Device for automatically cleaning veterinary tools

The veterinary tool cleaning device addresses inefficiencies in manual cleaning and ultrasonic cleaners by using expandable brushes and dual-moisture systems for automated, thorough cleaning of veterinary tools.

CN120306313AActive Publication Date: 2025-07-15赣州职业技术学院
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Patent Information

Application Number
CN202510742453.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2025-07-15
Estimated Expiration
2045-06-05

AI Technical Summary

Technical Problem

Traditional veterinary tools are cumbersome and have low safety. The existing ultrasonic cleaning machines cannot meet the needs of active brushing, and the cleaning efficiency and effect are limited.

Method used

An automatic cleaning device for veterinary tools is designed, and the fine hair roller and coarse hair roller are used to clean and brush with the spray pipe. The lifting group and the movable drive group are driven by the servo motor to realize the automatic expansion and brushing of the tools, combining the diversified usage methods of spraying and brushing.

Benefits of technology

It improves cleaning effect and efficiency, reduces manual operation, increases cleaning position and safety, and realizes automatic cleaning of veterinary tools.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of tool cleaning, and relates to a veterinary tool automatic cleaning device which comprises a frame and two spraying pipes installed on the upper portion of the frame, nozzles of the two spraying pipes incline in the direction close to each other, and a lifting set is arranged in the frame through a connected vertical plate. The movable end of the lifting set is connected with two fine hair rollers located between the two spraying pipes, and a containing funnel located below the spraying pipes is placed on the frame through a connected supporting frame. A collecting frame located below the containing funnel is arranged on the lower portion of the frame. And two rough hair rollers are arranged at the upper part of the frame. The two fine hair rollers are used for separately supporting the two annular grips on the veterinary tools, so that the cleaning area is guaranteed, the cleaning effect is improved, and the veterinary tools do not need to be manually unfolded one by one for sequential cleaning; in addition, the spraying pipe and the rough hair roller can be used for cooperatively brushing the veterinary tools hung on the supporting roller and contained in the containing funnel respectively, the brushing position is increased, and the brushing efficiency is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of tool cleaning, and more particularly, relates to a device for automatically cleaning veterinary tools. Background Art

[0002] A veterinarian, as the name implies, is a doctor who provides disease treatment and consultation services for animals. Veterinary tools generally include pliers, scissors, knives, forceps and other types. These are all tools that come into contact with animal tissues. Therefore, in order to avoid the occurrence of bacterial growth and cross-infection of diseases, veterinary tools need to be cleaned.

[0003] Most traditional rough cleaning methods are to manually hold a cleaning brush one by one to preliminarily clean veterinary tools. In order to avoid residues, manual long-term manual cleaning is required. Moreover, some bacteria carried in animals pose an infection risk to humans. Therefore, the traditional cleaning method is cumbersome and not very safe.

[0004] However, the existing ultrasonic cleaning machines cannot meet the process of active brushing, resulting in reduced efficiency and limited cleaning effect on stubborn impurities.

[0005] According to the above-mentioned disadvantages in the prior art, a device for automatically cleaning veterinary tools is specifically designed to overcome the disadvantages of the prior art. This device can both unfold tools for brushing with high cleaning effect and place tools for brushing, with diverse usage methods. Summary of the Invention

[0006] The object of the present invention is to overcome the above-mentioned disadvantages of the prior art, and provide a device for automatically cleaning veterinary tools that can both unfold tools for brushing with high cleaning effect and place tools for brushing, with diverse usage methods.

[0007] In order to solve the above technical problems, the present invention provides a device for automatically cleaning veterinary tools, including a frame and two spray pipes installed on the upper part of the frame opposite to each other. The nozzles of the two spray pipes are inclined 45 degrees in a direction close to each other. The veterinary tools are placed between the two spray pipes for spray cleaning. A lifting group is provided in the frame through a connected vertical plate. The movable end of the lifting group is connected to two fine hair rollers located between the two spray pipes at a predetermined distance. The lifting group is controlled to drive the fine hair roller to move out from between the two supporting baffles and the two spray pipes, and the two fine hair rollers are used to separately support the two annular handles on the veterinary tools (such as pliers). At this time, the lifting group is controlled to drive the fine hair roller to synchronously drive multiple unfolded veterinary tools to move down between the two spray pipes for comprehensive cleaning. A holding funnel is placed on the frame through a connected support frame below the spray pipe. The holding funnel is used to hold non-annular veterinary tools. The cleaning liquid sprayed from the spray pipe will fall to the veterinary tools in the holding funnel for cleaning, so as to clean the suspended and placed medical tools simultaneously. The holding funnel can be removed from the support frame to take and put the veterinary tools; the lower part of the frame is provided with a collecting frame located below the holding funnel, and the collecting frame is used to collect the cleaning liquid falling through the holding funnel; the upper part of the frame is provided with two left and right opposite coarse-hair rollers for brushing the veterinary tools, and the coarse-hair rollers are driven to reciprocate by a movable driving group installed on the frame. The two coarse-hair rollers are respectively located on the left and right sides of the two fine-hair rollers, so that the downward movement of the fine-hair rollers will also drive multiple unfolded veterinary tools to move down between the two coarse-hair rollers. At this time, the movable driving group is controlled to drive the two coarse-hair rollers to reciprocate to brush the veterinary tools, and the two coarse-hair rollers are respectively located on the upper sides of the two holding funnels. During the reciprocating movement of the coarse-hair rollers, the veterinary tools in the holding funnels are also brushed.

