Disease pre-control detection device for livestock breeding and use method of disease pre-control detection device
By designing a disease pre-control and detection device for animal husbandry, and using the coordinated work of components such as guide grooves, opening and closing doors, screw frames and nozzle plates, the problem of low detection efficiency in the existing technology is solved, and efficient and accurate pre-control detection is achieved.
Patent Information
- Application Number
- CN202510630525.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-08-08
AI Technical Summary
The existing disease prevention and control testing measures in animal husbandry have not been systematically integrated, which affects the detection efficiency.
A disease pre-control and detection device for animal husbandry is designed, including a pre-control and detection box, which is equipped with guide grooves, opening and closing doors, transverse and longitudinal screw frames, nozzle plates, detection mechanisms, etc., through the coordinated work of these components, the partition operation of pre-control and detection is realized, and the detection accuracy and efficiency are improved.
The accuracy and efficiency of pre-controlled detection are improved, and debris is removed through the guide groove, the multi-angle spraying of the nozzle plate and the flexible adjustment of the detection mechanism are improved, which improves the stability and accuracy of the detection.
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Figure CN120446456A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of auxiliary equipment for animal husbandry, and in particular relates to a disease prevention and control detection device for animal husbandry and a method of using the same. Background Art
[0002] In animal husbandry, disease prevention and control are critical for ensuring animal health and improving production efficiency. Common disease prevention and control measures in existing technologies include regular health checks, such as regularly observing the animal's appearance, behavior, appetite, and excrement to promptly detect abnormalities and conduct laboratory tests. Blood, feces, and urine samples are collected to detect pathogens and assess the animal's health.
[0003] However, the existing disease prevention and control detection for animal husbandry is relatively simple in use, and multiple measures are not systematically integrated, which affects the efficiency of prevention and control detection.
[0004] Based on this, a disease prevention and control detection device for animal husbandry and a method of using the same are proposed. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to provide a disease prevention and control detection device for animal husbandry and a method of use thereof in view of the deficiencies of the above-mentioned prior art, so as to solve the problems raised in the above-mentioned background technology.
[0006] In order to solve the above technical problems, the technical solution adopted by the present invention is: In a first aspect, a disease pre-control detection device for animal husbandry includes a pre-control detection box, the pre-control detection box being an open box with openings on the top and both sides, and a first guide groove and a second guide groove movably connected to the openings on both sides of the pre-control detection box; The middle section of the pre-control detection box is symmetrically provided with two first opening and closing doors and two second opening and closing doors, and the inner cavity of the pre-control detection box is divided into a pre-control area and a detection area by the first opening and closing doors and the second opening and closing doors; The two vertical sides of the pre-control detection box are respectively provided with horizontal screw racks that pass through the pre-control area and the detection area. The vertically arranged linear nozzle plates are movably connected in the horizontal screw racks. The top ends of the two linear nozzle plates are respectively provided with rotating seats. The rotating ends of the two rotating seats are connected to the arc nozzle plates. A plurality of nozzles are respectively provided on the linear nozzle plate and the arc nozzle plate at equal intervals. The nozzles are externally connected to a liquid pump or a hot air pump through a pipeline. The pre-control detection box is provided with a collecting tank on the bottom surface of the pre-control area; The pre-control detection box is provided with two auxiliary limit plates on both sides of the detection area. The pre-control detection box is provided with two groups of mounting frames near the tail end of the detection area. The mounting frames are in a group of two. A longitudinal screw frame is installed on the mounting frames of the same group. A detection mechanism is movably connected in the longitudinal screw frame. The detection mechanism is provided with a first detection head and a second detection head.
[0007] As a further illustration of the present invention, a plurality of universal wheels are mounted at equal intervals on the bottom surface of the pre-control detection box through telescopic cylinders, and the universal wheels are self-locking universal wheels.
[0008] As a further explanation of the present invention, the first guide groove includes two side plates and a bottom plate, one side of the side plate is rotatably connected to the vertical side of the pre-control detection box, and one side of the bottom plate is rotatably connected to the bottom side of the pre-control detection box. The adjacent sides of the side plate and the bottom plate are connected by snaps, and a plurality of anti-slip strips are also arranged at equal intervals on the bottom plate. The structure of the second guide groove is the same as that of the first guide groove.
