Beef cattle breeding house

By designing a beef cattle breeding pendant containing a flow guide block, a support column, a rectangular plate and an auxiliary mechanism, the problem that the pendant does not have an automatic cleaning function in the prior art is solved, and the effect of improving the efficiency and convenience of the pendant cleaning without affecting the living environment of the beef cattle is achieved.

CN222954605UActive Publication Date: 2025-06-10SHANDONG SANYOU HALAL FOOD CO LTD
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Patent Information

Application Number
CN202421958822.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-10
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The existing beef cattle breeding pens do not have the function of assisting breeders in cleaning the pens. The breeders need to release the beef cattle before they can be cleaned, especially in rainy days, which reduces the effectiveness and efficiency of the pens.

Method used

A beef cattle breeding pendant including a flow guide block, a support column, a rectangular plate and an auxiliary mechanism was designed. The auxiliary mechanism includes hollow blocks, rectangular holes, grooved partitions, placement holes, flow guide shells and controllers. Through the cooperation of these components, the automatic cleaning function of the pen is realized, and the breeder can clean it without venting the beef cattle.

Benefits of technology

It has achieved the improvement of the cleaning efficiency and convenience of the pendant without affecting the living environment of beef cattle, especially on rainy days, which has improved the effectiveness and efficiency of the pendant.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a beef cattle breeding house, and relates to the technical field of beef cattle breeding, the beef cattle breeding house comprises two flow guide blocks, an auxiliary mechanism comprises two hollow blocks, two rectangular holes, four placing holes, four flow guide shells and a controller, the interior of each rectangular hole is movably sleeved with a partition plate with a groove, and the partition plate with the groove is connected with the controller. A porous plate is fixed to the position, close to the top, of the interior of each containing hole, and a motor is installed at the bottom of each single-hole plate. By arranging the auxiliary mechanism, when a breeder needs to clean the breeding house, the breeder does not need to release beef cattle out of the breeding house firstly and then clean the beef cattle, and the breeding house is convenient to use. And meanwhile, a breeder can clean the breeding house in rainy days, so that the use effect of the beef cattle breeding house is effectively improved, and the use efficiency of the beef cattle breeding house is also improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of beef cattle breeding, in particular to a beef cattle breeding shed. Background Art

[0002] Beef cattle breeding refers to an agricultural production method that specializes in the feeding, breeding, and fattening of beef cattle and other related activities to obtain economic benefits. In beef cattle breeding, in order to ensure the healthy growth and efficient fattening of beef cattle, a suitable living environment is crucial. Among them, the design and construction of beef cattle sheds play a decisive role.

[0003] In the existing technology, although the existing beef cattle breeding sheds can provide a suitable living environment for beef cattle to ensure their healthy growth and efficient fattening during actual use, they do not have the function of assisting breeders in cleaning the sheds. That is, every time a breeder needs to clean the shed where the beef cattle are staying, they need to first release the beef cattle from the shed and then they can clean it. If it rains, it is not convenient to clean the shed, which not only reduces the use effect of the beef cattle breeding shed but also reduces the use efficiency of the beef cattle breeding shed.

[0004] Therefore, it is necessary to propose a beef cattle breeding shed to solve the above-mentioned technical problems. Content of the Utility Model

[0005] The purpose of the utility model is to solve the problem that the existing beef cattle breeding sheds in the existing technology do not have the function of assisting breeders in cleaning the sheds. That is, every time a breeder needs to clean the shed where the beef cattle are staying, they need to first release the beef cattle from the shed and then they can clean it. If it rains, it is not convenient to clean the shed, which not only reduces the use effect of the beef cattle breeding shed but also reduces the use efficiency of the beef cattle breeding shed, and to propose a beef cattle breeding shed.

[0006] To achieve the above purpose, the utility model adopts the following technical scheme: A beef cattle breeding shed, comprising: two diversion blocks, each of the tops of the two diversion blocks is fixed with a plurality of support columns, a rectangular plate is fixed between the tops of the plurality of support columns, and an auxiliary mechanism is arranged on the rectangular plate;

[0007] The auxiliary mechanism includes two hollow blocks, two rectangular holes, four placement holes, four diversion shells, and a controller. A partition with a groove is movably sleeved inside each of the rectangular holes. A porous plate is fixed near the top inside each of the placement holes. A single-hole plate is fixed near the bottom inside each of the hollow blocks. A single-headed screw rod is rotatably connected inside each of the single-hole plates through a bearing, and a motor is installed at the bottom of each of the single-hole plates.

