Part cleaning equipment
By introducing ultrasonic generator and spray gun in the cleaning equipment and combining the design of moving parts, multiple flushing of parts is achieved, solving the problem of oil and stain adhesion after cleaning the parts and improving the cleaning quality.
Patent Information
- Application Number
- CN202422267620.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-14
AI Technical Summary
After the existing parts cleaning equipment is cleaned, the oil stains caused by ultrasonic vibration will float in the cleaning liquid, causing some oil stains to still adhere to the parts, affecting the cleaning quality.
A component cleaning equipment is designed. By setting up an ultrasonic generator, spray gun, liquid storage tank and moving parts in the cleaning chamber, the combination of the flushing medium and the cleaning medium can achieve multiple flushing and movement of the parts to ensure the effective removal of oil and impurities.
It improves the cleaning quality of parts, reduces the adhesion of oil and impurities, and improves the cleaning effect.
Smart Images

Figure CN223145437U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cleaning equipment, in particular to a parts cleaning equipment. Background Art
[0002] In industries such as mechanical manufacturing and automobile maintenance, parts cleaning equipment is usually used to clean parts to remove impurities such as oil stains, dust, and iron filings, so as to ensure the performance and lifespan of the parts.
[0003] In the actual working process, the parts to be cleaned are usually immersed in the cleaning medium in the cleaning equipment, and then ultrasonic cleaning is performed on the parts through an ultrasonic generating device, so that the surface impurities and oil stains of the parts can be efficiently cleaned. However, after the parts are cleaned, the oil stains shaken off by ultrasonic vibration will float in the cleaning liquid. When the parts are fished out of the cleaning liquid, some oil stains will adhere to the parts, thus affecting the cleaning quality of the parts. Therefore, this application specifically proposes a parts cleaning equipment that can reduce the adhesion of oil stains. Summary of the Utility Model
[0004] The main purpose of the utility model is to provide a parts cleaning equipment that can reduce the adhesion of oil stains.
[0005] To achieve the above purpose, the utility model provides a parts cleaning equipment, including:
[0006] A cleaning chamber, an inner cavity is provided in the cleaning chamber, a cleaning medium is stored in the inner cavity, and a first door panel is rotatably provided on one side of the cleaning chamber;
[0007] An ultrasonic generator, which is arranged at the bottom end of the inner cavity of the cleaning chamber and is immersed in the cleaning medium, and the ultrasonic generator is used to vibrate the cleaning medium;
[0008] A flushing component, including a plurality of spray guns distributed on the inner cavity, and each spray gun is arranged above the cleaning medium. A liquid storage tank is also provided on the cleaning chamber, and a flushing medium is stored in the liquid storage tank. A plurality of flow channels for transporting the flushing medium are provided in the cleaning chamber, and each flow channel corresponds to each spray gun one by one, and the corresponding spray gun is communicated with the liquid storage tank. The spray gun is used to spray the flushing medium into the cleaning chamber, and a control component is also provided in the cleaning chamber, and the control component is used to control the connection and disconnection of each flow channel;
[0009] A placing component, which is arranged in the cleaning chamber and is used to place the parts to be cleaned;
[0010] The moving part includes a lifting component arranged at the top end of the inner cavity. The lifting component is arranged above the placing part and is used to drive the placing part to move vertically back and forth in the cleaning bin. It further includes a rotating component arranged between the lifting component and the placing part, and the rotating component is used to drive the placing part to rotate.
[0011] Further, chambers are opened in the side wall of the cleaning bin corresponding to each of the flow channels;
[0012] The control component includes a rotating sleeve rotatably arranged in each chamber. One end of the rotating sleeve extends into the inner cavity, and internal threads are provided in the rotating sleeve. A threaded rod is also vertically arranged in the rotating sleeve, and the threaded rod is screwed with the internal threads of the rotating sleeve. One end of the threaded rod away from the rotating sleeve is also vertically and slidably provided with a valve plate, and one end of the valve plate extends out of the chamber and is inserted into the flow channel. The valve plate is used to conduct or cut off the flow channel. It further includes a triggering member connected to the end of the rotating sleeve extending into the inner cavity. When the placing part rises to a corresponding height with the triggering member, the rotating component drives the placing part to rotate, so that the placing part contacts the triggering member and pushes the triggering member to drive the rotating sleeve to rotate to one side.
