A vehicle-mounted livestock feed dispensing device

By designing a vehicle-mounted forage delivery device for livestock farming, the problem of poor adaptability of existing equipment has been solved, enabling convenient cutting and delivery of forage, adapting to various vehicles, and ensuring sufficient nutrient supply for forage.

CN122074409APending Publication Date: 2026-05-26SHANDONG NEWFANTE AGRI MASCH MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG NEWFANTE AGRI MASCH MFG CO LTD
Filing Date
2026-03-09
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing feed delivery equipment in livestock farms is difficult to adapt to various vehicles, is inconvenient to use, and is troublesome to load feed, failing to meet the needs of different vehicles.

Method used

A vehicle-mounted livestock feed dispensing device has been designed, including a frame, a clamping mechanism, a feeding mechanism, and a modular pipe assembly. It can be adjusted according to the specifications of the vehicle and has clamping, cutting, conveying, and dispensing functions, adapting to the truck bed of different vehicles.

Benefits of technology

The equipment can be easily integrated with different vehicles and is suitable for a variety of vehicles. The forage is directly applied after being cut, preserving its nutritional components. It is easy to operate and meets the demand for sufficient forage application.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of livestock breeding equipment and discloses a vehicle-mounted livestock feed dispensing device, including a frame and a feeding mechanism. A clamping mechanism is located at the bottom right side of the frame. The clamping mechanism includes a drive wheel, two auxiliary wheels, and an adjustment assembly. The two auxiliary wheels are symmetrically and vertically rotatably mounted at the bottom of the frame. The adjustment assembly includes a slider, a first screw, and a crank. The slider is horizontally slidably embedded in the bottom side of the frame. The drive wheel is vertically rotatably mounted on the bottom side of the slider. A motor is fixedly installed inside the slider, and the motor output end is fixedly connected to the top of the drive wheel. The first screw is horizontally rotatably sleeved inside the frame and threadedly connected to the slider. The crank is fixedly mounted on the outer end of the first screw. A lifting assembly is located between the drive wheel and the two auxiliary wheels on the frame. This invention solves the problems of cumbersome feed loading, inability to adapt to various carriers, and inconvenience in use.
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Description

Technical Field

[0001] This invention relates to the field of livestock breeding equipment technology, specifically a vehicle-mounted livestock feed dispensing device. Background Technology

[0002] Animal husbandry is the industry that involves the artificial raising and breeding of animals that have been domesticated by humans. The main characteristics of animal husbandry are centralization, large scale, and profit-oriented production. Animal husbandry is an extremely important link in the material exchange between humans and nature. In the process of animal husbandry, forage is an essential food for livestock. During the breeding process, forage needs to be put into the animal feeding troughs for the livestock to eat and provide necessary nutrition.

[0003] In existing livestock farms, mechanized equipment is mostly used for feeding. For example, the utility model patent with authorization announcement number CN221554310U discloses an automatic feed supply device for pastures, and the utility model patent with authorization announcement number CN222465692U discloses a feed feeding device for livestock farming. However, the above equipment is relatively troublesome to use for feeding, cannot be adapted to various vehicles, and is inconvenient to use. Summary of the Invention

[0004] The purpose of this invention is to provide a vehicle-mounted livestock feed dispensing device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: A vehicle-mounted livestock feed dispensing device includes a frame and a feeding mechanism, wherein the feeding mechanism is located on the right side of the frame; A clamping mechanism is provided at the bottom right side of the frame. The clamping mechanism includes a drive wheel, two auxiliary wheels, and an adjustment component. The two auxiliary wheels are symmetrically and vertically rotated and installed at the bottom of the frame. The drive wheel is horizontally and slidably installed at the bottom of the frame through the adjustment component. The adjustment component includes a slider, a first screw, and a crank. The slider is horizontally and slidably embedded in the bottom side of the frame. The drive wheel is vertically rotated and installed on the bottom side of the slider. A motor is fixedly installed inside the slider. The output end of the motor is fixedly connected to the top of the drive wheel. The first screw is horizontally rotated and sleeved inside the frame, and is threadedly sleeved on the first screw with the slider. The crank is fixedly installed on the outer end of the first screw. The drive wheel and the two auxiliary wheels are arranged in a triangular pattern, and a lifting assembly is provided between the drive wheel and the two auxiliary wheels on the frame. The feeding mechanism is a modular structure that can be adjusted according to the specifications of the forage carrier.