[0008] Preferably, the tops of the two hollow blocks are fixed to the bottom of the rectangular plate, the tops of the four flow guide shells are fixed to the bottom of the rectangular plate, and the interior of each flow guide shell communicates with the interior of each placement hole respectively. The top ends of each single-headed screw rod are respectively threadedly sleeved inside the partition plate with grooves, and the output ends of each motor are respectively installed at the bottom ends of each single-headed screw rod.

[0009] Preferably, the two motors are electrically connected to the controller. One of the rectangular holes is between two of the placement holes, and the other rectangular hole is between the other two placement holes. The two rectangular holes and the four placement holes are all opened at the top of the rectangular plate.

[0010] Preferably, two symmetrically arranged U-shaped blocks are fixed to the top of the rectangular plate. The controller is installed on the front surface of one of the U-shaped blocks. Concave blocks are fixed between the opposite sides of the two U-shaped blocks, and the bottoms of the two concave blocks are fixed to the top of the rectangular plate.

[0011] Preferably, the two sides of each partition plate with grooves are respectively in contact with the surface of each concave block and the inner wall of each U-shaped block. Isolation fences are fixed to the tops of the two concave blocks, and the opposite sides of the two U-shaped blocks are respectively fixed to the surfaces of the two isolation fences.

[0012] Preferably, an auxiliary plate is fixed to the front surface of the rectangular plate. The bottom of the auxiliary plate and the bottoms of the two flow guide blocks are on the same horizontal plane. Two groups of guardrails are fixed to the top of the auxiliary plate, and the number of guardrails in each group is two. A sunshade is fixed to the top of the rectangular plate.

[0013] Preferably, the surface of one of each group of guardrails is fixed to the surface of the sunshade, the surfaces of the other guardrails in each group are respectively fixed to the front surfaces of the two U-shaped blocks, and cowshed doors are arranged at the top grooves of the two U-shaped blocks.

[0014] Compared with the prior art, the advantages and positive effects of the present utility model are as follows.

[0015] 1. In the present utility model, by providing an auxiliary mechanism, when the farmer needs to clean the pen, it is not necessary to release the beef cattle from the pen first. At the same time, the farmer can also clean the pen on rainy days, which not only effectively improves the usage effect of the beef cattle breeding pen, but also improves the usage efficiency of the beef cattle breeding pen. Under the action of the grooved partition board, the space composed of the rectangular plate, U-shaped block, concave block and isolation fence can be divided into two parts, that is, one part for the beef cattle to stay, and the other part for the farmer to clean first. Under the cooperation of the hollow block, motor, single-hole plate, bearing, corresponding rectangular hole and single-headed screw rod, the corresponding grooved partition board can be vertically moved up and down. Under the action of the diversion shell, the mixture composed of water, beef cattle feces and other wastes diverted from the corresponding placement hole can be diverted into the corresponding diversion block.

[0016] 2. In the present utility model, by the cooperation of the support column and the diversion block, the bottom of the rectangular plate can be lifted off the ground, that is, to prevent the water on the ground from affecting the rectangular plate. Under the action of the sunshade, the sun can be prevented from directly shining on the beef cattle bred inside the pen. Under the cooperation of the auxiliary plate and the guardrail, the beef cattle released from the pen can be accurately driven back into the space composed of the rectangular plate, U-shaped block, concave block and isolation fence. Under the action of the cattle shed door, the beef cattle can be prevented from coming out of the above space. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional view of a beef cattle breeding pen proposed by the present utility model;

[0018] Figure 2 is a partial structural schematic diagram of a beef cattle breeding pen proposed by the present utility model;

[0019] Figure 3 is a three-dimensional sectional view of the diversion shell of a beef cattle breeding pen proposed by the present utility model;

[0020] Figure 4 is a partial three-dimensional sectional view of a beef cattle breeding pen proposed by the present utility model;

[0021] Figure 5 is a partial three-dimensional view from the top view angle of a beef cattle breeding pen proposed by the present utility model;

[0022] Figure 6 is a three-dimensional view of the sunshade of a beef cattle breeding pen proposed by the present utility model.

