A manure treatment device for livestock farming
By designing a manure treatment device for livestock farming, an automatic circulation treatment of manure is achieved by using a support frame and a motor-driven extrusion screw conveyor, which solves the problem of manual secondary treatment in existing technologies and improves efficiency and convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 东乡族自治县畜牧业发展中心
- Filing Date
- 2025-06-05
- Publication Date
- 2026-05-26
AI Technical Summary
Existing livestock manure treatment devices require manual secondary processing when the manure dehydration effect does not meet expectations, resulting in low efficiency.
Design a manure treatment device for livestock breeding, including a support frame, a liquid collection frame, a feed hopper, a motor, a squeezing screw conveyor, and a circulation component. The motor operation is automatically controlled by a control module to realize the circulation treatment and squeezing dehydration of manure, reducing manual intervention.
It enables automatic recycling of feces according to dehydration needs, improving work efficiency, reducing manual intervention, and is simple and convenient to operate.
Smart Images

Figure CN224280049U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of animal husbandry, and in particular to a manure treatment device for animal husbandry. Background Technology
[0002] Livestock manure treatment refers to a series of technologies and methods for the scientific management and resource utilization of animal manure during livestock production. Effective manure treatment not only helps improve the environmental hygiene conditions of farms and reduce the risk of disease transmission, but also transforms manure into valuable by-products, such as organic fertilizer or bioenergy.
[0003] Existing livestock manure treatment devices typically perform simple solid-liquid separation of manure. However, if the dehydration effect of the manure is not as expected after solid-liquid separation, it is still necessary to manually add the manure back into the manure treatment device for solid-liquid separation, which is labor-intensive, time-consuming, and inefficient.
[0004] Therefore, it is necessary to design a manure treatment device for livestock farming that can automatically circulate and process manure according to dehydration requirements, thereby reducing the need for manual intervention and improving work efficiency. Utility Model Content
[0005] In order to overcome the shortcomings of existing livestock manure treatment devices, which still require manual re-addition of manure to the treatment device for solid-liquid separation when the dehydration effect of manure does not meet expectations, which is labor-intensive, time-consuming, and inefficient, this utility model provides a livestock manure treatment device that can automatically circulate manure according to dehydration needs, reducing the need for manual intervention and improving work efficiency.
[0006] The technical implementation scheme of this utility model is as follows: a manure treatment device for livestock breeding, including a support frame, a liquid collection frame, a feed hopper, a first motor, a squeezing screw conveyor, a filter cylinder, a bracket, an adjusting plate, and a circulation component. The support frame has two parts, left and right, with the liquid collection frame placed between them. A filter cylinder is connected to the upper part of the support frame. A feed hopper is connected to the upper right side of the filter cylinder. The first motor is connected to the right side of the filter cylinder. The first motor and the processor are electrically connected via a control module. A squeezing screw conveyor is connected to the output shaft of the first motor. The squeezing screw conveyor is rotatably connected to the filter cylinder. A bracket is connected to the left side of the filter cylinder. An adjusting plate is threaded onto the bracket. A circulation component capable of automatically circulating and treating manure is provided on the feed hopper.
[0007] More preferably, the liquid collection frame is equipped with two omnidirectional casters on both the front and rear sides.
[0008] More preferably, the circulation assembly includes a conveying pipe, a connecting cylinder, a connecting pipe, a collection frame, a conveying screw, a rotating door, and a second motor. The conveying pipe is connected to the left side of the feed hopper, the connecting cylinder is connected to the rear left side of the conveying pipe, the connecting pipe is connected to the lower side of the connecting cylinder, the collection frame is connected to the lower side of the connecting pipe, the collection frame is connected to its adjacent support frame, the second motor is connected to the lower rear side of the collection frame, the second motor and the processor are electrically connected through a control module, the conveying screw is connected to the output shaft of the second motor, the conveying screw is located inside the connecting pipe, and the left side of the collection frame is rotatably connected to two rotating doors.
[0009] More preferably, a guide plate is provided on the inner front side of the collection box.
[0010] More preferably, a handle is provided on the left side of each revolving door.
[0011] More preferably, it also includes a locking block, a limiting block, and a spring. The sides of the support frames that are close to each other are connected to locking blocks, and the locking blocks are engaged with the adjacent support frames. The upper and lower parts of the locking blocks are slidably connected to limiting blocks, and the limiting blocks are engaged with the liquid collection frame. The left and right parts of the limiting blocks are connected to the adjacent locking blocks with springs.
[0012] Compared with the prior art, the present invention has the following advantages: 1. The present invention starts the first motor through the control module, drives the conveying screw to rotate, so that the feces enter the connecting pipe along the conveying screw, and then are discharged into the feed hopper through the connecting cylinder and the conveying pipe. Then, the extrusion screw continues to convey, extrude and dehydrate through rotation, thus achieving the effect of automatically recycling the feces according to the dehydration requirements, reducing the need for manual intervention and improving work efficiency.
