Beef cattle farm and bed integrated automatic water and feed feeding equipment
By introducing weighing sensors and electric valve systems into the automatic feeding and watering equipment, the problem of quantitative output of forage and additives has been solved, improving the user experience and efficiency of the equipment.
Patent Information
- Application Number
- CN202520251591.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing automatic feeding and watering equipment lacks weighing auxiliary components, making it impossible to quantitatively output forage and additives, which affects the user experience.
The system employs a first pressure weighing sensor, a feed hopper, a feed pipe, a second electric throttle valve, a second pressure weighing sensor, and a support plate. It controls the quantitative output of feed and additives by weighing them, and achieves precise feeding through electrical signals and electric valves.
It enables quantitative output of forage and additives, improving the user experience and efficiency of automatic feeding and watering equipment.
Smart Images

Figure CN223626680U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to beef cattle automatic water feeding and feeding technology field especially relates to a beef cattle farm bed integrated automatic water feeding and feeding equipment. BACKGROUND
[0002] Modern beef cattle farm bed as a kind of beef cattle feeding space, in the process of modern beef cattle cultivation, to reduce the consumption of manpower, need to use automatic water feeding and feeding equipment, water and forage are transported to the inside of trough, to reduce the consumption of manpower and feeding efficiency when beef cattle cultivation, and the existing automatic water feeding and feeding equipment, because it lacks weighing auxiliary components, in the process of feeding, the forage and additive cannot be quantitatively output according to the use needs, to further affect the use experience of automatic water feeding and feeding equipment. UTILITY MODEL CONTENTS
[0003] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:
[0004] A kind of beef cattle farm bed integrated automatic water feeding and feeding equipment, including fixed shell and shelter cover, the top of the fixed shell is threadedly connected with shelter cover, the front of the fixed shell is connected with guide chute, the top of the guide chute is connected with first electric throttle valve, the top of the fixed shell is connected with crushing shell, the two sides of the crushing shell are fixedly connected with first motor, the output of the first motor is fixedly connected with fixed connection with crushing roller, the front of the fixed shell is fixedly connected with water tank, and water tank is located above guide chute, the front of the water tank is fixedly connected with delivery pump, and the input of delivery pump extends to the inside of water tank, the output of delivery pump is connected with output tube, the tail end of output tube is fixedly connected with output head, the front of the water tank is fixedly connected with timing reversing switch.
[0005] Preferably, the top of the shelter cover is fixedly connected with the second motor, the second motor is located in front of the crushing shell, and the output of the second motor extends to the lower side of the shelter cover, the output of the second motor is fixedly connected with the rotating rod, the outer surface of the rotating rod is fixedly connected with the stirring head, the outer surface of the rotating rod is fixedly connected with the crushing cutter head, and the crushing cutter head is located below the stirring head.
[0006] Preferably, the top of the shelter cover is fixedly connected with the first pressure weighing sensor, the first pressure weighing sensor is provided with twelve, and the first pressure weighing sensor is located on the outer side of the second motor, the top of four first pressure weighing sensors is fixedly connected with the feeding hopper, the bottom of the feeding hopper is connected with the guide pipe, and the outer surface of the guide pipe is connected with the second electric throttle valve.
[0007] Preferably, the outer surface of the fixed shell is fixedly connected with support rods, and four support rods are arranged, and the bottom of the support rod is fixedly connected with universal wheels.
[0008] Preferably, the back of the fixed shell is fixedly connected with a bearing plate, the top of the bearing plate is fixedly connected with a second pressure weighing sensor, and four second pressure weighing sensors are arranged, and the top of the four second pressure weighing sensors is fixedly connected with a bearing disc.
[0009] Preferably, the top of the water tank is connected with a water inlet pipe.
[0010] Compared with the prior art, the utility model has the following advantages:
[0011] The utility model adds first pressure weighing sensor, feed hopper, guide pipe, second electric throttle valve, second pressure weighing sensor and bearing disc, the feed hopper provides the accommodation space for additive and transmits the weight information to the inside of first pressure weighing sensor, at this time, first pressure weighing sensor sends electric signal to the inside of second electric throttle valve, at this time, second electric throttle valve opens the inside communication of guide pipe, and the additive is quantitatively sent to the inside of forage, and the bearing disc weighs the forage to be smashed and sends the weighing information to the inside of second pressure weighing sensor, at this time, second pressure weighing sensor sends the weight information to the inside of external display component, so that the quantitative output of subsequent feed is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a structural schematic diagram of the beef cattle field bed integrated automatic water feeding and feed equipment that the utility model proposes;
[0013] Figure 2 It is a back structural schematic diagram of the beef cattle field bed integrated automatic water feeding and feed equipment that the utility model proposes;
[0014] Figure 3 It is a fixed shell section connection part structural schematic diagram that the utility model proposes;
[0015] Figure 4 It is a shielding cover section connection part structural schematic diagram that the utility model proposes;
[0016] Figure 5 It is a water tank connection part structural schematic diagram that the utility model proposes;
[0017] Figure 6 It is a Figure 4 It is a connection part structural schematic diagram in A of the utility model.