[0008] Preferably, a support baffle is also included. The upper part of the frame is connected to two front and rear opposite support baffles for supporting the front and rear ends of the fine-hair roller respectively. The fine-hair roller will separate from the support baffle when it moves upward, and will move downward and be supported on the support baffle.

[0009] Preferably, a lifting group is also included, which includes a servo motor installed on the frame. The output shaft of the servo motor rotates and passes through the frame. The output shaft of the servo motor is connected to a screw rod 1, and the screw rod 1 is threadedly connected to a sliding column slidably arranged in the middle of the vertical plate. The sliding column is T-shaped, and two fine-hair rollers are connected to the upper end of the sliding column. The servo motor is controlled to drive the screw rod 1 to rotate to drive the sliding column to rise and fall along the vertical plate. The sliding column will drive the suspended veterinary tools to rise and fall between the two spray pipes and the two coarse-hair rollers through the fine-hair rollers.

[0010] Preferably, the movable driving group includes two front and rear opposite sliding frames slidably arranged on the frame. A coarse hair roller is arranged between the two sliding frames. When the sliding frames move back and forth, the coarse hair roller will be driven to move back and forth to synchronously brush the veterinary tools suspended on the fine hair roller and placed in the feeding funnel. A cylinder is installed on the frame, and the movable end of the cylinder is connected to one of the two sliding frames; a fan-shaped protective frame surrounding the coarse hair roller is connected between the two sliding frames.

[0011] Preferably, the movable driving group further includes a spatial cam connected to the front end of the coarse hair roller. A spiral groove is formed on one side of the spatial cam. The upper part of the frame is connected with a resisting rod in contact and cooperation with the spiral groove through a supporting block. The coarse hair roller is rotatably arranged on the sliding frame. During the process of the sliding frame driving the coarse hair roller to move back and forth, since the resisting rod will squeeze the spiral groove on the spatial cam.

[0012] Preferably, it further includes a partition connected to the middle of the feeding funnel. The partition is perpendicular to the coarse hair roller, and the partition divides the upper placing space of the feeding funnel into two parts; the shape of the feeding funnel is concave, and the bottom of the feeding funnel is a leaking hole part. The cleaning liquid during the cleaning of veterinary tools will fall into the collection frame through the leaking hole part. The side of the feeding funnel close to the spray pipe is a guiding part, and part of the cleaning liquid sprayed by the spray pipe will flow to the leaking hole part through the guiding part. The side of the feeding funnel far from the spray pipe is a waste discharging part, and a waste discharging hole is formed on the waste discharging part. The waste discharging hole on the waste discharging part is larger than the leaking hole on the leaking hole part. When the coarse hair roller reciprocates to brush the veterinary tools on the leaking hole part, part of the impurities will be dialed by the coarse hair roller and fall from the waste discharging hole.

[0013] Preferably, it further includes a first slider. An L-shaped groove is formed on the supporting frame. Both the front and rear sides of the feeding funnel are connected with first sliders slidably arranged on the L-shaped groove of the supporting frame. Two left and right opposite second sliders slide on the front and rear sides of the supporting frame. A connecting rod is rotatably arranged between the second slider and the first slider. Initially, the feeding funnel drives the veterinary tools to approach the coarse hair roller for brushing. If it is necessary to move the feeding funnel out of the supporting frame to pick up and place veterinary tools, then the two left and right opposite second sliders are moved away from each other. The second slider will drive the first slider to move down along the L-shaped groove on the supporting frame through the connecting rod. At this time, the first slider will drive the veterinary tools to move down and away from the coarse hair roller through the feeding funnel. When the first slider moves down to the threshold value, when the two left and right opposite second sliders continue to move away from each other, they will drive the first sliders on the left and right sides to move away from each other through the connecting rod. In this way, the two feeding funnels move away from each other and move out of the supporting frame. On the contrary, when the two left and right second sliders approach each other, the feeding funnel will reset. The two left and right opposite second sliders are driven to move away from each other by a linear driving group arranged on the frame.

