CN210810996U - Early disease detector for livestock - Google Patents

Early disease detector for livestock Download PDF

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Publication number
CN210810996U
CN210810996U CN201921084936.1U CN201921084936U CN210810996U CN 210810996 U CN210810996 U CN 210810996U CN 201921084936 U CN201921084936 U CN 201921084936U CN 210810996 U CN210810996 U CN 210810996U
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block
slide
livestock
sliding
slide block
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CN201921084936.1U
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苏朝鹏
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/70Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in livestock or poultry

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Abstract

The utility model provides a simple structure, low in production cost can improve the inspection efficiency, improve the early disease detection appearance of livestock to sick livestock early discovery probability, including the host computer, be used for control the displacement mechanism of host computer displacement, the host computer includes the casing, be provided with infrared thermal imager, singlechip, shower nozzle on the casing, be used for storing the bin of pigment, infrared thermal imager with singlechip signal connection, the bin with the shower nozzle is linked together, single chip microcomputer control opening and closing of shower nozzle, the casing set up in displacement mechanism is last.

Description

Early disease detector for livestock
Technical Field
The utility model relates to a stockbreeding mechanical technical field, in particular to early disease detector of livestock.
Background
At present, in the breeding industry, livestock is generally concentrated in a large number of breeding houses to be bred together, once the livestock is ill, cross infection is easy to occur, and the livestock in the whole breeding houses is infected, so that regular patrol is needed, the ill livestock is found timely to be diagnosed and isolated, the common method is to patrol the breeding houses through working personnel, and the livestock is judged and identified one by one, the working intensity of the mode is high, the labor cost is high, the identification accuracy is low, and most of the livestock are in the middle and late stages of diseases due to manual identification of the diseases.
SUMMERY OF THE UTILITY MODEL
Therefore, to foretell problem, the utility model provides a simple structure, low in production cost can improve the efficiency of patrolling, improve the early disease detector of livestock to sick livestock early discovery probability.
In order to realize the technical problem, the utility model discloses the solution that takes is that livestock early disease detector, including the host computer, be used for control the displacement mechanism of host computer displacement, the host computer includes the casing, be provided with infrared thermal imager, singlechip, shower nozzle on the casing, be used for storing the bin of pigment, infrared thermal imager with singlechip signal connection, the bin with the shower nozzle is linked together, single chip microcomputer control opening and closing of shower nozzle, the casing set up in displacement mechanism is last.
The further improvement is that: the displacement mechanism comprises a slide rail, a first slide block and a second slide block, the slide rail is transversely erected on an external breeding house, the first slide block can be arranged on the slide rail in a sliding mode, the second slide block can be arranged on the second slide block in a sliding mode along the longitudinal direction, the shell is arranged on the second slide block, a first driving device for driving the first slide block to slide is arranged between the first slide block and the slide rail, and a second driving device for driving the second slide block to longitudinally slide is arranged between the first slide block and the second slide block.
The further improvement is that: the first driving device comprises a plurality of first traveling wheels, a first connecting block and a second connecting block are fixedly arranged on two sides of the upper end of the first sliding block respectively, the first traveling wheels are rotatably arranged on the first connecting block and the second connecting block, the sliding rail is arranged between the first connecting block and the second connecting block, the first traveling wheels can travel on the upper end face of the sliding rail, and a first rotating driving device used for driving the first traveling wheels to rotate is arranged on the first connecting block.
The further improvement is that: the shell can be arranged on the second sliding block in a vertically sliding mode, and a first sliding driving device for driving the shell to slide vertically is arranged between the second sliding block and the shell.
The further improvement is that: the second driving device comprises a synchronous belt and two synchronous belt wheels, the synchronous belt wheels are rotatably arranged on the first sliding block, the synchronous belt is wound on the two synchronous belt wheels, the second sliding block is fixedly arranged on the synchronous belt, and the first sliding block is provided with a second rotating driving device used for driving the synchronous belt wheels.
The further improvement is that: the first sliding driving device is an air cylinder, a cylinder body of the air cylinder is fixedly arranged on the second sliding block, a driving rod of the air cylinder is fixedly connected with the shell, and a controller of the air cylinder is in signal connection with the single chip microcomputer.
The further improvement is that: the dovetail slide rail is arranged on the second slide block along the longitudinal extension, and the dovetail slide groove is formed in the lower end part of the first slide block to allow the dovetail slide rail to penetrate through.
By adopting the technical scheme, the beneficial effects of the utility model are that: can mark the livestock when the disease happens in the early stage of the livestock, make things convenient for the staff to further investigate and detect, reduce staff's intensity of labour, reduce the cost of labor, improve the diagnostic rate of the early disease of livestock, keep apart the medical treatment in advance, promote the cure rate, avoid cross infection.
