Efficient grain-saving accurate feeding and management device for cattle

By designing a precision feeding and management device for cattle with fixed-feeding components and combined components, the problems of non-adjustable feeding trough depth and inaccurate feed quantity control have been solved, achieving precise feeding and cleaning, and improving feeding efficiency and convenience.

CN121369252APending Publication Date: 2026-01-23黔东南苗族侗族自治州畜牧技术推广站
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Patent Information

Application Number
CN202511675148.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-15
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

The depth of the existing cattle feeding troughs cannot be adjusted, which prevents cattle from reaching the feed at the bottom edges of the troughs. Furthermore, the amount of feed cannot be precisely controlled during manual feeding, affecting the accuracy of feeding and the convenience of management.

Method used

A precision feeding and management device for cattle, comprising a fixed-feeding component and a combined component, was designed. The device adjusts the depth of the feeding trough and the amount of feed through a motor-driven mechanical structure, and combines a weighing meter to achieve precise feeding and cleaning, ensuring full utilization of feed and cleanliness of the feeding trough.

Benefits of technology

It enables precise feeding of cattle, avoids feed waste, improves the accuracy of feeding and the convenience of management, reduces the labor intensity of staff, and improves feeding and cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an efficient grain-saving accurate feeding and management device for cattle, and relates to the technical field of breeding equipment, a separation feeding box is clamped to the top end of a fixed top supporting frame, a plurality of oblique throwing fixing pipes are connected to the top of one end of the separation feeding box at equal intervals in a penetrating mode, and a plurality of upward pushing electric push rods are symmetrically clamped to the bottom end of the separation feeding box at equal intervals; a limiting fixing plate is clamped to the top ends of the two upward-pushing electric push rods, processing electric sliding rails are symmetrically installed at the bottom end of the limiting fixing plate, a processing operation plate is installed at one ends of the processing electric sliding rails through sliding rail bases, a guiding fixing frame is slidably connected to one side of the top end of the fixing top supporting frame, and a switching motor is installed at one end of the guiding fixing frame through a motor base. By means of mutual cooperation of pushing-down discharging and concentrated bearing, quantity control and weight measurement of feed are achieved, the feeding accuracy is guaranteed, the situation that the feeding amount of cattle is too large or too small is avoided, and the feeding precision is guaranteed.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of breeding equipment, in particular to a high-efficiency grain-saving precise feeding and management device for cattle. BACKGROUND

[0002] Cattle generally refer to various animals under the bovine family, belong to the mammal class, the even-toed ungulate order, the bovine family and the bovine genus, and are characterized by being large herbivorous animals with robust body shapes and four stomach chambers, and belong to ruminants; in the process of feeding cattle with feed at present, a feeding trough is generally used, and workers regularly put feed into the feeding trough for cattle to eat.

[0003] However, the depth of the feeding trough cannot be adjusted when cattle are fed at present, so that cattle cannot eat the feed at the bottom corners of the feeding trough when eating, and the amount of feed cannot be controlled and weighed during artificial feeding, so that the amount of feed eaten by cattle cannot be accurately controlled, and the situation that too much or too little feed is eaten occurs, thereby affecting the accuracy of feeding and the convenience of management. SUMMARY

[0004] The application provides a high-efficiency grain-saving precise feeding and management device for cattle, which can effectively solve the problem that the depth of the feeding trough cannot be adjusted when cattle are fed at present, so that cattle cannot eat the feed at the bottom corners of the feeding trough when eating, and the amount of feed cannot be controlled and weighed during artificial feeding, so that the amount of feed eaten by cattle cannot be accurately controlled, and the situation that too much or too little feed is eaten occurs, thereby affecting the accuracy of feeding and the convenience of management.