[0013] Further, a first elastic unit is also arranged between the threaded rod and the valve plate, and the first elastic unit applies a downward pressure to the valve plate;
[0014] The triggering member includes a first swing rod arranged at the end of the corresponding rotating sleeve extending into the inner cavity. A groove is opened at the end of the first swing rod away from the rotating sleeve. A second swing rod is slidably arranged in the groove, and the positions of each second swing rod intersect with the rotation trajectory of the placing part. A second elastic unit is also arranged between the second swing rod and the groove, and the second elastic unit applies a thrust to the second swing rod in a direction away from the first swing rod.
[0015] Further, the lifting component includes a telescopic rod arranged at the top of the cleaning bin. The telescopic rod is arranged to telescopically extend vertically downward. The telescopic end of the telescopic rod is arranged above the placing part, and the telescopic rod is used to drive the placing part to move up and down reciprocally.
[0016] Further, the rotating component includes a placing table arranged at the telescopic end of the telescopic rod. The placing table is rotatably connected to the placing part. A power unit is arranged on the placing table, and the moving end of the power unit is connected to the placing part. The power unit is used to drive the placing part to rotate.
[0017] Further, the placing component includes a placing bar connected to the power unit. A plurality of placing plates are arranged vertically in the placing bar and are disposed along the length direction of the placing bar. The placing plates are used for supporting the components, and a second door panel is rotatably provided on one side of the placing bar.
[0018] Further, a contact assembly for driving the trigger member to rotate is provided below the placing component. The contact assembly includes an abutting block disposed at the bottom of the placing bar. The length and width of the abutting block are both greater than the length and width of the placing bar. When the abutting block rises to a corresponding height with respect to each second swing rod, the rotating assembly drives the abutting block to rotate. When the abutting block rotates, it contacts each second swing rod and applies a thrust in the rotation direction of the abutting block to each second swing rod. The abutting block is used to cut off the corresponding flow channel through the valve plate.
[0019] Further, a ventilation opening is formed in one side wall of the cleaning chamber, and the ventilation opening is formed above the flushing component. A blower is further provided on the side wall of the cleaning chamber, and the blower is disposed opposite to the ventilation opening. The blower is used to introduce external air flow into the cleaning chamber.
[0020] The beneficial effects of the present utility model are embodied in:
[0021] In the present utility model, through the cooperation between the flushing component and the moving component, after the components are immersed in the cleaning medium, the moving component drives the components to move to a suitable position through the placing component and flushes them through the flushing component, thereby flushing away the oil stains and impurities attached to the surface of the components and improving the cleaning quality. Description of the Drawings
[0022] Figure 1 is a perspective view of the front of the component cleaning device of the present utility model;
[0023] Figure 2 is a first cross-sectional view of the component cleaning device of the present utility model;
[0024] Figure 3 is Figure 2 an enlarged view of part A in
[0025] Figure 4 is a second cross-sectional view of the component cleaning device of the present utility model;
[0026] Figure 5 is a structural view of the trigger member;
[0027] Figure 6 is a third cross-sectional view of the component cleaning device of the present utility model;
[0028] Figure 7It is the fourth cross-sectional view of the parts cleaning equipment of the present utility model.
