A livestock and poultry feeding uniform feed trough
Patent Information
- Application Number
- CN202611284962.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-08-24
- Publication Date
- 2026-10-09
AI Technical Summary
目前,现有畜禽兽药饲料供料槽在实际使用过程中仍存在明显技术缺陷,难以满足标准化、精细化的养殖饲喂需求
[0034]本发明利用双向液压杆、推板、板体与弹簧片相互配合,可实现下料室出料端的可控封堵与柔性开合。在搅拌阶段可封闭出料端,延长物料混合时长,提升混合效果;下料阶段可通过双向液压杆往复驱动,带动板体产生小幅抖动,使物料以间歇式状态均匀下落,能够缓解传统直通式下料结构易出现的集中落料、局部堆料问题,优化下料均匀性。
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Figure CN122873501A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of feeding troughs for livestock and poultry, specifically a uniform feeding trough for veterinary drugs and feeds for livestock and poultry. Background Technology
[0002] In large-scale livestock and poultry farming, integrated veterinary drug and feed feeding is a crucial link in ensuring the healthy growth of livestock and poultry and preventing the spread of diseases. As the core equipment for livestock and poultry feeding, the uniformity and smoothness of feed distribution directly affect the feeding effect and farming efficiency. At present, existing livestock and poultry veterinary drug and feed feeding troughs still have obvious technical defects in actual use, making it difficult to meet the needs of standardized and refined farming and feeding.
[0003] Existing conventional feed troughs have a simple discharge structure, mostly using a straight-through discharge design. However, this often results in uneven feeding, especially with mixed veterinary drugs, powdered feed, and feed prone to clumping due to moisture. This often leads to localized accumulation and shortages of feed in certain areas. Furthermore, powdered feed and veterinary drug powders tend to clump together, preventing smooth flow to the bottom and causing blockages at the discharge port and corners. This not only leads to feed spoilage and uneven drug distribution, resulting in insufficient or excessive medication intake for some livestock, but also significantly increases manual labor and reduces the efficiency of large-scale feeding operations. Therefore, improvements are needed. Summary of the Invention
[0004] To address the problems mentioned in the background section, the present invention provides a uniform feeding trough for veterinary drug feed used in livestock and poultry feeding.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a uniform feeding trough for veterinary drug feed for livestock and poultry, comprising a feeding chamber, wherein supports are fixedly connected to both sides of the feeding chamber, and a backing plate is fixedly connected to the bottom of the supports, and further comprising:
[0006] The movable component is rotatably connected to the discharge end of the feeding chamber;
[0007] The movable component includes guide plates symmetrically rotatably connected to the unloading chamber, and push plates are connected to the side walls of the adjacent ends of the two guide plates in abutment.
[0008] The abutment groove includes a base plate fixed to the bottom end of the bracket, a feeding frame rotatably connected to the middle of the top surface of the base plate, and a plurality of abutting members abutting the top surface of the feeding frame.
[0009] By using two sets of symmetrically arranged guide plates in the active components in conjunction with the push plate, the discharge state of the feeding chamber can be adjusted and controlled, making it easy to achieve controllable material feeding.
[0010] Meanwhile, by utilizing the structural cooperation of the rotating base plate to support the feeding frame and the contact parts to fit the top surface of the feeding frame, the feeding frame and the material can be adjusted as the material falls.
[0011] Preferably, the guide plate includes a plate body rotatably connected to the feeding chamber via a rotating shaft, and the two plates are arranged in a figure-eight shape at the discharge end of the feeding chamber.
[0012] The two sets of plates arranged in a figure-eight pattern can form a guiding structure at the discharge end of the feeding chamber, which can guide the scattered materials when they fall.
[0013] Preferably, a spring plate is fitted at one end of the rotating shaft inside the feeding chamber to allow the plate to elastically return to its original position.
[0014] Preferably, a bidirectional hydraulic rod is installed at the bottom of the push plate, and the output end of the bidirectional hydraulic rod is fixedly connected to the center end of the bottom surface of the push plate;
[0015] The outer wall of the bidirectional hydraulic rod is fixedly fitted with a fixing frame, and the two ends of the fixing frame are fixedly connected with clamping plates.
[0016] The bidirectional hydraulic rod can stably drive the push plate to move up and down through its own telescopic movement. By relying on the reciprocating movement of the push plate to resist the plate body, the dynamic adjustment of the plate body's posture and opening / closing state can be achieved.