[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: a high-efficiency grain-saving precise feeding and management device for cattle, comprising a fixed top support frame, and a fixed top support frame side end is provided with a fixed feeding assembly; The fixed feeding assembly comprises a separation feeding box. The fixed top support frame top end is clamped with the separation feeding box, and the separation feeding box one end top is equidistantly penetrated and connected with a plurality of inclined feeding fixed pipes. The separation feeding box bottom end is equidistantly and symmetrically clamped with a plurality of upward pushing electric push rods, and the two upward pushing electric push rods top ends are clamped with a limiting fixed plate. The limiting fixed plate bottom end is symmetrically installed with a processing electric sliding rail, and the processing electric sliding rail one end is installed with a processing operation plate through a sliding rail seat. The fixed top support frame top end one side is slidably connected with a guide fixed frame, and the guide fixed frame one end is installed with a switching motor through a motor seat. The switching motor output shaft is clamped with a switching gear, and the guide fixed frame top end is rotatably connected with a linkage gear. The top end of the linkage gear is clamped with a bearing fixing frame, and the top end of the bearing fixing frame is clamped with a fixed storage barrel.

[0006] According to the above technical scheme, one end of the limiting fixed plate is slidably connected with one end of the processing operation plate, and the limiting fixed plate and the processing operation plate are placed inside the separate feeding box.

[0007] According to the above technical scheme, the top end of the guide fixed frame is clamped with a closing limiting frame on one side, and the top end of the closing limiting frame is installed with a push-down motor through a motor base. The output shaft of the push-down motor is clamped with a push-down stirring frame. The bottom end of the fixed storage barrel is symmetrically connected with a downward fixed pipe, and the bottom end of the downward fixed pipe is connected with a relay isolation barrel. The side end of the relay isolation barrel is symmetrically installed with a fixed electric push rod, and one end of the two fixed electric push rods is installed with a separate processing plate. The top end of the limiting fixed plate and the separate processing plate is embedded with a weighing scale. The bottom end of the relay isolation barrel is connected with an inclined row connecting pipe on one side, and the side end of the inclined row connecting pipe is clamped with a downward electric sliding rail. The side end of the downward electric sliding rail is installed with a lower sleeve fixed pipe through a sliding rail base, and one end of the inclined fixed pipe, the downward fixed pipe and the inclined row connecting pipe is embedded with a control valve.

[0008] According to the above technical scheme, the switching gear is meshed with the linkage gear, the top end of the fixed storage barrel is rotatably fitted with the bottom end of the closing limiting frame, and the relay isolation barrel has two.

[0009] According to the above technical scheme, the separate processing plate is inserted and installed inside the relay isolation barrel, and the side end of the lower sleeve fixed pipe is sleeved with the side end of the inclined fixed pipe.

[0010] According to the above technical scheme, the lower sleeve fixed pipe is slidably connected with the inclined row connecting pipe. The input end of the upward electric push rod, the processing electric sliding rail, the switching motor, the push-down motor, the fixed electric push rod, the weighing scale, the downward electric sliding rail and the control valve is electrically connected with the output end of the external controller. The input end of the external controller is electrically connected with the output end of the external power supply.

[0011] According to the above technical scheme, the side end of the fixed top support frame is provided with a joint assembly. The joint assembly comprises a linkage electric sliding rail. One end of the linkage electric sliding rail is installed inside the fixed top support frame, and the linkage electric sliding rail is installed with a suction fixed box on one end through a sliding rail base. The bottom end of the separation feeding box is equidistantly provided with a plurality of discharge fixing ports, and the bottom end of the suction fixing box is connected with an external discharge fixing pipe. One end of the external discharge fixing pipe is connected with a dust collector. The one end of the fixed top support frame is connected with a fixed clamping block on one side, and a combined clamping plate is rotatably connected to the other side of the fixed top support frame, and a combined pin is inserted into the top end of the combined clamping plate. The bottom end of the guide fixed frame is equidistantly connected with a plurality of lifting hydraulic cylinders, and the bottom end of the lifting hydraulic cylinder is provided with an electric wheel. The one end of the guide fixed frame is connected with a vertical auger conveyor, and the bottom end of the vertical auger conveyor is connected with an injection inclined pipe, and the top end of the injection inclined pipe is connected with a fixed installation barrel.