[0014] Preferably, the linear drive group includes a second lead screw. Two pairs of left and right opposed second lead screws are rotatably provided on the front and rear sides of the frame. The left and right opposed second lead screws are respectively threadedly connected to the left and right opposed second sliders. When the left and right opposed second lead screws rotate synchronously, the left and right opposed second sliders will move towards each other. Two pairs of front and rear opposed rotating shafts are provided on the vertical plate. The upper ends of the rotating shafts are respectively connected to the approaching ends of the two opposed second lead screws by bevel gears. The bevel gears of the two opposed second lead screws are engaged with the bevel gears on the rotating shafts. Thus, when the rotating shafts rotate, the two second lead screws will be driven to rotate synchronously through the engagement of the bevel gears. The rotating shafts and the output shaft of the servo motor are driven by a synchronous belt group. The synchronous belt groups on the two rotating shafts are staggered up and down. Therefore, when controlling the servo motor to drive the first lead screw to move the fine hair roller upward, the servo motor will also drive the rotating shafts to rotate through the synchronous belt group, so that the two holding funnels will be unfolded synchronously when the fine hair roller moves upward.

[0015] On the basis of overcoming the shortcomings of the prior art, the beneficial effects that the present invention can achieve are as follows: Two fine hair rollers are used to separately support the two annular grips on the veterinary tool, so as to ensure the cleaning area and improve the cleaning effect. There is no need to manually unfold the veterinary tools one by one for sequential cleaning. In addition, the spray pipe and the thick hair roller can respectively cooperate to brush the veterinary tools suspended on the support roller and placed in the holding funnel, increasing the brushing positions and efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is an assembly schematic diagram of the present invention.

[0017] Figure 2 is an internal structure schematic diagram of the frame of the present invention.

[0018] Figure 3 is a cross-sectional view of the frame and the vertical plate of the present invention.

[0019] Figure 4 is a schematic diagram of the carriage, thick hair roller and cylinder of the present invention.

[0020] Figure 5 is of the present invention Figure 4 an enlarged view of part A.

[0021] Figure 6 is a schematic diagram of the holding funnel and the partition of the present invention.

[0022] Figure 7 is a cross-sectional view of the support frame of the present invention.

[0023] Figure 8 is a schematic diagram of the second lead screw, rotating shaft and bevel gear of the present invention.

[0024] The reference signs in the accompanying drawings provided by the present invention are: 1 - frame, 11 - vertical plate, 12 - support frame, 2 - spray pipe, 3 - lifting group, 31 - servo motor, 32 - first lead screw, 33 - sliding column, 41 - fine hair roller, 42 - support baffle, 5 - containing funnel, 51 - partition, 52 - diversion part, 53 - leakage hole part, 54 - impurity discharge part, 6 - collection box, 71 - sliding frame, 72 - thick hair roller, 73 - cylinder, 74 - protective frame, 75 - spatial cam, 750 - spiral groove, 76 - support block, 77 - abutting rod, 81 - first slider, 82 - second slider, 83 - connecting rod, 91 - second lead screw, 92 - rotating shaft, 93 - bevel gear, 94 - synchronous belt group. Detailed implementation manners

[0025] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention.