[0017] Preferably, the bottom of the card plate is fixedly connected to the base plate, and the top of the card plate is bolted to the bottom of the unloading chamber.
[0018] The clamping plate is fixed by connecting the unloading chamber and the base plate at the top and bottom ends respectively, which can stably limit the bidirectional hydraulic rod in the middle position of the equipment and realize the integrated assembly and fixation of various structures.
[0019] Preferably, each of the four corners of the top surface of the base plate is fixedly connected with a connecting spring, and the top of the connecting spring is fixedly connected to the bottom of the feeding frame.
[0020] The connecting springs at the four corners can provide elastic support for the feeding frame. When the feeding frame is deflected by the pressure force, the connecting springs can deform and store energy. After the external force is released, the elastic force is released to drive the feeding frame to return to its original position.
[0021] Preferably, the abutment includes a connecting frame, which is fixedly connected to the output end of the bottom of the bidirectional hydraulic rod, and an abutment rod is internally threaded at the lower end of the connecting frame.
[0022] The connecting frame rises and falls synchronously with the lower output end of the bidirectional hydraulic rod, which can drive the stop rod to move up and down reciprocally. Relying on the contact and cooperation between the stop rod and the feeding frame, it provides the power source for the deflection and shaking of the feeding frame.
[0023] Preferably, a flexible thin plate is fixed to the bottom of the abutment;
[0024] The abutment is movably connected to the top of the connecting frame, and the top of the first spring is movably connected to the top of the inner cavity of the connecting frame.
[0025] The first spring is movably positioned between the connecting frame and the stop rod.
[0026] The first spring can generate compression deformation during the downward pressing of the connecting frame, thereby achieving a buffering and force-relieving effect and reducing structural wear caused by rigid contact. At the same time, it can drive the abutment rod to reset and rotate when the connecting frame moves upward.
[0027] Preferably, the bottom of the flexible sheet is movably attached to the top surface of the feeding frame, and the bottom end of the abutment is located in the area slightly to the right of the center end of the feeding frame.
[0028] The flexible thin plate arrangement, which is attached to the top surface of the feeding frame, ensures comprehensive scraping operations and avoids blind spots. The eccentric arrangement of the bottom end of the abutment allows the feeding frame to rotate stably.
[0029] Preferably, an agitator is rotatably connected inside the feeding chamber;
[0030] The agitation assembly includes an agitator blade rotatably connected inside the feeding chamber, one end of which passes through the feeding chamber and is connected to a servo motor;
[0031] The servo motor is fixed to the outer wall of the feeding chamber, and the output end of the servo motor is fixed to the stirring blade.
[0032] The servo motor stably drives the agitator blades inside the feeding chamber to rotate continuously, thoroughly mixing the added veterinary drug and feed mixture. This improves the situation of uneven mixing and local clumping. Pre-mixed materials can effectively avoid abnormal feeding problems caused by material clumping and imbalance in proportion during subsequent feeding, ensuring uniform material composition in each feeding and improving the stability and standardization of livestock and poultry feeding.
[0033] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0034] This invention utilizes a bidirectional hydraulic rod, push plate, plate body, and spring sheet in cooperation to achieve controllable sealing and flexible opening and closing of the discharge end of the feeding chamber. During the mixing stage, the discharge end can be closed to prolong the material mixing time and improve the mixing effect; during the feeding stage, the bidirectional hydraulic rod can reciprocate to drive the plate body to produce slight vibrations, allowing the material to fall evenly in an intermittent manner. This can alleviate the problems of concentrated material falling and localized material accumulation that are prone to occur in traditional straight-through feeding structures, and optimize the uniformity of material feeding.
[0035] This invention utilizes a bidirectional hydraulic rod with a linked lower contact component that works synchronously. Through the structural cooperation of the connecting frame, the abutment rod, the first spring, and the flexible thin plate, a reciprocating rotating scraping action can be achieved on the top surface of the feeding frame. This can sort and disperse the falling and accumulated material, reduce the probability of material sticking to the surface of the feeding frame and accumulating, reduce the frequency of manual cleaning, and indirectly improve the efficiency of feeding operations.
