Veterinary tool cleaning equipment for animal husbandry veterinarian

By introducing spraying, intermittent and mobile mechanisms into the veterinary tool cleaning equipment, the problem of dirt on the surface of the tool is left in disinfectant water, achieving more efficient cleaning and drying effects, and improving the convenience of the equipment and disinfection effect.

CN120286403AInactive Publication Date: 2025-07-11TIANZHU TIBETAN AUTONOMOUS COUNTY ANIMAL HUSBANDRY TECH PROMOTION STATION (TIANZHU WHITE YAK BREEDING EXPERIMENTAL FIELD)
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510318172.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-07-11
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When used in existing animal husbandry and veterinary tool cleaning equipment, dirt on the surface of the tool is easily retained in the disinfection water, resulting in a reduced disinfection effect and some dirt may float on the surface, increasing the risk of the user bringing out dirt again.

Method used

A veterinary tool cleaning equipment including a spraying mechanism, a batch mechanism and a moving mechanism is designed. The reciprocating swing of the cleaning nozzle and the intermittent rotation of the hollow placement box are realized through the spraying mechanism. Combined with the reciprocating movement of the moving mechanism and the fan blade action of the drying mechanism, it ensures effective cleaning and disinfection of the dirt on the surface of the tool.

Benefits of technology

The scope and efficiency of cleaning and disinfection are improved, ensuring that the dirt on the surface of the tool is completely removed, and quickly dried through the drying mechanism, improving the practicality and cleaning effect of the device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120286403A_ABST
    Figure CN120286403A_ABST
Patent Text Reader

Abstract

The invention discloses veterinary tool cleaning equipment for animal husbandry veterinarians, and relates to the technical field of veterinary tool cleaning equipment.The veterinary tool cleaning equipment comprises a cleaning box, four supporting legs are arranged below the cleaning box, a box door capable of being opened and closed is arranged on the front side of the cleaning box, a handle is arranged on the box door, a drainage pipe is connected to the portion, below the box door, of the cleaning box in a penetrating mode, and a valve is arranged in the drainage pipe; a hollowed-out containing box is movably arranged in the cleaning box, and a filter plate is detachably arranged on the hollowed-out containing box through bolts. A spraying mechanism for cleaning and disinfecting veterinary tools is arranged in the cleaning box above the filter plate; an intermittent mechanism for driving the hollowed-out placing box to intermittently rotate is arranged between the cleaning box and the hollowed-out placing box, and the intermittent mechanism is driven by a spraying mechanism; a moving mechanism for driving the hollow placing box to reciprocate is arranged on one side of the intermittent mechanism, and the moving mechanism is driven by the intermittent mechanism; the device is simple and reliable in structure, good in veterinary tool cleaning effect, convenient to control and suitable for popularization.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of veterinary tool cleaning equipment, and particularly relates to a veterinary tool cleaning equipment for livestock and veterinary medicine. Background Art

[0002] Animal husbandry is a production process in which domesticated animals are artificially raised and bred so that they can convert plant energy such as forage and feed into animal energy to obtain livestock products such as meat, eggs, milk, wool, cashmere, hides, silk, and medicinal materials; a veterinarian is a doctor who prevents, diagnoses, and treats diseases in animals. During the diagnosis and treatment process, a variety of tools are needed to assist in the treatment. After using the tools, they need to be cleaned and disinfected. An existing veterinary tool cleaning equipment for livestock and veterinary medicine includes a cleaning tank. A placement box for placing veterinary tools is movably arranged in the cleaning tank. A lifting assembly for driving the placement box to lift in the cleaning tank is arranged on the cleaning tank. A stirring assembly for agitating the disinfectant water in the cleaning tank to automatically clean veterinary tools is arranged on the bottom inner wall of the cleaning tank. A drying assembly for drying the veterinary tools after cleaning is arranged on the cleaning tank. A vibration assembly for driving the veterinary tools in the placement box to vibrate and dry is also arranged on the cleaning tank. The structure of the present invention is reasonably designed, easy to operate, and has good cleaning and disinfection effects. It can not only facilitate the taking out of veterinary tools, but also dry and disinfect the veterinary tools after cleaning. When the above-mentioned veterinary tool cleaning equipment for livestock and veterinary medicine is in use, since the surface of the used veterinary tools is bound to have dirt, such as blood stains, animal skin tissues, etc., the equipment places the veterinary tools through the placement box and then immerses the whole in the disinfectant water for disinfection. In this way, the dirt on the tool surface will remain in the disinfectant water, thus polluting the disinfectant water and reducing the disinfection effect of the tool. And some dirt will float on the surface of the disinfectant water. In this way, when the user takes out the tool, it is very likely that the dirt will be attached to the tool and taken out again, reducing the convenience of use of the device. Based on this, the present invention provides a veterinary tool cleaning equipment for livestock and veterinary medicine to solve the problems raised in the above background art. Summary of the Invention

[0003] The present invention aims at the above problems and provides a veterinary tool cleaning equipment for livestock and veterinary medicine, which solves the problems that when the existing veterinary tool cleaning equipment for livestock and veterinary medicine is in use, the dirt on the tool surface will remain in the disinfectant water, thus polluting the disinfectant water and reducing the disinfection effect of the tool, and some dirt will float on the surface of the disinfectant water. In this way, when the user takes out the tool, it is very likely that the dirt will be attached to the tool and taken out again.

