Modernized Breeding Device System with Intelligent and Comprehensive Managed Cleaning

By designing a modern breeding device system with intelligent and comprehensive custody and cleaning in the breeding device, the problem of insufficient side wall cleaning in the existing technology has been solved, and all-round cleaning in the breeding area and the improvement of animal survival rate has been achieved.

CN119366452BActive Publication Date: 2025-06-20XINXIANG JINYUAN BANGDA FU AGRICULTURAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411953716.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-06-20
Estimated Expiration
2044-12-27

AI Technical Summary

Technical Problem

The cleaning methods in the breeding device in the prior art are mostly aimed at the bottom of the concentrated feces and the side walls are less cleaned, resulting in insufficient cleaning.

Method used

A modern breeding device system with intelligent and comprehensive custody and cleaning was designed, including an intelligent custody rack installed on the breeding placement rack, which is equipped with a unit breeding platform and an intelligent custody cleaning box. The system performs unmanned intelligent and comprehensive hosting cleaning of conveyed breeding belts and captive mesh covers from multiple directions through a fully managed cleaning component.

Benefits of technology

The transported breeding belts and captive networks have been fully cleaned, which improves the sanitary conditions in the breeding area, improves the breeding survival rate of animals, and prevents mutual interference by accurately planning different functional areas.

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Abstract

The present invention is applicable to the field of breeding devices, and provides a modern breeding device system with intelligent comprehensive trusteeship and cleaning, including an intelligent trusteeship rack. The intelligent trusteeship rack includes a plurality of unit breeding platforms and a plurality of intelligent trusteeship and cleaning boxes, and the unit breeding platforms are installed above the intelligent trusteeship and cleaning boxes; the unit breeding platforms include a conveying breeding belt member and a captive net cover; a comprehensive trusteeship and cleaning component is installed inside the intelligent trusteeship and cleaning box; the captive net cover above the conveying breeding belt member and the conveying breeding belt member form a breeding area, and the captive net cover and the conveying breeding belt member below the conveying breeding belt member and inside the intelligent trusteeship and cleaning box form an intelligent comprehensive trusteeship and cleaning area; it can accurately plan different functional areas to avoid mutual interference; the comprehensive trusteeship and cleaning component is used to perform non-contact intelligent comprehensive trusteeship and cleaning on the conveying breeding belt member and the captive net cover from multiple directions; improve the sanitary conditions in the breeding area and increase the breeding survival rate of animals.
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Description

Technical Field

[0001] The present invention relates to the field of breeding devices, and more specifically, to a modern breeding device system with intelligent comprehensive trusteeship and cleaning. Background Art

[0002] Breeding refers to the cultivation and reproduction of animals and plants, including livestock breeding, poultry breeding, aquaculture, and special breeding, etc.; and the breeding industry uses animals that have been domesticated by humans, such as livestock and poultry, through artificial feeding and reproduction, to convert plant energy such as forage and feed into animal energy, in order to obtain livestock products such as meat, eggs, milk, wool, cashmere, hides, silk, and medicinal materials; it is a very important link in the material exchange between humans and nature; the breeding industry is one of the main components of agriculture.

[0003] During the breeding process, due to the normal metabolism of animals, a certain amount of feces will be produced. The feces will contain parasites and pathogenic bacteria. In addition, the animal excrement contains rich organic matter and nutrients such as nitrogen, phosphorus, and potassium, and can also supply various minerals and trace elements such as calcium, magnesium, and sulfur required by crops, meeting the needs of crops for various nutrients during the growth process.

[0004] Therefore, from the perspective of avoiding health problems of breeding animals to resource reuse, it is necessary to clean the feces in the breeding device; however, the existing cleaning methods for breeding devices mostly target the bottom where feces are concentrated, and less cleaning is done on the side walls, resulting in the problem of incomplete cleaning; for example, an existing environmental protection recycling and treatment device for feces in a breeding house (a Chinese patent with the authorization announcement number CN117502294B) only cleans the bottom conveyor belt, and there is also no cleaning of the "cage" bottom, causing incomplete cleaning; therefore, in view of the above problems, a modern breeding device system with intelligent comprehensive trusteeship and cleaning is specifically proposed. Summary of the Invention

[0005] The purpose of the present invention is to solve the drawbacks existing in the prior art: the existing cleaning methods for breeding devices mostly target the bottom where feces are concentrated, and less cleaning is done on the side walls, resulting in the problem of incomplete cleaning, and to propose a modern breeding device system with intelligent comprehensive trusteeship and cleaning.

[0006] The specific technical scheme is: a modern breeding device system with intelligent and comprehensive custody and cleaning, including multiple intelligent custody racks installed on the breeding placement racks, the intelligent custody racks include multiple unit breeding platforms and multiple intelligent custody and cleaning boxes, the multiple unit breeding platforms and the multiple intelligent custody and cleaning boxes are in a one-to-one correspondence, and the unit breeding platforms are installed above the intelligent custody and cleaning boxes; the unit breeding platforms include conveying breeding belts and captive nets, and the captive nets are mounted on the conveying breeding belts; a comprehensive custody and cleaning component is installed inside the intelligent custody and cleaning box, and the comprehensive custody and cleaning component is mounted on the captive net at the bottom of the unit breeding platform; the captive net and the conveying breeding belt located above the conveying breeding belt form a breeding area, and the captive net and the conveying breeding belt located below the conveying breeding belt and inside the intelligent custody and cleaning box form an intelligent and comprehensive custody and cleaning area; in the intelligent and comprehensive custody and cleaning area, the comprehensive custody and cleaning component is used to perform unmanned and intelligent comprehensive custody and cleaning of the conveying breeding belt and the captive net from multiple directions.