[0009] As a further explanation of the present invention, a transverse screw is rotatably connected to the transverse screw frame through a bearing seat, and a transverse motor is also provided on the transverse screw frame for driving the transverse screw to rotate. The outer side of the transverse screw is threadedly connected to a transverse threaded barrel, and the transverse threaded barrel is slidingly connected in the transverse screw frame, and the outer side of the transverse threaded barrel extends to the outside of the transverse screw frame, and the linear nozzle plate is fixed to the extended end of the transverse threaded barrel.
[0010] As a further illustration of the present invention, a steering motor is fixed to the top end of the linear nozzle plate, and the steering motor drives the rotating seat to rotate, thereby adjusting the tilt angle of the arc-shaped nozzle plate through the rotating seat.
[0011] As a further explanation of the present invention, a mesh plate is provided at the top of the collection tank in the pre-control detection box, an excrement detection tank is provided in the detection area of the pre-control detection box, the horizontal length of the horizontal screw frame is set above the excrement detection tank, and a mesh plate is also provided at the top of the excrement detection tank.
[0012] As a further explanation of the present invention, the auxiliary limiting plate is made of an elastic rubber plate, and a first adjustment plate is fixed at one end of the auxiliary limiting plate, and the first adjustment plate is installed on the pre-control detection box through a first hydraulic cylinder. A second adjustment plate is fixed at the other end of the auxiliary limiting plate, and the second adjustment plate is installed on the pre-control detection box through a second hydraulic cylinder. Flexible pads are fixed on the inner sides of the first adjustment plate and the second adjustment plate.
[0013] As a further description of the present invention, two longitudinal lead screws are rotatably connected inside the longitudinal lead screw frame, and each longitudinal lead screw is driven by a longitudinal motor installed inside the longitudinal lead screw frame. The detection mechanism includes a longitudinal threaded cylinder, a support platform, an arc-shaped rod, a vertical shaft, a lateral plate, a detection rod, a first detection head, a second detection head, and an adjustment cylinder. The longitudinal threaded cylinder is threadedly connected to the outside of the longitudinal lead screw, the longitudinal threaded cylinder is slidably connected inside the longitudinal lead screw frame, and a U-shaped support platform is fixed to the outside of the longitudinal threaded cylinder. A vertical shaft is installed in the middle of the support platform. One end of the arc-shaped rod is rotatably connected to the outside of the vertical shaft. A lateral plate is fixed to one side of the support platform. An adjustment cylinder is rotatably connected to the middle of the lateral plate. The telescopic shaft of the adjustment cylinder is rotatably connected to the outside of the arc-shaped rod. The other end of the arc-shaped rod is fixed with a detection rod. The first detection head and the second detection head are respectively installed on the detection rod.
[0014] As a further description of the present invention, a detection sensor is provided inside the first detection head, and a negative pressure blood collection needle is provided inside the second detection head.
