with the annular conical ventilation duct.
[0011] The beneficial effects are as follows: 1. The device drives the connecting shaft and the placement plate to rotate through the servo motor. In conjunction with the brushes distributed on the inner wall of the cleaning tank, the parts are brushed from multiple angles, effectively reaching all parts of the parts. At the same time, the annular spray pipe continuously sprays clean water, realizing the coordinated operation of brushing and spraying, which can efficiently remove dirt and impurities from the surface of the parts and ensure deep cleaning.
[0012] 2. The automatic cleaning fluid addition system, consisting of a storage box, connecting pipe, mixing chamber, and sponge ball, automatically mixes the cleaning fluid with water and sprays it onto the parts when the water pump is running, utilizing the contact between the water flow and the sponge ball. The surfactant in the cleaning fluid reduces the surface tension of the water, enhancing the cleaning effect, and eliminates the need for manual addition of cleaning fluid, thus improving the automation of the cleaning process.
[0013] 3. The collection filter frame filters the clean water in the cleaning tank. Only the filtered clean water can flow through the water pipe for recycling, which reduces water waste and prevents impurities from entering the circulation system and affecting the cleaning effect, thus achieving efficient use of water resources.
[0014] 4. The heating fan and the annular conical ventilation duct form a drying system, which can dry the parts after cleaning. During drying, the placement plate is driven to rotate by a servo motor, so that the surfaces of the parts are heated evenly, improving drying efficiency and avoiding problems such as rust caused by moisture. This meets the diverse processing needs after cleaning the parts. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0016] Figure 2 This is a partial sectional view of the first part of this utility model.
[0017] Figure 3 This is a plan view of a partial sectional view of the first part of this utility model.
[0018] Figure 4 This is a three-dimensional structural diagram of the placement plate, servo motor, connecting shaft, and brush of this utility model.
[0019] Figure 5 This is a three-dimensional structural diagram of the collection filter frame, handle, and first transparent plate of this utility model.
[0020] Figure 6 This is a partial sectional view of the second part of this utility model.
[0021] Figure 7 This is a three-dimensional structural diagram of the components of this utility model, including water pipes, water pumps, and annular spray pipes.
[0022] Figure 8 This is a three-dimensional structural diagram of the heating fan and the annular conical ventilation duct of this utility model.
[0023] Component names and numbers in the diagram: 1_Bracket, 2_Cleaning tub, 201_Drain valve, 202_Divider plate, 3_Bag lid, 4_Water pipe, 5_Water pump, 6_Annular spray pipe, 7_Placement plate, 8_Servo motor, 9_Connecting shaft, 10_Brush, 11_Collection filter frame, 111_Handle, 112_First transparent plate, 12_Storage box, 121_Injection port, 122_Second transparent plate, 123_Connecting pipe, 124_Mixing chamber, 125_Sponge ball, 13_Heating fan, 14_Annular conical ventilation duct. Detailed Implementation
[0024] Example: A cleaning device for faucet parts processing, such as... Figures 1-4 and Figure 7As shown, the device includes a support frame 1, a cleaning tank 2, a drain valve 201, a partition ramp 202, a lid 3, a placement plate 7, a servo motor 8, a connecting shaft 9, a brush 10, and a spray assembly. The support frame 1 is stably supported at the bottom of the cleaning tank 2, providing the basic load-bearing structure for the entire device. The cleaning tank 2 serves as the main space for cleaning parts. A drain valve 201 is installed on the lower front side of the tank to facilitate the discharge of wastewater after cleaning. The lid 3 is connected to the top of the cleaning tank 2 via a hinge, facilitating the insertion and removal of parts. The partition ramp 202 is connected to the lower part of the cleaning tank 2. The servo motor 8 is bolted to the middle of the bottom of the cleaning tank 2. The output shaft of the servo motor 8... A connecting shaft 9 is connected, which passes through a partition inclined plate 202. The partition inclined plate 202 protects the servo motor 8, ensuring that the space where the servo motor 8 is located is isolated from the cleaning area, and preventing the liquid during the cleaning process from damaging the servo motor 8. A placement plate 7 is rotatably connected to the middle of the cleaning tank 2, which is connected to the connecting shaft 9. Multiple drainage holes are evenly opened on the placement plate 7 to allow the sprayed water to flow smoothly down during the cleaning process. Multiple brushes 10 are evenly spaced along the circumference on the outer side of the upper end of the connecting shaft 9. At the same time, multiple brushes 10 are also spacedly connected to the area on the inner wall of the cleaning tank 2 above the placement plate 7. A spray assembly is provided on the cleaning tank 2.