[0029] Explanation of reference numerals:
[0030] 1. Cleaning chamber; 11. Inner cavity; 12. First door panel; 13. Chamber; 14. Flow channel; 15. Ventilation opening; 2. Ultrasonic generator; 3. Flushing component; 31. Spray gun; 32. Liquid storage tank; 33. Control component; 331. Rotating sleeve; 332. Threaded rod; 333. Valve plate; 334. First elastic unit; 34. Trigger component; 341. First swing rod; 3411. Groove; 342. Second swing rod; 343. Second elastic unit; 4. Placing component; 41. Placing bar; 42. Placing plate; 43. Second door panel; 5. Moving component; 51. Lifting component; 511. Telescopic rod; 52. Rotating component; 521. Placing table; 522. Power unit; 6. Fan; 7. Contact component; 71. Abutting block. Specific implementation
[0031] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other.
[0032] See Figures 1-7 .
[0033] The present utility model discloses a parts cleaning equipment, including:
[0034] A cleaning chamber 1, in which an inner cavity 11 is opened, a cleaning medium is stored in the inner cavity 11, and a first door panel 12 is rotatably provided on one side of the cleaning chamber 1;
[0035] An ultrasonic generator 2, which is arranged at the bottom end of the inner cavity 11 of the cleaning chamber 1 and is immersed in the cleaning medium, and the ultrasonic generator 2 is used to vibrate the cleaning medium;
[0036] A flushing component 3, including a plurality of spray guns 31 distributed on the inner cavity 11, and each spray gun 31 is arranged above the cleaning medium. A liquid storage tank 32 is also provided on the cleaning chamber 1, and a flushing medium is stored in the liquid storage tank 32. A plurality of flow channels 14 for transporting the flushing medium are opened in the cleaning chamber 1, and each flow channel 14 corresponds to each spray gun 31 one by one, and the corresponding spray gun 31 is communicated with the liquid storage tank 32. The spray gun 31 is used to spray the flushing medium into the cleaning chamber 1. A control component 33 is also provided in the cleaning chamber 1, and the control component 33 is used to control the connection and disconnection of each flow channel 14;
[0037] The placing component 4 is arranged inside the cleaning bin 1 and is used for placing the parts to be cleaned.
[0038] The moving component 5 includes a lifting assembly 51 arranged at the top of the inner cavity 11. The lifting assembly 51 is arranged above the placing component 4 and is used for driving the placing component 4 to move vertically back and forth inside the cleaning bin 1. It also includes a rotating assembly 52 arranged between the lifting assembly 51 and the placing component 4, and the rotating assembly 52 is used for driving the placing component 4 to rotate.
[0039] In a specific implementation, when cleaning the parts, first open the first door panel 12, and place the parts to be cleaned into the placing component 4. After placing, close the first door panel 12 and drive the placing component 4 to move downward through the lifting assembly 51 until the placing component 4 is immersed in the cleaning medium. At this time, the ultrasonic generator 2 cleans the parts through the cleaning medium. When the parts are cleaned, the lifting assembly 51 drives the placing component 4 to rise to the corresponding position of the control component 33, and then drives the placing component 4 to rotate through the rotating assembly 52. At this time, the control component 33 controls each spray gun 31 to communicate with the liquid storage tank 32, and the flushing medium flushes the parts in the placing component 4 through each spray gun 31, so as to wash away the oil stains and impurities attached to the parts. During the flushing process, since the rotating assembly 52 drives the placing component 4 to rotate, the placing component 4 can be flushed more evenly. When each spray gun 31 finishes flushing, then drive the placing component 4 to reverse and rise through the moving component 5, and each spray gun 31 stops flushing.
[0040] In the present utility model, through the cooperation between the flushing component 3 and the moving component 5, after the parts are immersed and washed by the cleaning medium, the moving component 5 drives the parts to move to a suitable position through the placing component 4 and is flushed by the flushing component 3, so as to wash away the oil stains and impurities attached to the surface of the parts and improve the cleaning quality.
[0041] Preferably, the cleaning medium can be a cleaning liquid, water, etc.
[0042] Preferably, the flushing medium can be water.
[0043] It should be noted that the ultrasonic generator 2 is common knowledge for those skilled in the art, so its structure will not be described in detail here.