[0036] This invention uses a feeding frame and a connecting spring at the top of the base plate to form an elastic swing structure. Under the intermittent pressing action of the abutment rod, it can achieve small-amplitude reciprocating deflection and shaking, which can continuously disturb the material inside the frame, further improve the situation of uneven material thickness, local material shortage or accumulation at the bottom of the trough, reduce the possibility of blockage at the discharge port and the bottom of the trough, and can be adapted to refined and large-scale livestock and poultry feeding operations, improving the overall feeding quality and equipment practicality. Attached Figure Description
[0037] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0038] Figure 2 This is a schematic diagram of the side cross-section of the present invention;
[0039] Figure 3 This is a detailed structural diagram of the abutment groove component of the present invention;
[0040] Figure 4 This is a schematic diagram of the subdivided structure of the active components of the present invention;
[0041] Figure 5 for Figure 4 A magnified view of the structure at point A in the middle;
[0042] Figure 6 This is an exploded view of the active component of the present invention;
[0043] Figure 7 for Figure 6 A magnified schematic diagram of the structure at point B in the middle;
[0044] Figure 8 for Figure 6 A magnified schematic diagram of the structure at point C.
[0045] In the picture:
[0046] 100. Feeding chamber; 200. Support frame;
[0047] 300, Abutment groove; 310, Base plate; 320, Connecting spring; 330, Feeding frame; 340, Abutment component; 341, Connecting frame; 342, Abutment rod; 343, First spring; 344, Flexible sheet;
[0048] 400, pallet;
[0049] 500. Moving component; 510. Two-way hydraulic rod; 520. Push plate; 530. Guide plate; 531. Plate body; 532. Rotating shaft; 533. Spring plate; 540. Fixing bracket;
[0050] 600, stirring assembly; 610, stirring blade; 620, servo motor. Detailed Implementation
[0051] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0052] like Figures 1 to 8 As shown, the present invention provides a uniform feeding trough for veterinary drug feed for livestock and poultry, including a feeding chamber 100, with supports 200 fixedly connected to both sides of the feeding chamber 100, and a backing plate trough 300 fixedly connected to the bottom of the supports 200, and further including:
[0053] The movable component 500 is rotatably connected to the discharge end of the feeding chamber 100;
[0054] Among them, the active component 500 includes guide plates 530 symmetrically rotatably connected to the unloading chamber 100, and push plates 520 are connected to the side walls of the adjacent ends of the two guide plates 530 in abutment.
[0055] The abutment groove 300 includes a base plate 310 fixedly connected to the bottom end of the bracket 200. A feeding frame 330 is rotatably connected to the middle of the top surface of the base plate 310. A plurality of abutting members 340 are abuttingly connected to the top surface of the feeding frame 330.
[0056] The above solution, with the feeding chamber 100, support frame 200, and backing plate trough 300 forming an integrated support structure, improves the overall structural stability of the equipment and provides a stable foundation for feeding operations. By utilizing the two symmetrically arranged guide plates 530 in the movable component 500 in conjunction with the push plate 520, the discharge state of the feeding chamber 100 can be adjusted and controlled, facilitating controllable material feeding.
[0057] Meanwhile, the structure of the bottom plate 310 rotating to support the feeding frame 330 and the contact part 340 fitting against the top surface of the feeding frame 330 can assist in adjusting the feeding frame 330 and the material during the falling process, which helps to improve the uneven material falling and local accumulation, and is suitable for the use of uniform feeding of veterinary drugs and feed.
[0058] The guide plate 530 includes a plate body 531 rotatably connected to the feeding chamber 100 via a rotating shaft 532, and the two plates 531 are arranged in a figure-eight shape at the discharge end of the feeding chamber 100.
[0059] The above scheme employs two sets of plates 531 arranged in a figure-eight pattern to form a guiding structure at the discharge end of the feeding chamber 100, guiding the scattered materials as they fall. Simultaneously, the plates 531 are rotatably mounted via a pivot 532, allowing the opening and closing angles to be adjusted according to operational needs. This facilitates flexible control of the feeding rate and range, providing structural support for uniform material distribution.
[0060] The rotating shaft 532 has a spring plate 533 fitted at one end inside the feeding chamber 100 to make the plate 531 elastically return to its original position.
[0061] Using the above scheme: the spring plate 533, relying on its own elastic properties, provides an elastic restoring force for the rotation of the plate 531. After the pusher plate 520 releases the pushing limit on the plate 531, it can assist the plate 531 in autonomously rotating and restoring, realizing the cyclic adaptation of the opening and closing action of the plate 531. This structure allows the plate 531 to maintain a stable opening and closing vibration state, which helps the material fall intermittently and evenly, reducing the probability of material agglomeration and clogging of the discharge end.