Drawings
Fig. 1 is an installation entity diagram of the detector for early livestock diseases of the embodiment of the invention.
Fig. 2 is a sectional view of a detector A-A for detecting early livestock diseases in fig. 1.
Detailed Description
The present invention will now be further described with reference to the accompanying drawings and specific embodiments.
Example (b):
referring to fig. 1 and 2, the detector for early livestock diseases disclosed in the embodiment of the present invention comprises a host and a displacement mechanism for controlling the displacement of the host, wherein the host comprises a housing 1, the housing 1 is provided with an infrared thermal imager 11, a single chip microcomputer 13, a sprayer 12, and a storage tank 14 for storing pigment, the infrared thermal imager 11 is in signal connection with the single chip microcomputer 13, the storage tank 14 is communicated with the sprayer 12, the single chip microcomputer 13 controls the opening and closing of the sprayer 12, the displacement mechanism comprises a slide rail 3, a first slide block 2 and a second slide block 4, the slide rail 3 is transversely erected on an external breeding house, the first slide block 2 is slidably arranged on the slide rail 3, the second slide block 4 is slidably arranged on the second slide block 4 in the longitudinal direction, the housing 1 is arranged on the second slide block 4, a first driving device for driving the first slide block 2 to slide is arranged between the first slide block 2 and the slide rail 3, the first driving device comprises a plurality of eight first traveling wheels 21, a first connecting block 22 and a second connecting block 23 are respectively and fixedly arranged on two sides of the upper end part of the first sliding block 2, four first traveling wheels 21 are rotatably arranged on the first connecting block 22 and the second connecting block 23 respectively, the slide rail 3 is arranged between the first connecting block 22 and the second connecting block 23, the first traveling wheel 21 can travel on the upper end surface of the slide rail 3, the first connecting block 22 is provided with a first motor for driving the first running wheel 21 to rotate, the shell 1 of the first motor is fixedly arranged on the first connecting block 22, the driving shaft of the first motor is fixedly connected with the travelling wheel, the controller of the first motor is in signal connection with the single chip microcomputer 13, and the first motor is controlled by the single chip microcomputer 13 to be turned on or off, rotated forward or rotated backward; the first slider 2 is rotatable to be provided with two synchronous pulley 421, two synchronous pulley 421 are around being equipped with hold-in range 42, second slider 4 is fixed set up in hold-in range 42, be provided with on the first slider 2 and be used for the drive synchronous pulley 421 pivoted second motor, the casing 1 of second motor is fixed to be set up in first slider 2, the drive shaft and the synchronous pulley 421 fixed connection of second motor, the controller of second motor with singlechip 13 signal connection, the second motor by singlechip 13 is controlled and is opened or close, corotation or reversal.
For more accurate spraying on sick livestock, the shell 1 can be arranged on the second sliding block 4 in a sliding way up and down, a cylinder 41 for driving the shell 1 to slide up and down is arranged between the second sliding block 4 and the shell 1, the cylinder body of the air cylinder 41 is fixedly arranged on the second sliding block 4, the driving rod of the air cylinder 41 is fixedly connected with the shell 1, the controller of the cylinder 41 is in signal connection with the single chip microcomputer 13, the cylinder 41 is controlled by the single chip microcomputer 13 to extend or contract the driving rod of the cylinder 41, when the infrared thermal imager 11 finds the livestock with abnormal body temperature, the first motor and the second motor can be controlled to move the spray head 12 to the position above the livestock with abnormal body temperature, the air cylinder 41 drives the spray head 12 to descend, so that the distance between the spray head 12 and the livestock is reduced, spraying marking is carried out, and the problem that the sick livestock cannot be accurately sprayed and marked due to too far distance is avoided.
In order to make the second slider 4 slide more smoothly and avoid the second slider 4 to break away from with first slider 2 mutually, be provided with forked tail slide rail 3 along longitudinal extension on the second slider 4, the forked tail spout confession has been seted up to the lower tip of first slider 2 forked tail slide rail 3 passes.
The utility model discloses early disease detector of livestock, through sliding on slide rail 3, infrared thermal imager 11 scans the livestock in the breed house in the top of livestock, conduct the image to singlechip 13, there is singlechip 13 to judge whether the heat source is the living body, and judge whether the temperature is unusual, utilize the livestock early body temperature rising principle, early discovery ill livestock warning sign, when discovering the livestock of unusual body temperature, singlechip 13 makes shower nozzle 12 shift to the top of ill livestock through the control to first motor and second motor, the ill livestock is located the middle that the infrared thermal imager becomes looks at this moment, make shower nozzle 12 descend and be close to the livestock through drive cylinder 41, carry out the spraying, discover there is high temperature livestock, can strengthen prevention diagnosis, handle, go on further affirmation by the staff to the livestock of spraying, staff's intensity of labour has been reduced, the accuracy of affirmation has been improved, the efficiency is improved, and the probability of cross infection among the livestock is greatly reduced.
Based on aforementioned scheme, the embodiment of the utility model provides a, singlechip 13 can also signal connection wireless communication module, when the unusual livestock of discovery body temperature, send the signal for the staff or send information for backend server with the very first time remind the staff to diagnose the livestock of spraying through the SMS.
Modifications and variations of the present invention are within the scope of the claims and are not limited by the disclosure of the embodiments.

