Intelligent ventilation and illumination system for henhouse
By introducing installation mechanisms such as perforated plates, T-shaped rods, and rotating plates into the intelligent ventilation and lighting system for chicken coops, combined with sensors and controllers, the problems of cumbersome installation and inconvenient maintenance of existing systems have been solved, enabling rapid installation, convenient maintenance, and intelligent control, thereby improving the system's efficiency and effectiveness.
Patent Information
- Application Number
- CN202423011314.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Existing intelligent ventilation and lighting systems for chicken coops are cumbersome to install, inconvenient to maintain and disassemble, and the bolts and nuts are prone to corrosion and rust, increasing maintenance costs and difficulty and reducing efficiency.
The installation mechanism with perforated plate, T-bar, rotating plate and spring is combined with the design of rectangular plate, exhaust fan, lighting, sensor and controller to achieve fast installation and convenient maintenance, and intelligent control through sensors and controllers.
It simplifies the installation process, improves maintenance and disassembly efficiency, reduces maintenance costs, enhances the system's effectiveness and efficiency, and enables automated control of intelligent ventilation and lighting.
Smart Images

Figure CN223437660U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a ventilation and lighting system technical field especially relates to a henhouse intelligent ventilation and lighting system. BACKGROUND
[0002] The henhouse is a kind of building or place specially used for raising chickens, and the management personnel of henhouse generally installs intelligent ventilation and lighting system in henhouse to create a comfortable growing environment for chicken population.
[0003] The existing intelligent ventilation and lighting system generally utilizes the cooperation of bolt and nut, is installed in the inside of henhouse, and the installation mode is not only more cumbersome to operate, but also inconvenient for management personnel to maintain and disassemble intelligent ventilation and lighting system later, i.e. when installing intelligent ventilation and lighting system, multiple bolts and nuts need to be tightened, which consumes a lot of time and manpower in installation process, and in the humid and dusty environment of henhouse, bolt and nut are prone to corrosion and rust, which can easily cause the jamming of bolt and nut, so when intelligent ventilation and lighting system needs to be maintained and disassembled later, management personnel may need to spend a lot of time and effort to clean rust, and even need to use special tools or destructive means to disassemble, thereby increasing the maintenance cost and difficulty of henhouse intelligent ventilation and lighting system, reducing the use effect of henhouse intelligent ventilation and lighting system, and also reducing the use efficiency of henhouse intelligent ventilation and lighting system.
[0004] Therefore, it is necessary to propose a henhouse intelligent ventilation and lighting system to solve the above technical problems. CONTENT OF UTILITY MODEL
[0005] The utility model aims at solving the problem that the existing intelligent ventilation and lighting system in the prior art is generally installed in the inside of henhouse by utilizing the cooperation of bolt and nut, which not only is more cumbersome to operate, but also is inconvenient for management personnel to maintain and disassemble intelligent ventilation and lighting system later, i.e. when installing intelligent ventilation and lighting system, multiple bolts and nuts need to be tightened, which consumes a lot of time and manpower in installation process, and in the humid and dusty environment of henhouse, bolt and nut are prone to corrosion and rust, which can easily cause the jamming of bolt and nut, so when intelligent ventilation and lighting system needs to be maintained and disassembled later, management personnel need to spend a lot of time and effort to clean rust, and even need to use special tools or destructive means to disassemble, thereby increasing the maintenance cost and difficulty of henhouse intelligent ventilation and lighting system, reducing the use effect of henhouse intelligent ventilation and lighting system, and also reducing the use efficiency of henhouse intelligent ventilation and lighting system, and proposes a henhouse intelligent ventilation and lighting system.
[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a henhouse intelligent ventilation lighting system, comprising: device body, mounting mechanism and wall body,
[0007] The mounting mechanism includes a perforated plate, the front surface of the perforated plate is provided with a placing groove, the front surface of the perforated plate is fixedly provided with two symmetrical T-shaped rods, the outer surface of one end of each T-shaped rod close to the perforated plate is rotatably connected with a rotating plate, the front surface of the perforated plate is fixedly provided with two symmetrical rectangular blocks, the front surface of the perforated plate is provided with two symmetrical T-shaped grooves, a T-shaped block is arranged in each T-shaped groove, and a spring is mounted on the surface of each T-shaped block.
[0008] Preferably, the inside of the placing groove is in communication with the inside of the through hole of the perforated plate, the front surface of each rotating plate is in contact with the surface of each T-shaped rod, the rear surface of each rotating plate is in contact with the front surface of the perforated plate, the opposite side of each rotating plate is in contact with the side, away from each other, of the two rectangular blocks, and the opposite side of each rotating plate is in contact with the surface of each T-shaped block.