[0026] In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. The technical solutions of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. It should be noted that the technical features involved in different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0027] A device for automatically cleaning veterinary tools, as Figures 1-4As shown, the frame 1 includes two spray pipes 2 installed on the upper part of the frame 1, which are opposite to each other. The nozzles of the two spray pipes 2 are inclined at 45 degrees in the direction of approaching each other. The veterinary tools are placed between the two spray pipes 2 for spray cleaning. A lifting group 3 is provided in the frame 1 through a connected vertical plate 11. The movable end of the lifting group 3 is connected to two fine hair rollers 41 located between the two spray pipes 2 at a predetermined distance. The lifting group 3 is controlled to drive the fine hair roller 41 to move out from between the two support baffles 42 and the two spray pipes 2. The two fine hair rollers 41 are used to spray the veterinary tools respectively. The two annular handles on the medical tools (such as pliers) are supported separately to ensure the cleaning area and improve the cleaning effect. At this time, the lifting group 3 is controlled to drive the fine hair roller 41 to synchronously drive the multiple unfolded veterinary tools to move down between the two spray pipes 2 for comprehensive cleaning, so that there is no need to manually unfold the veterinary tools one by one for sequential cleaning. The frame 1 is provided with a holding funnel 5 located below the spray pipe 2 through the connected support frame 12. The holding funnel 5 is used to hold veterinary tools without annular handles. The cleaning liquid sprayed from the spray pipe 2 will fall onto the holding funnel. The veterinary tools in the placing funnel 5 are cleaned, so as to clean the suspended and placed medical tools synchronously. The holding funnel 5 can be removed from the supporting frame 12 to take out the veterinary tools; the lower part of the frame 1 is provided with a collecting frame 6 located below the holding funnel 5, and the collecting frame 6 is used to collect the cleaning liquid that falls through the holding funnel 5; the upper part of the frame 1 is provided with two coarse hair rollers 72 opposite to each other on the left and right for brushing veterinary tools, and the coarse hair rollers 72 are driven to reciprocate by a movable driving group installed on the frame 1, and the two coarse hair rollers 72 are respectively located on the left and right sides of the two fine hair rollers 41, from The downward movement of the fine-hair roller 41 will also drive the multiple unfolded veterinary tools to move downward between the two coarse-hair rollers 72. At this time, the control active drive group drives the two coarse-hair rollers 72 to reciprocate and scrub the veterinary tools, and the two coarse-hair rollers 72 are respectively located on the upper side of the two containing funnels 5. During the reciprocating movement of the coarse-hair rollers 72, the veterinary tools in the containing funnel 5 are also scrubbed. Then, the same coarse-hair roller 72 is used to automatically scrub different tools suspended on the fine-hair roller 41 and contained in the containing funnel 5 in a diversified manner, thereby simplifying the structure and increasing the washable positions.

[0028] like Figure 2 As shown, it also includes a support baffle 42. The upper part of the frame 1 is connected to two front and rear opposite support baffles 42 for supporting the front and rear ends of the fine hair roller 41 respectively. The fine hair roller 41 will move up and will separate from the support baffle 42. The fine hair roller 41 will move down and be supported on the support baffle 42. The support baffle 42 can be used to both stably support the fine hair roller 41 and limit and shield the veterinary tools on the fine hair roller 41.

[0029] like Figure 3As shown in the figure, it further includes a lifting group 3 which includes a servo motor 31 installed on the frame 1. The output shaft of the servo motor 31 rotates through the frame 1. A first lead screw 32 is connected to the output shaft of the servo motor 31. A sliding column 33 which is slidably arranged in the middle of the vertical plate 11 is threadedly connected to the first lead screw 32. The sliding column 33 is in a T shape. Both fine hair rollers 41 are connected to the upper end of the sliding column 33. By controlling the servo motor 31 to drive the first lead screw 32 to rotate, the sliding column 33 can be driven to move up and down along the vertical plate 11, and the sliding column 33 will drive the suspended veterinary tools to move up and down between the two spray pipes 2 and the two thick hair rollers 72 through the fine hair rollers 41.

[0030] As Figure 1 and Figure 4 shown in the figure, the movable driving group includes two front and rear opposite sliding frames 71 slidably arranged on the frame 1. A thick hair roller 72 is arranged between the two sliding frames 71. The front and rear movement of the sliding frames 71 will drive the thick hair roller 72 to move back and forth to synchronously brush the veterinary tools suspended on the fine hair rollers 41 and placed on the feeding funnel 5. A cylinder 73 is installed on the frame 1, and the movable end of the cylinder 73 is connected to one of the two sliding frames 71; A fan-shaped protective frame 74 surrounding the thick hair roller 72 is connected between the two sliding frames 71, and the protective frame 74 is used to prevent accidental contact during work.

[0031] As Figure 1 , Figure 4 and Figure 5 shown in the figure, the movable driving group further includes a spatial cam 75 connected to the front end of the thick hair roller 72. A spiral groove 750 is formed on one side of the spatial cam 75. The upper part of the frame 1 is connected with a resisting rod 77 which is in contact and cooperation with the spiral groove 750 through a support block 76. The thick hair roller 72 is rotatably arranged on the sliding frame 71. During the process of the sliding frame 71 driving the thick hair roller 72 to move back and forth, since the resisting rod 77 will squeeze the spiral groove 750 on the spatial cam 75, the spatial cam 75 will also drive the thick hair roller 72 to rotate, so as to fully brush the veterinary tools.