[0004] The technical solution of the present invention is: a veterinary tool cleaning device for livestock and veterinary use, including a cleaning box, support legs, a drain pipe, a box door, a handle, bolts, a hollow placement box, and a filter plate; Four support legs are respectively provided under the cleaning box. A box door that can be opened and closed is provided on the front side of the cleaning box. A handle is provided on the box door. A drain pipe is connected through the cleaning box below the box door, and a valve is provided in the drain pipe; A hollow placement box is movably provided in the cleaning box, and a filter plate is detachably provided on the hollow placement box through bolts; A spraying mechanism for cleaning and disinfecting veterinary tools is provided in the cleaning box above the filter plate; An intermittent mechanism for driving the intermittent rotation of the hollow placement box is provided between the cleaning box and the hollow placement box, and the intermittent mechanism is driven by the spraying mechanism; A moving mechanism for driving the reciprocating movement of the hollow placement box is provided on one side of the intermittent mechanism, and the moving mechanism is driven by the intermittent mechanism; A drying mechanism for drying veterinary tools is provided in the cleaning box below the hollow placement box, and the drying mechanism is driven by the intermittent mechanism.

[0005] Further, the spraying mechanism includes a cleaning spray head, a first driving member, a first rotating shaft, an L-shaped plate, a first disc, a second rotating shaft, a sliding sleeve, a third rotating shaft, a first rotating rod, and a water distribution pipe; A water distribution pipe is provided in the cleaning box above the filter plate. Both ends of the water distribution pipe rotatably penetrate the inner wall of the cleaning box and are vertically connected to the first ends of the first rotating rods. One end of one of the water distribution pipes penetrates the first end of the first rotating rod and is externally connected to a disinfectant tank through a hose. A third rotating shaft is provided between the second ends of the two first rotating rods, and a sliding sleeve is slidably sleeved on the third rotating shaft; A vertical plate of an L-shaped plate is vertically connected to the cleaning box behind the third rotating shaft. A first driving member is provided on the horizontal plate of the L-shaped plate. The output end of the first driving member is connected to the first end of a first rotating shaft. The second end of the first rotating shaft rotatably penetrates the horizontal plate of the L-shaped plate and is sleeved with a first disc. A second rotating shaft slidably penetrates the eccentric position of the first disc, and one end of the second rotating shaft is connected to the sliding sleeve; The first rotating shaft drives the intermittent mechanism to work through rotation.

[0006] Further, the intermittent mechanism includes a telescopic rod, a first bevel gear, a second bevel gear, a fixing plate, a fourth rotating shaft, a first sprocket, a first chain, a second sprocket, a fifth rotating shaft, a second disc, a sliding column, a tooth groove, a third disc, teeth, a rhombic block, a sixth rotating shaft, and a seventh rotating shaft; A first bevel gear is sleeved on the first rotating shaft between the horizontal plate of the L-shaped plate and the first disc. A fixing plate is vertically connected to the lower part of the horizontal plate of the L-shaped plate on one side of the first bevel gear. A fourth rotating shaft rotatably penetrates through the fixing plate. A second bevel gear is sleeved on the first end of the fourth rotating shaft. The second bevel gear is meshed and connected with the first bevel gear. A first sprocket is sleeved on the second end of the fourth rotating shaft. One side of the hollow placing box is connected to the first end of a telescopic rod, and the second end of the telescopic rod is rotatably connected to the inner wall of the cleaning box. The other side of the hollow placing box is connected to the first end of a seventh rotating shaft. The first end of a sixth rotating shaft slidably penetrates through the second end of the seventh rotating shaft. The sixth rotating shaft drives the seventh rotating shaft to rotate. The second end of the sixth rotating shaft rotatably penetrates through the inner wall of the cleaning box and is sleeved with a third disc. A plurality of teeth are provided on both the upper and lower outer sides of the third disc. A diamond-shaped block is provided on the front side of the third disc. A second disc is movably provided at the rear sides of two teeth located at the rear. The first end of a fifth rotating shaft is connected to the second disc, and the second end of the fifth rotating shaft is rotatably connected to the cleaning box. A plurality of tooth grooves meshing with the plurality of teeth are provided on the outer side of the second disc. A sliding column is provided on the second disc in front of the plurality of tooth grooves. The two ends of the sliding column are detachably connected to the two ends of the diamond-shaped block respectively. A second sprocket is sleeved on the fifth rotating shaft between the second disc and the cleaning box. A first chain meshing with the first sprocket is provided on the second sprocket and the first sprocket. The sixth rotating shaft works through a rotation driving and moving mechanism. The fifth rotating shaft works through a rotation driving and drying mechanism.

[0007] Further, the moving mechanism includes a fourth disc, a toothed ring, an eighth rotating shaft, a gear, a first rotating column, a second rotating rod, a second rotating column, and a fifth disc. A toothed ring is provided on the inner wall of the cleaning box on the outer side of the sixth rotating shaft. A fourth disc is sleeved on the sixth rotating shaft inside the toothed ring. The first end of an eighth rotating shaft is rotatably connected to an eccentric position of the fourth disc. A gear is sleeved on the second end of the eighth rotating shaft. The gear is meshed and connected with the toothed ring. The first end of a first rotating column is rotatably connected to an eccentric position of the gear. The second end of the first rotating column is hinged to the first end of a second rotating rod. A fifth disc is sleeved on the seventh rotating shaft on the other side of the hollow placing box. The first end of a second rotating column is rotatably connected to an eccentric position on one side of the fifth disc close to the gear. The second end of the second rotating rod is hinged to the second end of the second rotating column.

[0008] Further, the drying mechanism includes a fan blade, a third sprocket, a fourth sprocket, a second chain, a reciprocating lead screw, a slider, and a second driving member. A slider is provided in the cleaning box below the hollow placement box, and a reciprocating screw is threaded through the slider. Both ends of the reciprocating screw are rotatably connected to the inner wall of the cleaning box respectively, and one end of the reciprocating screw rotates through the inner wall of the cleaning box and is sleeved with a fourth sprocket; a third sprocket is sleeved on the fifth rotating shaft between the cleaning box and the second sprocket, and a second chain meshing with the third sprocket and the fourth sprocket is provided; The slider is provided with a second driving member, and output ends of the second driving member are respectively connected to a plurality of fan blades.