[0007] The animals are raised in a breeding area formed by a captive net and a conveyor breeding belt. During the breeding process, the conveyor breeding belt will slowly or regularly drive the captive net to move in a closed loop, so as to form a slowly moving or irregularly moving breeding area. On the one hand, the activity of the farmed animals can be increased to improve the meat quality. On the other hand, the conveyor breeding belt will bring the captive net into the intelligent custody cleaning box, so that the captive net and the conveyor breeding belt form an intelligent comprehensive custody cleaning area. In the intelligent comprehensive custody cleaning area, the comprehensive custody cleaning components can perform unmanned contact intelligent comprehensive custody cleaning of the conveyor breeding belt and the captive net from multiple directions. The conveyor breeding belt and the captive net can be thoroughly cleaned in all directions to improve the sanitary conditions in the breeding area and increase the survival rate of animals. At the same time, the breeding area and the intelligent comprehensive custody cleaning area are divided into upper and lower distributed and independent areas, so that different functional areas can be accurately planned to avoid mutual interference.

[0008] In the technical solution of the present invention, the breeding rack includes a base plate, a vertical plate is fixed at the ends of both ends of the base plate, the vertical plate and the base plate are vertically distributed, a connecting frame is fixed at the middle position of the base plate; a plurality of supporting feet are installed at the bottom of the base plate.

[0009] In the technical solution of the present invention, the intelligent trusteeship rack further includes a three-dimensional box one and a three-dimensional box two, and the three-dimensional box one and the three-dimensional box two are arranged in parallel; a plurality of unit breeding platforms and a plurality of intelligent trusteeship cleaning boxes are arranged in an array between the three-dimensional box one and the three-dimensional box two; both ends of the unit breeding platform and the intelligent trusteeship cleaning box are respectively inserted and installed inside the three-dimensional box one and the three-dimensional box two; a control panel is installed on the three-dimensional box one, and the control panel is electrically connected to a driving motor installed inside the driving box through a cable signal. The control panel is used to control the driving speed of the driving motor, and the driving motor is power-transmission-connected to a conveying breeding belt member; the driving box is installed at the end of the conveying breeding belt member.

[0010] In the technical solution of the present invention, the captive net cover includes a plurality of captive net plate components, and the plurality of captive net plate components are arranged in an array on the conveying breeding belt member; the plurality of captive net plate components are elastically connected by a plurality of elastic telescopic members.

[0011] Further, the captive net plate component includes a top net plate and two side net plates, and the two side net plates are distributed on the conveying breeding belt member; the top net plate is distributed on the tops of the two side net plates and is directly fixed to the two side net plates; a plurality of elastic telescopic members are arranged in an array on the sides of the side net plates.

[0012] Still further, the elastic telescopic member includes a U-shaped positioning plate and a receiving cylinder, a inserting column is movably inserted inside the receiving cylinder, one end of the inserting column is rotationally assembled on the U-shaped positioning plate, and the U-shaped positioning plate is fixed on the side of the side net plate; a piston disc is fixed at the other end of the inserting column, and the piston disc is movably inserted inside the receiving cylinder; a spring is fixed on the piston disc, and the spring is fixed at the end inside the receiving cylinder; an anti-detachment ring is provided at the opening of the receiving cylinder.

[0013] In the technical solution of the present invention, the conveying breeding belt member includes a conveyor belt, a transmission roller is respectively inserted at the left and right ends of the conveyor belt, a transmission gear is fixed at each end of the transmission roller, and the transmission gears are engaged on a chain ring, and the chain ring is fixed on the front and back sides of the conveyor belt; a bottom support plate is inserted inside the conveyor belt on the inner side of the transmission roller.

[0014] In the technical solution of the present invention, the comprehensive custody cleaning component includes a flushing frame 1, a cleaning roller frame and a flushing frame 2, the cleaning roller frame is located between the flushing frame 1 and the flushing frame 2; the flushing frame 1 and the flushing frame 2 adopt the same structure; the flushing frame 2 includes a side flushing plate 1 and a side flushing plate 2, the side flushing plate 1 and the side flushing plate 2 are distributed in parallel, the side flushing plate 1 and the side flushing plate 2 are connected through a bottom flushing plate, and the bottom flushing plate and the side flushing plate 1 and the side flushing plate 2 are all vertically distributed; the bottom flushing plate and the side flushing plate 1 and the side flushing plate 2 form a U shape, and are movably clamped on the outside of the confinement net cover; an arc-shaped boss is fixed on the bottom flushing plate, and a plurality of water outlets are opened on the arc-shaped boss, the side flushing plate 1 and the side flushing plate 2; the bottom flushing plate is fixed to the cleaning roller frame through a support beam.

[0015] Furthermore, the cleaning roller frame includes a bottom cleaning brush roller and two side cleaning brush rollers, and the two side cleaning brush rollers are distributed at both ends of the bottom cleaning brush roller; the bottom cleaning brush roller and the side cleaning brush rollers are connected by a gear box-1 power transmission, and two vertically distributed and meshing conical teeth-1 are arranged inside the gear box-1, and the two conical teeth-1 are respectively fixed at the ends of the bottom cleaning brush roller and the side cleaning brush roller; the bottom cleaning brush roller and the two side cleaning brush rollers form a U-shape, and are movably clamped on the outside of the confinement net cover; one of the conical teeth-1 is fixed to the output shaft of the motor-1 through a rotating shaft; the gear box-1 and the support beam are both fixed inside the intelligent hosting cleaning box.

[0016] The intelligent custody cleaning box is equipped with a camera inside, which is used to take pictures of the incoming conveyor breeding belts and enclosure nets, compare the original pictures of the conveyor breeding belts and enclosure nets, trigger and adjust the rotation speed of the bottom cleaning brush roller and the side cleaning brush roller driven by motor 1, and trigger and adjust the water outlet speed and water outlet volume of multiple water outlets provided on the arc boss, side flushing plate 1 and side flushing plate 2.