[0013] 2. This utility model allows the adjusting plate to be rotated, so that the adjusting plate moves to the left on the bracket via a thread, thereby adjusting the distance between the adjusting plate and the filter cylinder. This allows for adjustment of the squeezing force of the fecal sludge, making it easier to control the dryness and wetness of the fecal sludge.
[0014] 3. This utility model moves the liquid collection frame forward, causing the limiting block to move inward under pressure. The spring is compressed and contracts. After the liquid collection frame is moved out, the spring returns to its original state, driving the limiting block to move and reset, so that the liquid collection frame is released from the jamming block. This achieves the effect of conveniently limiting and removing the liquid collection frame, with simple operation and convenient use. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0016] Figure 2 This is a cross-sectional three-dimensional structural diagram of the conveying pipe and connecting cylinder of this utility model.
[0017] Figure 3This is a three-dimensional structural diagram of the bracket and adjustment plate and other components of this utility model.
[0018] Figure 4 This is a cross-sectional three-dimensional structural diagram of the collection frame and conveying screw rod of this utility model.
[0019] Figure 5 This is a cross-sectional three-dimensional structural diagram of the card block and limiting block and other components of this utility model.
[0020] The components in the attached diagram are labeled as follows: 1. Support frame, 2. Liquid collection frame, 3. Feed hopper, 4. First motor, 5. Extrusion screw conveyor rod, 6. Filter cylinder, 7. Conveying pipe, 8. Connecting cylinder, 9. Connecting pipe, 10. Collection frame, 11. Conveying screw rod, 12. Rotating door, 121. Second motor, 13. Bracket, 14. Adjusting plate, 15. Locking block, 16. Limiting block, 17. Spring. Detailed Implementation
[0021] First, it should be noted that in different described embodiments, the same components are given the same reference numerals or the same component names. The disclosure contained throughout this specification can be applied semantically to the same components having the same reference numerals or the same component names. The location descriptions selected in the specification, such as upper, lower, lateral, etc., also refer to the directly described and illustrated figures and are semantically applied to the new location when the location changes.
[0022] A manure treatment device for livestock farming, such as Figures 1-3 As shown, the system includes a support frame 1, a liquid collection frame 2, a feed hopper 3, a first motor 4, a squeezing screw conveyor 5, a filter cylinder 6, a bracket 13, an adjusting plate 14, and a circulation assembly. The support frame 1 has two parts, left and right, with the liquid collection frame 2 placed between them. The liquid collection frame 2 has two rotatable casters on both the front and rear sides for easy movement. The filter cylinder 6 is connected to the upper part of the support frame 1. The feed hopper 3 is connected to the upper right side of the filter cylinder 6. The first motor 4 is connected to the right side of the filter cylinder 6. The first motor 4 and the processor are electrically connected via a control module. The squeezing screw conveyor 5 is connected to the output shaft of the first motor 4. The squeezing screw conveyor 5 is rotatably connected to the filter cylinder 6. The bracket 13 is connected to the left side of the filter cylinder 6. The adjusting plate 14 is threaded onto the bracket 13. The feed hopper 3 is equipped with a circulation assembly.
[0023] like Figures 1-4As shown, the circulation assembly includes a conveying pipe 7, a connecting cylinder 8, a connecting pipe 9, a collection frame 10, a conveying screw 11, a rotating door 12, and a second motor 121. The conveying pipe 7 is connected to the left side of the feed hopper 3. The connecting cylinder 8 is connected to the rear left side of the conveying pipe 7. The connecting pipe 9 is connected to the lower side of the connecting cylinder 8. The collection frame 10 is connected to the lower side of the connecting pipe 9. A guide plate is provided on the inner front side of the collection frame 10 for easy guidance. The collection frame 10 is connected to its adjacent support frame 1. The second motor 121 is connected to the lower rear side of the collection frame 10. The second motor 121 and the processor are electrically connected through a control module. The conveying screw 11 is connected to the output shaft of the second motor 121. The conveying screw 11 is located inside the connecting pipe 9. The left side of the collection frame 10 is rotatably connected to two rotating doors 12. Each rotating door 12 has a handle on its left side for easy gripping.
[0024] like Figure 3 and Figure 5 As shown, it also includes a locking block 15, a limiting block 16, and a spring 17. The sides of the support frame 1 that are close to each other are connected to the locking block 15. The locking block 15 is engaged with the adjacent support frame 1. The upper and lower parts of the locking block 15 are slidably connected to the limiting block 16. The limiting block 16 is engaged with the liquid collection frame 2. The left and right parts of the limiting block 16 are connected to the adjacent locking block 15 with the spring 17.