[0009] Preferably, the surface of each T-shaped block is in contact with the front surface of the inner wall of each T-shaped groove, one end of each spring, away from the T-shaped block, is mounted on the rear surface of the inner wall of each T-shaped groove, the rear surface of the perforated plate is fixedly connected with the front surface of the wall body, and the inside of the through hole of the perforated plate is in communication with the inside of the square hole of the wall body.
[0010] Preferably, the device body comprises a rectangular plate, the front surface of the rectangular plate is provided with two mounting holes, one of the mounting holes is provided with an exhaust fan in the inside, the other mounting hole is provided with a lighting lamp in the inside, and the front surface of the rectangular plate is provided with a rectangular groove.
[0011] Preferably, the front surface of the rectangular plate is provided with a cylindrical groove, the rear surface of the rectangular plate is provided with a placing hole, the inside of the cylindrical groove is provided with a light sensor, the inside of the rectangular groove is provided with a controller, and the inside of the placing hole is provided with a temperature sensor.
[0012] Preferably, the exhaust fan is electrically connected with the controller, the lighting lamp is electrically connected with the controller, the light sensor is electrically connected with the controller, and the temperature sensor is electrically connected with the controller.
[0013] Preferably, the rectangular plate is arranged in the inside of the placing groove, the front surface of the rectangular plate is in contact with the two rotating plates, and the inside of one of the mounting holes is in communication with the inside of the through hole of the perforated plate.
[0014] Compared with the prior art, the utility model has the advantages and positive effects that,
[0015] 1. The utility model discloses a mounting mechanism can be installed in the chicken house intelligent ventilation lighting system fast, not only simple operation, also is convenient for management personnel to maintain and dismount intelligent ventilation lighting system later period, improve the use effect of chicken house intelligent ventilation lighting system, improve the use efficiency of chicken house intelligent ventilation lighting system, can prevent the rotation of the rotating plate on the T-shaped rod through the cooperation of rectangular block, T-shaped groove, T-shaped block and spring, can fix rectangular plate in the inside of the placing groove through the cooperation of T-shaped rod and rotating plate.
[0016] 2. The utility model discloses a mounting hole can provide the installation position for exhaust fan and lighting lamp through the cooperation of controller, temperature sensor and illumination sensor, can open and close lighting lamp and exhaust fan intelligently. DRAWINGS
[0017] Figure 1 A kind of three-dimensional view of chicken house intelligent ventilation lighting system is proposed for the utility model;
[0018] Figure 2 A kind of device body part sectional view three-dimensional drawing of chicken house intelligent ventilation lighting system is proposed for the utility model;
[0019] Figure 3 A kind of partial sectional view three-dimensional drawing of chicken house intelligent ventilation lighting system is proposed for the utility model;
[0020] Figure 4 Another angle partial sectional view three-dimensional drawing of chicken house intelligent ventilation lighting system is proposed for the utility model;
[0021] Figure 5 A kind of mounting mechanism part three-dimensional drawing of chicken house intelligent ventilation lighting system is proposed for the utility model;
[0022] Figure 6 Another angle partial sectional view three-dimensional drawing of the device body of chicken house intelligent ventilation lighting system is proposed for the utility model.
[0023] Legend: 1, device body;101, rectangular plate;102, mounting hole;103, exhaust fan;104, lighting lamp;105, rectangular groove;106, cylindrical groove;107, placing hole;108, illumination sensor;109, controller;110, temperature sensor;2, mounting mechanism;201, plate with hole;202, placing groove;203, T-shaped rod;204, rotating plate;205, rectangular block;206, T-shaped groove;207, T-shaped block;208, spring;3, wall. DETAILED DESCRIPTION
[0024] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described below with reference to the drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0025] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced without the specific details, which are different from the description, and thus, the present application is not limited to the specific embodiments disclosed in the following description.