[0006] As another feasible embodiment, the feeding mechanism includes a first conduit, multiple sets of vertical pipe assemblies, a second conduit, multiple sets of horizontal pipe assemblies, and a first protrusion. Both the first and second conduits are 90-degree bends. The first conduit is vertically fixedly installed on the right side of the frame, and the bottom end of the second conduit is horizontally fixedly installed inside the first protrusion. The multiple sets of vertical pipe assemblies are vertically arranged between the close ends of the first and second conduits. The multiple sets of horizontal pipe assemblies are arranged on the right side of the first protrusion. A discharge pipe is horizontally fixedly installed on the left end of the first conduit, and a fan device is fixedly installed on the upper end of the discharge pipe. The output end of the fan device is inclined.

[0007] As another feasible approach, the vertical pipe assembly includes a first circular pipe, two retaining rings, and a locking buckle. The first circular pipe has multiple slots on its upper and lower sides. Each retaining ring has a retaining block symmetrically fixedly installed on its inner wall. Both retaining rings are engaged with the first circular pipe through the engagement of the retaining block and the slot. The bottom end of the first conduit and the top end of the second conduit both have slots. The two first circular pipes located at the upper and lower ends are connected to the first conduit and the second conduit respectively through two retaining rings. The two retaining rings are hinged together, and the locking buckle is fixedly installed on the front side of the two retaining rings.

[0008] As another feasible approach, the transverse pipe assembly includes a second protrusion and a second round tube. The second round tube is horizontally fixedly sleeved inside the second protrusion. Two insert plates are symmetrically and horizontally fixedly installed on the right end of the second protrusion. Slots are horizontally and symmetrically opened on the left end of the second protrusion. The insert plates and slots are matched and connected by a first screw to realize the connection between two adjacent second protrusions. A through inlet is horizontally opened on the upper side of the second protrusion and the second round tube. A guiding mechanism is rotatably installed inside the first guide tube, the second guide tube, the plurality of first round tubes and the plurality of second round tubes. Two sets of cutting components are symmetrically arranged at the top of the first protrusion and the second protrusion. A motor is fixedly installed on the right end of the rightmost second protrusion. The output end of the motor is fixedly connected to the right end of the adjacent spiral roller.

[0009] As another feasible approach, the guiding mechanism includes a spiral roller and two clamps, which are respectively fixedly installed at both ends of a corresponding pipe section. The spiral roller is rotatably sleeved in the two clamps at both ends. The spiral roller located in the first and second conduits is divided into multiple segments. Adjacent spiral rollers are connected by universal joints. The outermost ends of the spiral rollers in each pipe are respectively provided with insertion holes and fixedly installed with insertion blocks. The insertion holes are inserted into the insertion blocks and connected by second screws.

[0010] As another feasible embodiment, the cutting assembly includes a housing, a rotating shaft, a dial, a cutter, and two sets of linkage components. The housing is horizontally fixedly mounted on the top of the second protrusion. The rotating shaft is horizontally rotatably sleeved inside the housing. The dial is horizontally fixedly sleeved on the rotating shaft. The cutter is horizontally arranged and longitudinally slidably sleeved on the bottom side of the housing. The cutter is connected to the rotating shaft through two sets of linkage components. A pair of cutting assemblies is also provided on the top of the first protrusion. The two sets of linkage components are symmetrically arranged inside the housing on both sides. The two ends of the rotating shaft are respectively provided with locking holes and fixedly installed connecting blocks. The ends of the two adjacent rotating shafts that are close to each other are inserted through the locking holes and connecting blocks to transmit torque. A power device is fixedly mounted on the top of the first protrusion. The two torque output ends of the power device are symmetrically arranged and rotate in opposite directions. The two torque output ends of the power device are respectively fixedly connected to the left ends of the rotating shafts in the two sets of cutting assemblies located on the first protrusion.