[0032] As Figure 6As shown, it also includes a partition 51 connected to the middle of the storage funnel 5. The partition 51 is perpendicular to the coarse hair roller 72. The partition 51 divides the storage space in the upper part of the storage funnel 5 into two parts, so that different types of veterinary tools can be placed separately. The storage funnel 5 is in a concave shape. The bottom of the storage funnel 5 is a leakage hole part 53. The cleaning liquid during the cleaning of veterinary tools will fall through the leakage hole part 53 into the collection box 6. The side of the storage funnel 5 close to the spray pipe 2 is a diversion part 52. Part of the cleaning liquid sprayed by the spray pipe 2 will flow towards the leakage hole part 53 through the diversion part 52. The side of the storage funnel 5 far from the spray pipe 2 is a debris discharge part 54. Debris discharge holes are opened on the debris discharge part 54. The debris discharge holes on the debris discharge part 54 are larger than the leakage holes on the leakage hole part 53. When the coarse hair roller 72 reciprocates to brush the veterinary tools on the leakage hole part 53, some impurities will be pushed by the coarse hair roller 72 to fall from the debris discharge holes, thus avoiding blocking the leakage hole part 53.

[0033] As Figure 6 and Figure 7 As shown, it also includes a first slider 81. An L-shaped groove is opened on the support frame 12. Both the front and rear sides of the storage funnel 5 are connected with first sliders 81 slidably arranged on the L-shaped groove of the support frame 12. Two second sliders 82 opposite to each other left and right slide on the front and rear sides of the support frame 12. A connecting rod 83 is rotatably connected between the second slider 82 and the first slider 81. Initially, the storage funnel 5 drives the veterinary tools to approach the coarse hair roller 72 for brushing. If it is necessary to move the storage funnel 5 out of the support frame 12 to pick up and place veterinary tools, then the two second sliders 82 opposite to each other left and right are moved away from each other. The second slider 82 will drive the first slider 81 to move down along the L-shaped groove on the support frame 12 through the connecting rod 83. At this time, the first slider 81 will drive the veterinary tools to move down away from the coarse hair roller 72 through the storage funnel 5. When the first slider 81 moves down to the threshold value, when the two second sliders 82 opposite to each other left and right continue to move away from each other, they will drive the first sliders 81 on the left and right sides to move away from each other through the connecting rod 83. In this way, the two storage funnels 5 move away from each other and move out of the support frame 12. On the contrary, when the two second sliders 82 on the left and right approach each other, the storage funnel 5 will reset. In this way, the two storage funnels 5 are synchronously unfolded and retracted, with a high degree of automation. The two second sliders 82 opposite to each other left and right are driven by a linear drive group arranged on the frame 1 to move away from each other.

[0034] As Figure 7 and Figure 8As shown in the figure, the linear drive group includes a second lead screw 91. Two pairs of left and right opposite second lead screws 91 are rotatably arranged on the front and rear sides of the frame 1. The left and right opposite second lead screws 91 are respectively threadedly connected to the left and right opposite second sliders 82. When the left and right opposite second lead screws 91 rotate synchronously, the left and right opposite second sliders 82 will move towards each other. Two pairs of front and rear opposite rotating shafts 92 are rotatably arranged on the vertical plate 11. The upper ends of the rotating shafts 92 and the ends of the two opposite second lead screws 91 close to each other are both connected with bevel gears 93. The bevel gears 93 of the two opposite second lead screws 91 are meshed with the bevel gears 93 on the rotating shafts 92. In this way, when the rotating shafts 92 rotate, they will synchronously drive the two second lead screws 91 to rotate through the meshing of the bevel gears 93. The rotating shafts 92 and the output shaft of the servo motor 31 are driven by a synchronous belt group 94. The synchronous belt groups 94 on the two rotating shafts 92 are staggered up and down. Therefore, when controlling the servo motor 31 to drive the first lead screw 32 to move the fine hair roller 41 upward, the servo motor 31 will also drive the rotating shafts 92 to rotate through the synchronous belt group 94. Thus, when the fine hair roller 41 moves upward, the two storage funnels 5 will be unfolded synchronously, which is convenient for synchronously taking and placing veterinary tools in two places. Similarly, when the fine hair roller 41 moves downward, the two storage funnels 5 will be retracted synchronously.