[0009] Furthermore, the second driving member and the first driving member are both motors.

[0010] Furthermore, a through slot is provided in the seventh rotating shaft, and a convex strip matching with the through slot is provided on the sixth rotating shaft, and the convex strip is slidably connected and arranged in the through slot.

[0011] Advantages of the present invention: The present invention provides a spraying mechanism, which realizes the swing of the cleaning nozzle for reciprocating cleaning and disinfection of the tools between the hollow placement box and the filter plate, thereby improving the scope and effect of cleaning and disinfection; the intermittent mechanism is provided, which realizes the swing of the cleaning nozzle for reciprocating cleaning and disinfection of the tools between the hollow placement box and the filter plate, thereby improving the scope and effect of cleaning and disinfection; the intermittent rotation of the tools between the hollow placement box and the filter plate is used for intermittent flipping cleaning and disinfection of the tools, thereby improving the scope and effect of cleaning and disinfection, and multiple positions of the veterinary tools placed between the hollow placement box and the filter plate can be sprayed with disinfectant water, thereby increasing the efficiency of disinfection; the moving mechanism is provided, which realizes the swing of the cleaning nozzle for reciprocating cleaning and disinfection of the tools between the hollow placement box and the filter plate, thereby improving the scope and effect of cleaning and disinfection, and the hollow placement box and the filter plate can be reciprocated. The intermittent rotation of the tools between the filter plates is used for intermittently turning over the tools for cleaning and disinfection, while the reciprocating left and right movement and shaking of the tools between the hollow placement box and the filter plate is used to shake and clean the dirt on the surface of the veterinary tools, and drive the disinfectant water to move dynamically on the surface of the veterinary tools, further improving the efficiency of disinfection, and can fully disinfect them; by setting up a drying mechanism, the intermittent rotation of the tools between the hollow placement box and the filter plate is achieved, and the reciprocating left and right movement and shaking of the tools between the hollow placement box and the filter plate is used to throw off the disinfectant water adhered to the surface of the veterinary tools, while the reciprocating left and right movement of the fan blades is used to increase the drying range and drying effect of the tools between the hollow placement box and the filter plate, thereby increasing the practicability of the device; the present invention has a simple and reliable structure, a good cleaning effect on veterinary tools, is easy to control, and is suitable for promotion.

[0012] In addition to the above-described objects, features and advantages, the present invention has other objects, features and advantages. The present invention will be further described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The accompanying drawings, which form a part of this application, are used to provide a further understanding of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention.

[0014] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the installation of the hollow placement box of the present invention; Figure 3 is a schematic diagram of the installation of the cleaning nozzle of the present invention; Figure 4 is a schematic diagram of the installation of the first sprocket of the present invention; Figure 5 is a schematic diagram of the installation of the fourth disc of the present invention; Figure 6 is a schematic diagram of the installation of the second disc of the present invention.

[0015] Reference numerals: 1 is a cleaning tank, 101 is a support leg, 102 is a drain pipe, 103 is a box door, 104 is a handle, 105 is a telescopic rod, 106 is a bolt, 2 is a cleaning nozzle, 21 is a first driving member, 22 is a first rotating shaft, 23 is an L-shaped plate, 24 is a first disc, 25 is a second rotating shaft, 26 is a sliding sleeve, 27 is a third rotating shaft, 28 is a first rotating rod, 29 is a water distribution pipe, 3 is a hollow placement box, 31 is a first bevel gear, 32 is a second bevel gear, 33 is a fixing plate, 34 is a fourth rotating shaft, 35 is a first sprocket, 36 is a first chain, 37 is a second sprocket, 38 is a fifth rotating shaft, 39 is a second disc, 310 is a sliding column, 311 is a tooth groove, 312 is a third disc, 313 is a tooth, 314 is a diamond block, 315 is a sixth rotating shaft, 316 is a seventh rotating shaft, 317 is a rib, 4 is a filter plate, 41 is a fourth disc, 42 is a toothed ring, 43 is an eighth rotating shaft, 44 is a gear, 45 is a first rotating column, 46 is a second rotating rod, 47 is a second rotating column, 48 is a fifth disc, 5 is a fan blade, 51 is a third sprocket, 52 is a fourth sprocket, 53 is a second chain, 54 is a reciprocating lead screw, 55 is a slider, 56 is a second driving member. Detailed embodiments

[0016] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0017] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and 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 therefore should not be construed as a limitation to the present invention.