[0011] As another feasible approach, the linkage component includes a gear, a slide, a rack, and two tension springs. The gear is fixedly sleeved on the rotating shaft and partially missing teeth. The slide is vertically and longitudinally slidably embedded in the side wall of the housing and its end is fixedly connected to the cutter. The rack is horizontally and fixedly installed on the bottom side of the top of the slide and intermittently meshes with the gear. Both tension springs are horizontally and longitudinally arranged and their two ends are fixedly connected to the slide and the inner wall of the housing, respectively.

[0012] As another feasible approach, the lifting assembly includes a bracket, two rollers, and a second screw. The bracket is vertically slidably fitted in the middle of the frame, the two rollers are rotatably mounted on the bottom end of the bracket, and the second screw is vertically rotatably fitted on the top end of the frame and threadedly connected to the bracket.

[0013] Compared with the prior art, the present invention provides a vehicle-mounted livestock feed dispensing device, which has the following beneficial effects: (1) With the cooperation of the clamping mechanism, the equipment can be combined with the farm’s own vehicle with a truck bed to adapt to different vehicles. When loading hay, the equipment is installed in the truck bed and the hay is piled on the top of the equipment for delivery. The operation is relatively convenient. (2) The feeding mechanism is a spliced ​​structure that can be adjusted in both the vertical and horizontal directions, thus making it easier to adapt to the truck beds of different vehicles; (3) When feeding the forage, the equipment can cut, transport and feed the forage without pre-crushing it, so that the forage retains sufficient nutrients and is used immediately after cutting, which is convenient for livestock to eat and can provide sufficient nutrition. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the left-side stereoscopic structure of the present invention; Figure 2 This is a schematic diagram of the right-side stereoscopic structure of the present invention; Figure 3 This is a partial sectional view of the front view of the present invention; Figure 4 This is a partial top sectional view of the present invention; Figure 5 This is a front view schematic diagram of the device of the present invention combined with the truck bed; Figure 6 This is a partial sectional side view of the housing in the device of the present invention; Figure 7 for Figure 1 Enlarged view of the local structure at point A in the image; Figure 8 for Figure 1 Enlarged view of the local structure at point B in the image; Figure 9 for Figure 3 Enlarged view of the local structure at point C; Figure 10 for Figure 3 Enlarged view of the local structure at point D in the image; Figure 11 for Figure 3 Enlarged view of the local structure at point E in the image; Figure 12 for Figure 4 Enlarged view of the local structure at point F in the image.

[0015] In the diagram: 1. Frame; 2. Drive wheel; 3. Auxiliary wheel; 4. Slider; 5. First screw; 6. Handle; 7. Motor; 8. First guide tube; 9. Second guide tube; 10. First protrusion; 11. First round tube; 111. Slot; 12. Snap ring; 121. Snap block; 122. Lock; 13. Second protrusion; 131. Insert plate; 132. Slot; 133. First screw; 14. Second round tube; 15. Spiral roller; 51. Insertion hole; 152. Insertion block; 153. Second screw; 16. Card holder; 17. Universal joint; 18. Housing; 19. Shaft; 191. Card hole; 192. Connecting block; 20. Dial wheel; 21. Cutting blade; 22. Gear; 23. Slide; 24. Rack; 25. Tension spring; 26. Power unit; 27. Discharge pipe; 28. Fan unit; 29. ​​Insertion bracket; 30. Roller; 31. Second screw; 32. Motor. Detailed Implementation

[0016] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the invention.