[0026] As Figures 1-6 shown, the present application provides a kind of henhouse intelligent ventilation lighting system, comprising: device body 1, installation mechanism 2 and wall 3;
[0027] The mounting mechanism 2 comprises a perforated plate 201, the front surface of the perforated plate 201 is provided with a placing groove 202, the front surface of the perforated plate 201 is fixedly connected with two symmetrical T-shaped rods 203, the outer surface of one end of each T-shaped rod 203 is rotatably connected with a rotating plate 204, the front surface of the perforated plate 201 is fixedly connected with two symmetrical rectangular blocks 205, the front surface of the perforated plate 201 is provided with two symmetrical T-shaped grooves 206, the inside of each T-shaped groove 206 is provided with a T-shaped block 207, the surface of each T-shaped block 207 is provided with a spring 208, the inside of the placing groove 202 is in communication with the through hole of the perforated plate 201, the front surface of each rotating plate 204 is in contact with the surface of each T-shaped rod 203, the rear surface of each rotating plate 204 is in contact with the front surface of the perforated plate 201, the opposite side of each rotating plate 204 is in contact with the side away from each rectangular block 205, the opposite side of each rotating plate 204 is in contact with the surface of each T-shaped block 207, the surface of each T-shaped block 207 is in contact with the front surface of the inner wall of each T-shaped groove 206, the end away from each T-shaped block 207 of each spring 208 is mounted on the rear surface of the inner wall of each T-shaped groove 206, the rear surface of the perforated plate 201 is fixedly connected with the front surface of the wall body 3, the through hole of the perforated plate 201 is in communication with the square hole of the wall body 3, the device body 1 comprises a rectangular plate 101, the front surface of the rectangular plate 101 is provided with two mounting holes 102, the inside of one mounting hole 102 is mounted with an exhaust fan 103, the inside of the other mounting hole 102 is mounted with an illuminating lamp 104, the front surface of the rectangular plate 101 is provided with a rectangular groove 105, the front surface of the rectangular plate 101 is provided with a cylindrical groove 106, the rear surface of the rectangular plate 101 is provided with a placing hole 107, the inside of the cylindrical groove 106 is mounted with a light sensor 108, the inside of the rectangular groove 105 is mounted with a controller 109, the inside of the placing hole 107 is mounted with a temperature sensor 110, the exhaust fan 103 is electrically connected with the controller 109, the illuminating lamp 104 is electrically connected with the controller 109, the light sensor 108 is electrically connected with the controller 109, the temperature sensor 110 is electrically connected with the controller 109, the rectangular plate 101 is located in the inside of the placing groove 202, the front surface of each rotating plate 204 is in contact with the front surface of the rectangular plate 101, the inside of one mounting hole 102 is in communication with the through hole of the perforated plate 201.
[0028] The effect achieved is that when the intelligent ventilation and lighting system needs to be disassembled from the chicken house, a force is first applied to each of the two T-blocks 207, so that the two T-blocks 207 are moved in the direction close to the wall 3. At this time, the two moving T-blocks 207 will cause the corresponding springs 208 to undergo elastic deformation under the cooperation of the corresponding T-slots 206. When the two T-blocks 207 are moved to the point where they can no longer move, the movement of the two T-blocks 207 is stopped first. At the same time, the front surfaces of the two T-blocks 207 are just in the same plane as the front surface of the perforated plate 201. At the same time, the two T-blocks 207 are separated from the corresponding rotating plates 204, and then a force is applied to each of the two rotating plates 204, so that the two rotating plates When the two rotating plates 204 have completed the rotation operation, the two rotating plates 204 will be separated from the corresponding rectangular blocks 205, and at the same time, the two rotating plates 204 will be separated from the rectangular plate 101. Then, the force applied to the two T-shaped blocks 207 is released. At this time, the two T-shaped blocks 207 will be reset to their original positions under the cooperation of the corresponding T-shaped slots 206 and the corresponding spring 208. Then, the rectangular plate 101 can be directly removed from the inside of the placement slot 202, and the disassembly operation of the intelligent ventilation and lighting system is completed. When the intelligent ventilation and lighting system needs to be installed in the chicken house, the intelligent ventilation and lighting system is first placed inside the placement slot 202, and then a force is applied to each of the two T-shaped blocks 207. The force applied to the two T-shaped blocks 207 is applied so that the front surfaces of the two T-shaped blocks 207 are in the same plane as the front surface of the perforated plate 201, and then the two rotating plates 204 are reset and rotated until the two rotating plates 204 are in contact with the corresponding rectangular blocks 205. Then, the force applied to the two T-shaped blocks 207 is released until the two rotating plates 204 are in contact with the corresponding T-shaped blocks 207. When the intelligent ventilation and lighting system needs to be used, the controller 109 is first connected to the external power supply, and then the controller 109 is turned on, and the temperature threshold and the light intensity threshold are set according to the actual situation. Then the temperature sensor 110 and the light sensor 108 are started. The temperature sensor 110 started at this time will continuously detect the temperature in the chicken house and each detection The temperature data received are all transmitted to the controller 109 in the form of electrical signals. The controller 109 will then compare each received temperature data with the temperature threshold value set in advance by the controller 109. When the temperature data received by the controller 109 is within the temperature threshold range, the controller 109 will not turn on the exhaust fan 103. When the temperature data received by the controller 109 is higher than the temperature threshold value set in advance by the controller 109, the controller 109 will start the exhaust fan 103. The started exhaust fan 103 will ventilate the chicken house with the cooperation of the through holes of the perforated plate 201, the square holes in the wall 3 and the air inlet in the chicken house. At the same time, the started light sensor 108 will also continuously detect the light intensity in the chicken house.And each detected light intensity data is transmitted to the controller 109 in the form of an electrical signal, and then the controller 109 compares each received light intensity data with the light intensity threshold value set by the controller 109 in advance, when the light intensity data received by the controller 109 is higher than the light intensity threshold value set in advance, at this time the controller 109 will not turn on the lighting lamp 104, when the light intensity data received by the controller 109 is within the range of the light intensity threshold value set in advance, at this time the controller 109 will directly start the lighting lamp 104, at this time the lighting lamp 104 started can illuminate the chicken house, that is, the use operation of the intelligent ventilation and lighting system is completed.