[0017] The conveyor breeding belt brings the enclosure net cover into the intelligent custody cleaning box, and passes through the flushing rack 1, the cleaning roller rack and the flushing rack 2 in turn. A camera is used to take pictures of the conveyor breeding belt and the enclosure net cover, and then the original photos of the conveyor breeding belt and the enclosure net cover are compared to trigger the adjustment of the motor 1 to drive the rotation speed of the bottom cleaning brush roller and the side cleaning brush roller to adaptively clean the conveyor breeding belt and the enclosure net cover; and the water outlet speed and water volume of the multiple water outlets provided on the arc-shaped boss, the side flushing plate 1 and the side flushing plate 2 are triggered to adjust, so as to adaptively flush the conveyor breeding belt and the enclosure net cover; realize the adaptive use of matching resources to intelligently and comprehensively custody clean the breeding area according to the actual environment of the breeding area, and improve the degree of modern breeding; complete the improvement of the survival rate of breeding on the basis of saving resources.

[0018] In the technical solution of the present invention, the captive net cover includes a flexible shielding plastic belt and a plurality of captive net plate components. The plurality of captive net plate components are distributed in an array on the conveying and breeding belt member, and the flexible shielding plastic belt is detachably laid on the tops of the plurality of captive net plate components; the plurality of captive net plate components are elastically connected by a plurality of elastic telescopic members; the ends of the flexible shielding plastic belt are wound on a winding roller, and a plurality of groups of electromagnetic coils are laid at the connections of the flexible shielding plastic belt with the captive net plate components on both sides thereof. By energizing the plurality of groups of electromagnetic coils, they have magnetism and are adsorbed on the tops of the plurality of captive net plate components; an internal scraping member is installed inside the end of the captive net cover. The internal scraping member includes a scraping roller and two side scraping rollers, and the two side scraping rollers are distributed at both ends of the scraping roller; the scraping roller and the side scraping rollers are power-driven and connected through a second gearbox. Two conical teeth II that are vertically distributed and meshed are arranged inside the second gearbox, and the two conical teeth II are respectively fixed at the ends of the scraping roller and the side scraping rollers; the scraping roller and the two side scraping rollers form a U shape and are movably clamped inside the captive net cover; the scraping roller is attached to the conveying and breeding belt member, and the two side scraping rollers are attached to the captive net plate components.

[0019] After the conveying and breeding belt member brings the captive net cover into the end drive box of the conveying and breeding belt member, the plurality of groups of electromagnetic coils are powered off and lose magnetism, and they are separated from the tops of the plurality of captive net plate components. Then, the winding roller is used to wind the flexible shielding plastic belt, so that the internal scraping member enters the inside of the captive net cover. The scraping roller and the two side scraping rollers are directly used to act on the conveying and breeding belt member and the two side scraping rollers for direct scraping and cleaning, so as to realize the sanitary conditions of the breeding area and the health of the breeding animals; after the cleaning on one side is completed, the conveying and breeding belt member reversely takes the captive net cover out of the drive box, and the plurality of groups of electromagnetic coils are re-energized to have magnetism and are adsorbed on the tops of the plurality of captive net plate components.

[0020] The modern breeding device system of the present invention with intelligent full trusteeship cleaning, compared with the prior art, has:

[0021] First, animals are bred in the breeding area formed by the captive net cover and the conveying and breeding belt member. During the breeding process, the conveying and breeding belt member will slowly drive or periodically drive the captive net cover to move in a closed-loop cycle, so as to form a breeding area with slow movement or irregular movement; on the one hand, it realizes improving the activity amount of the breeding animals and improving the meat quality;

[0022] On the other hand, the conveying and breeding belt member will bring the captive net cover into the intelligent trusteeship cleaning box, so that the captive net cover and the conveying and breeding belt member form an intelligent full trusteeship cleaning area. In the intelligent full trusteeship cleaning area, the full trusteeship cleaning components realize non-contact intelligent full trusteeship cleaning of the conveying and breeding belt member and the captive net cover from multiple directions; the conveying and breeding belt member and the captive net are thoroughly cleaned in all directions, the sanitary conditions in the breeding area are improved, and the breeding survival rate of animals is increased;

[0023] II. By dividing into an upper and a lower independent breeding area and an intelligent fully managed cleaning area, it is possible to accurately plan different functional areas and avoid interference with each other. For example, in the prior art, a device for environmentally friendly recycling and treatment of manure in a breeding house (a Chinese patent with the authorization announcement number CN117502294B) also cleans the conveyor belt on the side of the breeding area. During the flushing process, the manure scattered will splash in all directions, which will further affect the sanitary conditions of the breeding area and the health of the breeding animals.

[0024] III. When the conveying breeding belt piece brings the captive mesh cover into the intelligent managed cleaning box and passes through the first flushing rack, the cleaning roller rack, and the second flushing rack in sequence, cameras are used to take pictures of the entering conveying breeding belt piece and the captive mesh cover, and then compare them with the original pictures of the conveying breeding belt piece and the captive mesh cover to trigger the regulating motor 1 to drive the rotation speeds of the bottom cleaning roller and the side cleaning rollers, so as to adaptively scrape the conveying breeding belt piece and the captive mesh cover; and trigger the water outlet speeds and water output volumes of the multiple water outlet holes provided on the regulating arc-shaped boss, the first side flushing plate, and the second side flushing plate to adaptively wash the conveying breeding belt piece and the captive mesh cover; realizing the intelligent full management and cleaning of the breeding area by adaptively using the matching resources according to the actual environment of the breeding area, improving the modern breeding level; and achieving the improvement of the feeding survival rate on the basis of saving resources.

