A cleaning system for agricultural machinery components
By designing a combination of conveying, moving, and cleaning mechanisms, the problem of incomplete cleaning of agricultural machinery parts, especially cylindrical parts, was solved, achieving efficient and stable cleaning results, reducing costs, and avoiding assembly interference.
Patent Information
- Application Number
- CN202511656857.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2045-11-13
AI Technical Summary
Existing technologies for cleaning agricultural machinery parts are ineffective, especially for cylindrical parts where the inner and outer walls are not thoroughly cleaned, leading to jamming and assembly interference during assembly.
A cleaning system including conveying, moving, processing and cleaning mechanisms was designed. It achieves pretreatment, cleaning and post-treatment of cylindrical parts through a combination of clamping, rotation and liquid spraying and air spraying. It uses permanent magnets and magnetic plates to maintain stability and is driven by a single motor for multi-functional operation.
It improves the cleaning effect of cylindrical parts, ensures thorough cleaning of both inner and outer walls, reduces costs, avoids assembly interference and jamming, and improves cleaning efficiency and stability.
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Figure CN121082618B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of agricultural machinery parts processing, and particularly relates to a cleaning system for agricultural machinery parts. BACKGROUND
[0002] The agricultural machinery part is a product required for processing agricultural machinery parts, and is an essential part of agricultural machinery.
[0003] After the agricultural machinery part is processed and produced, a large amount of debris and oil stains are adhered to the surface of the agricultural machinery part. Therefore, in order to ensure the installation precision, the agricultural machinery part needs to be cleaned. However, the agricultural machinery parts are currently cleaned together, and cannot be cleaned one by one. In addition, the agricultural machinery parts are not pretreated before being cleaned, which leads to poor cleaning effect of the agricultural machinery parts. In addition, when the cylindrical agricultural machinery part is cleaned, the current cleaning operation cannot clean the impurities in the cylindrical agricultural machinery part, which leads to the problems of assembly interference and jamming of the agricultural machinery part which is not cleaned completely. SUMMARY
[0004] The present application relates to the technical field of agricultural machinery parts processing, and particularly relates to a cleaning system for agricultural machinery parts.
[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:
[0006] The cleaning system for the agricultural machinery part comprises a shell, a conveying mechanism for conveying the agricultural machinery part is arranged on the shell, the conveying mechanism comprises two grooves arranged in the inner wall of the shell, the inner walls of the two grooves are provided with through grooves which are in communication with the side walls of the shell, two tooth plates are fixedly connected to the bottoms of the grooves, a sleeve is arranged on the inner wall of the through groove, a first gear which is engaged with the tooth plate is fixedly connected to the side wall of the sleeve, an arc-shaped plate is sealingly and slidably connected to the inner wall of the sleeve through a sliding rod, one end of the sliding rod is elastically connected to the inner wall of the sleeve through a spring, a rotary joint is arranged at the end of the sleeve which is away from the arc-shaped plate, an air inlet pipe is arranged on the side wall of the rotary joint which is away from the sleeve, and the inner wall of the sleeve is in communication with the inner wall of the rotary joint through an air duct.
[0007] Further, a moving mechanism for moving the sleeve is arranged on the shell, the moving mechanism comprises two fixed plates which are fixedly connected to the side walls of the shell, a reciprocating screw rod is rotatably connected between the two fixed plates, a sliding block is threadedly connected to the side wall of the reciprocating screw rod, the upper end of the sliding block is fixedly connected to the side wall of the rotary joint, a guide rod is fixedly connected to the side wall of the fixed plate, and the side wall of the guide rod is slidably connected to the side wall of the sliding block.
[0008] Further, the shell is provided with a treatment mechanism for pretreatment and post-treatment of agricultural machinery parts, the treatment mechanism comprises a plurality of liquid spray pipes and air spray pipes fixedly connected to the inner wall of the shell respectively, a plurality of through holes are formed in the bottom of the plurality of liquid spray pipes and air spray pipes, and the plurality of liquid spray pipes and air spray pipes are located above the two tooth plates respectively.