[0015] Second, a method for using a disease pre-control detection device for livestock breeding includes the following steps: Before use, first move the pre-control detection box to the position to be used by using the universal wheels, and then adjust the height of the pre-control detection box according to the size of the object to be detected by using the telescopic cylinder. After the adjustment is completed, install the first guide groove and the second guide groove on both sides of the pre-control detection box respectively. The first guide groove is used for feeding the object to be detected, and the second guide groove is used for sending out the object to be detected. Then connect the nozzles on the linear nozzle plate and the arc-shaped nozzle plate to the corresponding liquid pump or hot air pump, check and adjust the first detection head and the second detection head, and separate the pre-control detection box by using the first opening and closing door and the second opening and closing door; Then send a single object to be detected into the pre-control area of the pre-control detection box through the first guide groove. After the object to be detected completely enters the pre-control area, manually separate the first guide groove, and then connect the nozzles on the linear nozzle plate and the arc-shaped nozzle plate to the corresponding liquid pump. Use the nozzles to spray the liquid for pre-control. Use the transverse lead screw frame to drive the linear nozzle plate and the arc-shaped nozzle plate to move synchronously. At the same time, use the steering motor to adjust the spraying angle of the arc-shaped nozzle plate until the liquid completely acts on the object to be detected and stop spraying the liquid. During the spraying process, the liquid is collected in the collection tank; Then disconnect the liquid pump connected to the nozzle, connect the nozzle to the hot air pump, and use the nozzle to spray hot air to dry the object to be detected, completing the entire pre-control operation; Then, the first opening and closing door and the second opening and closing door are opened, and the object to be inspected is manually forced into the inspection area. At the same time, the height of the inspection mechanism is adjusted according to the height of the object to be inspected using the longitudinal screw. After the adjustment is appropriate, the arc rod is driven by the adjustment cylinder to rotate to adjust the direction of the inspection rod so that the inspection rod is against the object to be inspected, and the first inspection head and the second inspection head are used to perform the inspection operation. Then, the first hydraulic cylinder and the second hydraulic cylinder are used to respectively drive the first adjustment plate and the second adjustment plate to adjust the position of the auxiliary limit plate until the auxiliary limit plate is attached to the object to be detected. If excrement is generated during the detection, the generated excrement can fall into the excrement detection tank. By collecting the excrement in the excrement detection tank, the excrement detection operation can be carried out. After the completion of a single detection, the horizontal screw frame is used to drive the linear nozzle plate and the arc nozzle plate to move to the detection area for liquid spraying and cleaning operations, thereby completing the independent pre-control detection operation of each object to be detected.
[0016] Compared with the prior art, the present invention has the following advantages: The present invention movably connects the first guide groove and the second guide groove at the openings on both sides of the pre-control detection box, which facilitates the preliminary falling and removal of debris at the bottom of the object to be detected before use. Two first opening and closing doors and two second opening and closing doors are symmetrically arranged in the middle section of the pre-control detection box. The first opening and closing doors and the second opening and closing doors separate the inner cavity of the pre-control detection box into a pre-control area and a detection area, which facilitates the distinction between pre-control and detection operations and improves the accuracy of pre-control detection. The two vertical sides of the pre-control detection box in the present invention are respectively provided with a transverse screw rack that passes through the pre-control area and the detection area. The outer side thread of the transverse screw of the transverse screw rack is connected with a transverse threaded cylinder, and the linear nozzle plate is fixed to the extended end of the transverse threaded cylinder, and the transverse screw can drive the adjustment of the transverse position of the linear nozzle plate. The transverse screw rack is movably connected with a vertically arranged linear nozzle plate, and the top ends of the two linear nozzle plates are respectively provided with a rotating seat, and the rotating ends of the two rotating seats are connected to the arc-shaped nozzle plate. The top end of the linear nozzle plate is fixed with a steering motor, which drives the rotating seat to rotate by the steering motor, and then the inclination angle of the arc-shaped nozzle plate can be adjusted by the rotating seat. A plurality of nozzles are respectively arranged at equal intervals on the linear nozzle plate and the arc-shaped nozzle plate, and the nozzles are externally connected to a liquid pump or a hot air pump through a pipeline, and the linear nozzle plate and the arc-shaped nozzle plate can cooperate to carry out liquid pre-control treatment and post-treatment drying operations, thereby improving the pre-control efficiency. The pre-control detection box in the present invention is respectively provided with two auxiliary limit plates on both sides of the detection area, and the auxiliary limit plates are made of elastic rubber plates. When in use, the auxiliary limit plates are adjusted to stick to the object to be detected, which improves the stability of the detected object during the detection process. The pre-control detection box is provided with two sets of mounting brackets near the tail end of the detection area, and the longitudinal screw bracket is installed on the mounting bracket through a pin shaft, so that the transverse mounting position of the longitudinal screw bracket can be adjusted through the mounting bracket, which is convenient for detecting objects of different sizes to be detected. A detection mechanism is movably connected in the longitudinal screw bracket, and the detection mechanism includes a longitudinal threaded cylinder, a support platform, an arc rod, a vertical axis, a side plate, a detection rod, a first detection head, a second detection head and an adjustment cylinder. The angle of the arc rod can be adjusted by adjusting the extension and contraction of the cylinder, so that the arc rod can be adjusted to open or close the detection area, which is convenient for cooperating with the first detection head and the second detection head on the detection mechanism to perform detection operations. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a top view of the overall structure of the present invention; Figure 3 It is a schematic diagram of the detection mechanism of the present invention.