[0062] A bidirectional hydraulic rod 510 is installed at the bottom of the push plate 520, and the output end of the bidirectional hydraulic rod 510 is fixedly connected to the center end of the bottom surface of the push plate 520.
[0063] The outer wall of the bidirectional hydraulic rod 510 is fixedly fitted with a fixing frame 540, and the two ends of the fixing frame 540 are fixedly connected with clamping plates 400.
[0064] Using the above scheme: the bidirectional hydraulic rod 510 can stably drive the push plate 520 to move up and down through its own telescopic movement. The reciprocating movement of the push plate 520 abuts against the plate body 531, achieving dynamic adjustment of the plate body 531's posture and opening / closing state. The cooperative structure of the fixing frame 540 and the clamping plate 400 can limit and fix the bidirectional hydraulic rod 510, reducing the offset and shaking generated during hydraulic rod operation, improving the stability and operational accuracy of the transmission structure, and ensuring the continuity of the material feeding and adjustment actions.
[0065] The bottom of the pallet 400 is fixedly connected to the base plate 310, and the top of the pallet 400 is bolted to the bottom of the unloading chamber 100.
[0066] The above solution involves fixing the clamping plate 400 to the unloading chamber 100 and the base plate 310 at its upper and lower ends, respectively. This securely positions the bidirectional hydraulic rod 510 in the middle of the equipment, achieving integrated assembly and fixation of all structures. This connection method improves the fit between the hydraulic transmission structure and the overall equipment, reduces the possibility of component loosening during operation, and the bolted connection facilitates disassembly, inspection, and maintenance, enhancing the equipment's practicality.
[0067] Connecting springs 320 are fixedly connected to the four corners of the top surface of the base plate 310, and the top of the connecting springs 320 is fixedly connected to the bottom of the feeding frame 330.
[0068] The above solution employs a four-corner connecting spring 320 system to provide elastic support for the feeding frame 330. When the feeding frame 330 is subjected to a compressive force and deflects, the connecting spring 320 can deform and store energy. After the external force is released, the spring force is released to reset the feeding frame 330. Through the reciprocating deflection and shaking of the feeding frame 330, the material inside the frame can be continuously disturbed, improving the problems of localized material accumulation and uneven material distribution, and enhancing the overall uniformity of material feeding.
[0069] The abutment 340 includes a connecting frame 341, which is fixedly connected to the output end of the bottom of the bidirectional hydraulic rod 510. The lower end of the connecting frame 341 is internally threaded with an abutment rod 342.
[0070] The above solution involves the connecting frame 341 rising and falling synchronously with the lower output end of the bidirectional hydraulic rod 510, which drives the abutment rod 342 to move up and down reciprocally. The contact between the abutment rod 342 and the feeding frame 330 provides the power source for the deflection and vibration of the feeding frame 330. Furthermore, the abutment rod 342 and the connecting frame 341 are connected by a thread, allowing for fine-tuning of the abutment rod 342's installation height according to usage requirements, adapting to different feeding operation conditions and improving equipment adaptability.
[0071] A flexible thin plate 344 is fixed to the bottom of the abutment 342;
[0072] The top of the abutment 342 inside the connecting frame 341 is movably connected to the first spring 343, and the top of the first spring 343 is movably connected to the top of the inner cavity of the connecting frame 341.
[0073] The first spring 343 is movably positioned between the connecting frame 341 and the stop rod 342.
[0074] The above solution allows the first spring 343 to undergo compression deformation during the downward pressing of the connecting frame 341, achieving a buffering and stress-relieving effect and reducing structural wear caused by rigid contact. Simultaneously, it can drive the abutment rod 342 to reset and rotate when the connecting frame 341 moves upward. In conjunction with the flexible thin plate 344 at the bottom of the abutment rod 342, it can reciprocate and scrape the top surface of the feeding frame 330, reducing material adhesion to the surface of the feeding frame 330, alleviating material accumulation and clumping problems, and optimizing material spreading.
[0075] The bottom of the flexible sheet 344 is movably attached to the top surface of the feeding frame 330, and the bottom end of the abutment 342 is located in the area slightly to the right of the center end of the feeding frame 330.
[0076] The above-mentioned arrangement, where the flexible thin plate 344 is attached to the top surface of the feeding frame 330, ensures comprehensive scraping operations and avoids blind spots. The eccentric arrangement of the bottom end of the abutment rod 342 enables the feeding frame 330 to rotate stably.