[0017] See Figure 1-12A vehicle-mounted livestock feed dispensing device includes a frame 1 and a feeding mechanism, wherein the feeding mechanism is located on the right side of the frame 1; A clamping mechanism is provided at the bottom right side of the frame 1. The clamping mechanism includes a drive wheel 2, two auxiliary wheels 3 and an adjustment component. The two auxiliary wheels 3 are symmetrically and vertically rotated and installed at the bottom of the frame 1. The drive wheel 2 is horizontally slidably installed at the bottom of the frame 1 through the adjustment component. The adjustment component includes a slider 4, a first screw 5 and a crank 6. The slider 4 is horizontally slidably embedded in the bottom side of the frame 1. The drive wheel 2 is vertically rotated and installed on the bottom side of the slider 4. A motor 7 is fixedly installed inside the slider 4. The output end of the motor 7 is fixedly connected to the top of the drive wheel 2. The first screw 5 is horizontally rotated and sleeved inside the frame 1, and is threadedly sleeved on the first screw 5 with the slider 4. The crank 6 is fixedly installed on the outer end of the first screw 5. The drive wheel 2 and the two auxiliary wheels 3 are arranged in a triangular shape, and the frame 1 is located between the drive wheel 2 and the two auxiliary wheels 3 and is equipped with a lifting component. The lifting assembly includes a bracket 29, two rollers 30, and a second screw 31. The bracket 29 is vertically slidably sleeved in the middle of the frame 1. The two rollers 30 are rotatably installed at the bottom of the bracket 29. The second screw 31 is vertically rotatably sleeved at the top of the frame 1 and threadedly connected to the bracket 29. The feeding mechanism is a modular structure that can be adjusted according to the specifications of the fodder carrier.

[0018] The feeding mechanism includes a first conduit 8, multiple sets of vertical pipe assemblies, a second conduit 9, multiple sets of horizontal pipe assemblies, and a first protrusion 10. Both the first conduit 8 and the second conduit 9 are 90-degree bends. The first conduit 8 is vertically fixedly installed on the right side of the frame 1. The bottom end of the second conduit 9 is horizontally fixedly installed inside the first protrusion 10. The multiple sets of vertical pipe assemblies are vertically arranged between the close ends of the first conduit 8 and the second conduit 9. The multiple sets of horizontal pipe assemblies are arranged on the right side of the first protrusion 10. A discharge pipe 27 is horizontally fixedly installed on the left end of the first conduit 8. A blower device 28 is fixedly installed on the upper end of the discharge pipe 27. The output end of the blower device 28 is inclined.

[0019] The vertical pipe assembly includes a first circular pipe 11, two retaining rings 12, and a locking buckle 122. The upper and lower ends of the first circular pipe 11 are provided with multiple retaining grooves 111. The inner walls of the retaining rings 12 are symmetrically fixed with retaining blocks 121. The two retaining rings 12 are engaged with the first circular pipe 11 through the engagement of the retaining blocks 121 and the retaining grooves 111. The bottom end of the first conduit 8 and the top end of the second conduit 9 are provided with retaining grooves 111. The two first circular pipes 11 located at the upper and lower ends are connected to the first conduit 8 and the second conduit 9 respectively through the two retaining rings 12. The two retaining rings 12 are hinged together by hinges. The locking buckle 122 is fixedly installed on the front side of the two retaining rings 12.