[0018] Description of reference numerals: Pre-control detection box 1, universal wheel 11, first opening and closing door 12, second opening and closing door 13, first guide groove 2, side plate 21, bottom plate 22, anti-slip strip 23, second guide groove 3, pre-control area 4, detection area 5, transverse screw rack 41, transverse screw 42, transverse threaded barrel 43, linear nozzle plate 44, arc-shaped nozzle plate 45, rotating seat 46, mesh plate 47, collecting trough 48, detection area 5, auxiliary limit plate 51, first adjustment plate 511, first hydraulic cylinder 512, second adjustment plate 513, second hydraulic cylinder 514, mounting frame 52, longitudinal screw rack 53, longitudinal screw 531, detection mechanism 54, longitudinal threaded barrel 541, support platform 542, arc rod 543, vertical shaft 544, lateral plate 545, detection rod 546, first detection head 547, second detection head 548, adjustment cylinder 549, excrement detection trough 55. DETAILED DESCRIPTION
[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0020] like Figure 1-Figure 3As shown, the present invention provides a technical solution: a disease pre-control detection device for animal husbandry, comprising a pre-control detection box 1, wherein the pre-control detection box 1 is an open box with openings on the top and both sides, and a plurality of universal wheels 11 are installed on the bottom surface of the pre-control detection box 1 at equal intervals through a telescopic cylinder, and the universal wheels 11 are self-locking universal wheels. The pre-control detection box 1 can be used by using the universal wheels 11, and the use height of the pre-control detection box 1 can be adjusted by using the telescopic cylinder, so as to facilitate the use of detection objects of different sizes.
[0021] A first guide groove 2 and a second guide groove 3 are movably connected to the openings on both sides of the pre-control detection box 1. The first guide groove 2 includes two side panels 21 and a bottom panel 22. Both the side panels 21 and the bottom panel 22 are made of mesh panels, which facilitates the primary dropping and removal of debris at the bottom of the object to be detected before use.
[0022] One side of the side panel 21 is rotatably connected to the vertical side of the pre-control detection box 1, and one side of the bottom panel 22 is rotatably connected to the bottom side of the pre-control detection box 1. The adjacent sides of the side panel 21 and the bottom panel 22 are connected by snaps. A plurality of anti-slip strips 23 are also arranged at equal intervals on the bottom panel 22. The second guide groove 3 has the same structure as the first guide groove 2.
[0023] The middle section of the pre-control detection box 1 is symmetrically provided with two first opening and closing doors 12 and two second opening and closing doors 13 , and the inner cavity of the pre-control detection box 1 is divided into a pre-control area 4 and a detection area 5 by the first opening and closing doors 12 and the second opening and closing doors 13 .
[0024] The two vertical sides of the pre-control detection box 1 are respectively laterally provided with a transverse screw frame 41 that passes through the pre-control area 4 and the detection area 5. The transverse screw frame 41 is rotatably connected with a transverse screw 42 through a bearing seat. The transverse screw frame 41 is also provided with a transverse motor for driving the transverse screw 42 to rotate. The outer side of the transverse screw 42 is threadedly connected with a transverse threaded barrel 43. The transverse threaded barrel 43 is slidably connected in the transverse screw frame 41, and the outer side of the transverse threaded barrel 43 extends to the outer side of the transverse screw frame 41. The linear nozzle plate 44 is fixed on the extended end of the transverse threaded barrel 43, and the transverse position of the linear nozzle plate 44 can be driven by the transverse screw 42.
[0025] An excrement detection tank 55 is provided in the detection area 5 of the pre-control detection box 1, and the horizontal length of the horizontal screw frame 41 is set above the excrement detection tank 55, which is convenient for spraying and cleaning the excrement detection tank 55 after a single use, thereby improving the accuracy of the detection.