[0018] Reference Figures 1 to 6 , a veterinary tool cleaning device for livestock veterinarians, including a cleaning box 1, support legs 101, a drain pipe 102, a box door 103, a handle 104, bolts 106, a hollow placement box 3, and a filter plate 4; Four support legs 101 are respectively installed under the cleaning box 1; the cleaning box 1 is used for installing the support legs 101; the support legs 101 are used for supporting the cleaning box 1, and one end of the front side of the cleaning box 1 is installed with an openable and closable box door 103 through a hinge; a commercially available locking member is installed between the other end of the front side of the cleaning box 1 and the box door 103, and a handle 104 is installed on the box door 103; the box door 103 and the handle 104 cooperate to open and close the cleaning box 1, and a drain pipe 102 is connected through the cleaning box 1 below the box door 103, and a valve is installed in the drain pipe 102; the drain pipe 102 and the valve cooperate to discharge sewage; A hollow placement box 3 is movably installed in the cleaning box 1, and a filter plate 4 is detachably installed on the hollow placement box 3 through bolts 106; the hollow placement box 3, the filter plate 4 and the bolts 106 cooperate to fix veterinary tools; A spraying mechanism for cleaning and disinfecting veterinary tools is installed in the cleaning box 1 above the filter plate 4; An intermittent mechanism for driving the intermittent rotation of the hollow placement box 3 is installed between the cleaning box 1 and the hollow placement box 3, and the intermittent mechanism is driven by the spraying mechanism; A moving mechanism for driving the reciprocating movement of the hollow placement box 3 is installed on one side of the intermittent mechanism, and the moving mechanism is driven by the intermittent mechanism; A drying mechanism for drying veterinary tools is installed in the cleaning box 1 below the hollow placement box 3, and the drying mechanism is driven by the intermittent mechanism; The spraying mechanism includes a cleaning spray head 2, a first driving member 21, a first rotating shaft 22, an L-shaped plate 23, a first disc 24, a second rotating shaft 25, a sliding sleeve 26, a third rotating shaft 27, a first rotating rod 28, and a water distribution pipe 29; A water distribution pipe 29 is installed in the cleaning box 1 above the filter plate 4, and both ends of the water distribution pipe 29 rotatably penetrate through the inner wall of the cleaning box 1 and are vertically connected to the first end of the first rotating rod 28. One end of one of the water distribution pipes 29 penetrates through the first end of the first rotating rod 28 and is externally connected to a disinfectant tank through a hose. A third rotating shaft 27 is installed between the second ends of the two first rotating rods 28, and a sliding sleeve 26 is slidably installed on the third rotating shaft 27; A vertical connecting plate 23 vertical plate is connected to the cleaning box 1 on the rear side of the third rotating shaft 27. A first driving member 21 is installed on the horizontal plate of the L-shaped plate 23. The L-shaped plate 23 is used for installing the first driving member 21. The output end of the first driving member 21 is connected to the first end of the first rotating shaft 22. The second end of the first rotating shaft 22 rotatably penetrates the horizontal plate of the L-shaped plate 23 and is fixedly sleeved with a first disc 24. A second rotating shaft 25 is slidably penetrated through the eccentric position of the first disc 24. One end of the second rotating shaft 25 is connected to the sliding sleeve 26. The first rotating shaft 22 operates the intermittent mechanism through rotational drive. Preferably, the first driving member 21 drives the first rotating shaft 22 to rotate. The rotation of the first rotating shaft 22 drives the first disc 24 to rotate. The rotation of the first disc 24 drives the second rotating shaft 25 to revolve around the first rotating shaft 22. At this time, the second rotating shaft 25 reciprocally slides within the first disc 24 and does not disengage, and the two rotate relative to each other. Since the position of the water distribution pipe 29 is fixed, and both ends of the water distribution pipe 29 rotatably penetrate the inner wall of the cleaning box 1. Furthermore, the rotation of the second rotating shaft 25 drives the sliding sleeve 26 to revolve around the first rotating shaft 22 and slide on the third rotating shaft 27. The rotation of the sliding sleeve 26 drives the third rotating shaft 27 and the first rotating rod 28 to swing around the water distribution pipe 29. The swinging of the third rotating shaft 27 and the first rotating rod 28 drives the water distribution pipe 29 to swing. The swinging of the water distribution pipe 29 drives the cleaning nozzle 2 to swing. The swinging of the cleaning nozzle 2 is used for reciprocally cleaning and disinfecting the tools between the hollow placement box 3 and the filter plate 4, improving the range and effect of cleaning and disinfection. The intermittent mechanism includes a telescopic rod 105, a first bevel gear 31, a second bevel gear 32, a fixing plate 33, a fourth rotating shaft 34, a first sprocket 35, a first chain 36, a second sprocket 37, a fifth rotating shaft 38, a second disc 39, a sliding column 310, a tooth groove 311, a third disc 312, a tooth 313, a rhombic block 314, a sixth rotating shaft 315, a seventh rotating shaft 316. A first bevel gear 31 is fixedly sleeved on the first rotating shaft 22 between the horizontal plate of the L-shaped plate 23 and the first disc 24. A fixing plate 33 is vertically connected under the horizontal plate of the L-shaped plate 23 on one side of the first bevel gear 31. A fourth rotating shaft 34 rotatably penetrates through the fixing plate 33. The fixing plate 33 is used for installing the fourth rotating shaft 34. A second bevel gear 32 is fixedly sleeved on the first end of the fourth rotating shaft 34. The second bevel gear 32 is meshed and connected with the first bevel gear 31. A first sprocket 35 is fixedly sleeved on the second end of the fourth rotating shaft 34. A first end of a telescopic rod 105 is connected to one side of the hollow placement box 3; the telescopic rod 105 is used to ensure the stable movement of the hollow placement box 3, the second end of the telescopic rod 105 is rotatably connected to the inner wall of the cleaning box 1, and a first end of a seventh rotating shaft 316 is connected to the other side of the hollow placement box 3, and a first end of a sixth rotating shaft 315 is slidably penetrated in the second end of the seventh rotating shaft 316, and the sixth rotating shaft 315 drives the seventh rotating shaft 316 to rotate, and the second end of the sixth rotating shaft 315 rotates through the inner wall of the cleaning box 1 and is provided with a third disc 312, and a plurality of teeth 313 are installed on the upper and lower outer sides of the third disc 312, and a rhombus block 314 is installed on the front side of the third disc 312; A second disc 39 is movably mounted behind the two teeth 313 at the rear side, a first end of a fifth rotating shaft 38 is connected to the second disc 39, a second end of the fifth rotating shaft 38 is rotatably connected to the cleaning box 1, a plurality of tooth grooves 311 meshing with the teeth 313 are arranged on the outer side of the second disc 39, a sliding column 310 is mounted on the second disc 39 in front of the plurality of tooth grooves 311, and the sliding column 310 is detachably connected to the two ends of the rhombus block 314 respectively; A second sprocket 37 is fixedly sleeved on the fifth rotating shaft 38 between the second disc 39 and the cleaning box 1, and a first chain 36 meshing with the second sprocket 37 and the first sprocket 35 is installed; the first chain 36 is used to connect the second sprocket 37 and the first sprocket 35; The sixth rotating shaft 315 drives the moving mechanism to work by rotating; The fifth rotating shaft 38 drives the drying mechanism to work by rotating; Preferably, the first rotating shaft 22 rotates to drive the first bevel gear 31 to rotate, the first bevel gear 31 rotates to drive the second bevel gear 32 to rotate, the second bevel gear 32 rotates to drive the fourth rotating shaft 34 to rotate, the fourth rotating shaft 34 rotates to drive the first sprocket 35 to rotate, the first sprocket 35 rotates to drive the second sprocket 37 to rotate, the second sprocket 37 rotates to drive the fifth rotating shaft 38 to rotate, the fifth rotating shaft 38 rotates to drive the second disc 39 to rotate, the second disc 39 rotates to drive the sliding column 310 to rotate, the sliding column 310 rotates to make the teeth 313 on the third disc 312 mesh with the tooth groove 311 by toggling the diamond block 314, and continues to rotate, and the teeth 313 and the tooth groove 311 are disengaged; At this time, the outer wall of the second disc 39 is stuck between the two teeth 313 located at the rear side close to the outer end of the second disc 39, limiting the position of the third disc 312 after rotating 180 degrees; Rotate in this way, so that the third disc 312 rotates intermittently. The intermittent rotation of the third disc 312 drives the intermittent rotation of the sixth rotating shaft 315. The intermittent rotation of the sixth rotating shaft 315 drives the intermittent rotation of the seventh rotating shaft 316. The intermittent rotation of the seventh rotating shaft 316 drives the intermittent rotation of the tools between the hollow placement box 3 and the filter plate 4. The intermittent rotation of the tools between the hollow placement box 3 and the filter plate 4 is used to intermittently turn, wash and disinfect the tools, so that multiple positions of the veterinary tools placed between the hollow placement box 3 and the filter plate 4 can be sprayed with disinfectant water, thereby increasing the disinfection efficiency; The moving mechanism includes a fourth disc 41, a toothed ring 42, an eighth rotating shaft 43, a gear 44, a first rotating column 45, a second rotating rod 46, a second rotating column 47, and a fifth disc 48; A toothed ring 42 is installed on the inner wall of the cleaning box 1 outside the sixth rotating shaft 315. A fourth disc 41 is fixedly sleeved on the sixth rotating shaft 315 inside the toothed ring 42. The first end of an eighth rotating shaft 43 is rotatably connected to an eccentric position of the fourth disc 41. A gear 44 is fixedly sleeved on the second end of the eighth rotating shaft 43. The gear 44 is meshed with the toothed ring 42. The first end of a first rotating column 45 is rotatably connected to an eccentric position of the gear 44. The first end of a second rotating rod 46 is hinged to the second end of the first rotating column 45; A fifth disc 48 is fixedly sleeved on the seventh rotating shaft 316 on the other side of the hollow placement box 3. The first end of a second rotating column 47 is rotatably connected to an eccentric position on one side of the fifth disc 48 close to the gear 44. The second end of the second rotating rod 46 is hinged to the second end of the second rotating column 47; Preferably, the intermittent rotation of the sixth rotating shaft 315 drives the intermittent rotation of the fourth disc 41. Since a toothed ring 42 is installed on the inner wall of the cleaning box 1 outside the sixth rotating shaft 315; and the first end of an eighth rotating shaft 43 is rotatably connected to an eccentric position of the fourth disc 41. A gear 44 is fixedly sleeved on the second end of the eighth rotating shaft 43. The gear 44 is meshed with the toothed ring 42. The first end of a first rotating column 45 is rotatably connected to an eccentric position of the gear 44; The intermittent rotation of the fourth disc 41 drives the gear 44 to revolve and rotate around the sixth rotating shaft 315. The revolution and rotation of the gear 44 around the sixth rotating shaft 315 drives the first rotating column 45 to rotate. The rotation of the first rotating column 45 drives the rotation of the first end of the second rotating rod 46. The rotation of the first end of the second rotating rod 46 drives the rotation of the second end of the second rotating rod 46 and its reciprocating left - right movement. The reciprocating left - right movement of the second end of the second rotating rod 46 drives the second rotating column 47 to reciprocate left - right. The reciprocating left - right movement of the second rotating column 47 drives the fifth disc 48 to reciprocate left - right. The reciprocating left - right movement of the fifth disc 48 drives the seventh rotating shaft 316 to reciprocate left - right. The reciprocating left - right movement of the seventh rotating shaft 316 drives the tool between the hollow placement box 3 and the filter plate 4 to reciprocate left - right. The reciprocating left - right movement of the tool between the hollow placement box 3 and the filter plate 4 shakes to clean the dirt on the surface of the veterinary tool, and drives the disinfectant water to move dynamically on the surface of the veterinary tool, further improving the disinfection efficiency and enabling thorough cleaning; The drying mechanism includes a fan blade 5, a third sprocket 51, a fourth sprocket 52, a second chain 53, a reciprocating lead screw 54, a slider 55, and a second driving member 56; The slider 55 is slidably installed in the cleaning box 1 below the hollow placement box 3. The slider 55 is threadedly penetrated by the reciprocating lead screw 54. The two ends of the reciprocating lead screw 54 are respectively rotatably connected to the inner wall of the cleaning box 1. One end of the reciprocating lead screw 54 rotatably penetrates the inner wall of the cleaning box 1 and is fixedly sleeved with the fourth sprocket 52. A third sprocket 51 is fixedly sleeved on the fifth rotating shaft 38 between the cleaning box 1 and the second sprocket 37. The third sprocket 51 and the fourth sprocket 52 are installed with a meshing second chain 53. The second chain 53 is used to connect the third sprocket 51 and the fourth sprocket 52; The slider 55 is installed with a second driving member 56. The output ends of the second driving member 56 are respectively connected with a plurality of fan blades 5; Preferably, the rotation of the fifth rotating shaft 38 drives the third sprocket 51 to rotate. The rotation of the third sprocket 51 drives the fourth sprocket 52 to rotate. The rotation of the fourth sprocket 52 drives the reciprocating lead screw 54 to rotate. The rotation of the reciprocating lead screw 54 drives the slider 55 to reciprocate left - right. The reciprocating left - right movement of the slider 55 drives the second driving member 56 to reciprocate left - right. The reciprocating left - right movement of the second driving member 56 drives the fan blades 5 to reciprocate left - right. The reciprocating left - right movement of the fan blades 5 is used to increase the drying range and drying effect on the tool between the hollow placement box 3 and the filter plate 4, increasing the practicality of the device; Both the second driving member 56 and the first driving member 21 are commercially available motors; A through - groove is provided in the seventh rotating shaft 316. A rib 317 is installed on the sixth rotating shaft 315 and is slidably connected to the through - groove. The cooperation of the through - groove and the rib 317 ensures the smooth sliding of the sixth rotating shaft 315 in the seventh rotating shaft 316.