[0044] In an embodiment, chambers 13 are provided in the side wall of the cleaning bin 1 corresponding to the respective flow channels 14.
[0045] The control component 33 includes a rotating sleeve 331 rotatably arranged in each chamber 13. One end of the rotating sleeve 331 extends into the inner cavity 11, and an internal thread is provided in the rotating sleeve 331. A threaded rod 332 is vertically arranged in the rotating sleeve 331. The threaded rod 332 is screwed with the internal thread of the rotating sleeve 331. A valve plate 333 is vertically slidably arranged at the end of the threaded rod 332 away from the rotating sleeve 331. One end of the valve plate 333 extends out of the chamber 13 and is inserted into the flow channel 14. The valve plate 333 is used to conduct or cut off the flow channel 14. It further includes a trigger member 34 connected to the end of the rotating sleeve 331 extending into the inner cavity 11. When the placement member 4 rises to a corresponding height with the trigger member 34, the rotating assembly 52 drives the placement member 4 to rotate, so that the placement member 4 contacts the trigger member 34 and pushes the trigger member 34 to drive the rotating sleeve 331 to rotate to one side.
[0046] With such a design, after the components are immersed in the cleaning medium, the rotating assembly 52 drives the placement member 4 to rotate. During the rotation of the placement member 4, it contacts each trigger member 34. As the placement member 4 continues to rotate, each trigger member 34 drives the corresponding rotating sleeve 331 to rotate, so that the rotating sleeve 331 is screwed with the threaded rod 332 and drives the threaded rod 332 to rise vertically. Since the valve plate 333 is vertically inserted into the chamber 13, the valve plate 333 prevents the threaded rod 332 from rotating with the rotating sleeve 331. The threaded rod 332 drives the valve plate 333 to rise together, so that the valve plate 333 leaves the flow channel 14. At this time, the flow channel 14 is unblocked, and the flushing medium flows into the spray gun 31 through the flow channel 14 for the flushing process. After the components are flushed, the threaded rod 332 drives the valve plate 333 to descend together, so that the valve plate 333 is inserted into the flow channel 14. At this time, the valve plate 333 closes the flow channel 14, and the flow channel 14 of the flushing medium is blocked.
[0047] In one embodiment, a first elastic unit 334 is further provided between the threaded rod 332 and the valve plate 333. The first elastic unit 334 applies a downward pressure to the valve plate 333;
[0048] The trigger member 34 includes a first swing rod 341 arranged at one end of the corresponding rotating sleeve 331 extending into the inner cavity 11. A groove 3411 is provided at the end of the first swing rod 341 away from the rotating sleeve 331. A second swing rod 342 is slidably arranged in the groove 3411, and the positions of the second swing rods 342 intersect with the rotation trajectory of the placement member 4. A second elastic unit 343 is further provided between the second swing rod 342 and the groove 3411. The second elastic unit 343 applies a thrust to the second swing rod 342 in a direction away from the first swing rod 341.
[0049] With such a design, when it is necessary to rinse the components with each spray gun 31, first, the lifting assembly 51 drives the placement component 4 to rise to the position corresponding to each second swing rod 342, and then the rotation assembly 52 drives the placement component 4 to rotate. When the placement component 4 rotates, it contacts each second swing rod 342 and drives the corresponding first swing rod 341 to swing through each second swing rod 342, thereby driving each rotating sleeve 331 to rotate, and further driving each valve plate 333 to rise and making each flow channel unblocked. Since after the placement component 4 drives each second swing rod 342 to swing, the position of each second swing rod 342 is outside the rotation trajectory of the placement component 4, the placement component 4 no longer interferes with the movement of each second swing rod 342.