[0020] The transverse pipe assembly includes a second protrusion 13 and a second round tube 14. The second round tube 14 is horizontally fixedly sleeved inside the second protrusion 13. Two insert plates 131 are symmetrically and horizontally fixedly installed on the right end of the second protrusion 13. Slots 132 are horizontally and symmetrically opened on the left end of the second protrusion 13. The insert plates 131 and slots 132 are matched and inserted by the first screw 133 to realize the connection between two adjacent second protrusions 13. A through inlet is horizontally opened on the upper side of the second protrusion 13 and the second round tube 14. A guiding mechanism is rotatably installed in the first guide tube 8, the second guide tube 9, multiple first round tubes 11 and multiple second round tubes 14. Two sets of cutting components are symmetrically arranged at the top of the first protrusion 10 and the second protrusion 13. A motor 32 is fixedly installed on the right end of the rightmost second protrusion 13. The output end of the motor 32 is fixedly connected to the right end of the adjacent spiral roller 15.

[0021] The right end of the first protrusion 10 and the adjacent second protrusion 13 are also fixed by inserting a plate 131, a slot 132 and a first screw 133.

[0022] The guiding mechanism includes a spiral roller 15 and two clamps 16. The two clamps 16 are fixedly installed at both ends of the corresponding pipe sections. The spiral roller 15 is rotatably sleeved in the two clamps 16 at both ends. The spiral roller 15 located in the first conduit 8 and the second conduit 9 is divided into multiple segments. The multiple adjacent spiral rollers 15 are connected by universal joints 17. The outermost ends of the spiral roller 15 in each pipe are provided with insertion holes 151 and fixedly installed with insertion blocks 152. The insertion holes 151 and insertion blocks 152 are inserted and connected by second screws 153. The spiral roller 15 located in the second circular tube 14 can slide between the two clamps 16, which facilitates the end of the spiral roller 15 to slide out of the end of the second circular tube 14 and connect with the end of the adjacent spiral roller 15.

[0023] The cutting assembly includes a housing 18, a rotating shaft 19, a dial 20, a cutter 21, and two sets of linkage components. The housing 18 is horizontally fixedly installed on the top of the second protrusion 13. The rotating shaft 19 is horizontally rotatably sleeved inside the housing 18. The dial 20 is horizontally fixedly sleeved on the rotating shaft 19. The cutter 21 is horizontally arranged and longitudinally slidably sleeved on the bottom side of the housing 18. The cutter 21 is connected to the rotating shaft 19 through two sets of linkage components. The top of the first protrusion 10 is also provided with a pair of cutting assemblies. The two sets of linkage components are symmetrically arranged inside the two sides of the housing 18. The two ends of the rotating shaft 19 are respectively provided with a locking hole 191 and a connecting block 192. The ends of the two adjacent rotating shafts 19 that are close to each other are inserted through the locking hole 191 and the connecting block 192 to transmit torque. The top of the first protrusion 10 is fixedly installed with a power device 26. The two torque output ends of the power device 26 are symmetrically arranged and rotate in opposite directions. The two torque output ends of the power device 26 are respectively fixedly connected to the left end of the rotating shaft 19 in the two sets of cutting assemblies located on the first protrusion 10.

[0024] The linkage components include a gear 22, a slide 23, a rack 24, and two tension springs 25. The gear 22 is fixedly sleeved on the rotating shaft 19 and has partially missing teeth. The slide 23 is vertically and longitudinally slidably embedded in the side wall of the housing 18 and its end is fixedly connected to the cutter 21. The rack 24 is horizontally and fixedly installed on the bottom side of the top of the slide 23 and intermittently meshes with the gear 22. The two tension springs 25 are both horizontally and longitudinally arranged, and their two ends are fixedly connected to the slide 23 and the inner wall of the housing 18, respectively.

[0025] When using this equipment to deliver hay, the overall specifications of the equipment should be adjusted according to the vehicle's cargo bed.

[0026] Based on the height of the truck bed, the number of vertical pipe assemblies is selected. The inserts 152 of the spiral rollers 15 in the selected first circular pipe 11 are connected to the insertion holes 151 at their close ends and fixed with the second screws 153. Then, the locking blocks 121 inside the two retaining rings 12 are respectively inserted into the corresponding slots 111 and the locking buckles 122 are engaged and locked to achieve the connection of multiple sets of vertical pipe assemblies. Then, based on the width of the truck bed, the horizontal pipe assemblies are matched so that the overall length of the equipment is adapted to the width of the truck bed. The spiral rollers 15 in the second circular pipe 14 are also fixed with the second screws 153. Then, the ends of two adjacent second protrusions 13 are inserted through the insert plates 131 and slots 132 and fixed and locked with the first screws 133 to achieve the connection and fixation between multiple second protrusions 13.