[0025] like Figures 1-3 and Figure 7 As shown, the spray assembly includes a water pipe 4, a water pump 5, and an annular spray pipe 6. The water pipe 4 is connected to the right side of the cleaning tank 2, and the lower end of the water pipe 4 is connected to the lower part of the cleaning tank 2 to draw clean water from the cleaning tank 2. The upper end of the water pipe 4 passes through the top of the cleaning tank 2. The annular spray pipe 6 is connected to the top of the cleaning tank 2. The upper end of the water pipe 4 is connected to and communicates with the annular spray pipe 6. The water pump 5 is installed on the water pipe 4 by bolts. By operating the water pump 5, the clean water in the cleaning tank 2 is pumped to the annular spray pipe 6 to achieve spray cleaning of the parts on the placement plate 7.
[0026] When cleaning faucet parts, first open the bucket lid 3 by rotating it, and place the parts to be cleaned on the placement plate 7 inside the cleaning bucket 2. Then, pour clean water into the cleaning bucket 2, ensuring the water level is strictly controlled below the height of the placement plate 7 to ensure the parts are fully exposed within the spray range and to prevent water overflow. After pouring, close the bucket lid 3 and start the water pump 5. When the water pump 5 is working, the clean water in the lower part of the cleaning bucket 2 is pumped through the water pipe 4 to the annular spray pipe 6. The clean water is then sprayed evenly downwards from the annular spray pipe 6 onto the surface of the parts on the placement plate 7, providing a preliminary rinse. Excess water after spraying flows downwards through the drain holes on the placement plate 7 and returns to the bottom of the cleaning tank 2. During this process, it is pumped back by the water pump 5, realizing the circulation of clean water inside the cleaning device and continuously providing a water source for the spraying operation. At the same time as starting the water pump 5, the servo motor 8 is started. The output shaft of the servo motor 8 rotates, driving the connected shaft 9 to rotate synchronously. The brushes 10 on the connected shaft 9 also rotate. Since the placement plate 7 is connected to the connected shaft 9, the rotation of the connected shaft 9 will drive the placement plate 7 and the parts on it to rotate together, so that the surface of the parts can fully contact the brushes 10. The brushes 10, which are densely distributed on the inner wall of the cleaning tank 2 and the upper end of the connected shaft 9, effectively brush the parts from different angles during the rotation of the parts, thoroughly cleaning the dirt and impurities attached to the surface of the parts, achieving deep cleaning. After the parts are cleaned, the water pump 5 and the servo motor 8 are turned off first to stop the cleaning operation, and then the drain valve 201 is opened to drain the wastewater in the cleaning tank 2. To further improve the cleaning effect, clean water can be added a second time, and water pump 5 can be restarted to rinse the parts a second time using the ring spray pipe 6, ensuring that there is no residual dirt on the surface of the parts. After rinsing, open the bucket lid 3, remove the cleaned parts, and the entire cleaning process is complete.