[0029] The working principle is: when it is needed to disassemble the intelligent ventilation lighting system from the henhouse, at the moment, a force is applied to each of the two T-shaped blocks 207, so that the two T-shaped blocks 207 move towards the wall 3, at this time, the two moving T-shaped blocks 207 will be matched with the corresponding T-shaped grooves 206, so that the corresponding springs 208 are elastically deformed, when the two T-shaped blocks 207 cannot move any more, at this moment, the movement of the two T-shaped blocks 207 is stopped, and the front surfaces of the two T-shaped blocks 207 are just in the same plane as the front surface of the hole plate 201, at the same time, the two T-shaped blocks 207 are separated from the corresponding rotating plates 204, then a force is applied to each of the two rotating plates 204, so that the two rotating plates 204 are rotated by 180 degrees, when the two rotating plates 204 complete the rotating operation, at this moment, the two rotating plates 204 are separated from the corresponding rectangular blocks 205, and the two rotating plates 204 are separated from the rectangular plate 101, then the force applied to the two T-shaped blocks 207 is released, at this time, the two T-shaped blocks 207 are reset to the original position under the cooperation of the corresponding T-shaped grooves 206 and the elastic force of the corresponding springs 208, then the rectangular plate 101 is directly removed from the inside of the placement groove 202, that is, the disassembly operation of the intelligent ventilation lighting system is completed, when it is needed to install the intelligent ventilation lighting system in the henhouse, at the moment, the intelligent ventilation lighting system is placed in the inside of the placement groove 202, then a force is applied to each of the two T-shaped blocks 207, so that the front surfaces of the two T-shaped blocks 207 are in the same plane as the front surface of the hole plate 201, then the two rotating plates 204 are reset to rotate until the two rotating plates 204 are in contact with the corresponding rectangular blocks 205, then the force applied to the two T-shaped blocks 207 is released until the two rotating plates 204 are in contact with the corresponding T-shaped blocks 207, when it is needed to use the intelligent ventilation lighting system, at the moment, the controller 109 is connected with the external power supply, then the controller 109 is turned on, and the temperature threshold and the illumination intensity threshold are set according to the actual situation, then the temperature sensor 110 and the illumination sensor 108 are started, at this time, the started temperature sensor 110 will continuously detect the temperature in the henhouse, and the detected temperature data is transmitted to the controller 109 in the form of an electrical signal, then the controller 109 compares the received temperature data with the temperature threshold set by the controller 109 in advance, when the received temperature data of the controller 109 is within the temperature threshold, at this moment, the controller 109 will not start the exhaust fan 103, when the received temperature data of the controller 109 is higher than the temperature threshold set by the controller 109 in advance, at this moment, the controller 109 will start the exhaust fan 103, at this time, the started exhaust fan 103 will ventilate the henhouse under the cooperation of the through hole of the hole plate 201, the square hole of the wall 3 and the air inlet of the henhouse, and the started illumination sensor 108 will also continuously detect the illumination intensity in the henhouse,And each detected light intensity data is transmitted to the controller 109 in the form of electrical signal, and then the controller 109 compares each received light intensity data with the light intensity threshold value set by the controller 109 in advance, when the light intensity data received by the controller 109 is higher than the light intensity threshold value set in advance, the controller 109 does not start the lighting lamp 104, when the light intensity data received by the controller 109 is within the range of the light intensity threshold value set in advance, the controller 109 directly starts the lighting lamp 104, and the started lighting lamp 104 can illuminate the henhouse, that is, the operation of the intelligent ventilation and lighting system is completed.