[0027] The connection between the first protrusion 10 and the second protrusion 13 is also achieved by first connecting the corresponding internal spiral rollers 15 through the second screw 153, and then inserting them through the insert plate 131 and the slot 132, and fixing and locking them with the first screw 133.

[0028] The second protrusion 13 on the far right is always located on the far right in any specification and provides power for the rotation of the spiral roller 15.

[0029] When multiple second protrusions 13 are connected and fixed, the ends of the rotating shafts 19 in adjacent cutting components are connected through connecting blocks 192 and locking holes 191, thereby achieving torque transmission.

[0030] After the horizontal and vertical pipe components are assembled, the clamping mechanism is clamped onto the truck bed guardrail, so that the output end of the discharge pipe 27 faces the trough. When fixed, the drive wheel 2 is located on the outside of the guardrail, and the two auxiliary wheels 3 are located on the inside of the guardrail. Then, the crank handle 6 is turned, which drives the first screw 5 to rotate. The first screw 5 drives the slider 4 to move closer to the truck bed guardrail, and finally cooperates with the two auxiliary wheels 3 to clamp the entire equipment onto the guardrail.

[0031] Rotating the second screw 31 causes the insert 29 to move up and down, so that the bottom of the roller 30 abuts against the upper side of the truck bed guardrail, thus finely adjusting the overall height of the equipment and the inside of the truck bed.

[0032] After the equipment is clamped together with the truck bed, put hay into the truck bed, then move the vehicle to the breeding area and make the feed pipe 27 face the feed trough. Then move the vehicle and start the equipment.

[0033] During equipment operation, motor 32 rotates, driving spiral roller 15 to rotate. Power unit 26 rotates, driving shaft 19 to rotate. Shaft 19 drives dial wheel 20 to rotate. The two opposing dial wheels 20 rotate synchronously in reverse, conveying the forage downwards. Shaft 19 synchronously drives gear 22 to rotate. When the toothed area of ​​gear 22 meshes with rack 24, rack 24 drives slide 23 to move. Slide 23 drives cutter 21 to move outwards, simultaneously stretching tension spring 25. The two opposing cutters 21 simultaneously approach each other, cutting and crushing the forage. When the smooth area of ​​gear 22 is opposite rack 24... Under the tension of the tension spring 25, the rack 24 drives the cutter 21 to reset, and the two cutters 21 move away from each other. In this way, the cutter 21 moves back and forth to cut the grass. The chopped grass falls and enters the spiral roller 15 through the feed inlet that is horizontally penetrating the upper side of the second protrusion 13 and the second round tube 14. The rotating spiral roller 15 sends the chopped grass through the second round tube 14, the second guide tube 9, the first round tube 11, and the first guide tube 8 into the discharge pipe 27. Finally, under the airflow of the blower device 28, the grass is discharged through the discharge pipe 27 and falls into the feeding trough, completing the feeding of grass.

[0034] During the feeding process, the hay falls between the opposing cutting components under the action of gravity. After the hay above the equipment is cut, the motor 7 starts, causing the drive wheel 2 to rotate, which causes the entire equipment to move horizontally in the bucket and move to an area with more hay to continue feeding. Then the motor 7 self-locks, which fixes the entire equipment.

[0035] With the cooperation of the clamping mechanism, the equipment can be combined with the farm's own vehicles with truck beds, thus adapting to different vehicles and making it more convenient to use.

[0036] The feeding mechanism is a modular structure that can be adjusted both vertically and horizontally, making it easier to adapt to the cargo beds of different vehicles.