[0009] Further, the shell is provided with a cleaning mechanism for cleaning agricultural machinery parts, the cleaning mechanism comprises a horizontal plate fixedly connected to the port of the shell, a plurality of pull rods are slidingly connected to the side wall of the horizontal plate, a flat plate is fixedly connected to the lower end of the plurality of pull rods, a vertical rod is rotatably connected to the side wall of the flat plate, a cleaning plate is fixedly connected to the side wall of the vertical rod, a rotating shaft is rotatably connected to the side wall of the horizontal plate, a cylindrical cam is fixedly connected to the lower end of the rotating shaft, a cam groove is formed in the side wall of the cylindrical cam, the side wall of the flat plate is slidingly connected to the inner wall of the cam groove through a connecting rod, a second gear is fixedly connected to the upper end of the vertical rod, a third gear is fixedly connected to the side wall of the rotating shaft away from the cylindrical cam, the second gear is engaged with the third gear, and a water spray pipe is fixedly connected to the lower end of the flat plate.
[0010] Further, the horizontal plate is provided with a driving mechanism for driving the rotating shaft to rotate, the driving mechanism comprises a first one-way bearing, a motor is fixedly connected to the upper end of the horizontal plate through a support, the side wall of the movable shaft of the motor is fixedly connected to the outer ring of the first one-way bearing through a fixed rod, and the inner ring of the first one-way bearing is fixedly connected to the side wall of the rotating shaft.
[0011] Further, the shell is provided with a transmission mechanism for driving the two reciprocating lead screws to rotate, the transmission mechanism comprises two connecting plates fixedly connected to the side wall of the shell, two drive rods are rotatably connected to the side wall of the two connecting plates, a first bevel gear is fixedly connected to the lower end of the drive rod, a second bevel gear engaged with the first bevel gear is fixedly connected to one end of the reciprocating lead screw, a second one-way bearing is fixedly connected to the side wall of the movable shaft of the motor, a driving wheel is fixedly connected to the outer ring of the second one-way bearing, two driven wheels are fixedly connected to the upper end of the two drive rods, and the driving wheel is connected to the two driven wheels through a synchronous belt.
[0012] Further, the shell is provided with a transmission mechanism for driving the two reciprocating lead screws to rotate, the transmission mechanism comprises two connecting plates fixedly connected to the side wall of the shell, two drive rods are rotatably connected to the side wall of the two connecting plates, a first bevel gear is fixedly connected to the lower end of the drive rod, a second bevel gear engaged with the first bevel gear is fixedly connected to one end of the reciprocating lead screw, a second one-way bearing is fixedly connected to the side wall of the movable shaft of the motor, a driving wheel is fixedly connected to the outer ring of the second one-way bearing, two driven wheels are fixedly connected to the upper end of the two drive rods, and the driving wheel is connected to the two driven wheels through a synchronous belt.
[0013] The present application has the following advantages:
[0014] 1: By arranging the conveying mechanism, the moving mechanism and the treatment mechanism, the cylindrical parts can be pretreated and treated after cleaning, thereby increasing the cleaning effect of the cylindrical parts.
[0015] 2: By setting the cleaning mechanism, the vertical rod can drive the cleaning plate to move up and down while rotating, thereby improving the cleaning effect of the inner wall and outer wall of the cylindrical part.