[0050] It should be noted that a chamfer feature can be provided on the bottom surface of each second swing rod 342. When the placement component 4 rises and contacts the second swing rod 342, the placement component 4 presses the chamfer on the corresponding second swing rod 342, causing the second swing rod 342 to swing, thereby preventing the second swing rod 342 from interfering with the rising of the placement component 4. When the second swing rod 342 swings under the extrusion of the placement component 4, the second swing rod 342 drives the corresponding rotating sleeve 331 to rotate through the first swing rod 341. At this time, the threaded rod 332 moves downward, and the first elastic unit 334 is compressed, so as not to affect the valve plate 333 from closing the flow channel 14.
[0051] In addition, since the position of the triggering member 34 in the cleaning chamber 1 is clearly known, before the placement component 4 rises, the placement component 4 can be adjusted to an angle that does not interfere with the triggering member 34 first, and then the placement component 4 is lifted.
[0052] Preferably, both the first elastic unit 334 and the second elastic unit 343 adopt springs in the prior art.
[0053] In one embodiment, the lifting assembly 51 includes a telescopic rod 511 provided at the top end of the cleaning chamber 1. The telescopic rod 511 is telescopically arranged vertically downward, and the telescopic end of the telescopic rod 511 is provided above the placement component 4. The telescopic rod 511 is used to drive the placement component 4 to move up and down reciprocally.
[0054] With such a design, when it is necessary to clean the components, the telescopic end of the telescopic rod 511 extends towards the bottom surface of the cleaning chamber 1, thereby driving the placement component 4 to move downward until the placement component 4 is immersed in the cleaning medium. After the components are immersed and washed, the telescopic end of the telescopic rod 511 retracts and drives the placement component 4 to rise to the position corresponding to the flushing component 3, and then each spray gun 31 uses the flushing medium to flush the components. After flushing, the telescopic rod 511 drives the placement component 4 to rise again until the placement component 4 is on one side of the first door panel 12, facilitating the staff to take out the components.
[0055] Preferably, the telescopic rod 511 can be a hydraulic telescopic rod 511, an electric telescopic rod 511, etc. in the prior art.
[0056] In an embodiment, the rotating assembly 52 includes a placement table 521 provided at the telescopic end of the telescopic rod 511. The placement table 521 is rotatably connected to the placement member 4. A power unit 522 is provided on the placement table 521. The moving end of the power unit 522 is connected to the placement member 4. The power unit 522 is used to drive the placement member 4 to rotate.
[0057] With this design, when the parts are being flushed, the power unit 522 drives the placement member 4 to rotate, so that the placement member 4 opens the corresponding spray gun 31 through each trigger member 34 for flushing. During flushing, the power unit 522 drives the placement member 4 to continuously rotate, so that the parts are flushed more evenly. When the flushing is completed, the power unit 522 drives the placement member 4 to rotate in reverse and closes the corresponding spray gun 31 through each trigger member 34.
[0058] Preferably, the power unit 522 can be a motor in the prior art.
[0059] In an embodiment, the placement member 4 includes a placement bar 41 connected to the power unit 522. A plurality of placement plates 42 are distributed vertically in the placement bar 41. The placement plates 42 are used to support the parts. A second door panel 43 is rotatably provided on one side of the placement bar 41.
[0060] With this design, when parts need to be placed, the staff opens the second door panel 43 and places the parts on the placement plates 42. After placement, closing the second door panel 43 can limit the parts within the placement bar 41, thus facilitating the cleaning of the parts.
[0061] In an embodiment, a contact assembly 7 for driving the trigger member 34 to rotate is provided below the placement member 4. The contact assembly 7 includes an abutting block 71 provided at the bottom of the placement bar 41. The length and width of the abutting block 71 are both greater than the length and width of the placement bar 41. When the abutting block 71 rises to the corresponding height of each second swing rod 342, the rotating assembly 52 drives the abutting block 71 to rotate. When the abutting block 71 rotates, it contacts each second swing rod 342 and applies a thrust in the rotation direction of the abutting block 71 to each second swing rod 342. The abutting block 71 is used to cut off the corresponding flow channel 14 through the valve plate 333.