[0027] like Figures 1-2 and Figure 5 As shown, it also includes a collection filter frame 11 and a handle 111. The collection filter frame 11 is slidably connected to the lower front side of the cleaning tank 2. The collection filter frame 11 is located above the lower end of the water pipe 4 and in front of the partition inclined plate 202. During the flow of the clean water in the cleaning tank 2, it will eventually be filtered through the collection filter frame 11. The dirt and impurities in the water are collected in the collection filter frame 11, ensuring that only the filtered clean water can flow through the water pipe 4 for recycling. The collection filter frame 11 is welded to the front side of the handle 111, which makes it easy to manually pull out the collection filter frame 11 for cleaning after the parts are cleaned.
[0028] like Figures 1-3 and Figure 6As shown, it also includes a storage box 12, an injection port 121, a connecting pipe 123, a mixing chamber 124, and a sponge ball 125. The top right side of the cleaning tank 2 is connected to the storage box 12 for storing cleaning fluid. The top of the storage box 12 is provided with an injection port 121 for easy addition of cleaning fluid. The front side of the storage box 12 is connected to and communicates with the connecting pipe 123. The front end of the connecting pipe 123 is connected to the mixing chamber 124. The mixing chamber 124 passes through the water pipe 4 and separates the two ends of the water pipe 4. The sponge ball 125 is movably connected to the position on the connecting pipe 123 that communicates with the mixing chamber 124. The sponge ball 125 is located in the separation area at both ends of the water pipe 4.
[0029] When the parts cleaning process is started, water pump 5 begins to operate, causing the water in cleaning tank 2 to form a stable circulation flow in water pipe 4. During this process, the flowing water comes into contact with sponge balls 125 located in specific positions. Since the cleaning solution in storage box 12 is connected to sponge balls 125 through connecting pipe 123, under the combined action of siphon principle and water pressure difference, the cleaning solution in storage box 12 will slowly and continuously flow towards sponge balls 125. At this time, the water flow and the cleaning solution adsorbed on the surface of sponge balls 125 meet and mix thoroughly in mixing chamber 124. The mixed liquid is then evenly sprayed onto the surface of the parts through annular spray pipe 6. The surfactant component contained in the cleaning solution can significantly reduce the surface tension of water, making it easier for water to penetrate into the interior of contaminants such as oil stains. Through emulsification or dissolution, the contaminants are thoroughly removed from the surface of the parts. The entire working process realizes automatic addition of cleaning solution, greatly improving cleaning efficiency and cleaning effect.
[0030] like Figure 2 , Figure 5 and Figure 6 As shown, it also includes a first transparent plate 112 and a second transparent plate 122. The second transparent plate 122 is welded to the right side of the storage box 12 to facilitate viewing the amount of cleaning fluid used in the storage box 12 and to facilitate timely replenishment. The first transparent plate 112 is welded to both the left and right sides of the front side of the collection filter frame 11 to facilitate viewing the collection of impurities inside the collection filter frame 11 and to facilitate timely removal and cleaning.
[0031] like Figures 1-3 and Figure 8As shown, it also includes a heating fan 13 and an annular conical ventilation duct 14. The heating fan 13 is bolted to the front top of the cleaning tank 2. The annular conical ventilation duct 14 is connected to the top of the cleaning tank 2 and is located outside the annular spray pipe 6. The air outlet pipe of the heating fan 13 and the annular conical ventilation duct 14 are assembled in a seamless and interconnected manner to ensure that hot air can be efficiently and smoothly delivered into the cleaning tank 2. After the parts cleaning process is completed and the sewage in the cleaning tank 2 is completely drained, the heating fan 13 can be started. When the heating fan 13 starts working, it draws air from the external environment and heats the air quickly and efficiently through the internal heating element. The heated air, under the strong air pressure of the fan, is evenly discharged into the cleaning tank 2 in a fan shape through the annular conical ventilation channel 14 to dry the parts on the placement plate 7. During the drying process, the servo motor 8 can be started simultaneously. The servo motor 8 drives the connecting shaft 9 to rotate, thereby causing the placement plate 7 and the parts on it to rotate slowly and stably. In this way, each surface of the parts can be fully exposed to hot air in sequence, effectively avoiding the problem of uneven drying in certain areas and significantly improving the drying efficiency of the parts. When the parts reach the ideal drying state, the heating fan 13 and the servo motor 8 are turned off in time to stop the drying operation.