[0016] 3: By setting the driving mechanism and the transmission mechanism, one motor can be used to make the whole system run, without setting multiple power equipment, reducing the cost. DRAWINGS
[0017] Figure 1 A structure schematic view of a cleaning system for agricultural machinery parts is provided for the present application;
[0018] Figure 2 A transverse cross-sectional structure schematic view of a cleaning system for agricultural machinery parts is provided for the present application;
[0019] Figure 3 A cross-sectional structure schematic view of a conveying mechanism in a cleaning system for agricultural machinery parts is provided for the present application;
[0020] Figure 4 A vertical cross-sectional structure schematic view of a cleaning system for agricultural machinery parts is provided for the present application;
[0021] Figure 5 A structure schematic view of a cleaning mechanism and a driving mechanism in a cleaning system for agricultural machinery parts is provided for the present application;
[0022] Figure 6 A structure schematic view of a cleaning mechanism and a driving mechanism in a cleaning system for agricultural machinery parts is provided for the present application; Figure 1 An enlarged schematic view of the structure at A in the middle;
[0023] Figure 7 A rear view structure schematic view of a cleaning system for agricultural machinery parts is provided for the present application.
[0024] In the figure: 1 shell, 2 conveying mechanism, 201 groove, 202 through slot, 203 tooth plate, 204 sleeve, 205 slide bar, 206 arc plate, 207 first gear, 208 spring, 209 rotary joint, 210 air inlet pipe, 211 air duct, 3 moving mechanism, 301 fixed plate, 302 reciprocating screw, 303 sliding block, 304 guide rod, 4 processing mechanism, 401 liquid injection pipe, 402 air injection pipe, 403 through hole, 5 cleaning mechanism, 501 horizontal plate, 502 vertical rod, 503 cleaning plate, 504 flat plate, 505 pull rod, 506 rotating shaft, 507 cylindrical cam, 508 connecting rod, 509 second gear, 510 third gear, 511 water injection pipe, 6 drive mechanism, 601 motor, 602 fixed rod, 603 first one-way bearing, 7 transmission mechanism, 701 drive rod, 702 first bevel gear, 703 second bevel gear, 704 second one-way bearing, 705 driving wheel, 706 driven wheel, 9 receiving plate, 10 permanent magnet, 11 magnetic plate. DETAILED DESCRIPTION
[0025] REFERENCE Figures 1-7 A cleaning system for agricultural machinery parts, comprising a shell 1, the shell 1 is provided with a conveying mechanism 2 for conveying agricultural machinery parts, the conveying mechanism 2 comprises two grooves 201 opened in the inner wall of the shell 1, the inner wall of the two grooves 201 is provided with a through slot 202 communicating with the side wall of the shell 1, the bottom of the groove 201 is fixedly connected with two tooth plates 203, the inner wall of the through slot 202 is provided with a sleeve 204, the side wall of the sleeve 204 is fixedly connected with a first gear 207 engaged with the tooth plate 203, the inner wall of the sleeve 204 is sealingly and slidably connected with an arc plate 206 through a slide bar 205, one end of the slide bar 205 is elastically connected with the inner wall of the sleeve 204 through a spring 208, the end of the sleeve 204 away from the arc plate 206 is provided with a rotary joint 209, the side wall of the rotary joint 209 away from the sleeve 204 is provided with an air inlet pipe 210, the inner wall of the sleeve 204 is communicated with the inner wall of the rotary joint 209 through an air duct 211, the inner wall of the shell 1 close to the two tooth plates 203 is fixedly connected with a receiving plate 9.
[0026] Further, before cleaning the cylindrical parts, first place the cylindrical parts on one of the receiving plates 9, then air into the two air inlet pipes 210 located at the two rotary joints 209, thereby driving the two slide bars 205 to drive the two arc plates 206 to move closer to each other, thereby clamping the cylindrical parts, so that when the cylindrical parts move horizontally, the first gear 207 will rotate on the two tooth plates 203, thereby driving the cylindrical parts to rotate, thereby facilitating the pretreatment and post-treatment of the cylindrical parts.
[0027] The housing 1 is provided with a moving mechanism 3 that drives the sleeve 204 to move. The moving mechanism 3 includes two fixed plates 301 that are fixedly connected to the side walls of both sides of the housing 1. A reciprocating screw 302 is rotatably connected between the two fixed plates 301. A slider 303 is threadedly connected to the side wall of the reciprocating screw 302. The upper end of the slider 303 is fixedly connected to the side wall of the rotary joint 209. A guide rod 304 is fixedly connected to the side wall of the fixed plate 301. The side wall of the guide rod 304 is slidably connected to the side wall of the slider 303.