[0019] The method of using the present invention is as follows: when the veterinary tool needs to be cleaned, the staff places the veterinary tool between the hollow placement box 3 and the filter plate 4, fixes them with bolts 106, and then opens the first driving member 21 and the cleaning nozzle 2; The first driving member 21 drives the first rotating shaft 22 to rotate, the first rotating shaft 22 drives the first disc 24 to rotate, and the first disc 24 drives the second rotating shaft 25 to revolve around the first rotating shaft 22. At this time, the second rotating shaft 25 reciprocates and slides in the first disc 24 without being separated, and the two rotate relative to each other. Since the water distribution pipe 29 is fixed in position, and the two ends of the water distribution pipe 29 rotate respectively to penetrate the inner wall of the cleaning box 1; Furthermore, the second rotating shaft 25 rotates to drive the sliding sleeve 26 to revolve around the first rotating shaft 22 and slide on the third rotating shaft 27. The sliding sleeve 26 rotates to drive the third rotating shaft 27 and the first rotating rod 28 to swing around the water distribution pipe 29. The swinging of the third rotating shaft 27 and the first rotating rod 28 drives the water distribution pipe 29 to swing. The swinging of the water distribution pipe 29 drives the cleaning nozzle 2 to swing. The swinging of the cleaning nozzle 2 is used to reciprocately clean and disinfect the tools between the hollow placement box 3 and the filter plate 4, thereby improving the scope and effect of cleaning and disinfection. At the same time, the first rotating shaft 22 rotates to drive the first bevel gear 31 to rotate, the first bevel gear 31 rotates to drive the second bevel gear 32 to rotate, the second bevel gear 32 rotates to drive the fourth rotating shaft 34 to rotate, the fourth rotating shaft 34 rotates to drive the first sprocket 35 to rotate, the first sprocket 35 rotates to drive the second sprocket 37 to rotate, the second sprocket 37 rotates to drive the fifth rotating shaft 38 to rotate, the fifth rotating shaft 38 rotates to drive the second disc 39 to rotate, the second disc 39 rotates to drive the sliding column 310 to rotate, the sliding column 310 rotates to move the diamond block 314 so that the teeth 313 on the third disc 312 are meshed and connected with the tooth groove 311, and the sliding column 310 continues to rotate, and the teeth 313 and the tooth groove 311 are disengaged; At this time, the outer wall of the second disc 39 is stuck between the two teeth 313 located at the rear side close to the outer end of the second disc 39, limiting the position of the third disc 312 after rotating 180 degrees; Such rotation causes the third disc 312 to rotate intermittently, and the intermittent rotation of the third disc 312 drives the sixth rotating shaft 315 to rotate intermittently, and the intermittent rotation of the sixth rotating shaft 315 drives the seventh rotating shaft 316 to rotate intermittently, and the intermittent rotation of the seventh rotating shaft 316 drives the tools between the hollow placement box 3 and the filter plate 4 to rotate intermittently, and the intermittent rotation of the tools between the hollow placement box 3 and the filter plate 4 is used to intermittently turn over the tools for cleaning and disinfection, so that multiple positions of the veterinary tools placed between the hollow placement box 3 and the filter plate 4 can be sprayed with disinfectant, thereby increasing the efficiency of disinfection; At the same time, the intermittent rotation of the sixth rotating shaft 315 drives the fourth disc 41 to rotate intermittently, because a gear ring 42 is installed on the inner wall of the cleaning box 1 outside the sixth rotating shaft 315; The fourth disc 41 is rotatably connected to the first end of the eighth rotating shaft 43 at an eccentric position, the second end of the eighth rotating shaft 43 is fixedly sleeved with a gear 44, the gear 44 is meshed and connected with the gear ring 42, and the gear 44 is rotatably connected to the first end of the first rotating column 45 at an eccentric position; The fourth disc 41 rotates intermittently to drive the gear 44 to revolve and rotate around the sixth rotating shaft 315, the gear 44 revolves and rotates around the sixth rotating shaft 315 to drive the first rotating column 45 to rotate, the first rotating column 45 rotates to drive the first end of the second rotating rod 46 to rotate, the first end of the second rotating rod 46 rotates to drive the second end of the second rotating rod 46 to rotate and move back and forth left and right, the second end of the second rotating rod 46 moves back and forth left and right to drive the second rotating column 47 to move back and forth left and right, the second rotating column 47 moves back and forth left and right to drive the fifth disc 48 to move back and forth left and right, the fifth disc 48 moves back and forth left and right to drive the seventh rotating shaft 316 to move back and forth left and right, the seventh rotating shaft 316 moves back and forth left and right to drive the tool between the hollow placement box 3 and the filter plate 4 to move back and forth left and right, the tool between the hollow placement box 3 and the filter plate 4 moves back and forth left and right to shake and clean the dirt on the surface of the veterinary tool, and drives the disinfectant water to move dynamically on the surface of the veterinary tool, further improving the efficiency of disinfection, and can fully clean it; After cleaning is completed, the staff closes the cleaning nozzle 2 and opens the second driving member 56, and the second driving member 56 drives the fan blade 5 to rotate to dry the veterinary tool; At the same time, the tool between the hollow placement box 3 and the filter plate 4 rotates intermittently, and the tool between the hollow placement box 3 and the filter plate 4 moves back and forth and shakes left and right to shake off the disinfectant adhering to the surface of the veterinary tool; At the same time, the rotation of the fifth rotating shaft 38 drives the third sprocket 51 to rotate, the rotation of the third sprocket 51 drives the fourth sprocket 52 to rotate, the rotation of the fourth sprocket 52 drives the reciprocating screw 54 to rotate, the rotation of the reciprocating screw 54 drives the slider 55 to move back and forth left and right, the reciprocating left and right movement of the slider 55 drives the second driving member 56 to move back and forth left and right, the reciprocating left and right movement of the second driving member 56 drives the fan blades 5 to move back and forth left and right, the reciprocating left and right movement of the fan blades 5 is used to improve the drying range and drying effect of the tools between the hollow placement box 3 and the filter plate 4, thereby increasing the practicality of the device.