[0025] When using this device, first place the filter cylinder 6 in the livestock manure treatment area and support it with the support frame 1. Then move the liquid collection frame 2 between the support frames 1, so that the locking block 15 engages with the liquid collection frame 2, causing the limiting block 16 to be squeezed inward and the spring 17 to be compressed and contracted. After moving to the designated position, the spring 17 returns to its original position, driving the limiting block 16 to move back to its original position and engage with the liquid collection frame 2. Then, discharge the manure into the feed hopper 3, so that the manure falls into the filter cylinder 6. The processor starts the first motor 4 through the control module, driving the squeezing screw conveyor 5 to rotate, so that the manure moves to the left along the squeezing screw conveyor 5. When moving to the left, the squeezing screw conveyor 5 cooperates with the adjusting plate 14 to squeeze the manure, so that the manure is discharged from the left side of the filter cylinder 6 into the collection frame 10, and the separated water is discharged through the filter cylinder 6 into the liquid collection frame 2, so that the manure moves backward along the guide plate on the collection frame 10. When the manure needs to be further dehydrated, the first motor 4 can be started through the control module to drive the conveying screw. Rotating rod 11 causes the feces to enter the connecting pipe 9 along the conveying screw rod 11, and then be discharged into the feed hopper 3 through the connecting cylinder 8 and the conveying pipe 7. Then, the feces are conveyed, squeezed and dehydrated by rotating the squeezing screw conveyor rod 5. This allows for automatic circulation of the feces according to the dehydration requirements, reducing the need for manual intervention and improving work efficiency. When it is necessary to adjust the squeezing force of the feces, the adjusting plate 14 can be rotated, causing the adjusting plate 14 to move to the left on the bracket 13 via the thread. This adjusts the distance between the adjusting plate 14 and the filter cylinder 6, thereby adjusting the squeezing force of the fecal residue and facilitating the control of the dryness and moisture content of the residue. After processing, the rotating door 12 is turned to open and the processed feces are removed. Then, the liquid collection frame 2 is moved forward, causing the limiting block 16 to be squeezed inward and the spring 17 to be squeezed and contracted. After the liquid collection frame 2 is removed, the spring 17 returns to its original position, causing the limiting block 16 to move and reset, allowing the liquid collection frame 2 to disengage from the locking block 15. This makes it easy to limit and remove the liquid collection frame 2. The operation is simple and convenient.
[0026] Although this disclosure has been described with respect to only a limited number of embodiments, those skilled in the art who benefit from this disclosure will understand that various other embodiments can be devised without departing from the scope of this invention. Therefore, the scope of this invention should be limited only by the appended claims.
Claims
1. A manure treatment device for livestock farming, characterized in that it includes: The device includes a support frame (1), a liquid collection frame (2), a feed hopper (3), a first motor (4), a squeezing screw conveyor (5), a filter cylinder (6), a bracket (13), an adjusting plate (14), and a circulation component. The support frame (1) has two parts, left and right. The liquid collection frame (2) is placed between the support frames (1). The filter cylinder (6) is connected to the upper part of the support frame (1). The feed hopper (3) is connected to the upper right side of the filter cylinder (6). The first motor (4) is connected to the right side of the filter cylinder (6). The first motor (4) and the processor are electrically connected through a control module. The squeezing screw conveyor (5) is connected to the output shaft of the first motor (4). The squeezing screw conveyor (5) is rotatably connected to the filter cylinder (6). The bracket (13) is connected to the left side of the filter cylinder (6). The adjusting plate (14) is threadedly connected to the bracket (13). The feed hopper (3) is equipped with a circulation component that can automatically circulate and process the feces.
2. The livestock manure treatment device according to claim 1, characterized in that, The liquid collection frame (2) has two omnidirectional wheels on the left and right sides, which are both rotatable at the front and rear.
3. A manure treatment device for livestock farming according to claim 1, characterized in that, The circulation assembly includes a conveying pipe (7), a connecting cylinder (8), a connecting pipe (9), a collection frame (10), a conveying screw (11), a rotating door (12), and a second motor (121). The conveying pipe (7) is connected to the left side of the feed hopper (3). The connecting cylinder (8) is connected to the rear left side of the conveying pipe (7). The connecting pipe (9) is connected to the lower side of the connecting cylinder (8). The collection frame (10) is connected to the lower side of the connecting pipe (9). The collection frame (10) is connected to its adjacent support frame (1). The second motor (121) is connected to the lower rear side of the collection frame (10). The second motor (121) and the processor are electrically connected through a control module. The conveying screw (11) is connected to the output shaft of the second motor (121). The conveying screw (11) is located inside the connecting pipe (9). The left side of the collection frame (10) is rotatably connected to two rotating doors (12).
4. A manure treatment device for livestock farming according to claim 3, characterized in that, A guide plate is provided on the inner front side of the collection box (10).
5. A manure treatment device for livestock farming according to claim 3, characterized in that, The revolving door (12) is equipped with a handle on the left side.
6. A manure treatment device for livestock farming according to claim 1, characterized in that, It also includes a locking block (15), a limiting block (16) and a spring (17). The side of the support frame (1) that is close to each other is connected to a locking block (15). The locking block (15) is engaged with the adjacent support frame (1). The upper and lower parts of the locking block (15) are slidably connected to the limiting block (16). The limiting block (16) is engaged with the liquid collection frame (2). The left and right parts of the limiting block (16) are connected to the adjacent locking block (15) by a spring (17).