[0023] Legend: 1. Flow guide block; 2. Support column; 3. Rectangular plate; 4. U-shaped block; 5. Concave block; 6. Isolation fence; 7. Auxiliary plate; 8. Guardrail; 9. Sunshade; 10. Cattle shed door; 11. Auxiliary mechanism; 110. Hollow block; 111. Rectangular hole; 112. Grooved partition; 113. Placing hole; 114. Perforated plate; 115. Flow guide shell; 116. Single-hole plate; 117. Single-headed screw rod; 118. Controller; 119. Motor. Detailed implementation mode

[0024] In order to more clearly understand the above-mentioned objects, features and advantages of the present utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0025] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the present utility model is not limited by the specific embodiments disclosed in the following specification.

[0026] As Figures 1-6 shown, the present utility model provides a beef cattle breeding pen, comprising: two flow guide blocks 1, a plurality of support columns 2 are fixed on the top of each flow guide block 1, a rectangular plate 3 is fixed between the tops of the plurality of support columns 2, and an auxiliary mechanism 11 is arranged on the rectangular plate 3;

[0027] The auxiliary mechanism 11 includes two hollow blocks 110, two rectangular holes 111, four placement holes 113, four flow guide shells 115 and a controller 118. A grooved partition 112 is movably sleeved inside each rectangular hole 111. A porous plate 114 is fixed near the top inside each placement hole 113. A single-hole plate 116 is fixed near the bottom inside each hollow block 110. A single-headed screw rod 117 is rotatably connected inside each single-hole plate 116 through a bearing. A motor 119 is installed at the bottom of each single-hole plate 116. The tops of the two hollow blocks 110 are fixed to the bottom of the rectangular plate 3. The tops of the four flow guide shells 115 are fixed to the bottom of the rectangular plate 3, and the inside of each flow guide shell 115 communicates with the inside of each placement hole 113 respectively. The top ends of each single-headed screw rod 117 are respectively threadedly sleeved inside the grooved partition 112. The output ends of each motor 119 are respectively installed with the bottom ends of each single-headed screw rod 117. The two motors 119 are electrically connected to the controller 118. One of the rectangular holes 111 is between two of the placement holes 113, and the other rectangular hole 111 is between the other two placement holes 113. The two rectangular holes 111 and the four placement holes 113 are all opened on the top of the rectangular plate 3. Two symmetrically arranged U-shaped blocks 4 are fixed to the top of the rectangular plate 3. The controller 118 is installed on the front surface of one of the U-shaped blocks 4. Concave blocks 5 are fixed between the opposite sides of the two U-shaped blocks 4. The bottoms of the two concave blocks 5 are fixed to the top of the rectangular plate 3. The two sides of each grooved partition 112 are respectively in contact with the surface of each concave block 5 and the inner wall of each U-shaped block 4. Isolation fences 6 are fixed to the tops of the two concave blocks 5. The opposite sides of the two U-shaped blocks 4 are respectively fixed to the surfaces of the two isolation fences 6. An auxiliary plate 7 is fixed to the front surface of the rectangular plate 3. The bottom of the auxiliary plate 7 and the bottoms of the two flow guide blocks 1 are on the same horizontal plane. Two groups of guardrails 8 are fixed to the top of the auxiliary plate 7, and the number of guardrails 8 in each group is two. A sunshade 9 is fixed to the top of the rectangular plate 3. The surface of one of the guardrails 8 in each group is fixed to the surface of the sunshade 9. The surfaces of the other guardrails 8 in each group are respectively fixed to the front surfaces of the two U-shaped blocks 4. Cow shed doors 10 are arranged at the groove positions at the tops of the two U-shaped blocks 4.