[0020] Through the provision of a spraying mechanism, the present invention realizes the reciprocating cleaning and disinfection of tools between the hollow placement box and the filter plate by the swinging of the cleaning nozzle, improving the scope and effect of cleaning and disinfection; through the provision of an intermittent mechanism, while realizing the reciprocating cleaning and disinfection of tools between the hollow placement box and the filter plate by the swinging of the cleaning nozzle, improving the scope and effect of cleaning and disinfection, the tools between the hollow placement box and the filter plate rotate intermittently for intermittent turning and cleaning and disinfection of the tools, so that multiple positions of the veterinary tools placed between the hollow placement box and the filter plate can be sprayed with disinfectant water, thereby increasing the disinfection efficiency; through the provision of a moving mechanism, while realizing the reciprocating cleaning and disinfection of tools between the hollow placement box and the filter plate by the swinging of the cleaning nozzle, improving the scope and effect of cleaning and disinfection, and the tools between the hollow placement box and the filter plate rotate intermittently for intermittent turning and cleaning and disinfection of the tools, the tools between the hollow placement box and the filter plate move reciprocally left and right and shake to shake off the dirt on the surface of the veterinary tools, and drive the disinfectant water to move dynamically on the surface of the veterinary tools, further improving the disinfection efficiency and enabling full disinfection; through the provision of a drying mechanism, while realizing the intermittent rotation of the tools between the hollow placement box and the filter plate, and the tools between the hollow placement box and the filter plate move reciprocally left and right and shake to shake off the disinfectant water adhering to the surface of the veterinary tools, the fan blades move reciprocally left and right to improve the drying scope and drying effect of the tools between the hollow placement box and the filter plate, increasing the practicality of the device; the structure of the present invention is simple and reliable, has a good cleaning effect on veterinary tools, is convenient to control, and is suitable for popularization.