[0026] A vertically arranged linear nozzle plate 44 is movably connected in the transverse screw frame 41, and a rotating seat 46 is respectively provided at the top of the two linear nozzle plates 44. The rotating ends of the two rotating seats 46 are connected to the arc-shaped nozzle plate 45. A steering motor is fixed to the top of the linear nozzle plate 44, and the rotating seat 46 is driven to rotate by the steering motor, so that the inclination angle of the arc-shaped nozzle plate 45 can be adjusted by the rotating seat 46.
[0027] A plurality of nozzles are arranged at equal intervals on the linear nozzle plate 44 and the arc nozzle plate 45 , and the nozzles are connected to a liquid pump or a hot air pump through a pipeline. The pre-control detection box 1 is provided with a collecting tank 48 on the bottom surface of the pre-control area 4 .
[0028] A mesh plate 47 is provided at the top of the collection tank 48 in the pre-control detection box 1, and a mesh plate 47 is also provided at the top of the excrement detection tank 55 to facilitate collection and detection.
[0029] The pre-control detection box 1 is provided with two auxiliary limiting plates 51 on both sides of the detection area 5, respectively. The auxiliary limiting plates 51 are made of elastic rubber plates, and a first adjustment plate 511 is fixed at one end of the auxiliary limiting plate 51, and the first adjustment plate 511 is installed on the pre-control detection box 1 through a first hydraulic cylinder 512. A second adjustment plate 513 is fixed at the other end of the auxiliary limiting plate 51, and the second adjustment plate 513 is installed on the pre-control detection box 1 through a second hydraulic cylinder 514. Flexible pads are fixed on the inner sides of the first adjustment plate 511 and the second adjustment plate 513, and the first hydraulic cylinder 512 and the second hydraulic cylinder 514 are used to respectively drive the first adjustment plate 511 and the second adjustment plate 513 to adjust the position of the auxiliary limiting plate 51 until the auxiliary limiting plate 51 is attached to the object to be detected, thereby improving the stability of the detected object during the detection process.
[0030] The pre-control detection box 1 is provided with two groups of mounting frames 52 near the tail end of the detection area 5, and the mounting frames 52 are in a group of two. A longitudinal screw frame 53 is installed on the mounting frames 52 in the same group. The longitudinal screw frame 53 is installed on the mounting frame 52 through a pin shaft, so that the horizontal installation position of the longitudinal screw frame 53 can be adjusted through the mounting frame 52, which is convenient for the detection of objects to be detected of different sizes.
[0031] A detection mechanism 54 is movably connected in the longitudinal screw frame 53 , and a first detection head 547 and a second detection head 548 are provided on the detection mechanism 54 .
[0032] Specifically, two longitudinal lead screws 531 are rotatably connected inside the longitudinal lead screw frame 53, and each longitudinal lead screw 531 is driven by a longitudinal motor installed inside the longitudinal lead screw frame 53. The detection mechanism 54 includes a longitudinal threaded cylinder 541, a support platform 542, an arc-shaped rod 543, a vertical shaft 544, a side plate 545, a detection rod 546, a first detection head 547, a second detection head 548, and an adjustment cylinder 549. The longitudinal threaded cylinder 541 is threadedly connected to the outside of the longitudinal lead screw 531, and the longitudinal threaded cylinder 541 is slidably connected inside the longitudinal lead screw frame 53. A U-shaped support platform 542 is fixed to the outside of the longitudinal threaded cylinder 541. A vertical shaft 544 is installed in the middle of the support platform 542. One end of the arc-shaped rod 543 is rotatably connected to the outside of the vertical shaft 544. A side plate 545 is fixed to one side of the support platform 542. An adjustment cylinder 549 is rotatably connected in the middle of the side plate 545. The telescopic shaft of the adjustment cylinder 549 is rotatably connected to the outside of the arc-shaped rod 543. By extending and retracting the adjustment cylinder 549, the angle of the arc-shaped rod 543 can be adjusted, so as to perform the opening or closing adjustment operation of the arc-shaped rod 543 for the detection area 5.