[0077] An agitator 600 is rotatably connected inside the feeding chamber 100;
[0078] The agitation assembly 600 includes an agitator 610 rotatably connected inside the feeding chamber 100, one end of which passes through the feeding chamber 100 and is connected to a servo motor 620.
[0079] The servo motor 620 is fixedly connected to the outer wall of the feeding chamber 100, and the output end of the servo motor 620 is fixedly connected to the stirring blade 610.
[0080] Using the above solution: the servo motor 620 can stably drive the stirring blade 610 inside the feeding chamber 100 to rotate continuously, fully mixing the added veterinary drug and feed mixture, which can improve the uneven mixing and local clumping of materials. The pre-mixed materials can effectively avoid abnormal feeding problems caused by material clumping and imbalance of proportions during subsequent feeding, ensuring that the material composition is uniform each time it is fed, and improving the stability and standardization of livestock and poultry feeding.
[0081] Working principle and usage process of this invention:
[0082] During the actual feeding operation of the equipment, the staff can put the feed mixed with veterinary drugs into the feeding chamber 100. In order to ensure that the feed and veterinary drugs are fully integrated and reduce the phenomenon of material clumping, the servo motor 620 can be started in advance before the feeding operation. The servo motor 620 drives the stirring blade 610 inside the feeding chamber 100 to rotate continuously and uniformly, and continuously stir and mix the put-in materials, thereby optimizing the uniformity of material mixing and reducing the subsequent abnormal feeding problems caused by material clumping and uneven mixing.
[0083] Before the material mixing stage, the bidirectional hydraulic rod 510 can be activated. The upward thrust of the upper output end of the bidirectional hydraulic rod 510 drives the two sets of plates 531 to change their posture, so that the plates 531 gradually switch from the initial tilted state to the flat state. The flattened plates 531 block and limit the discharge end of the feeding chamber 100, allowing the material to be temporarily retained and stored inside the feeding chamber 100. This prolongs the contact and mixing time between the material and the stirring blade 610, further improving the overall mixing effect of veterinary drugs and feed, and ensuring the balance of the feed ratio in subsequent feeding.
[0084] After the materials are fully mixed, the bidirectional hydraulic rod 510 is operated again, causing its upper output end to drive the push plate 520 to descend smoothly, releasing the top support limit on the two sets of plates 531. At this time, the two sets of plates 531 can gradually open under their own weight and the elastic reset action of the spring plate 533, slowly releasing the blockage on the discharge end of the feeding chamber 100. The mixed materials inside the feeding chamber 100 can fall smoothly into the feeding frame 330 along the plate surface guide structure of the plates 531, realizing the orderly discharge of materials.
[0085] During the material falling process, the operating status of the bidirectional hydraulic rod 510 can be adjusted through the control terminal of the equipment, so that the upper and lower output ends of the bidirectional hydraulic rod 510 can move back and forth, thereby driving the push plate 520 to reciprocate to press against the two sets of plates 531, causing the plates 531 to produce a small opening and closing shaking effect. This causes the material discharged from the discharge chamber 100 to be evenly scattered above the feeding frame 330 in an intermittent shaking manner, which can effectively improve the phenomenon of concentrated accumulation of materials and excessively fast local discharge.
[0086] Meanwhile, the lower output end of the bidirectional hydraulic rod 510 can synchronously drive the connecting frame 341 to continuously press down the abutment rod 342. Since the bottom end of the abutment rod 342 and the bottom end of the flexible thin plate 344 are in contact with the top surface of the feeding frame 330, and the abutment rod 342 and the connecting frame 341 are connected by threads, under the downward driving action of the connecting frame 341, the abutment rod 342 can drive the flexible thin plate 344 to rotate along the top surface of the feeding frame 330. During this process, the first spring 343 is compressed and deformed. When the connecting frame 341 returns to its original position with the bidirectional hydraulic rod 510, the first spring 343 in the compressed state can release its elastic potential energy, driving the abutment rod 342 and the flexible thin plate 344 to rotate and return to their original positions in the opposite direction. The flexible thin plate 344 can then scrape and comb the material above the feeding frame 330, which can, to a certain extent, prevent the material from adhering to the inner wall and top surface of the feeding frame 330 for a long time, reducing the accumulation of material on the wall, clumping, and deterioration.