[0025] IV. After the conveying breeding belt piece brings the captive mesh cover into the end drive box of the conveying breeding belt piece, the multiple electromagnetic coils are powered off and lose magnetism to disengage from the tops of the multiple captive mesh plate assemblies, and then the winding roller is used to wind up the flexible shielding plastic belt, so that the internal cleaning piece enters the captive mesh cover, and the cleaning roller and the two side cleaning rollers are directly used to act on the conveying breeding belt piece and the two side cleaning rollers for direct cleaning, realizing the sanitary conditions of the breeding area and the health of the breeding animals. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. In the drawings:

[0027] Figure 1 is a schematic structural diagram of the modern breeding device system with intelligent full management and cleaning of the present invention;

[0028] Figure 2 is Figure 1 a schematic structural diagram of the breeding placement rack in

[0029] Figure 3 is Figure 1 a schematic structural diagram of the intelligent managed rack in

[0030] Figure 4 is Figure 3Schematic diagram of the assembly structure of the medium unit breeding platform and the comprehensive managed cleaning components;

[0031] Figure 5 for Figure 3 Schematic diagram of the structure of the medium unit breeding platform;

[0032] Figure 6 for Figure 5 Schematic diagram of the assembly structure of the middle enclosure mesh plate assembly and the transmission breeding belt;

[0033] Figure 7 for Figure 5 A schematic diagram of the structure of the middle enclosure mesh panel assembly;

[0034] Figure 8 for Figure 7 A schematic diagram of the structure of the elastic expansion member;

[0035] Figure 9 for Figure 8 A schematic diagram of the structure of the middle elastic telescopic member after the storage cylinder is removed;

[0036] Figure 10 for Figure 5 Schematic diagram of the structure of the conveying breeding belt;

[0037] Figure 11 for Figure 4 Schematic diagram of the structure of the fully managed cleaning component;

[0038] Figure 12 It is a structural schematic diagram of a unit breeding platform in another embodiment of the present invention;

[0039] Figure 13 for Figure 12 Schematic diagram of the structure of the medium-unit breeding platform after removing the winding roller;

[0040] Figure 14 for Figure 13 Schematic diagram of the structure of the internal scraper.

[0041] The codes in the attached figure are:

[0042] 1 is the breeding rack:

[0043] Vertical plate 100, bottom plate 200, connecting frame 300, supporting legs 400;

[0044] 2 is the intelligent hosting rack:

[0045] Three-dimensional box one 500; three-dimensional box two 600; unit breeding platform 700; captive net plate assembly 710 (top net plate 711, side net plate 712, elastic telescopic member 713), drive box 720, conveyor breeding belt member 730, flexible shielding plastic belt 740, winding roller 750, internal scraping member 760; intelligent trusteeship cleaning box 800; comprehensive trusteeship cleaning assembly 810, flushing rack one 820, cleaning roller rack 830, flushing rack two 840; U-shaped positioning plate 7131, inserting column 7132, anti-detachment ring 7133, storage cylinder 7134, piston disc 7135, spring 7136; chain loop 7301, conveyor belt 7302, conveyor gear 7303, bottom support plate 7304; scraping roller 7601, side scraping roller 7602, fixing plate 7603; bottom cleaning roller 8301, gear box one 8302, side cleaning roller 8303; support beam 8401, side flushing plate one 8402, arc-shaped convex platform 8403, bottom flushing plate 8404, water outlet hole 8405, side flushing plate two 8406. Detailed implementation manner

[0046] 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 in conjunction with specific 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0047] In the embodiment of the present invention, as Figure 1 、 Figures 3 - 5 shown: a modern breeding device system for intelligent comprehensive trusteeship cleaning, including a plurality of intelligent trusteeship racks 2 installed on a breeding placement rack 1, the intelligent trusteeship rack 2 including a plurality of unit breeding platforms 700 and a plurality of intelligent trusteeship cleaning boxes 800, the plurality of unit breeding platforms 700 and the plurality of intelligent trusteeship cleaning boxes 800 being in one-to-one correspondence, and the unit breeding platform 700 being installed above the intelligent trusteeship cleaning box 800;

[0048] It should be noted that for the quantity of "a plurality of unit breeding platforms 700 and a plurality of intelligent trusteeship cleaning boxes 800": they can be two, three, four, five, etc. respectively, and there is no limit to the specific quantity. As long as the unit breeding platforms 700 and the plurality of intelligent trusteeship cleaning boxes 800 are in one-to-one correspondence and the unit breeding platform 700 is installed above the intelligent trusteeship cleaning box 800, here it is preferably adopted that the specific quantity of both the plurality of unit breeding platforms 700 and the plurality of intelligent trusteeship cleaning boxes 800 is four;

[0049] The unit breeding platform 700 includes a conveyor breeding belt member 730 and a captive net cover, and the captive net cover is erected on the conveyor breeding belt member 730;

[0050] Inside the intelligent full - custody cleaning box 800, a full - custody cleaning component 810 is installed, and the full - custody cleaning component 810 is erected on the captive - breeding net cover at the bottom of the unit breeding platform 700;

[0051] The captive - breeding net cover above the conveying breeding belt part 730 and the conveying breeding belt part 730 form a breeding area, and the captive - breeding net cover below the conveying breeding belt part 730 and inside the intelligent full - custody cleaning box 800 and the conveying breeding belt part 730 form an intelligent full - custody cleaning area;

[0052] In the intelligent full - custody cleaning area, the full - custody cleaning component 810 is used to perform non - contact intelligent full - custody cleaning on the conveying breeding belt part 730 and the captive - breeding net cover from multiple directions.

[0053] Therefore, aiming at the problem in the prior art that the cleaning method of the breeding device mostly focuses on the bottom where feces are relatively concentrated, and the side walls are less cleaned, resulting in incomplete cleaning, this application can achieve:

[0054] Animals are bred in the breeding area formed by the captive - breeding net cover and the conveying breeding belt part 730. During the breeding process, the conveying breeding belt part 730 will drive the captive - breeding net cover slowly or regularly for closed - loop circular movement, so as to form a slowly moving or irregularly moving breeding area; on the one hand, it can improve the activity amount of the bred animals and improve the meat quality;

[0055] On the other hand, the conveying breeding belt part 730 will bring the captive - breeding net cover into the intelligent full - custody cleaning box 800, so that the captive - breeding net cover and the conveying breeding belt part 730 form an intelligent full - custody cleaning area. In the intelligent full - custody cleaning area, the full - custody cleaning component 810 can perform non - contact intelligent full - custody cleaning on the conveying breeding belt part 730 and the captive - breeding net cover from multiple directions; it can achieve a full - range and thorough cleaning of the conveying breeding belt part 730 and the captive - breeding net, improve the sanitary conditions in the breeding area, and improve the breeding survival rate of animals;

[0056] At the same time, the breeding area and the intelligent full - custody cleaning area are divided into upper and lower distributions and are independent of each other, which can accurately plan different functional areas and avoid mutual interference; for example, in a prior - art device for environmentally friendly recycling and treatment of feces in a breeding house (a Chinese patent with the authorization announcement number CN117502294B), the cleaning of the conveyor belt is also carried out on the side of the breeding area. In this way, during the flushing process, the scattered feces will splash around, which will further affect the sanitary conditions in the breeding area and the health of the bred animals.