[0062] With such a design, when it is necessary to wash the components, the rotating assembly 52 drives the placement bar 41 to rotate, causing the placement bar 41 to contact each second swing rod 342 and driving each rotating sleeve 331 to rotate, thereby opening the passages of each flow channel 14. After the components are washed, the lifting assembly 51 drives the placement member 4 to rise until the abutting block 71 rises to the corresponding position of each second swing rod 342. At this time, the rotating assembly 52 rotates in the reverse direction and drives the placement bar 41 to rotate together. The abutting block 71 rotates with the placement bar 41 and contacts each second swing rod 342. As the abutting block 71 continues to rotate, the abutting block 71 exerts a thrust force in the rotation direction of the placement bar 41 on each second swing rod 342, thereby driving the corresponding rotating sleeve 331 to rotate in the reverse direction. Each raft 333 descends and cuts off the passages of each flow channel 14. When each second swing rod 342 contacts the abutting block 71, the abutting block 71 exerts a thrust force on each second swing rod 342 in the direction close to the corresponding first swing rod 341. Each second swing rod 342 contracts into the corresponding groove 3411, and each second elastic unit 343 is compressed to prevent the second swing rod 342 from interfering with the rotation of the abutting block 71.
[0063] It should be noted that the placement bar 41 can be provided with a lining made of a flexible material such as rubber or silica gel with a good friction coefficient, so as to reduce the collision of the components in the placement bar 41.
[0064] In one embodiment, a ventilation opening 15 is formed in one side wall of the cleaning chamber 1, and the ventilation opening 15 is formed above the flushing member 3. A fan 6 is also formed in the side wall of the cleaning chamber 1, and the fan 6 is disposed opposite to the ventilation opening 15. The fan 6 is used to introduce external air flow into the cleaning chamber 1.
[0065] With such a design, after the components are washed, the telescopic rod 511 drives the placement bar 41 to rise to the position corresponding to the fan 6. At this time, the fan 6 is started to introduce external air flow into the cleaning chamber 1, thereby drying the components and improving the drying efficiency of the components.
[0066] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention. In addition, "a plurality", "multiple groups", and "several" mean more than two.
Claims
1. A component cleaning device, characterized in that, Comprising: A cleaning chamber (1), an inner cavity (11) is formed in the cleaning chamber (1), a cleaning medium is stored in the inner cavity (11), and a first door panel (12) is rotatably provided on one side of the cleaning chamber (1); An ultrasonic generator (2), arranged at the bottom end of the inner cavity (11) of the cleaning chamber (1), and the ultrasonic generator (2) is used for vibrating the cleaning medium; A flushing component (3), including a plurality of spray guns (31) distributed on the inner cavity (11), and each of the spray guns (31) is arranged above the cleaning medium. A liquid storage tank (32) is further provided on the cleaning chamber (1), a flushing medium is stored in the liquid storage tank (32), a plurality of flow channels (14) for transporting the flushing medium are formed in the cleaning chamber (1), and each of the flow channels (14) corresponds to one of the spray guns (31) and communicates the corresponding spray gun (31) with the liquid storage tank (32). The spray gun (31) is used for spraying the flushing medium into the cleaning chamber (1). A control component (33) is further arranged in the cleaning chamber (1), and the control component (33) is used for controlling the connection and disconnection of each of the flow channels (14); A placing component (4), arranged in the cleaning chamber (1) and used for placing parts to be cleaned; A moving component (5), including a lifting component (51) arranged at the top end of the inner cavity (11), the lifting component (51) is arranged above the placing component (4) and is used for driving the placing component (4) to move vertically back and forth in the cleaning chamber (1). A rotating component (52) is further arranged between the lifting component (51) and the placing component (4), and the rotating component (52) is used for driving the placing component (4) to rotate.