[0033] The other end of the arc-shaped rod 543 is fixed with a detection rod 546, and the first detection head 547 and the second detection head 548 are respectively installed on the detection rod 546 A detection sensor is arranged inside the first detection head 547, and the sensor includes a body temperature sensor, a heart rate and respiration sensor, a sound sensor, and a pressure sensor. <??
[0034] A negative pressure blood collection needle is arranged inside the second detection head 548 for blood collection and detection.
[0035] The usage method of the above-mentioned disease pre-control detection device for livestock breeding includes the following steps: Before use, first use the universal wheels 11 to move the pre-control detection box body 1 to the position to be used, and then adjust the height of the pre-control detection box body 1 according to the size of the object to be detected by using the telescopic cylinder. After the adjustment is completed, install the first guide groove 2 and the second guide groove 3 on both sides of the pre-control detection box body 1 respectively. The first guide groove 2 is used for feeding the object to be detected, and the second guide groove 3 is used for sending out the object to be detected. Then connect the nozzles on the linear nozzle plate 44 and the arc-shaped nozzle plate 45 to the corresponding liquid pump or hot air pump, check and adjust the first detection head 547 and the second detection head 548, and separate the pre-control detection box body 1 by using the first opening and closing door 12 and the second opening and closing door 13; Then, a single object to be detected is sent into the pre-control area 4 of the pre-control detection box 1 through the first guide groove 2. After the object to be detected has completely entered the pre-control area 4, the first guide groove 2 is manually separated, and then the nozzles on the linear nozzle plate 44 and the arc nozzle plate 45 are connected to the corresponding liquid pumps, and the nozzles are used to spray the liquid for pre-control. The linear nozzle plate 44 and the arc nozzle plate 45 are driven to move synchronously by the transverse screw frame 41, and the spraying angle of the arc nozzle plate 45 is adjusted by the steering motor. The liquid spraying is stopped until the liquid completely acts on the object to be detected. During the spraying process, the liquid is collected in the collection tank 48. Then disconnect the liquid pump connected to the nozzle, connect the nozzle to the hot air pump, and use the nozzle to spray hot air to dry the object to be tested, completing the entire pre-control operation; Then, the first opening and closing door 12 and the second opening and closing door 13 are opened, and the object to be inspected is manually forced into the inspection area 5. At the same time, the height of the inspection mechanism 54 is adjusted according to the height of the object to be inspected using the longitudinal screw 531. After the adjustment is appropriate, the adjustment cylinder 549 drives the arc rod 543 to rotate to adjust the direction of the inspection rod 546 so that the inspection rod 546 contacts the object to be inspected, and cooperates with the first inspection head 547 and the second inspection head 548 to perform the inspection operation. Then, the first hydraulic cylinder 512 and the second hydraulic cylinder 514 are used to respectively drive the first adjustment plate 511 and the second adjustment plate 513 to adjust the position of the auxiliary limit plate 51 until the auxiliary limit plate 51 is attached to the object to be detected. If excrement is generated during the detection, the generated excrement can fall into the excrement detection groove 55. By collecting the excrement in the excrement detection groove 55, the excrement detection operation can be performed. After the completion of a single detection, the horizontal screw frame 41 is used to drive the linear nozzle plate 44 and the arc nozzle plate 45 to move to the detection area 5 for liquid spraying and cleaning operations, thereby completing the independent pre-control detection operation of each object to be detected.