Claims (7)

1. Early livestock disease detector, its characterized in that: including the host computer, be used for control the displacement mechanism of host computer displacement, the host computer includes the casing, be provided with infrared thermal imager, singlechip, shower nozzle on the casing, be used for storing the bin of pigment, infrared thermal imager with singlechip signal connection, the bin with the shower nozzle is linked together, single chip microcomputer control opening and closing of shower nozzle, the casing set up in displacement mechanism is last.
2. The livestock early disease detector of claim 1, wherein: the displacement mechanism comprises a slide rail, a first slide block and a second slide block, the slide rail is transversely erected on an external breeding house, the first slide block can be arranged on the slide rail in a sliding mode, the second slide block can be arranged on the second slide block in a sliding mode along the longitudinal direction, the shell is arranged on the second slide block, a first driving device for driving the first slide block to slide is arranged between the first slide block and the slide rail, and a second driving device for driving the second slide block to longitudinally slide is arranged between the first slide block and the second slide block.
3. The livestock early disease detector of claim 2, wherein: the first driving device comprises a plurality of first traveling wheels, a first connecting block and a second connecting block are fixedly arranged on two sides of the upper end of the first sliding block respectively, the first traveling wheels are rotatably arranged on the first connecting block and the second connecting block, the sliding rail is arranged between the first connecting block and the second connecting block, the first traveling wheels can travel on the upper end face of the sliding rail, and a first rotating driving device used for driving the first traveling wheels to rotate is arranged on the first connecting block.
4. The livestock early disease detector of claim 1, wherein: the shell can be arranged on the second sliding block in a vertically sliding mode, and a first sliding driving device for driving the shell to slide vertically is arranged between the second sliding block and the shell.
5. The livestock early disease detector of claim 2, wherein: the second driving device comprises a synchronous belt and two synchronous belt wheels, the synchronous belt wheels are rotatably arranged on the first sliding block, the synchronous belt is wound on the two synchronous belt wheels, the second sliding block is fixedly arranged on the synchronous belt, and the first sliding block is provided with a second rotating driving device used for driving the synchronous belt wheels.
6. The livestock early disease detector of claim 4, wherein: the first sliding driving device is an air cylinder, a cylinder body of the air cylinder is fixedly arranged on the second sliding block, a driving rod of the air cylinder is fixedly connected with the shell, and a controller of the air cylinder is in signal connection with the single chip microcomputer.
7. The livestock early disease detector of claim 2, wherein: the dovetail slide rail is arranged on the second slide block along the longitudinal extension, and the dovetail slide groove is formed in the lower end part of the first slide block to allow the dovetail slide rail to penetrate through.
CN201921084936.1U 2019-07-11 2019-07-11 Early disease detector for livestock Active CN210810996U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921084936.1U CN210810996U (en) 2019-07-11 2019-07-11 Early disease detector for livestock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921084936.1U CN210810996U (en) 2019-07-11 2019-07-11 Early disease detector for livestock

Publications (1)

Publication Number Publication Date
CN210810996U true CN210810996U (en) 2020-06-23

Family

ID=71249532

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921084936.1U Active CN210810996U (en) 2019-07-11 2019-07-11 Early disease detector for livestock

Country Status (1)

Country Link
CN (1) CN210810996U (en)

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