[0012] According to the above technical scheme, the top end of the suction fixing box is slidably attached to the bottom end of the separation feeding box, and the dust collector is slidably installed at one end of the fixed top support frame.

[0013] According to the above technical scheme, the external discharge fixing pipe is installed at one end of the fixed top support frame, and the cross section of the fixed clamping block is a H-shaped section.

[0014] According to the above technical scheme, one end of the vertical auger conveyor is installed in the side end of the closed limiting frame. The input ends of the linkage electric slide rail, dust collector, lifting hydraulic cylinder, electric wheel and vertical auger conveyor are electrically connected with the output end of the external controller.

[0015] Compared with the prior art, the beneficial effects of the present application are: 1. The fixed feeding assembly is provided, the processing electric slide rail drives the processing operation plate to move, so that the limiting fixed plate and the processing operation plate are attached to the separation feeding box, the up-pushing electric push rod drives the limiting fixed plate and the processing operation plate to ascend and descend, the weight is monitored by the weighing meter, the depth inside the separation feeding box is adjusted, so that the depth of the feeding groove can be adjusted according to the weight during feeding, the cattle can feed conveniently, the full use of feed is ensured, and the waste of feed caused by dead angle is avoided. Feed is propelled by a downward-pushing motor and a downward-pushing mixing frame, allowing it to enter the inner side of the relay isolation tank. A separation plate and weighing scale intercept and weigh the feed, achieving quantitative feed processing. A fixed electric push rod then separates the separation plate from the relay isolation tank. A switching motor, switching gear, and linkage gear drive the rotation of the load-bearing frame and fixed storage tank. The downward-pushing discharge and centralized load-bearing work together to control the amount and weight of the feed, ensuring feeding accuracy and preventing cattle from consuming too much or too little. This ensures precise feeding. Combined with a downward-moving electric slide rail, a lower fixed pipe, an inclined connecting pipe, and an inclined throwing fixed pipe, stable feed dispensing is achieved. Through the combination of pipelines and the switching of storage equipment, continuous weighing and supply of feed are achieved, ensuring feeding speed.

[0016] 2. Equipped with a combined component, the feed is lifted by a vertical auger conveyor, a fixed installation bin, and an injection inclined pipe, and then fed into the inner side of the fixed storage bin. Electric wheels and a lifting hydraulic cylinder move the entire equipment, correcting its height and level to ensure simultaneous feeding and movement, maximizing efficiency. An upward-pushing electric actuator moves a limit plate and a processing control plate to clean the inner wall of the feed box. A linkage electric slide rail moves the suction box, and a vacuum cleaner, external discharge pipe, suction box, and discharge port remove debris from the feed box, achieving internal cleaning and ensuring convenient feeding and post-feeding cleaning, reducing worker workload and improving feeding and cleaning efficiency.

[0017] In summary, by cooperating with the fixed-feeding component and the combined component, and utilizing the moving feed and rotating replacement of the weighing and feeding components, continuous feeding and feeding processes can be achieved. Combined with the lifting adjustment of the feed trough depth, and the cleaning and dust removal of the feed trough, the cleanliness of the feed trough and the feeding position are ensured, achieving accurate feeding and improving the precision of feeding and the convenience of management. Attached Figure Description