[0036] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0037] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A disease prevention and control detection device for animal husbandry, characterized by: The pre-control detection box (1) is an open box with openings on the top and both sides, and a first guide groove (2) and a second guide groove (3) are movably connected to the openings on both sides of the pre-control detection box (1); The middle section of the pre-control detection box (1) is symmetrically provided with two first opening and closing doors (12) and two second opening and closing doors (13), and the inner cavity of the pre-control detection box (1) is divided into a pre-control area (4) and a detection area (5) by the first opening and closing doors (12) and the second opening and closing doors (13); The two vertical sides of the pre-control detection box (1) are respectively provided with a transverse screw frame (41) passing through the pre-control area (4) and the detection area (5), and a vertically arranged linear nozzle plate (44) is movably connected in the transverse screw frame (41), and the top ends of the two linear nozzle plates (44) are respectively provided with a rotating seat (46), and the rotating ends of the two rotating seats (46) are connected to the arc nozzle plate (45), and a plurality of nozzles are respectively provided on the linear nozzle plate (44) and the arc nozzle plate (45) at equal intervals, and the nozzles are externally connected to a liquid pump or a hot air pump through a pipeline, and the pre-control detection box (1) is provided with a collecting tank (48) on the bottom surface of the pre-control area (4); The pre-control detection box (1) is provided with two auxiliary limit plates (51) on both sides of the detection area (5), and the pre-control detection box (1) is provided with two groups of mounting frames (52) near the end of the detection area (5). The mounting frames (52) are in groups of two, and a longitudinal screw frame (53) is installed on the mounting frames (52) of the same group. A detection mechanism (54) is movably connected in the longitudinal screw frame (53), and a first detection head (547) and a second detection head (548) are provided on the detection mechanism (54).
2. A disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: The bottom surface of the pre-control detection box (1) is provided with a plurality of universal wheels (11) at equal intervals via telescopic cylinders, and the universal wheels (11) are self-locking universal wheels.
3. The disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: The first guide groove (2) comprises two side plates (21) and a bottom plate (22), one side of the side plate (21) is rotatably connected to the vertical side of the pre-control detection box (1), and one side of the bottom plate (22) is rotatably connected to the bottom side of the pre-control detection box (1). The adjacent sides of the side plates (21) and the bottom plate (22) are connected by snap fasteners. A plurality of anti-slip strips (23) are also provided on the bottom plate (22) at equal intervals. The second guide groove (3) has the same structure as the first guide groove (2).
4. The disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: A transverse screw (42) is rotatably connected to the transverse screw frame (41) via a bearing seat. A transverse motor for driving the transverse screw (42) to rotate is also provided on the transverse screw frame (41). The outer side of the transverse screw (42) is threadedly connected to a transverse threaded barrel (43). The transverse threaded barrel (43) is slidably connected to the transverse screw frame (41), and the outer side of the transverse threaded barrel (43) extends to the outer side of the transverse screw frame (41). The linear nozzle plate (44) is fixed to the extended end of the transverse threaded barrel (43).
5. The disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: A steering motor is fixed at the top of the linear nozzle plate (44). By driving the rotating seat (46) to rotate through the steering motor, the tilt angle of the arc-shaped nozzle plate (45) can be adjusted through the rotating seat (46).
6. The disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: A mesh plate (47) is arranged at the top of the collection tank (48) inside the pre-control detection box body (1). An excrement detection tank (55) is arranged in the detection area (5) inside the pre-control detection box body (1). The horizontal length of the horizontal screw rod frame (41) is arranged above the excrement detection tank (55). A mesh plate (47) is also arranged at the top of the excrement detection tank (55).
7. The disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: The auxiliary limiting piece (51) is made of an elastic rubber sheet. A first adjustment plate (511) is fixed at one end of the auxiliary limiting piece (51). The first adjustment plate (511) is installed on the pre-control detection box body (1) through a first hydraulic cylinder (512). A second adjustment plate (513) is fixed at the other end of the auxiliary limiting piece (51). The second adjustment plate (513) is installed on the pre-control detection box body (1) through a second hydraulic cylinder (514). Flexible pads are fixed on the inner sides of the first adjustment plate (511) and the second adjustment plate (513).