[0028] The housing 1 is provided with a processing mechanism 4 for pre-treatment and post-cleaning of agricultural machinery parts. The processing mechanism 4 includes multiple spray pipes 401 and air pipes 402 that are fixedly connected to the inner wall of the housing 1. Multiple through holes 403 are opened at the bottom of the multiple spray pipes 401 and multiple air pipes 402. The multiple spray pipes 401 and multiple air pipes 402 are located directly above the two toothed plates 203.
[0029] Furthermore, the spray pipe 401 pre-treats the cylindrical parts, and the air jet pipe 402 performs post-cleaning treatment on the cylindrical parts. Simultaneously, the inner wall of the housing 1 near the air jet pipe 402 is open, facilitating the removal of the post-cleaned cylindrical parts. Figure 4 As shown, when the reciprocating screw 302 rotates and drives the slider 303 to move, the slider 303 drives the clamped cylindrical component to move closer to the jet pipe 402 through the rotary joint 209. Then, the cylindrical component will first rotate under the action of the first gear 207 and one of the toothed plates 203, so that the cleaning agent sprayed from the spray pipe 401 can be evenly applied to the cylindrical component, increasing its cleaning effect. Then, the cylindrical component will enter the cleaning mechanism 5 for cleaning. After the cylindrical component is cleaned, it will rotate under the action of the first gear 207 and the other toothed plate 203. Then, the high-pressure gas sprayed from the jet pipe 402 will remove the moisture on the cylindrical component, thereby accelerating its drying speed.
[0030] The housing 1 is equipped with a cleaning mechanism 5 for cleaning agricultural machinery parts. The cleaning mechanism 5 includes a horizontal plate 501 fixedly connected to the port of the housing 1. Multiple pull rods 505 are slidably connected to the side wall of the horizontal plate 501. The lower ends of the multiple pull rods 505 are fixedly connected to a flat plate 504. A vertical rod 502 is rotatably connected to the side wall of the flat plate 504. A cleaning plate 503 is fixedly connected to the side wall of the vertical rod 502. A rotating shaft 506 is rotatably connected to the side wall of the horizontal plate 501. A cylindrical cam 507 is fixedly connected to the lower end of the rotating shaft 506. A cam groove is opened on the side wall of the cylindrical cam 507. The side wall of the flat plate 504 is slidably connected to the inner wall of the cam groove through a connecting rod 508. A second gear 509 is fixedly connected to the upper end of the vertical rod 502. A third gear 510 is fixedly connected to the side wall of the rotating shaft 506 away from the cylindrical cam 507. The second gear 509 and the third gear 510 mesh. A water spray pipe 511 is fixedly connected to the lower end of the flat plate 504.
[0031] Furthermore, the cleaning plate 503 is U-shaped, allowing it to contact the inner and outer walls of the cylindrical component. During cleaning of the cylindrical component, water is pumped into the spray pipe 511. Subsequently, the rotating shaft 506 rotates, causing the cylindrical cam 507 to rotate. This causes the connecting rod 508 to slide back and forth on the inner wall of the cam groove. Consequently, the plate 504 drives the vertical rod 502 and the cleaning plate 503 to move up and down. At the same time, the rotating shaft 506 rotates, causing the third gear 510 to drive the second gear 509 to rotate. This causes the vertical rod 502 to drive the cleaning plate 503 to rotate. Since both the second gear 509 and the third gear 510 are placed vertically, when the vertical rod 502 moves up and down, it can also drive the second gear 509 to move up and down on the side wall of the third gear 510. Thus, the vertical rod 502 moves up and down while rotating, thereby improving the cleaning effect on the inner and outer walls of the cylindrical component.