[0030] Wherein, the square hole on the wall 3 is the air outlet of the henhouse.
[0031] The controller 109 (PLC controller), the exhaust fan 103, the lighting lamp 104, the light sensor 108 and the temperature sensor 110 in the utility model are all prior art, and their working principles are all public technology, and their types can be selected according to actual conditions, and here, no more explanation is made.
[0032] The above is only the preferred embodiment of the utility model, and does not limit other forms of the utility model, and any skilled person in the art can change or modify the above disclosed technical content into equivalent embodiments applied to other fields, but as long as the technical scheme content is not deviated from the utility model, any simple modification, equivalent change and modification of the above embodiment according to the technical essence of the utility model still belongs to the protection scope of the utility model technical scheme.
Claims
1. An intelligent ventilation and lighting system for a chicken house, characterized in that: include: Device body (1), mounting mechanism (2) and wall (3); The mounting mechanism (2) comprises a perforated plate (201), a placement groove (202) is provided on the front surface of the perforated plate (201), two symmetrical T-shaped rods (203) are fixed on the front surface of the perforated plate (201), and each of the T-shaped rods (203) is rotatably connected to a rotating plate (204) on the outer surface of one end close to the perforated plate (201), two symmetrical rectangular blocks (205) are fixed on the front surface of the perforated plate (201), and two symmetrical T-shaped slots (206) are provided on the front surface of the perforated plate (201), a T-shaped block (207) is provided inside each of the T-shaped slots (206), and a spring (208) is installed on the surface of each of the T-shaped blocks (207).
2. The intelligent ventilation and lighting system for chicken houses according to claim 1, characterized in that: The interior of the placement groove (202) is connected to the interior of the through hole of the perforated plate (201); the front surface of each rotating plate (204) is in contact with the surface of each T-shaped rod (203); the rear surface of each rotating plate (204) is in contact with the front surface of the perforated plate (201); the opposite sides of the two rotating plates (204) are in contact with the opposite sides of the two rectangular blocks (205); and the opposite sides of the two rotating plates (204) are in contact with the surfaces of the two T-shaped blocks (207).
3. The intelligent ventilation and lighting system for chicken houses according to claim 1, characterized in that: The surfaces of the two T-shaped blocks (207) are in contact with the front surfaces of the inner walls of the two T-shaped slots (206), respectively; the ends of the two springs (208) away from the T-shaped blocks (207) are respectively installed with the rear surfaces of the inner walls of the two T-shaped slots (206); the rear surface of the perforated plate (201) is fixed to the front surface of the wall (3), and the interior of the through hole of the perforated plate (201) is connected to the interior of the square hole of the wall (3).
4. The intelligent ventilation and lighting system for a chicken house according to claim 1, characterized in that: The device body (1) comprises a rectangular plate (101), the front surface of the rectangular plate (101) is provided with two mounting holes (102), an exhaust fan (103) is installed inside one of the mounting holes (102), and a lighting lamp (104) is installed inside the other mounting hole (102), and the front surface of the rectangular plate (101) is provided with a rectangular groove (105).
5. The intelligent ventilation and lighting system for chicken houses according to claim 4, characterized in that: A cylindrical groove (106) is provided on the front surface of the rectangular plate (101), a placement hole (107) is provided on the rear surface of the rectangular plate (101), a light sensor (108) is installed inside the cylindrical groove (106), a controller (109) is installed inside the rectangular groove (105), and a temperature sensor (110) is installed inside the placement hole (107).
6. The intelligent ventilation and lighting system for chicken houses according to claim 5, characterized in that: The exhaust fan (103) is electrically connected to the controller (109), the lighting lamp (104) is electrically connected to the controller (109), the light sensor (108) is electrically connected to the controller (109), and the temperature sensor (110) is electrically connected to the controller (109).
7. The intelligent ventilation and lighting system for a chicken house according to claim 4, characterized in that: The rectangular plate (101) is located inside the placement groove (202), the two rotating plates (204) are in contact with the front surface of the rectangular plate (101), and the interior of one of the mounting holes (102) is connected to the interior of the through hole of the perforated plate (201).