2. The parts cleaning equipment according to claim 1, characterized in that, Chambers (13) are formed in the side wall of the cleaning chamber (1) corresponding to each of the flow channels (14); The control component (33) includes a rotating sleeve (331) rotatably arranged in each chamber (13), one end of the rotating sleeve (331) extends into the inner cavity (11), an internal thread is formed in the rotating sleeve (331), a threaded rod (332) is vertically arranged in the rotating sleeve (331), the threaded rod (332) is screwed with the internal thread of the rotating sleeve (331), a valve plate (333) is vertically slidably arranged at the end of the threaded rod (332) away from the rotating sleeve (331), and one end of the valve plate (333) extends out of the chamber (13) and is inserted into the flow channel (14). The valve plate (333) is used for conducting or cutting off the flow channel (14). A triggering member (34) is further included and is connected to the end of the rotating sleeve (331) extending into the inner cavity (11). When the placing component (4) rises to a corresponding height with the triggering member (34), the rotating component (52) drives the placing component (4) to rotate, so that the placing component (4) contacts the triggering member (34) and pushes the triggering member (34) to drive the rotating sleeve (331) to rotate to one side.
3. The parts cleaning equipment according to claim 2, characterized in that A first elastic unit (334) is further provided between the threaded rod (332) and the valve plate (333), and the first elastic unit (334) applies a downward pressure to the valve plate (333). The trigger member (34) includes a first swing rod (341) provided at one end of the corresponding rotating sleeve (331) extending into the inner cavity (11). A groove (3411) is formed at the end of the first swing rod (341) away from the rotating sleeve (331). A second swing rod (342) is slidably provided in the groove (3411), and the positions of the second swing rods (342) intersect with the rotation trajectory of the placing member (4). A second elastic unit (343) is further provided between the second swing rod (342) and the groove (3411), and the second elastic unit (343) applies a thrust to the second swing rod (342) in a direction away from the first swing rod (341).
4. The parts cleaning equipment according to claim 3, characterized in that, The lifting assembly (51) includes a telescopic rod (511) provided at the top of the cleaning chamber (1). The telescopic rod (511) is vertically telescopic, and the telescopic end of the telescopic rod (511) is provided above the placing member (4). The telescopic rod (511) is used to drive the placing member (4) to move up and down reciprocally.
5. The parts cleaning equipment according to claim 4, characterized in that, The rotating assembly (52) includes a placing table (521) provided at the telescopic end of the telescopic rod (511). The placing table (521) is rotatably connected to the placing member (4). A power unit (522) is provided on the placing table (521), and the moving end of the power unit (522) is connected to the placing member (4). The power unit (522) is used to drive the placing member (4) to rotate.
6. The component cleaning device according to claim 5, characterized in that, The placing member (4) includes a placing bar (41) connected to the power unit (522). A plurality of placing plates (42) are distributed vertically in the placing bar (41). The placing plates (42) are used to support components. A second door plate (43) is rotatably provided on one side of the placing bar (41).
7. The parts cleaning equipment according to claim 6, characterized in that, A contact assembly (7) for driving the trigger member (34) to rotate is provided below the placing member (4). The contact assembly (7) includes an abutting block (71) provided at the bottom of the placing bar (41). The length and width of the abutting block (71) are both greater than the length and width of the placing bar (41). When the abutting block (71) rises to a height corresponding to each second swing rod (342), the rotating assembly (52) drives the abutting block (71) to rotate. When the abutting block (71) rotates, it contacts each second swing rod (342) and applies a thrust in the rotation direction of the abutting block (71) to each second swing rod (342). The abutting block (71) is used to cut off the corresponding flow channel (14) through the valve plate (333).
8. The parts cleaning equipment according to claim 1, characterized in that One side wall of the cleaning bin (1) is provided with a ventilation opening (15), and the ventilation opening (15) is arranged above the flushing component (3). A blower (6) is also provided on the side wall of the cleaning bin (1), and the blower (6) is arranged opposite to the ventilation opening (15). The blower (6) is used to introduce external air flow into the cleaning bin (1).