[0032] A drive mechanism 6 for driving the rotating shaft 506 to rotate is provided on the horizontal plate 501. The drive mechanism 6 includes a first one-way bearing 603. A motor 601 is fixedly connected to the upper end of the horizontal plate 501 through a bracket. The side wall of the movable shaft of the motor 601 is fixedly connected to the outer ring of the first one-way bearing 603 through a fixing rod 602. The inner ring of the first one-way bearing 603 is fixedly connected to the side wall of the rotating shaft 506.
[0033] The housing 1 is provided with a transmission mechanism 7 that drives two reciprocating screws 302 to rotate. The transmission mechanism 7 includes two connecting plates fixedly connected to the side wall of the housing 1. Two drive rods 701 are rotatably connected to the side wall of the two connecting plates. A first bevel gear 702 is fixedly connected to the lower end of the drive rod 701. A second bevel gear 703 that meshes with the first bevel gear 702 is fixedly connected to one end of the reciprocating screw 302. A second one-way bearing 704 is fixedly connected to the side wall of the movable shaft of the motor 601. A drive wheel 705 is fixedly connected to the outer ring of the second one-way bearing 704. Two driven wheels 706 are fixedly connected to the upper end of the two drive rods 701. The drive wheel 705 is connected to the two driven wheels 706 through a synchronous belt.
[0034] Furthermore, when it is necessary to move the cylindrical component, the drive motor 601 rotates in the reverse direction, which causes the inner ring of the second one-way bearing 704 to drive its outer ring to rotate. Then, the drive wheel 705 drives the two driven wheels 706 to rotate through the synchronous belt. Then, the two drive rods 701 drive the two reciprocating screws 302 to rotate through the first bevel gear 702 and the second bevel gear 703, thereby moving the cylindrical component. When the motor 601 rotates in the reverse direction, the outer ring of the first one-way bearing 603 does not drive its inner ring to rotate, and the cleaning plate 503 does not rotate.
[0035] When cleaning cylindrical parts, the drive motor 601 rotates in the forward direction, so the inner ring of the second one-way bearing 704 does not drive its outer ring to rotate, and the two reciprocating screws 302 stop rotating, keeping the position of the cylindrical parts stable. At the same time, the outer ring of the first one-way bearing 603 drives its inner ring to rotate, and the cleaning plate 503 rotates to clean the cylindrical parts. Therefore, the entire system can be operated by a single motor 601, eliminating the need for multiple electrical devices and reducing costs.
[0036] The first gear 207 is embedded with a permanent magnet 10. The groove 201 is located between the two toothed plates 203 and has a magnetic plate 11 that attracts the permanent magnet 10. When the first gear 207 rotates on the toothed plate 203 located below the spray pipe 401 and is located between the two toothed plates 203, the first gear 207 stops rotating under the magnetic attraction of the permanent magnet 10 and the magnetic plate 11. As a result, the opening of the cylindrical component remains upward, thereby increasing the stability of the cylindrical component during cleaning.
[0037] It should be noted that both the permanent magnet 10 and the magnetic plate 11 are made of neodymium iron boron material, which makes the attraction between the permanent magnet 10 and the magnetic plate 11 greater, further increasing the stability of the cylindrical parts during cleaning.
[0038] In this invention, the cylindrical component is placed on the receiving plate 9 near the spray pipe 401, and then air is introduced into the two air inlet pipes 210 located at the two rotary joints 209. The gas then enters the sleeve 204 through the air inlet pipe 211, which increases the pressure inside the sleeve 204. This pushes the slide rod 205 to slide outward, and the two slide rods 205 drive the two arc plates 206 to move closer to each other, thereby clamping the cylindrical component.