[0057] In the embodiment of the present invention, as Figure 2As shown: The breeding placement rack 1 includes a bottom plate 200, and a vertical plate 100 is fixed at each end of the bottom plate 200. The vertical plate 100 is vertically distributed with the bottom plate 200, and a connecting frame 300 is fixed at the middle position of the bottom plate 200; A plurality of support feet 400 are installed at the bottom of the bottom plate 200.

[0058] In the embodiment of the present invention, as Figure 3 and Figure 5 shown: The intelligent trusteeship rack 2 further includes a three-dimensional box one 500 and a three-dimensional box two 600, and the three-dimensional box one 500 and the three-dimensional box two 600 are parallelly distributed; A plurality of unit breeding platforms 700 and a plurality of intelligent trusteeship cleaning boxes 800 are arrayed between the three-dimensional box one 500 and the three-dimensional box two 600;

[0059] Both ends of the unit breeding platform 700 and the intelligent trusteeship cleaning box 800 are respectively inserted and installed inside the three-dimensional box one 500 and the three-dimensional box two 600;

[0060] A control panel is installed on the three-dimensional box one 500. The control panel is electrically connected to a drive motor installed inside the drive box 720 through a cable. The control panel is used to control the driving speed of the drive motor. The drive motor is power-transmission connected to a conveying breeding belt member 730; The drive box 720 is installed at the end of the conveying breeding belt member 730.

[0061] In the embodiment of the present invention, as Figures 5 - 7 shown: The captive net cover includes a plurality of captive net plate assemblies 710, and the plurality of captive net plate assemblies 710 are arrayed on the conveying breeding belt member 730; A plurality of elastic telescopic members 713 are elastically connected between the plurality of captive net plate assemblies 710.

[0062] Furthermore, as Figure 7 shown: The captive net plate assembly 710 includes a top net plate 711 and two side net plates 712. The two side net plates 712 are distributed on the conveying breeding belt member 730; The top net plate 711 is distributed on the tops of the two side net plates 712 and is directly fixed to the two side net plates 712;

[0063] A plurality of elastic telescopic members 713 are arrayed on the sides of the side net plates 712.

[0064] As Figures 7 - 9 shown: The elastic telescopic member 713 includes a U-shaped positioning plate 7131 and a receiving cylinder 7134. An insertion column 7132 is movably inserted inside the receiving cylinder 7134. One end of the insertion column 7132 is rotationally assembled on the U-shaped positioning plate 7131, and the U-shaped positioning plate 7131 is fixed on the side of the side net plate 712;

[0065] At the other end of the inserted column 7132, a piston disk 7135 is fixed. The piston disk 7135 is movably inserted inside the storage cylinder 7134. A spring 7136 is fixed on the piston disk 7135, and the spring 7136 is fixed at the end inside the storage cylinder 7134. At the opening of the storage cylinder 7134, an anti-drop ring 7133 is provided.

[0066] Therefore, start the drive motor installed inside the drive box 720. The drive motor provides power to the conveyor breeding belt member 730. The conveyor breeding belt member 730 drives a plurality of captive net plate assemblies 710 to move forward in sequence. When the plurality of captive net plate assemblies 710 enter the arc position of the conveyor breeding belt member 730, through the elastic telescoping of the inserted column 7132 on the elastic telescoping member 713 combined with the spring 7136, and at the same time, in cooperation with the rotational assembly of the inserted column 7132 and the U-shaped positioning plate 7131, the conveyor breeding belt member 730 will stably and continuously bring the captive net cover into the intelligent trusteeship cleaning box 800, so that the captive net cover and the conveyor breeding belt member 730 form an intelligent comprehensive trusteeship cleaning area. In the intelligent comprehensive trusteeship cleaning area, the comprehensive trusteeship cleaning component 810 realizes the non-contact intelligent comprehensive trusteeship cleaning of the conveyor breeding belt member 730 and the captive net cover from multiple directions.

[0067] In the embodiment of the present invention, as Figure 10 shown: The conveyor breeding belt member 730 includes a conveyor belt 7302. A transmission roller is inserted through each of the left and right ends of the conveyor belt 7302. At both ends of the transmission roller, a transmission gear 7303 is fixed respectively. The transmission gears 7303 are engaged on the chain ring 7301. The chain ring 7301 is fixed on the front and back sides of the conveyor belt 7302. Inside the conveyor belt 7302 on the inner side of the transmission roller, a bottom support plate 7304 is inserted (specifically, the power of the transmission roller is transmitted to the output shaft of the drive motor).

[0068] In the embodiment of the present invention, as Figure 4 and Figure 11 shown: The comprehensive trusteeship cleaning component 810 includes a first flushing frame 820, a cleaning roller frame 830, and a second flushing frame 840. The cleaning roller frame 830 is located between the first flushing frame 820 and the second flushing frame 840. The first flushing frame 820 and the second flushing frame 840 have the same structure;

[0069] The flushing rack two 840 includes a side flushing plate one 8402 and a side flushing plate two 8406. The side flushing plate one 8402 and the side flushing plate two 8406 are distributed in parallel. The side flushing plate one 8402 and the side flushing plate two 8406 are connected by a bottom flushing plate 8404. The bottom flushing plate 8404 is vertically distributed with both the side flushing plate one 8402 and the side flushing plate two 8406. The bottom flushing plate 8404 and the side flushing plate one 8402 and the side flushing plate two 8406 form a U shape and are movably clamped outside the captive net cover.