8. The disease prevention and control detection device for animal husbandry according to claim 1, characterized in that: Two longitudinal screw rods (531) are rotatably connected inside the longitudinal screw rod frame (53). Each longitudinal screw rod (531) is driven by a longitudinal motor installed inside the longitudinal screw rod frame (53). The detection mechanism (54) includes a longitudinal threaded cylinder (541), a support platform (542), an arc-shaped rod (543), a vertical shaft (544), a side plate (545), a detection rod (546), a first detection head (547), a second detection head (548) and an adjustment cylinder (549). The longitudinal threaded cylinder (541) is threadedly connected to the outside of the longitudinal screw rod (531). The longitudinal threaded cylinder (541) is slidably connected inside the longitudinal screw rod frame (53). A U-shaped support platform (542) is fixed to the outside of the longitudinal threaded cylinder (541). A vertical shaft (544) is installed in the middle of the support platform (542). One end of the arc-shaped rod (543) is rotatably connected to the outside of the vertical shaft (544). A side plate (545) is fixed to one side of the support platform (542). An adjustment cylinder (549) is rotatably connected in the middle of the side plate (545). The telescopic shaft of the adjustment cylinder (549) is rotatably connected to the outside of the arc-shaped rod (543). The other end of the arc-shaped rod (543) is fixed with a detection rod (546). The first detection head (547) and the second detection head (548) are respectively installed on the detection rod (546).
9. The disease prevention and control detection device for animal husbandry according to claim 8, characterized in that: A detection sensor is arranged inside the first detection head (547). A negative pressure blood collection needle is arranged inside the second detection head (548).
10. A method for using the disease prevention and control detection device for animal husbandry according to any one of claims 1 to 9, characterized in that: Including the following steps: Before use, the pre-control detection box (1) is first moved to the position to be used using the universal wheel (11), and then the height of the pre-control detection box (1) is adjusted using the telescopic cylinder. After the adjustment is completed, the first guide groove (2) and the second guide groove (3) are respectively installed on both sides of the pre-control detection box (1). The first guide groove (2) is used to complete the feeding of the object to be tested, and the second guide groove (3) is used to send the object to be tested out. Then, the nozzles on the linear nozzle plate (44) and the arc nozzle plate (45) are connected to the corresponding liquid pump or hot air pump, and the first detection head (547) and the second detection head (548) are checked and adjusted, and the pre-control detection box (1) is separated using the first opening and closing door (12) and the second opening and closing door (13); Then, the object to be detected is sent into the pre-control area (4) of the pre-control detection box (1) by using the first guide groove (2). After the object to be detected completely enters the pre-control area (4), the first guide groove (2) is artificially separated, and then the nozzles on the linear nozzle plate (44) and the arc nozzle plate (45) are connected to the corresponding liquid pumps, and the nozzles are used to spray the liquid for pre-control. The linear nozzle plate (44) and the arc nozzle plate (45) are driven to move synchronously by the transverse screw frame (41), and the spraying angle of the arc nozzle plate (45) is adjusted by the steering motor until the liquid completely acts on the object to be detected and the liquid spraying is stopped. During the spraying process, the liquid is collected in the collection tank (48); Then disconnect the liquid pump connected to the nozzle, connect the nozzle to the hot air pump, and use the nozzle to spray hot air to dry the object to be tested, completing the entire pre-control operation; Then, the first opening and closing door (12) and the second opening and closing door (13) are opened, and the object to be detected is manually allowed to enter the detection area (5). At the same time, the height of the detection mechanism (54) is adjusted according to the height of the object to be detected by using the longitudinal screw (531). After the adjustment is appropriate, the arc rod (543) is driven to rotate by the adjustment cylinder (549) to adjust the direction of the detection rod (546), so that the detection rod (546) is against the object to be detected, and the first detection head (547) and the second detection head (548) are used to perform the detection operation; Then, the first hydraulic cylinder (512) and the second hydraulic cylinder (514) are used to respectively drive the first adjustment plate (511) and the second adjustment plate (513) to adjust the position of the auxiliary limiting plate (51) until the auxiliary limiting plate (51) is attached to the object to be detected. If excrement is generated during the detection period, the generated excrement can fall into the excrement detection groove (55). By collecting the excrement in the excrement detection groove (55), the excrement detection operation can be performed. After the completion of a single detection, the horizontal screw frame 41 is used to drive the linear nozzle plate (44) and the arc nozzle plate (45) to move to the detection area (5) for liquid spraying and cleaning operations, thereby completing the independent pre-control detection operation of each object to be detected.