[0018] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0019] In the attached diagram: Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2 This is a schematic diagram of the structure of the fixed-feeding component of the present invention; Figure 3 This is a schematic diagram of the installation structure of the guide fixing bracket of the present invention; Figure 4This is a schematic diagram of the installation structure of the fixed storage bucket of the present invention; Figure 5 This is a schematic diagram of the installation structure of the control valve of the present invention; Figure 6 This is a schematic diagram of the installation structure of the inclined projection fixing tube of the present invention; Figure 7 This is a schematic diagram of the structure of the combined component of the present invention; Numbered in the diagram: 1. Fixed top support frame; 2. Fixed-feeding assembly; 201. Separated feeding box; 202. Inclined feeding fixing tube; 203. Upward push electric actuator; 204. Limit fixing plate; 205. Processing electric slide rail; 206. Processing operation panel; 207. Guide fixing frame; 208. Switching motor; 209. Switching gear; 210. Linkage gear; 211. Load-bearing fixing frame; 212. Fixed storage bucket; 213. Closure limiting frame; 214. Downward push motor; 215. Downward push mixing rack; 216. Downward feeding fixing tube; 217. Intermediate isolation bucket; 218. Fixed electric actuator; 219. Separated processing plate; 220. Weighing scale; 221. Inclined connecting tube; 222. Downward moving electric slide rail; 223. Lower sleeve fixing tube; 224. Control valve; 3. Combined components; 301. Linked electric slide rail; 302. Suction fixing box; 303. Discharge fixing port; 304. External discharge fixing pipe; 305. Vacuum cleaner; 306. Fixed clamp fixing block; 307. Combined clamping plate; 308. Combined pin; 309. Lifting hydraulic cylinder; 310. Electric wheel; 311. Vertical auger conveyor; 312. Injection inclined pipe; 313. Fixed installation bucket. Detailed Implementation

[0020] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0021] Example: Figures 1-7 As shown, the present invention provides a technical solution, a high-efficiency and feed-saving precision feeding and management device for cattle, including a fixed top support frame 1, and a fixed feeding component 2 is provided on the side end of the fixed top support frame 1; The fixed-feeding component 2 includes a separate feeding box 201, an inclined feeding fixing tube 202, an upward electric push rod 203, a limit fixing plate 204, a processing electric slide rail 205, a processing operation plate 206, a guide fixing frame 207, a switching motor 208, a switching gear 209, a linkage gear 210, a load-bearing fixing frame 211, a fixed storage bucket 212, a closing limiting frame 213, a downward push motor 214, a downward push mixing rack 215, a downward feeding fixing tube 216, a relay isolation bucket 217, a fixed electric push rod 218, a separate processing plate 219, a weighing scale 220, an inclined connecting pipe 221, a downward moving electric slide rail 222, a lower sleeve fixing tube 223, and a control valve 224. The top of the fixed top support frame 1 is snapped with a separate feeding box 201, and several inclined throwing fixing tubes 202 are equidistantly connected through the top of one end of the separate feeding box 201. The bottom of the separate feeding box 201 is symmetrically and equidistantly fitted with several upward electric push rods 203, and the top ends of two upward electric push rods 203 are fitted with limit fixing plates 204. A processing electric slide rail 205 is symmetrically installed at the bottom end of the limiting and fixing plate 204. A processing operation plate 206 is installed at one end of the processing electric slide rail 205 through a slide rail seat. One end of the limiting and fixing plate 204 is slidably connected to one end of the processing operation plate 206. Both the limiting and fixing plate 204 and the processing operation plate 206 are placed inside the separate feeding box 201. The side ends of the limiting and fixing plate 204 and the side ends of the processing operation plate 206 are slidably attached to the inner end of the separate feeding box 201 to achieve steady feeding and cleaning of the inside, ensuring the accuracy of feeding. A guide fixing frame 207 is slidably connected to one side of the top of the fixed top support frame 1, and a switching motor 208 is installed at one end of the guide fixing frame 207 via a motor mount. The output shaft of the switching motor 208 is engaged with a switching gear 209, and the top of the guide bracket 207 is rotatably connected to a linkage gear 210. The top of the linkage gear 210 is engaged with a load-bearing fixing frame 211, and the top of the load-bearing fixing frame 211 is engaged with a fixed storage bucket 212. A closing limit frame 213 is snapped onto one side of the top of the guide fixing frame 207. The switching gear 209 meshes with the linkage gear 210 to achieve steady transmission. The top of the fixed storage bucket 212 rotates and fits into the bottom of the closing limit frame 213 to ensure the stability of the support position and the connection seal. A push motor 214 is installed on the top of the closing limit frame 213 through a motor base. The output shaft of the push motor 214 is snapped with the push stirring rack 215; A fixed storage tank 212 is symmetrically connected to a bottom feeding fixed pipe 216, and a relay isolation tank 217 is connected to the bottom of the bottom feeding fixed pipe 216. There are two relay isolation tanks 217 to ensure the stability of continuous material supply. Two fixed electric push rods 218 are symmetrically installed on the bottom side of the relay isolation tank 217. A separation plate 219 is installed at one end of each fixed electric push rod 218. The separation plate 219 is inserted into the inside of the relay isolation tank 217 to realize the bearing and weighing of the feed. Weighing scales 220 are embedded in the top of both the limiting and fixing plate 204 and the partition plate 219. A diagonal connecting pipe 221 is connected through one side of the bottom end of the relay isolation bucket 217, and a downward sliding rail 222 is snapped onto the side end of the diagonal connecting pipe 221. A lower sleeve fixing pipe 223 is installed on the side end of the lower sliding rail 222 through the rail seat. The side end of the lower sleeve fixing pipe 223 is sleeved with the side end of the inclined throwing fixing pipe 202. The lower sleeve fixing pipe 223 is slidably connected to the inclined row connecting pipe 221 to ensure the combination of the inclined throwing fixing pipe 202 and the inclined row connecting pipe 221 and to ensure the stability of the material supply. A control valve 224 is embedded in one end of the inclined throwing fixing pipe 202, the lower throwing fixing pipe 216 and the inclined row connecting pipe 221. To ensure stable operation of the equipment, the input terminals of the upward push electric actuator 203, the processing electric slide rail 205, the switching motor 208, the downward push motor 214, the fixed electric actuator 218, the weighing scale 220, the downward moving electric slide rail 222, and the control valve 224 are all electrically connected to the output terminal of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