[0035] Obviously, the embodiments described above are only a part of the embodiments of the present invention, rather than all the embodiments. They only represent the preferred embodiments of the present invention, and the description is relatively specific and detailed. However, it should not be construed as a limitation to the scope of the patent of the present invention.

[0036] It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations, quantity increases or decreases, improvements and substitutions can be made. Therefore, based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

Claims

1. An apparatus for automatically cleaning veterinary tools, characterized in that, It includes a frame (1) and two spray pipes (2) installed on the upper part of the frame (1). The nozzles of the two spray pipes (2) are inclined towards the direction of approaching each other. Inside the frame (1), a lifting group (3) is provided through a connected vertical plate (11). The movable end of the lifting group (3) is connected with two fine hair rollers (41) located between the two spray pipes (2). A receiving funnel (5) located below the spray pipes (2) is placed on the frame (1) through a connected support frame (12). A collection box (6) is provided at the lower part of the frame (1) and located below the receiving funnel (5). Two thick hair rollers (72) are provided at the upper part of the frame (1). The thick hair rollers (72) are driven to reciprocate by a movable drive group installed on the frame (1). The two thick hair rollers (72) are respectively located on both sides of the two fine hair rollers (41), and the two thick hair rollers (72) are respectively located on the upper sides of the two receiving funnels (5).

2. The device for automatically cleaning veterinary tools according to claim 1, characterized in that, It further includes a support baffle (42). Two support baffles (42) for respectively supporting the two ends of the fine hair roller (41) are connected to the upper part of the frame (1).

3. The device for automatically cleaning veterinary tools according to claim 2, characterized in that, It further includes that the lifting group (3) includes a servo motor (31) installed on the frame (1). A first lead screw (32) is connected to the output shaft of the servo motor (31). A sliding column (33) that is threadedly connected to the first lead screw (32) and slides on the vertical plate (11) is provided. The two fine hair rollers (41) are both connected to the upper end of the sliding column (33).

4. The device for automatically cleaning veterinary tools according to claim 3, characterized in that, The movable drive group includes two sliding frames (71) slidably arranged on the frame (1). A thick hair roller (72) is provided between the two sliding frames (71). A cylinder (73) is installed on the frame (1). The sliding frame (71) is connected with a fan-shaped protective frame (74) surrounding the thick hair roller (72).

5. The device for automatically cleaning veterinary tools according to claim 4, characterized in that, The movable drive group further includes a spatial cam (75) connected to the end of the thick hair roller (72). A spiral groove (750) is formed on one side of the spatial cam (75). A resisting rod (77) that is in contact and cooperation with the spiral groove (750) is connected to the frame (1) through a support block (76). The thick hair roller (72) is rotatably arranged on the sliding frame (71).

6. The device for automatically cleaning veterinary tools according to claim 5, characterized in that, It further includes a partition (51) connected to the middle of the receiving funnel (5). The partition (51) divides the receiving space at the upper part of the receiving funnel (5). The shape of the receiving funnel (5) is concave. The bottom of the receiving funnel (5) is a leakage hole part (53). The side of the receiving funnel (5) close to the spray pipe (2) is a diversion part (52). The side of the receiving funnel (5) far from the spray pipe (2) is a waste discharging part (54). A waste discharging hole is formed on the waste discharging part (54).

7. The device for automatically cleaning veterinary tools according to claim 6, characterized in that, It further includes a first slider (81). An L-shaped groove is formed on the support frame (12). Both sides of the storage funnel (5) are connected with the first slider (81) slidably arranged on the L-shaped groove of the support frame (12). Two opposite second sliders (82) are slid on both sides of the support frame (12). A connecting rod (83) is rotatably arranged between the second slider (82) and the first slider (81). The two opposite second sliders (82) are driven by a linear drive group arranged on the frame (1) to move away from each other.

8. The device for automatically cleaning veterinary tools according to claim 7, characterized in that, The linear drive group includes a second lead screw (91). Two opposite second lead screws (91) are rotatably arranged on both sides of the frame (1). The two opposite second lead screws (91) are respectively threadedly connected with the two opposite second sliders (82). Two opposite rotating shafts (92) are rotatably arranged on the vertical plate (11). Bevel gears (93) are respectively connected to the ends of the rotating shaft (92) and the ends of the two opposite second lead screws (91). The bevel gears (93) of the two opposite second lead screws (91) are meshed with the bevel gears (93) on the rotating shaft (92). The rotating shaft (92) is driven by a synchronous belt group (94) to be connected with the output shaft of the servo motor (31).

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