Claims
1. A cleaning device for faucet parts processing, characterized in that, The system includes a bracket (1), a cleaning tub (2), a drain valve (201), a partition ramp (202), a tub lid (3), a placement plate (7), a servo motor (8), a connecting shaft (9), a brush (10), and a spray assembly. The bracket (1) is stably supported at the bottom of the cleaning tub (2). The cleaning tub (2) serves as the main space for cleaning parts. A drain valve (201) is installed on the lower front side of the tub. The top of the cleaning tub (2) is connected to the tub lid (3) via a hinge. A partition ramp (202) is connected to the lower part of the cleaning tub (2). The bottom of the cleaning tub (2) is... A servo motor (8) is installed in the middle of the part. A connecting shaft (9) is connected to the output shaft of the servo motor (8). The connecting shaft (9) passes through the partition inclined plate (202). A placement plate (7) is rotatably connected to the middle of the cleaning tank (2). It is connected to the connecting shaft (9). Multiple drainage holes are evenly opened on the placement plate (7). Multiple brushes (10) are evenly spaced along the circumferential direction on the outer side of the upper end of the connecting shaft (9). At the same time, multiple brushes (10) are also spacedly connected to the area of the inner wall of the cleaning tank (2) above the placement plate (7). A spray assembly is provided on the cleaning tank (2).
2. The faucet parts cleaning device according to claim 1, characterized in that, The spray assembly includes a water pipe (4), a water pump (5), and an annular spray pipe (6). The water pipe (4) is connected to the right side of the cleaning tank (2). The lower end of the water pipe (4) is connected to the lower part of the cleaning tank (2), and the upper end of the water pipe (4) passes through the top of the cleaning tank (2). An annular spray pipe (6) is connected to the top of the cleaning tank (2). The upper end of the water pipe (4) is connected to and communicates with the annular spray pipe (6). A water pump (5) is installed on the water pipe (4).
3. The faucet parts cleaning device according to claim 2, characterized in that, It also includes a collection filter frame (11) and a handle (111). The collection filter frame (11) is slidably connected to the lower front side of the washing tub (2). The collection filter frame (11) is located above the lower end of the water pipe (4) and in front of the partition slope (202). The handle (111) is connected to the front side of the collection filter frame (11).
4. The faucet parts cleaning device according to claim 3, characterized in that, It also includes a storage box (12), an injection port (121), a connecting pipe (123), a mixing chamber (124), and a sponge ball (125). The top right side of the cleaning tank (2) is connected to a storage box (12) for storing cleaning fluid. The top of the storage box (12) is provided with an injection port (121). The front side of the storage box (12) is connected to and communicates with a connecting pipe (123). The front end of the connecting pipe (123) is connected to a mixing chamber (124). The mixing chamber (124) passes through the water pipe (4) and separates the two ends of the water pipe (4). A sponge ball (125) is movably connected to the position on the connecting pipe (123) that communicates with the mixing chamber (124). The sponge ball (125) is located in the separation area at both ends of the water pipe (4).
5. A cleaning device for faucet parts processing according to claim 4, characterized in that, It also includes a first transparent plate (112) and a second transparent plate (122). The storage box (12) is connected to the right side of the second transparent plate (122), and the first transparent plate (112) is connected to both the left and right sides of the front side of the collection filter frame (11).
6. A parts cleaning device for faucet processing according to claim 5, characterized in that, It also includes a heating fan (13) and an annular cone ventilation duct (14). The heating fan (13) is installed on the front side of the top of the cleaning tank (2). The annular cone ventilation duct (14) is connected to the top of the cleaning tank (2) and is located outside the annular spray pipe (6). The air outlet pipe of the heating fan (13) is connected to the annular cone ventilation duct (14) and they are interconnected.