[0022] A combined assembly 3 is provided on the side end of the fixed top support frame 1; The combined component 3 includes a linkage electric slide rail 301, a suction fixing box 302, a discharge fixing port 303, an external discharge fixing pipe 304, a vacuum cleaner 305, a fixed clamp fixing block 306, a combination clamp plate 307, a combination pin 308, a lifting hydraulic cylinder 309, an electric wheel 310, a vertical auger conveyor 311, an injection inclined pipe 312, and a fixed installation bucket 313; A linkage electric slide rail 301 is installed on one end of the inner side of the fixed top support frame 1, and a suction fixing box 302 is installed on one end of the linkage electric slide rail 301 through the slide rail seat. The bottom of the separate feeding box 201 is provided with several discharge fixing ports 303 at equal intervals, and the bottom side of the suction fixing box 302 is connected to an external discharge fixing pipe 304. A vacuum cleaner 305 is connected to one end of the external discharge fixed pipe 304. The top of the suction fixed box 302 slides against the bottom of the partitioned feeding box 201. The vacuum cleaner 305 is slidably installed on one end of the fixed top support frame 1. The external discharge fixed pipe 304 is installed through one end of the fixed top support frame 1 to achieve steady slag discharge and ensure the stability of slag cleaning. One end of the fixed top support frame 1 is connected to a fixed locking block 306. The cross-section of the fixed locking block 306 is I-shaped to achieve stable engagement and positioning restriction. The other end of the fixed top support frame 1 is rotatably connected to a combined locking plate 307. A combined pin 308 is inserted into the top of the combined locking plate 307. Several lifting hydraulic cylinders 309 are equidistantly engaged at the bottom end of the guide fixing frame 207, and electric wheels 310 are installed at the bottom end of the lifting hydraulic cylinders 309. One end of the guide frame 207 is attached to a vertical auger conveyor 311. One end of the vertical auger conveyor 311 is installed through the side of the closed limit frame 213 to achieve steady alignment and material feeding. The bottom of the side of the vertical auger conveyor 311 is connected to an injection inclined pipe 312, and the top of the injection inclined pipe 312 is connected to a fixed installation bucket 313. To ensure stable operation of the equipment, the input terminals of the linkage electric slide rail 301, vacuum cleaner 305, lifting hydraulic cylinder 309, electric wheel 310, and vertical auger conveyor 311 are all electrically connected to the output terminal of the external controller.