[0070] An arc-shaped boss 8403 is fixed on the bottom flushing plate 8404. A plurality of water outlet holes 8405 are provided on the arc-shaped boss 8403, the side flushing plate one 8402 and the side flushing plate two 8406. The bottom flushing plate 8404 is fixed on the cleaning roller rack 830 through a support beam 8401.

[0071] Further, as Figure 11 shown: The cleaning roller rack 830 includes a bottom cleaning roller 8301 and two side cleaning rollers 8303. The two side cleaning rollers 8303 are distributed at both ends of the bottom cleaning roller 8301. The bottom cleaning roller 8301 and the side cleaning rollers 8303 are power transmission-connected through a gearbox one 8302. Two vertically distributed and meshing tapered teeth one are arranged inside the gearbox one 8302. The two tapered teeth one are respectively fixed at the ends of the bottom cleaning roller 8301 and the side cleaning rollers 8303.

[0072] The bottom cleaning roller 8301 and the two side cleaning rollers 8303 form a U shape and are movably clamped outside the captive net cover.

[0073] One of the tapered teeth one is fixed on the output shaft of the motor one through a rotating shaft. The gearbox one 8302 and the support beam 8401 are both fixed inside the intelligent trusteeship cleaning box 800.

[0074] Therefore, the conveyor aquaculture belt 730 brings the enclosure net cover into the intelligent custody cleaning box 800, and passes through the flushing rack 1 820, the cleaning roller rack 830 and the flushing rack 2 840 in sequence at a slow speed, or stops briefly when entering the flushing rack 1 820, the cleaning roller rack 830 and the flushing rack 2 840. The flushing rack 1 820 will fully flush the conveyor aquaculture belt 730 and the enclosure net cover, and the cleaning roller rack 830 will further strengthen the comprehensive cleaning of the feces adhering to the enclosure net cover through the bottom cleaning brush roller 8301 and the two side cleaning brush rollers 8303. Finally, multiple water outlets 8405 are provided on the arc-shaped boss 8403, the side flushing plate 1 8402 and the side flushing plate 2 8406 to fully and thoroughly flush the conveyor breeding belt 730 and the enclosure net cover, so that in the intelligent comprehensive custody cleaning area, the conveyor breeding belt 730 and the enclosure net cover are cleaned in an unmanned and intelligent comprehensive custody cleaning manner from multiple directions by using the comprehensive custody cleaning component 810; the conveyor breeding belt 730 and the enclosure net are thoroughly cleaned in all directions, the sanitary conditions in the breeding area are improved, and the breeding survival rate of animals is increased;

[0075] It should be noted that: the intelligent custody cleaning box 800 is installed with a camera inside, which is used to take pictures of the incoming conveyor breeding belt 730 and the enclosure net cover, compare the original pictures of the conveyor breeding belt 730 and the enclosure net cover, trigger the adjustment motor 1 to drive the rotation speed of the bottom cleaning brush roller 8301 and the side cleaning brush roller 8303, and trigger the adjustment of the water outlet speed and water output of the multiple water outlet holes 8405 provided on the arc boss 8403, the side flushing plate 1 8402 and the side flushing plate 2 8406.

[0076] It should be noted that the method for adjusting the speed of the motor 1 is an existing technology, such as reducing the speed of the motor by inserting a resistor in series in the motor rotor circuit, adjusting the speed of the motor by changing the frequency of the power supply, changing the number of magnetic pole pairs by changing the connection method of the motor stator winding to change the synchronous speed, independently controlling the excitation and armature current of the motor to achieve precise control of the motor torque and speed, adjusting the speed by changing the slip rate of the motor, achieving step-by-step speed regulation by changing the number of stator pole pairs, or adjusting the speed by electromagnetic slip clutch, hydraulic coupling, oil film clutch, etc., and there is no restriction on the specific structure, as long as it can meet the requirements for adjusting the speed of the motor 1;

[0077] The method of simultaneously adjusting the water outlet speed and water output of multiple water outlet holes 8405 can be controlled by a water pump, or can be controlled by a control valve, etc. Its detailed structure can be found in existing literature journals, and it can also be purchased directly on the market, or parts can be purchased on the market to assemble it, etc.; it is not what the present invention wants to protect, so it will not be elaborated here, nor drawn in the accompanying drawings.

[0078] Therefore, when the conveying breeding belt piece 730 brings the captive net cover into the intelligent managed cleaning box 800 and successively passes through the first flushing rack 820, the cleaning roller rack 830, and the second flushing rack 840, a camera is used to take pictures of the entering conveying breeding belt piece 730 and the captive net cover, and then compare them with the original pictures of the conveying breeding belt piece 730 and the captive net cover to trigger the adjustment motor one to drive the rotation speeds of the bottom cleaning brush roller 8301 and the side cleaning brush roller 8303, so as to adaptively scrape the conveying breeding belt piece 730 and the captive net cover; and trigger the adjustment of the water outlet speed and water output of the multiple water outlet holes 8405 provided on the adjustable arc-shaped convex platform 8403, the first side flushing plate 8402, and the second side flushing plate 8406, so as to adaptively flush the conveying breeding belt piece 730 and the captive net cover; it realizes the intelligent comprehensive management and cleaning of the breeding area by adaptively using the matching resources according to the environment of the actual breeding area, improves the modern breeding level, and completes the improvement of the survival rate of breeding on the basis of saving resources.