[0021] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A veterinary tool cleaning device for veterinary use in animal husbandry, characterized in that, It includes a cleaning box (1), support legs (101), a drain pipe (102), a box door (103), a handle (104), bolts (106), a hollow placement box (3), and a filter plate (4); Four support legs (101) are respectively provided under the cleaning box (1). A box door (103) that can be opened and closed is provided on the front side of the cleaning box (1). A handle (104) is provided on the box door (103). A drain pipe (102) is connected through the cleaning box (1) below the box door (103), and a valve is provided in the drain pipe (102); A hollow placement box (3) is movably provided in the cleaning box (1), and a filter plate (4) is detachably provided on the hollow placement box (3) through bolts (106); A spraying mechanism for cleaning and disinfecting veterinary tools is provided in the cleaning box (1) above the filter plate (4); An intermittent mechanism for driving the intermittent rotation of the hollow placement box (3) is provided between the cleaning box (1) and the hollow placement box (3), and the intermittent mechanism is driven by the spraying mechanism; A moving mechanism for driving the reciprocating movement of the hollow placement box (3) is provided on one side of the intermittent mechanism, and the moving mechanism is driven by the intermittent mechanism; A drying mechanism for drying veterinary tools is provided in the cleaning box (1) below the hollow placement box (3), and the drying mechanism is driven by the intermittent mechanism.

2. The veterinary tool cleaning device for livestock and veterinary use according to claim 1, characterized in that: The spraying mechanism includes a cleaning spray head (2), a first driving member (21), a first rotating shaft (22), an L-shaped plate (23), a first disc (24), a second rotating shaft (25), a sliding sleeve (26), a third rotating shaft (27), a first rotating rod (28), and a water distribution pipe (29); A water distribution pipe (29) is provided in the cleaning box (1) above the filter plate (4). Both ends of the water distribution pipe (29) rotatably penetrate the inner wall of the cleaning box (1) and are vertically connected to the first ends of the first rotating rods (28). One end of the water distribution pipe (29) penetrates the first end of the first rotating rod (28) and is externally connected to a disinfectant tank through a hose. A third rotating shaft (27) is provided between the second ends of the two first rotating rods (28), and a sliding sleeve (26) is slidably sleeved on the third rotating shaft (27); A vertical plate of an L-shaped plate (23) is vertically connected to the cleaning box (1) behind the third rotating shaft (27). A first driving member (21) is provided on the horizontal plate of the L-shaped plate (23). The output end of the first driving member (21) is connected to the first end of a first rotating shaft (22). The second end of the first rotating shaft (22) rotatably penetrates the horizontal plate of the L-shaped plate (23) and is sleeved with a first disc (24). A second rotating shaft (25) slidably penetrates the eccentric position of the first disc (24), and one end of the second rotating shaft (25) is connected to the sliding sleeve (26); The first rotating shaft (22) drives the intermittent mechanism to work through rotation.