[0023] The working principle and usage process of this invention are as follows: When feeding cattle, the worker puts the feed into the inside of the fixed installation bucket 313. At this time, the vertical auger conveyor 311 is started. The feed enters the inside of the vertical auger conveyor 311 through the fixed installation bucket 313 and the injection inclined pipe 312. The vertical auger conveyor 311 drives the feed to rise and put the feed into the closed limiting frame 213 position, and finally drops into the inside of the fixed storage bucket 212. At this time, the push motor 214 drives the push stirring frame 215 to rotate. The control valve 224 opens the position of one of the relay isolation buckets 217. At this time, the rotating push-and-stirring frame 215 pushes the feed in the fixed storage tank 212. The feed enters the inner side of the relay isolation tank 217 through the fixed storage tank 212 and the bottom feeding fixed pipe 216. The feed falls to the top of the separation plate 219. When the feed falls, the weight of the feed is weighed by the weighing scale 220 located at the top of the separation plate 219. When the required weight is reached, the bottom feeding fixed pipe 216 is closed by the control valve 224. At this time, the bottom feeding fixed pipe 216 at the other relay isolation tank 217 is opened to continue pushing the feed out. When the feed storage in the intermediate isolation bucket 217 reaches the feeding amount, the electric wheel 310 drives the lifting hydraulic cylinder 309 and the guide fixing frame 207 to move along the fixed top support frame 1. At this time, the lifting hydraulic cylinder 309 drives the guide fixing frame 207 to lift and adjust, ensuring the stability of its movement. The lower sleeve fixing tube 223 is moved to the side end of the inclined throwing fixing tube 202. The lower sleeve fixing tube 223 is moved along the inclined row connecting tube 221 by the lower sliding rail 222, and the lower sleeve fixing tube 223 is moved to fit the side end of the inclined throwing fixing tube 202, so that the inclined row connecting tube 221, the lower sleeve fixing tube 223 and the inclined throwing fixing tube 202 are combined and connected. At the same time, the processing electric sliding rail 205 drives the processing operation plate 206 to move along the limit fixing plate 204, and the side end of the processing operation plate 206 is attached to the side end of the separated feeding box 201 to realize the preparation before feeding. After preparation, the fixed electric push rod 218 drives the separating plate 219 to move along the relay isolation barrel 217, scraping and pushing the feed down from the top of the separating plate 219. The feed enters the inner side of the separating feeding box 201 along the relay isolation barrel 217, the inclined connecting pipe 221, the lower fixed pipe 223 and the inclined throwing fixed pipe 202. The feed falls to the top of the limiting fixed plate 204 and the processing operation plate 206, and is weighed again by the weighing scale 220. The feed falls into the inner side of the separating feeding box 201, and the cattle begin to eat the feed. During the feeding process, as the weight decreases, the upward push electric push rod 203 drives the limiting fixed plate 204 and the processing operation plate 206 to rise, pushing the feed up to ensure that the cattle have a fixed feeding position and convenient feeding. At the same time, during the feeding process, it avoids the situation where the feed cannot be fully used due to the feeding position being too low or in a dead corner. After one compartment of the feed box 201 is fed, the lower fixed tube 223 is reset by the lower sliding rail 222, which separates the inclined connecting tube 221 from the inclined feeding fixed tube 202. At this time, the switching motor 208 drives the switching gear 209 to rotate along the guide fixed frame 207. The switching gear 209 drives the linkage gear 210 to rotate, and the linkage gear 210 drives the load-bearing fixed frame 211 and the fixed storage bucket 212 to rotate, switching the positions of the two relay isolation buckets 217. The filled relay isolation buckets 217 are rotated to the feeding position, and the above operation is repeated to realize feed feeding. The two relay isolation buckets 217 realize continuous feed support and feeding processing, ensuring the accuracy and speed of feeding. After feeding, the upper push rod 203 drives the limiting fixing plate 204 and the processing operation plate 206 to move back and forth along the dividing feeding box 201. The limiting fixing plate 204 and the processing operation plate 206 scrape and wash the inner wall of the dividing feeding box 201. After scraping and washing, the processing operation plate 206 is reset by the processing electric slide rail 205. The vacuum cleaner 305, the external discharge fixing pipe 304 and the suction fixing box 302 are used to draw air from the discharge fixing port 303 to remove the feed residue from the dividing feeding box 201. The residue enters the inside of the suction fixing box 302 with the air and finally enters the inside of the vacuum cleaner 305 through the external discharge fixing pipe 304, thus achieving the cleaning treatment of the dividing feeding box 201. When multiple separate feeding boxes 201 need to be fed in combination, the two sets of fixed top support frames 1 are attached together, the combination snap-fit ​​plate 307 is rotated so that the combination snap-fit ​​plate 307 is engaged with the fixed card fixing block 306, and the combination pin 308 is engaged with the fixed card fixing block 306 and the combination snap-fit ​​plate 307 to realize the combination of fixed top support frames 1, thereby adjusting the feeding distance and ensuring feeding efficiency.