[0039] The drive motor 601 rotates in the reverse direction, which in turn causes the inner ring of the second one-way bearing 704 to drive its outer ring to rotate. This causes the drive wheel 705 to drive the two driven wheels 706 to rotate via the synchronous belt. This causes the two drive rods 701 to rotate, which in turn causes the two first bevel gears 702 to drive the two second bevel gears 703 to rotate. This causes the two reciprocating screws 302 to rotate, which in turn causes the two sliders 303 to slide. This causes the clamped cylindrical parts to move closer to the cleaning mechanism 5. As the cylindrical parts move, the first gear 207 will rotate on the toothed plate 203 and move forward at the same time, which in turn causes the cylindrical parts to rotate. At this time, the cleaning agent sprayed through the spray pipe 401 and the through hole 403 can be evenly applied to the cylindrical parts, increasing their cleaning effect.
[0040] When the cylindrical component moves to a position between the two toothed plates 203, the first gear 207 no longer meshes with the toothed plates 203, and thus the first gear 207 stops rotating. Furthermore, under the attraction of the magnetic plate 11, the permanent magnet 10 keeps the position of the first gear 207 stable. Simultaneously, with the opening of the cylindrical component facing upwards, when the cylindrical component moves directly below the cleaning plate 503, water is pumped into the water spray pipe 511, causing the water to rinse the cylindrical component. At this time, the drive motor 601 rotates forward, causing the outer ring of the first one-way bearing 603 to drive its inner ring to rotate, which in turn causes the rotating shaft 506 to rotate, driving the cylindrical cam 5... 07 rotates, causing the connecting rod 508 to slide back and forth on the inner wall of the cam groove. This causes the plate 504 to drive the vertical rod 502 and the cleaning plate 503 to move up and down. At the same time, the rotating shaft 506 rotates, causing the third gear 510 to drive the second gear 509 to rotate. This causes the vertical rod 502 to drive the cleaning plate 503 to rotate. Since the second gear 509 and the third gear 510 are both placed vertically, when the vertical rod 502 moves up and down, it can drive the second gear 509 to move up and down on the side wall of the third gear 510. This allows the vertical rod 502 to move up and down while rotating, thereby improving the cleaning effect on the inner and outer walls of the cylindrical parts.
[0041] After cleaning the cylindrical parts, the cleaning plate 503 is moved upwards and separated from the cylindrical parts. The motor 601 is then driven to rotate in the opposite direction, causing the reciprocating screw 302 to rotate again. This causes the slider 303 to move the cylindrical parts further. When the first gear 207 contacts the toothed plate 203 located at the jet pipe 402, the first gear 207 drives the cylindrical parts to rotate again. This causes the high-pressure gas ejected through the jet pipe 402 and the through hole 403 to remove the moisture from the cylindrical parts, thus accelerating the drying process. Subsequently, the cylindrical parts rotate to the upper end of the receiving plate 9 near the jet pipe 402. At this point, the motor 601 stops rotating and air is no longer supplied to the air inlet pipe 210, causing the two arc-shaped plates 206 to separate. The cylindrical parts can then be removed.
Claims
1. A cleaning system for agricultural machinery parts, comprising a housing (1), characterized in that, The housing (1) is provided with a conveying mechanism (2) for conveying agricultural machinery parts. The conveying mechanism (2) includes two grooves (201) formed on the inner wall of the housing (1). The inner walls of the two grooves (201) are provided with through grooves (202) that communicate with the side walls of the housing (1). Two toothed plates (203) are fixedly connected to the bottom of the grooves (201). A sleeve (204) is provided on the inner wall of the through groove (202). A first gear (207) that meshes with the toothed plates (203) is fixedly connected to the side wall of the sleeve (204). The inner wall of the sleeve (204) is slidably and sealed with an arc-shaped plate (206) via a slide rod (205). One end of the slide rod (205) is elastically connected to the inner wall of the sleeve (204) via a spring (208). A rotary joint (209) is installed at the end of the sleeve (204) away from the arc-shaped plate (206). An air inlet pipe (210) is installed on the side wall of the rotary joint (209) away from the sleeve (204). The inner wall of the sleeve (204) is connected to the inner