[0037] When feeding fodder, the equipment can cut, transport and feed the fodder without pre-crushing it, so that the fodder retains sufficient nutrients and can be used immediately after cutting, which is convenient for livestock to eat and can provide sufficient nutrition.

[0038] When loading hay, the entire equipment is installed inside the truck bed, and the hay is piled on top of the equipment for delivery, making the operation quite convenient.

[0039] 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 vehicle-mounted livestock feed dispensing device, comprising a frame (1) and a feeding mechanism, wherein the feeding mechanism is located on the right side of the frame (1); Its features are: The frame (1) is provided with a clamping mechanism on the bottom right side. The clamping mechanism includes a drive wheel (2), two auxiliary wheels (3) and an adjustment component. The two auxiliary wheels (3) are symmetrically and vertically rotated and installed at the bottom of the frame (1). The drive wheel (2) is horizontally and slidably installed at the bottom of the frame (1) through the adjustment component. The adjustment component includes a slider (4), a first screw (5) and a crank (6). The slider (4) is horizontally and slidably embedded in the bottom side of the frame (1). The drive wheel (2) is vertically rotated and installed on the bottom side of the slider (4). A motor (7) is fixedly installed inside the slider (4). The output end of the motor (7) is fixedly connected to the top of the drive wheel (2). The first screw (5) is horizontally rotated and sleeved inside the frame (1) and threadedly sleeved with the slider (4) on the first screw (5). The crank (6) is fixedly installed on the outer end of the first screw (5). The drive wheel (2) and the two auxiliary wheels (3) are arranged in a triangular shape, and the frame (1) is provided with a lifting assembly between the drive wheel (2) and the two auxiliary wheels (3); The feeding mechanism is a modular structure that can be adjusted according to the specifications of the forage carrier.

2. The vehicle-mounted livestock feed dispensing equipment as described in claim 1, characterized in that, The feeding mechanism includes a first conduit (8), multiple sets of vertical pipe assemblies, a second conduit (9), multiple sets of horizontal pipe assemblies, and a first protrusion (10). The first conduit (8) and the second conduit (9) are both 90-degree bends. The first conduit (8) is vertically fixedly installed on the right side of the frame (1). The bottom end of the second conduit (9) is horizontally fixedly installed inside the first protrusion (10). The multiple sets of vertical pipe assemblies are vertically arranged between the ends of the first conduit (8) and the second conduit (9) that are close to each other. The multiple sets of horizontal pipe assemblies are arranged on the right side of the first protrusion (10). The left end of the first conduit (8) is horizontally fixedly installed with a discharge pipe (27). The upper end of the discharge pipe (27) is fixedly installed with a blower device (28). The output end of the blower device (28) is inclined.

3. The vehicle-mounted livestock feed dispensing equipment as described in claim 2, characterized in that, The vertical pipe assembly includes a first circular pipe (11), two retaining rings (12) and a locking buckle (122). The first circular pipe (11) has multiple slots (111) on its upper and lower sides. The retaining rings (12) have symmetrically fixed retaining blocks (121) on their inner walls. The two retaining rings (12) are engaged with the first circular pipe (11) by the engagement of the retaining blocks (121) and the slots (111). The bottom end of the first conduit (8) and the top end of the second conduit (9) are both provided with slots (111). The two first circular pipes (11) located at the upper and lower ends are connected to the first conduit (8) and the second conduit (9) respectively by the two retaining rings (12). The two retaining rings (12) are hinged together by a hinge. The locking buckle (122) is fixedly installed on the front side of the two retaining rings (12).