[0024] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A high-efficiency, feed-saving precision feeding and management device for cattle, comprising a fixed top support frame (1), characterized in that: The fixed top support frame (1) is provided with a fixed feeding component (2) on its side end; The fixed-feeding component (2) includes a divided feeding box (201); The top of the fixed top support frame (1) is snapped with a separate feeding box (201), and a number of inclined throwing fixing tubes (202) are equidistantly connected to the top of one end of the separate feeding box (201). The bottom of the separate feeding box (201) is symmetrically and equidistantly connected to several upward electric push rods (203), and the top ends of two of the upward electric push rods (203) are connected to a limit fixing plate (204). The bottom end of the limiting and fixing plate (204) is symmetrically equipped with a processing electric slide rail (205), and one end of the processing electric slide rail (205) is equipped with a processing operation plate (206) through a slide rail seat. The top of the fixed support frame (1) is slidably connected to a guide fixing frame (207), and a switching motor (208) is installed at one end of the guide fixing frame (207) via a motor mount. The output shaft of the switching motor (208) is engaged with a switching gear (209), and the top of the guide fixing frame (207) is rotatably connected with a linkage gear (210). The top of the linkage gear (210) is engaged with a load-bearing fixing frame (211), and the top of the load-bearing fixing frame (211) is engaged with a fixed storage bucket (212).

2. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 1, characterized in that, One end of the limiting fixing plate (204) is slidably connected to one end of the processing operation plate (206). Both the limiting fixing plate (204) and the processing operation plate (206) are placed inside the separating feeding box (201). The side ends of the limiting fixing plate (204) and the side ends of the processing operation plate (206) are slidably attached to the inner end of the separating feeding box (201).

3. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 1, characterized in that, The top side of the guide fixing frame (207) is snapped with a closing restraint frame (213), and the top of the closing restraint frame (213) is equipped with a push motor (214) via a motor mount. The output shaft of the push motor (214) is engaged with the push stirring frame (215). The bottom end of the fixed storage tank (212) is symmetrically connected to a bottom-feeding fixed pipe (216), and the bottom end of the bottom-feeding fixed pipe (216) is connected to a relay isolation tank (217). The relay isolation barrel (217) is symmetrically equipped with fixed electric push rods (218) at the bottom of its side end, and a separation plate (219) is installed at one end of each of the two fixed electric push rods (218). Weighing scales (220) are embedded in the top of both the limiting fixing plate (204) and the partition processing plate (219). The bottom side of the relay isolation bucket (217) is connected to a slanted connecting pipe (221), and the side end of the slanted connecting pipe (221) is clamped to a downward sliding rail (222). The lower sliding rail (222) has a lower sleeve fixing tube (223) installed on its side end via a rail seat. A control valve (224) is embedded in one end of the inclined projection fixing tube (202), the lower projection fixing tube (216), and the inclined row connecting tube (221).

4. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 3, characterized in that, The switching gear (209) meshes with the linkage gear (210), the top of the fixed storage bucket (212) rotates and engages with the bottom of the closing limit frame (213), and there are two relay isolation buckets (217).

5. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 3, characterized in that, The separation plate (219) is inserted and installed inside the relay isolation barrel (217), and the side end of the lower fixing tube (223) is sleeved with the side end of the inclined fixing tube (202).

6. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 3, characterized in that, The lower sleeve fixing tube (223) is slidably connected to the inclined connecting tube (221); The input ends of the upward push electric actuator (203), the processing electric slide rail (205), the switching motor (208), the downward push motor (214), the fixed electric actuator (218), the weighing scale (220), the downward moving electric slide rail (222), and the control valve (224) are all electrically connected to the output end of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

7. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 6, characterized in that, The fixed top support frame (1) is provided with a joint component (3) on its side end; The combined component (3) includes a linkage electric slide rail (301); The fixed top support frame (1) is equipped with a linkage electric slide rail (301) at one end of its inner side, and a suction fixing box (302) is installed at one end of the linkage electric slide rail (301) through the slide rail seat. The bottom of the separate feeding box (201) is provided with several discharge fixing ports (303) at equal intervals, and the bottom of the suction fixing box (302) is connected to an external discharge fixing pipe (304). A vacuum cleaner (305) is connected through one end of the external discharge fixed pipe (304); One end of the fixed top support frame (1) is fitted with a fixed locking block (306), and the other end of the fixed top support frame (1) is rotatably connected with a combined locking plate (307). A combined pin (308) is inserted into the top of the combined locking plate (307). The bottom end of the guide fixing frame (207) is equidistantly connected to a number of lifting hydraulic cylinders (309), and the bottom end of the lifting hydraulic cylinders (309) is equipped with electric wheels (310). One end of the guide fixing frame (207) is clamped to a vertical auger conveyor (311), and the bottom of the side end of the vertical auger conveyor (311) is connected to an injection inclined pipe (312), and the top end of the injection inclined pipe (312) is connected to a fixed installation bucket (313).

8. The high-efficiency, feed-saving precision feeding and management device for cattle according to claim 7, characterized in that, The top of the suction fixing box (302) slides and fits against the bottom of the dividing feeding box (201), and the vacuum cleaner (305) is slidably installed on one end of the fixed top support frame (1).

9. A high-efficiency, feed-saving precision feeding and management device for cattle according to claim 7, characterized in that, The external drain fixing pipe (304) is installed through one end of the fixed top support frame (1), and the cross-section of the fixed card fixing block (306) is I-shaped.

10. A high-efficiency, feed-saving precision feeding and management device for cattle according to claim 7, characterized in that, One end of the vertical auger conveyor (311) is installed through the side of the closed limiting frame (213); The input ends of the linkage electric slide rail (301), vacuum cleaner (305), lifting hydraulic cylinder (309), electric wheel (310) and vertical auger conveyor (311) are all electrically connected to the output end of the external controller.