wall of the rotary joint (209) via a ventilation pipe (211). The housing (1) is provided with a moving mechanism (3) for moving the sleeve (204). The moving mechanism (3) includes two fixed plates (301) fixedly connected to the side walls of both sides of the housing (1). A reciprocating screw (302) is rotatably connected between the two fixed plates (301). A slider (303) is threadedly connected to the side wall of the reciprocating screw (302). The upper end of the slider (303) is fixedly connected to the side wall of the rotary joint (209). A guide rod (304) is fixedly connected to the side wall of the fixed plate (301). (304) The side wall is slidably connected to the side wall of the slider (303); the housing (1) is provided with a processing mechanism (4) for pre-treatment and post-cleaning of agricultural machinery parts. The processing mechanism (4) includes multiple spray pipes (401) and air spray pipes (402) that are fixedly connected to the inner wall of the housing (1). Multiple through holes (403) are opened at the bottom of the multiple spray pipes (401) and multiple air spray pipes (402). The multiple spray pipes (401) and multiple air spray pipes (402) are located directly above the two toothed plates (203);The housing (1) is provided with a cleaning mechanism (5) for cleaning agricultural machinery parts. The cleaning mechanism (5) includes a horizontal plate (501) fixedly connected to the port of the housing (1). Multiple pull rods (505) are slidably connected to the side wall of the horizontal plate (501). The lower ends of the multiple pull rods (505) are fixedly connected to a flat plate (504). A vertical rod (502) is rotatably connected to the side wall of the flat plate (504). A cleaning plate (503) is fixedly connected to the side wall of the vertical rod (502). A rotating shaft (506) is rotatably connected to the side wall of the horizontal plate (501). A cylindrical cam (507) is fixedly connected to the lower end of the rotating shaft (506). A cam groove is formed on the side wall of the cylindrical cam (507). The side wall of the plate (504) is slidably connected to the inner wall of the cam groove via a connecting rod (508). A second gear (509) is fixedly connected to the upper end of the vertical rod (502). A third gear (510) is fixedly connected to the side wall of the rotating shaft (506) away from the cylindrical cam (507). The second gear (509) meshes with the third gear (510). A water spray pipe (511) is fixedly connected to the lower end of the plate (504).
2. The cleaning system for agricultural machinery parts according to claim 1, characterized in that, The horizontal plate (501) is provided with a drive mechanism (6) for driving the rotating shaft (506) to rotate. The drive mechanism (6) includes a first one-way bearing (603). The upper end of the horizontal plate (501) is fixedly connected to a motor (601) by a bracket. The side wall of the movable shaft of the motor (601) is fixedly connected to the outer ring of the first one-way bearing (603) by a fixing rod (602). The inner ring of the first one-way bearing (603) is fixedly connected to the side wall of the rotating shaft (506).
3. A cleaning system for agricultural machinery parts according to claim 2, characterized in that, The housing (1) is provided with a transmission mechanism (7) that drives two reciprocating screws (302) to rotate. The transmission mechanism (7) includes two connecting plates fixedly connected to the side wall of the housing (1). The two connecting plates are rotatably connected to two drive rods (701). The lower end of the drive rod (701) is fixedly connected to a first bevel gear (702). One end of the reciprocating screw (302) is fixedly connected to a second bevel gear (703) that meshes with the first bevel gear (702). The side wall of the movable shaft of the motor (601) is fixedly connected to a second one-way bearing (704). The outer ring of the second one-way bearing (704) is fixedly connected to a drive wheel (705). The upper ends of the two drive rods (701) are fixedly connected to two driven wheels (706). The drive wheel (705) is connected to the two driven wheels (706) through a synchronous belt.
4. A cleaning system for agricultural machinery parts according to claim 3, characterized in that, The housing (1) has a receiving plate (9) fixedly connected to the inner wall near the two toothed plates (203). The first gear (207) is embedded with a permanent magnet (10). The groove (201) is located between the two toothed plates (203) and has a magnetic plate (11) that attracts the permanent magnet (10) embedded at the top.
Citation Information
Patent Citations
Surgical instrument cleaning auxiliary device
CN210931938U