[0087] During the process of the connecting frame 341 pressing down on the abutment rod 342, the bottom end of the abutment rod 342 can exert a slight abutment force on the top surface of the feeding frame 330, causing the feeding frame 330 to deflect and swing slightly around its rotating connection end with the bottom plate 310 as the axis. When the connecting frame 341 moves upward to relieve the force, the feeding frame 330 can deflect and reset in the opposite direction under the elastic reset action of the connecting spring 320. Through the continuous reciprocating flipping and slight shaking of the feeding frame 330, the material above the frame can be continuously disturbed and sorted, alleviating the problems of local accumulation and uneven thickness of the material, ensuring the overall uniformity of the material distribution, effectively avoiding the defects of local accumulation, lack of material and blockage at the bottom of the trough, and adapting to the needs of refined livestock and poultry feeding operations.
[0088] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0089] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A uniform feeding trough for veterinary drug feed for livestock and poultry, comprising a feeding chamber (100), wherein supports (200) are fixedly connected to both sides of the feeding chamber (100), and a backing plate trough (300) is fixedly connected to the bottom of the supports (200), characterized in that: Also includes: The movable component (500) is rotatably connected to the discharge end of the feeding chamber (100); The active component (500) includes guide plates (530) symmetrically rotatably connected to the feeding chamber (100), and push plates (520) are connected to the side walls of the adjacent ends of the two guide plates (530) in abutment. The abutment groove (300) includes a base plate (310) fixedly connected to the bottom end of the bracket (200). A feeding frame (330) is rotatably connected to the middle of the top surface of the base plate (310). A plurality of abutment members (340) are abutted to the top surface of the feeding frame (330).
2. The uniform feeding trough for veterinary drugs and feed for livestock and poultry according to claim 1, characterized in that: The guide plate (530) includes a plate (531) rotatably connected to the feeding chamber (100) via a rotating shaft (532), and the two plates (531) are arranged in a figure-eight shape at the discharge end of the feeding chamber (100).
3. The uniform feeding trough for veterinary drug feed for livestock and poultry as described in claim 2, characterized in that: The rotating shaft (532) is fitted with a spring plate (533) at one end inside the feeding chamber (100) to allow the plate (531) to elastically return to its original position.
4. The uniform feeding trough for veterinary drugs and feed for livestock and poultry as described in claim 1, characterized in that: A bidirectional hydraulic rod (510) is installed at the bottom of the push plate (520), and the output end of the bidirectional hydraulic rod (510) is fixedly connected to the center end of the bottom surface of the push plate (520). The outer wall of the bidirectional hydraulic rod (510) is fixedly fitted with a fixing frame (540), and the two ends of the fixing frame (540) are fixedly connected with clamping plates (400).
5. The uniform feeding trough for veterinary drug feed for livestock and poultry according to claim 4, characterized in that: The bottom of the card plate (400) is fixedly connected to the base plate (310), and the top of the card plate (400) is bolted to the bottom of the unloading chamber (100).
6. The uniform feeding trough for veterinary drugs and feed for livestock and poultry according to claim 1, characterized in that: Connecting springs (320) are fixed to the four corners of the top surface of the base plate (310), and the top of the connecting springs (320) is fixed to the bottom of the feeding frame (330).
7. The uniform feeding trough for veterinary drug feed for livestock and poultry according to claim 1, characterized in that: The abutment (340) includes a connecting frame (341), which is fixedly connected to the output end of the bottom of the bidirectional hydraulic rod (510), and the lower end of the connecting frame (341) is internally threaded with an abutment rod (342).
8. The uniform feeding trough for veterinary drug feed for livestock and poultry according to claim 7, characterized in that: A flexible thin plate (344) is fixed to the bottom of the abutment (342). The abutment (342) is movably connected to the top of the connecting frame (341) at the top end, and the top of the first spring (343) is movably connected to the top of the inner cavity of the connecting frame (341). The first spring (343) is movably positioned between the connecting bracket (341) and the abutment (342).
9. The uniform feeding trough for veterinary drug feed for livestock and poultry according to claim 8, characterized in that: The bottom of the flexible sheet (344) is movably attached to the top surface of the feeding frame (330), and the bottom end of the abutment (342) is located in the area slightly to the right of the center end of the feeding frame (330).
10. The uniform feeding trough for veterinary drug feed for livestock and poultry according to claim 1, characterized in that: The feeding chamber (100) is rotatably connected to an agitator (600). The agitation assembly (600) includes an agitator (610) rotatably connected inside the feeding chamber (100), one end of which passes through the feeding chamber (100) and is connected to a servo motor (620). The servo motor (620) is fixedly connected to the outer wall of the feeding chamber (100), and the output end of the servo motor (620) is fixedly connected to the stirring blade (610).