[0028] The achieved effect is that when raising beef cattle in a beef cattle shed, two large pits need to be dug on the ground at the location of the shed first, and then large vats are placed (for collecting the mixture composed of water and waste such as beef cattle feces diverted by the diversion block 1). When beef cattle need to be raised in the beef cattle shed, first remove the two cattle shed doors 10, then connect the controller 118 to an external power supply. Next, use the controller 118 to start the two motors 119 simultaneously. After that, each started motor 119 will drive the connected single-headed screw rod 117 to rotate under the cooperation of the corresponding hollow block 110, bearing, and single-hole plate 116. Then, each rotating single-headed screw rod 117 will make the corresponding grooved partition 112 move downward under the cooperation of the corresponding rectangular hole 111. When the tops of the two grooved partitions 112 are at the same horizontal plane as the top of the rectangular plate 3, the controller 118 will directly pause the two motors 119 simultaneously. Then, with the cooperation of the auxiliary plate 7 and the corresponding set of guardrails 8, the beef cattle to be raised can be driven into the space composed of the rectangular plate 3, U-shaped block 4, concave block 5, and isolation fence 6. When both such large spaces are filled with an appropriate number of beef cattle, directly install the two cattle shed doors 10 back to their original positions. When it is necessary to clean the inside of one of the spaces composed of the rectangular plate 3, U-shaped block 4, concave block 5, and isolation fence 6, the breeder can first drive the beef cattle in this space to half of the area inside this space. Then, with the cooperation of the controller 118, the corresponding motor 119, the corresponding single-hole plate 116, the corresponding hollow block 110, the corresponding bearing, the corresponding rectangular hole 111, and the corresponding single-headed screw rod 117, make the corresponding grooved partition 112 reset to its initial position. When the grooved partition 112 resets to its initial position, the controller 118 will directly pause the motor 119. At this time, the breeder can clean the isolated area. The mixture generated during cleaning will directly pass through the through holes in the porous plate 114 and the cooperation of the corresponding placement holes 113, be transported into the inside of the diversion shell 115, then be diverted to the corresponding diversion block 1, and then be transported into the prepared large vat for collection. When the isolated part of the above space is cleaned up, then lower the grooved partition 112, then drive the beef cattle to the area after this space is cleaned, and then raise the grooved partition 112. Then, the breeder can clean the remaining part of this space. Similarly, the other space in the shed can also adopt the above cleaning method.

[0029] Working principle: When using the beef cattle pen for beef cattle breeding, two large pits need to be dug on the ground at the location of the pen first, and then large vats are placed (for collecting the mixture composed of water and waste such as beef cattle feces diverted by the diversion block 1). When beef cattle need to be bred in the beef cattle pen, first remove the two cattle pen doors 10, then connect the controller 118 to an external power supply, and then use the controller 118 to start the two motors 119 simultaneously. After that, each started motor 119 will drive the single-headed screw rod 117 connected to it to rotate under the cooperation of the corresponding hollow block 110, bearing and single-hole plate 116. Then, each rotating single-headed screw rod 117 will make the corresponding grooved partition 112 move downward under the cooperation of the corresponding rectangular hole 111. When the tops of the two grooved partitions 112 are at the same horizontal plane as the top of the rectangular plate 3, the controller 118 will directly pause the two motors 119 at the same time. Then, with the cooperation of the auxiliary plate 7 and the corresponding set of guardrails 8, the beef cattle to be bred can be driven into the space composed of the rectangular plate 3, U-shaped block 4, concave block 5 and isolation fence 6. When both such large spaces are filled with an appropriate number of beef cattle, directly install the two cattle pen doors 10 back to their original positions. When it is necessary to clean the inside of one of the spaces composed of the rectangular plate 3, U-shaped block 4, concave block 5 and isolation fence 6, the breeder can first drive the beef cattle in this space to half of the area inside this space, and then use the cooperation of the controller 118, the corresponding motor 119, the corresponding single-hole plate 116, the corresponding hollow block 110, the corresponding bearing, the corresponding rectangular hole 111 and the corresponding single-headed screw rod 117 to make the corresponding grooved partition 112 return to its initial position. When the grooved partition 112 returns to its initial position, the controller 118 will directly pause the motor 119. At this time, the breeder can clean the isolated area. The mixture generated during cleaning will directly pass through the through holes on the porous plate 114 and the cooperation of the corresponding placement holes 113, be transported into the inside of the diversion shell 115, then be diverted to the corresponding diversion block 1, and then be transported to the prepared large vat for collection. When the isolated part of the above space is cleaned up, then put down the grooved partition 112, drive the beef cattle to the area after this space is cleaned, and then raise the grooved partition 112. Then the breeder can clean the remaining part of this space. Similarly, the other space in the pen can also be cleaned in the above way.