4. The vehicle-mounted livestock feed dispensing equipment as described in claim 3, characterized in that, The transverse pipe assembly includes a second protrusion (13) and a second round tube (14). The second round tube (14) is horizontally fixedly sleeved inside the second protrusion (13). Two insert plates (131) are symmetrically and horizontally fixedly installed on the right end of the second protrusion (13). Slots (132) are horizontally and symmetrically opened on the left end of the second protrusion (13). The insert plates (131) and slots (132) are matched and inserted by a first screw (133) to realize the connection between two adjacent second protrusions (13). A through inlet is horizontally opened on the upper side of the second protrusion (13) and the second round tube (14). A guiding mechanism is rotatably installed in the first guide tube (8), the second guide tube (9), multiple first round tubes (11) and multiple second round tubes (14). Two sets of cutting components are symmetrically arranged at the top of the first protrusion (10) and the second protrusion (13). A motor (32) is fixedly installed on the right end of the rightmost second protrusion (13). The output end of the motor (32) is fixedly connected to the right end of the adjacent spiral roller (15).

5. The vehicle-mounted livestock feed dispensing equipment as described in claim 4, characterized in that, The guiding mechanism includes a spiral roller (15) and two clamps (16). The two clamps (16) are fixedly installed at both ends of the corresponding pipe sections. The spiral roller (15) is rotatably sleeved in the two clamps (16) at both ends. The spiral roller (15) located in the first conduit (8) and the second conduit (9) is divided into multiple segments. The multiple adjacent spiral rollers (15) are connected by universal joints (17). The outermost ends of the spiral roller (15) in each pipe are provided with insertion holes (151) and fixedly installed with insertion blocks (152). The insertion holes (151) are inserted into the insertion blocks (152) and connected by second screws (153).

6. The vehicle-mounted livestock feed dispensing equipment as described in claim 4, characterized in that, The cutting assembly includes a housing (18), a rotating shaft (19), a dial (20), a cutter (21), and two sets of linkage components. The housing (18) is horizontally fixedly installed on the top of the second protrusion (13). The rotating shaft (19) is horizontally rotatably sleeved inside the housing (18). The dial (20) is horizontally fixedly sleeved on the rotating shaft (19). The cutter (21) is horizontally arranged and longitudinally slidably sleeved on the bottom side of the housing (18). The cutter (21) is connected to the rotating shaft (19) through two sets of linkage components. The top of the first protrusion (10) is also provided with a pair of cutting assemblies. The two sets of linkage components are symmetrically arranged. Inside the housing (18) on both sides, the two ends of the rotating shaft (19) are respectively provided with a locking hole (191) and a connecting block (192) is fixedly installed. The ends of the two adjacent rotating shafts (19) are connected through the locking hole (191) and the connecting block (192) to transmit torque. The top of the first protrusion (10) is fixedly installed with a power device (26). The two torque output ends of the power device (26) are symmetrically arranged and rotate in opposite directions. The two torque output ends of the power device (26) are respectively fixedly connected to the left end of the rotating shaft (19) in the two sets of cutting components located on the first protrusion (10).

7. The vehicle-mounted livestock feed dispensing equipment as described in claim 6, characterized in that, The linkage components include a gear (22), a slide (23), a rack (24), and two tension springs (25). The gear (22) is fixedly sleeved on the rotating shaft (19) and has partially missing teeth. The slide (23) is vertically and longitudinally slidably embedded in the side wall of the housing (18) and its end is fixedly connected to the cutter (21). The rack (24) is horizontally fixedly installed on the bottom side of the top of the slide (23) and intermittently meshes with the gear (22). The two tension springs (25) are both horizontally and longitudinally arranged and their two ends are fixedly connected to the slide (23) and the inner wall of the housing (18), respectively.

8. The vehicle-mounted livestock feed dispensing equipment as described in claim 1, characterized in that, The lifting assembly includes a bracket (29), two rollers (30), and a second screw (31). The bracket (29) is vertically slidably sleeved in the middle of the frame (1). The two rollers (30) are respectively rotatably installed at the bottom end of the bracket (29). The second screw (31) is vertically rotatably sleeved at the top end of the frame (1) and threadedly connected to the bracket (29).