3. The veterinary tool cleaning device for livestock and veterinary use according to claim 2, characterized in that: The intermittent mechanism includes a telescopic rod (105), a first bevel gear (31), a second bevel gear (32), a fixing plate (33), a fourth rotating shaft (34), a first sprocket (35), a first chain (36), a second sprocket (37), a fifth rotating shaft (38), a second disc (39), a sliding column (310), a tooth groove (311), a third disc (312), a tooth (313), a diamond block (314), a sixth rotating shaft (315), and a seventh rotating shaft (316); A first bevel gear (31) is sleeved on a first rotating shaft (22) between the horizontal plate of the L-shaped plate (23) and the first disc (24). A fixing plate (33) is vertically connected under the horizontal plate of the L-shaped plate (23) on one side of the first bevel gear (31). A fourth rotating shaft (34) rotatably penetrates through the fixing plate (33). A second bevel gear (32) is sleeved on the first end of the fourth rotating shaft (34). The second bevel gear (32) is meshed and connected with the first bevel gear (31). A first sprocket (35) is sleeved on the second end of the fourth rotating shaft (34); One side of the hollow placing box (3) is connected to the first end of the telescopic rod (105). The second end of the telescopic rod (105) is rotatably connected to the inner wall of the cleaning box (1). The other side of the hollow placing box (3) is connected to the first end of a seventh rotating shaft (316). The first end of a sixth rotating shaft (315) slidably penetrates through the second end of the seventh rotating shaft (316). The sixth rotating shaft (315) drives the seventh rotating shaft (316) to rotate. The second end of the sixth rotating shaft (315) rotatably penetrates through the inner wall of the cleaning box (1) and is sleeved with a third disc (312). A plurality of teeth (313) are provided on both the upper and lower outer sides of the third disc (312). A diamond block (314) is provided on the front side of the third disc (312); A second disc (39) is movably provided behind the two teeth (313) at the rear side. The first end of a fifth rotating shaft (38) is connected to the second disc (39). The second end of the fifth rotating shaft (38) is rotatably connected to the cleaning box (1). A plurality of tooth grooves (311) meshed with the plurality of teeth (313) are provided on the outer side of the second disc (39). A sliding column (310) is provided on the second disc (39) in front of the plurality of tooth grooves (311). The sliding column (310) is detachably connected to both ends of the diamond block (314); A second sprocket (37) is sleeved on the fifth rotating shaft (38) between the second disc (39) and the cleaning box (1). A first chain (36) meshed with the first sprocket (35) is provided on the second sprocket (37) and the first sprocket (35); The sixth rotating shaft (315) drives the moving mechanism to work through rotation; The fifth rotating shaft (38) drives the drying mechanism to work through rotation.

4. The veterinary tool cleaning device for livestock and veterinary use according to claim 3, characterized in that: The moving mechanism includes a fourth disc (41), a toothed ring (42), an eighth rotating shaft (43), a gear (44), a first rotating column (45), a second rotating rod (46), a second rotating column (47), and a fifth disc (48); On the inner wall of the cleaning box (1) outside the sixth rotating shaft (315), a toothed ring (42) is provided. A fourth disc (41) is sleeved on the sixth rotating shaft (315) inside the toothed ring (42). The first end of an eighth rotating shaft (43) is rotatably connected to an eccentric position of the fourth disc (41). A gear (44) is sleeved on the second end of the eighth rotating shaft (43). The gear (44) is meshed and connected with the toothed ring (42). The first end of a first rotating column (45) is rotatably connected to an eccentric position of the gear (44). The second end of the first rotating column (45) is hinged to the first end of a second rotating rod (46). A fifth disc (48) is sleeved on a seventh rotating shaft (316) on the other side of the hollow placing box (3). The first end of a second rotating column (47) is rotatably connected to an eccentric position on one side of the fifth disc (48) close to the gear (44). The second end of the second rotating rod (46) is hinged to the second end of the second rotating column (47).

5. The veterinary tool cleaning device for livestock and veterinary use according to claim 3, characterized in that: The drying mechanism includes a fan blade (5), a third sprocket (51), a fourth sprocket (52), a second chain (53), a reciprocating lead screw (54), a slider (55), and a second driving member (56). A slider (55) is slidably arranged in the cleaning box (1) below the hollow placing box (3). The slider (55) is threadedly penetrated by a reciprocating lead screw (54). Two ends of the reciprocating lead screw (54) are respectively rotatably connected to the inner wall of the cleaning box (1). One end of the reciprocating lead screw (54) rotatably penetrates the inner wall of the cleaning box (1) and is sleeved with a fourth sprocket (52). A third sprocket (51) is sleeved on a fifth rotating shaft (38) between the cleaning box (1) and the second sprocket (37). A second chain (53) meshing with each other is arranged on the third sprocket (51) and the fourth sprocket (52). A second driving member (56) is arranged on the slider (55). Output ends of the second driving member (56) are respectively connected with a plurality of fan blades (5).

6. The veterinary tool cleaning device for livestock and veterinary use according to claim 5, characterized in that: Both the second driving member (56) and the first driving member (21) are motors.

7. The veterinary tool cleaning device for livestock and veterinary use according to claim 3, characterized in that: A through groove is arranged in the seventh rotating shaft (316). A rib (317) matched with the through groove is arranged on the sixth rotating shaft (315). The rib (317) is slidably connected in the through groove.