[0030] Among them, the sunshade 9 is mainly composed of components such as a support frame, connecting parts and a shed top material, and has functions such as sunshading.

[0031] The controller 118 (PLCK controller) and the motor 119 in the present utility model are both prior arts, and their models are selected according to actual use, and no more detailed explanations are given here.

[0032] As described above, it is only the preferred embodiment of the present invention, and it is not a limitation to the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims

1. A cattle breeding pen, characterized in that: include: Two guide blocks (1), each of the guide blocks (1) having a plurality of support columns (2) fixed on the top, a rectangular plate (3) fixed between the tops of the plurality of support columns (2), and an auxiliary mechanism (11) provided on the rectangular plate (3); The auxiliary mechanism (11) comprises two hollow blocks (110), two rectangular holes (111), four placement holes (113), four guide shells (115) and a controller (118); each rectangular hole (111) is movably sleeved with a grooved partition plate (112); each placement hole (113) is fixed with a porous plate (114) near the top; each hollow block (110) is fixed with a single-hole plate (116) near the bottom; each single-hole plate (116) is rotatably connected with a single-head screw rod (117) via a bearing; and each single-hole plate (116) is installed with a motor (119) at the bottom.

2. The beef cattle breeding pen according to claim 1, characterized in that: The tops of the two hollow blocks (110) are fixed to the bottom of the rectangular plate (3), the tops of the four guide shells (115) are fixed to the bottom of the rectangular plate (3), and the interior of each guide shell (115) is respectively connected to the interior of each placement hole (113), the top of each single-head screw rod (117) is respectively threadedly sleeved on the interior of the grooved partition plate (112), and the output end of each motor (119) is respectively installed with the bottom end of each single-head screw rod (117).

3. The beef cattle breeding pen according to claim 1, characterized in that: The two motors (119) are electrically connected to the controller (118), one of the rectangular holes (111) is located between two of the placement holes (113), the other rectangular hole (111) is located between the other two placement holes (113), and the two rectangular holes (111) and the four placement holes (113) are all opened on the top of the rectangular plate (3).

4. The beef cattle breeding pen according to claim 1, characterized in that: Two symmetrical U-shaped blocks (4) are fixed on the top of the rectangular plate (3); the controller (118) is installed on the front surface of one of the U-shaped blocks (4); a concave block (5) is fixed between opposite sides of the two U-shaped blocks (4); and the bottoms of the two concave blocks (5) are fixed to the top of the rectangular plate (3).

5. The beef cattle breeding pen according to claim 4, characterized in that: Both sides of each grooved partition plate (112) are in contact with the surface of each concave block (5) and the inner wall of each U-shaped block (4), and isolation fences (6) are fixed to the tops of the two concave blocks (5), and opposite sides of the two U-shaped blocks (4) are fixed to the surfaces of the two isolation fences (6).

6. The beef cattle breeding pen according to claim 4, characterized in that: An auxiliary plate (7) is fixed to the front surface of the rectangular plate (3); the bottom of the auxiliary plate (7) and the bottoms of the two guide blocks (1) are on the same horizontal plane; two groups of guardrails (8) are fixed to the top of the auxiliary plate (7); and each group of guardrails (8) has two guardrails; and a sunshade (9) is fixed to the top of the rectangular plate (3).

7. The beef cattle breeding pen according to claim 6, characterized in that: The surface of one of the guardrails (8) in each group is fixed to the surface of the sunshade (9), and the surface of another guardrail (8) in each group is fixed to the front surfaces of two U-shaped blocks (4), respectively. The top grooves of the two U-shaped blocks (4) are each provided with a cowshed door (10).