[0079] In the embodiment of the present invention, as Figures 12 - 14 shown: The captive net cover includes a flexible shielding plastic belt 740 and a plurality of captive net plate assemblies 710. The plurality of captive net plate assemblies 710 are arranged in an array on the conveying breeding belt piece 730, and the flexible shielding plastic belt 740 is detachably laid on the tops of the plurality of captive net plate assemblies 710; the plurality of captive net plate assemblies 710 are elastically connected by a plurality of elastic telescopic members 713;

[0080] The ends of the flexible shielding plastic belt 740 are wound on the winding roller 750. A plurality of electromagnetic coils are laid at the connections of the flexible shielding plastic belt 740 with the captive net plate assemblies 710 on both sides thereof. By energizing the plurality of electromagnetic coils, they have magnetism and are adsorbed on the tops of the plurality of captive net plate assemblies 710;

[0081] An internal scraping member 760 is installed inside the end of the captive net cover. The internal scraping member 760 includes a scraping roller 7601 and two side scraping rollers 7602. The two side scraping rollers 7602 are distributed at both ends of the scraping roller 7601; the scraping roller 7601 and the side scraping rollers 7602 are power-driven and connected through a second gear box (specifically, the second gear box is fixed inside the driving box 720 through a fixing plate 7603). Two conical teeth II that are vertically meshed are arranged inside the second gear box, and the two conical teeth II are respectively fixed at the ends of the scraping roller 7601 and the side scraping rollers 7602;

[0082] The scraping roller 7601 and the two side scraping rollers 7602 form a U shape and are movably clamped inside the captive net cover; the scraping roller 7601 is attached to the conveying breeding belt piece 730, and the two side scraping rollers 7602 are attached to the captive net plate assemblies 710.

[0083] After the conveying breeding belt piece 730 brings the captive net cover into the end drive box 720 of the conveying breeding belt piece 730, the multi-group electromagnetic coils are powered off and lose magnetism, and it detaches from the tops of multiple captive net plate assemblies 710. Then, the winding roller 750 is used to wind the flexible shielding plastic belt 740, so that the internal scraping piece 760 enters the captive net cover. The scraping roller 7601 and the two side scraping rollers 7602 are directly used to act on the conveying breeding belt piece 730 and the two side scraping rollers 7602 for direct scraping and cleaning, so as to realize the sanitary conditions of the breeding area and the health of the breeding animals. After the cleaning on one side is completed, the conveying breeding belt piece 730 reversely brings the captive net cover out of the drive box 720, and the multi-group electromagnetic coils are re-energized to have magnetism and adsorb on the tops of multiple captive net plate assemblies 710.

[0084] The structures, ratios, sizes, etc. shown in this specification are only used to cooperate with the content disclosed in the specification for those who are familiar with this technology to understand and read, and are not used to limit the limited conditions for the implementation of the present invention. Therefore, they do not have technical essential significance. Any modification of the structure, change of the ratio relationship, or adjustment of the size, without affecting the effects that the present invention can produce and the purposes that can be achieved, should still fall within the scope that can be covered by the technical content disclosed in the present invention.

[0085] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. Intelligent, fully managed and clean modern breeding equipment system, characterized by: It comprises a plurality of intelligent trustee racks (2) mounted on a breeding rack (1), wherein the intelligent trustee rack (2) comprises a plurality of unit breeding platforms (700) and a plurality of intelligent trustee cleaning boxes (800), the plurality of unit breeding platforms (700) and the plurality of intelligent trustee cleaning boxes (800) are in one-to-one correspondence, and the unit breeding platforms (700) are mounted above the intelligent trustee cleaning boxes (800); The unit breeding platform (700) comprises a transmission breeding belt (730) and a captive breeding net cover, wherein the captive breeding net cover is mounted on the transmission breeding belt (730); A comprehensive custody cleaning component (810) is installed inside the intelligent custody cleaning box (800), and the comprehensive custody cleaning component (810) is mounted on the enclosure net cover at the bottom of the unit breeding platform (700); The enclosure net cover and the conveying breeding belt (730) located above the conveying breeding belt (730) form a breeding area, and the enclosure net cover and the conveying breeding belt (730) located below the conveying breeding belt (730) and inside the intelligent custody cleaning box (800) form an intelligent comprehensive custody cleaning area; In the intelligent comprehensive custody cleaning area, the comprehensive custody cleaning component (810) is used to perform unmanned contact intelligent comprehensive custody cleaning on the conveying breeding belt (730) and the enclosure net cover from multiple directions; The fully managed cleaning assembly (810) comprises a first flushing rack (820), a cleaning roller rack (830) and a second flushing rack (840), wherein the cleaning roller rack (830) is located between the first flushing rack (820) and the second flushing rack (840); The flushing rack 1 (820) and the flushing rack 2 (840) have the same structure; the flushing rack 2 (840) includes a side flushing plate 1 (8402) and a side flushing plate 2 (8406), the side flushing plate 1 (8402) and the side flushing plate 2 (8406) are arranged in parallel, the side flushing plate 1 (8402) and the side flushing plate 2 (8406) are connected by a bottom flushing plate (8404), and the bottom flushing plate (8404) and the side flushing plate 1 (8402) and the side flushing plate 2 (8406) are arranged in parallel. The bottom flushing plate (8404) is vertically distributed, and the side flushing plate 1 (8402) and the side flushing plate 2 (8406) form a U shape, and are movably clamped on the outside of the enclosure net cover; an arc-shaped boss (8403) is fixed on the bottom flushing plate (8404), and a plurality of water outlet holes (8405) are provided on the arc-shaped boss (8403), the side flushing plate 1 (8402) and the side flushing plate 2 (8406); the bottom flushing plate (8404) is fixed on the cleaning roller frame (830) through a support beam (8401); The cleaning roller frame (830) comprises a bottom cleaning brush roller (8301) and two side cleaning brush rollers (8303), and the two side cleaning brush rollers (8303) are distributed at both ends of the bottom cleaning brush roller (8301); the bottom cleaning brush roller (8301) and the side cleaning brush rollers (8303) are connected by power transmission via a gear box one (8302), and two vertically distributed and meshing conical teeth one are arranged inside the gear box one (8302), and the two conical teeth one are respectively fixed at the ends of the bottom cleaning brush roller (8301) and the side cleaning brush roller (8303); the bottom cleaning brush roller (8301) and the two side cleaning brush rollers (8303) form a U shape, and are movably clamped on the outside of the enclosure net cover; one of the conical teeth one is fixed to the output shaft of the motor one via a rotating shaft; the gear box one (8302) and the support beam (8401) are both fixed inside the intelligent custody cleaning box (800); The intelligent custody cleaning box (800) is provided with a camera installed therein, and the camera is used to take photos of the conveyor aquaculture belt (730) and the enclosure net cover entering, compare the original photos of the conveyor aquaculture belt (730) and the enclosure net cover, trigger and adjust the rotation speed of the bottom cleaning brush roller (8301) and the side cleaning brush roller (8303) driven by the motor 1, and trigger and adjust the water outlet speed and water outlet volume of the plurality of water outlet holes (8405) provided on the arc-shaped boss (8403), the side flushing plate 1 (8402) and the side flushing plate 2 (8406).

2. The intelligent, fully managed and clean modern aquaculture device system according to claim 1 is characterized in that: The breeding rack (1) comprises a bottom plate (200), a vertical plate (100) is fixed at each end of the bottom plate (200), the vertical plate (100) and the bottom plate (200) are arranged vertically, a connecting frame (300) is fixed at the middle position of the bottom plate (200), and a plurality of supporting legs (400) are installed at the bottom of the bottom plate (200).

3. The intelligent, fully managed and clean modern aquaculture device system according to claim 1 is characterized in that: The intelligent hosting rack (2) further comprises a three-dimensional box one (500) and a three-dimensional box two (600), wherein the three-dimensional box one (500) and the three-dimensional box two (600) are arranged in parallel; a plurality of unit breeding platforms (700) and a plurality of intelligent hosting cleaning boxes (800) are arranged in an array between the three-dimensional box one (500) and the three-dimensional box two (600); Both ends of the unit breeding platform (700) and the intelligent custody cleaning box (800) are respectively installed inside the three-dimensional box 1 (500) and the three-dimensional box 2 (600); A control panel is installed on the three-dimensional box (500). The control panel is connected to a driving motor installed inside the driving box (720) through a cable electrical signal. The control panel is used to control the driving speed of the driving motor. The driving motor is connected to the conveying breeding belt (730) through power transmission. The driving box (720) is installed at the end of the conveying breeding belt (730).

4. The intelligent, fully managed and clean modern aquaculture device system according to claim 1 is characterized in that: The enclosure net cover comprises a plurality of enclosure net plate assemblies (710), and the plurality of enclosure net plate assemblies (710) are distributed in an array on a conveying breeding belt (730); the plurality of enclosure net plate assemblies (710) are elastically connected via a plurality of elastic expansion members (713).

5. The intelligent, fully managed and clean modern aquaculture device system according to claim 4 is characterized in that: The enclosure mesh panel assembly (710) comprises a top mesh panel (711) and two side mesh panels (712), wherein the two side mesh panels (712) are arranged on the conveying breeding belt (730); the top mesh panel (711) is arranged on the top of the two side mesh panels (712) and is directly fixed to the two side mesh panels (712); A plurality of elastic expansion members (713) are distributed in an array on the side edges of the side mesh plates (712).

6. The intelligent, fully managed and clean modern aquaculture device system according to claim 5 is characterized in that: The elastic telescopic member (713) comprises a U-shaped positioning plate (7131) and a storage tube (7134); an insertion column (7132) is movably inserted into the storage tube (7134); one end of the insertion column (7132) is rotatably mounted on the U-shaped positioning plate (7131); and the U-shaped positioning plate (7131) is fixed to the side of the side mesh plate (712); A piston disc (7135) is fixed to the other end of the insertion column (7132), and the piston disc (7135) is movably inserted into the interior of the storage tube (7134); a spring (7136) is fixed to the piston disc (7135), and the spring (7136) is fixed at the end of the interior of the storage tube (7134); and the storage tube (7134) is provided with an anti-dropping ring (7133) at its opening.

7. The intelligent, fully managed and clean modern aquaculture device system according to claim 1 is characterized in that: The conveyor breeding belt (730) comprises a conveyor belt (7302), wherein a transmission roller is inserted at the left and right ends of the conveyor belt (7302), and a transmission gear (7303) is fixed at each end of the transmission roller. The transmission gear (7303) is meshed with a chain ring (7301), and the chain ring (7301) is fixed at the front and rear sides of the conveyor belt (7302); a bottom support plate (7304) is inserted inside the conveyor belt (7302) located on the inner side of the transmission roller.

8. The intelligent, comprehensive, managed and clean modern aquaculture device system according to any one of claims 1 to 7, characterized in that: The enclosure net cover comprises a flexible shielding plastic belt (740) and a plurality of enclosure net plate assemblies (710); the plurality of enclosure net plate assemblies (710) are arranged in an array on the conveying breeding belt (730); the flexible shielding plastic belt (740) is detachably laid on top of the plurality of enclosure net plate assemblies (710); the plurality of enclosure net plate assemblies (710) are elastically connected via a plurality of elastic telescopic members (713); The end of the flexible shielding plastic belt (740) is rolled up on a winding roller (750), and the flexible shielding plastic belt (740) is provided with a plurality of sets of electromagnetic coils at the connection between the two sides of the flexible shielding plastic belt (740) and the enclosure mesh panel components (710). The plurality of sets of electromagnetic coils are energized to have magnetism and are adsorbed on the tops of the plurality of enclosure mesh panel components (710); An internal scraping member (760) is installed inside the end of the enclosure net cover, and the internal scraping member (760) comprises a scraping roller (7601) and two side scraping rollers (7602), and the two side scraping rollers (7602) are distributed at both ends of the scraping roller (7601); the scraping roller (7601) and the side scraping rollers (7602) are connected by power transmission via a second gear box, and two vertically distributed and meshing conical teeth are arranged inside the second gear box, and the two conical teeth are fixed at the ends of the scraping roller (7601) and the side scraping rollers (7602), respectively; The cleaning roller (7601) and the two side cleaning rollers (7602) form a U shape and are movably mounted inside the enclosure net cover; the cleaning roller (7601) is attached to the conveying breeding belt (730), and the two side cleaning rollers (7602) are attached to the enclosure net plate assembly (710).

Citation Information

Patent Citations

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