[0018] In the figure: 1, fixed shell; 2, shielding cover; 3, guide chute; 4, first electric throttle valve; 5, crushing shell; 6, first motor; 7, crushing roller; 8, water tank; 9, conveying pump; 10, output pipe; 11, output head; 12, timing reversing switch; 13, second motor; 14, rotating rod; 15, stirring head; 16, crushing cutter head; 17, first pressure load cell; 18, feed hopper; 19, guide pipe; 20, second electric throttle valve; 21, support rod; 22, universal wheel; 23, bearing plate; 24, second pressure load cell; 25, bearing disc; 26, water inlet pipe. DETAILED DESCRIPTION
[0019] The technical solutions in the utility model are further described below in combination with the drawings and examples.
[0020] Referring to Figures 1-6An integrated automatic feeding and watering device for beef cattle farms includes a fixed shell 1 and a cover 2. The cover 2 is threadedly connected to the top of the fixed shell 1. The fixed shell 1 provides fixing points for the cover 2, feed trough 3, water tank 8, support rod 21, and bearing plate 23, which are fixedly connected to its outer surface. It also provides a mixing space for the forage and additives injected into it. The cover 2 is threadedly connected to the top of the fixed shell 1, providing a cover for the top of the fixed shell 1. It also provides fixing points for the crushing shell 5, second motor 13, and first pressure weighing sensor 17, which are fixedly connected to its outer surface. The feed trough 3 is connected through the front of the fixed shell 1. After the interior of the feed trough 3 is connected, it transports the feed to the inner part of the external feeding trough. The top of the feed chute 3 is connected to a first electric throttle valve 4. When electrical energy is supplied to the inside of the first electric throttle valve 4 via the timer reversing switch 12, the first electric throttle valve 4 opens, driving the internal connection of the feed chute 3. The top of the fixed shell 1 is connected to a crushing shell 5, which provides a fixing point for the first motor 6 fixedly connected to its outer surface. After the grass is initially crushed, the crushing shell 5 transports the initially crushed grass to the inside of the fixed shell 1. The crushing shell 5 is fixedly connected to the first motor 6 on both sides. When it is necessary to initially crush the grass, electrical energy can be supplied to the inside of the first motor 6 via an external control component. At this time, the first motor 6 transmits rotational power through electromagnetic effect. The material is fed into the crushing roller 7. The output end of the first motor 6 is fixedly connected to the crushing roller 7. Driven by the first motor 6, the crushing roller 7 rotates, initially crushing the forage. A water tank 8 is fixedly connected to the front of the fixed shell 1, and the water tank 8 is located above the guide trough 3. The water tank 8 is fixedly connected to the front of the fixed shell 1, providing storage space for the water inside, and also providing fixing points for the conveying pump 9, the timer reversing switch 12, and the water inlet pipe 26 fixedly connected to its outer surface. The conveying pump 9 is fixedly connected to the front of the water tank 8, and the input end of the conveying pump 9 extends into the interior of the water tank 8. When electrical energy is delivered to the interior of the conveying pump 9 via the timer reversing switch 12, the conveying pump 9 generates suction force on the water inside the water tank 8, and... Water is transported to the inside of the output pipe 10. The output end of the delivery pump 9 is connected to the output pipe 10. When water is transported to the inside of the output pipe 10, the output pipe 10 transports the water to the inside of the output head 11. The tail end of the output pipe 10 is fixedly connected to the output head 11. When water is transported to the inside of the output head 11, the output head 11 transports the water to the inside of the feeding trough, thus completing the feeding and watering of the beef cattle. A timer reversing switch 12 is fixedly connected to the front of the water tank 8. Before using the device, the internal reversing time of the timer reversing switch 12 is set according to the feeding time. When the reversing time is reached, the timer reversing switch 12 delivers electrical energy to the inside of the first electric throttle valve 4, the delivery pump 9, and the second motor 13, respectively, to complete the feeding and watering. When the feeding time ends...The timing commutator switch 12 cuts off the conduction of electricity to the inside of the first electric throttle valve 4, the delivery pump 9 and the second electric motor 13, the top of the shielding cover 2 is fixedly connected with the second electric motor 13, the second electric motor 13 is located in front of the crushing shell 5, and the output end of the second electric motor 13 extends to the lower side of the shielding cover 2, when the electricity is conducted to the inside of the second electric motor 13 through the timing commutator switch 12, at this time, the second electric motor 13 conducts the rotating force to the inside of the rotating rod 14 through the electromagnetic effect, the output end of the second electric motor 13 is fixedly connected with the rotating rod 14, when the rotating force is conducted to the inside of the rotating rod 14 through the second electric motor 13, the rotating rod 14 rotates under the drive of the second electric motor 13, drives the stirring head 15 and the crushing cutter head 16 fixedly connected to the outer surface thereof to rotate, the outer surface of the rotating rod 14 is fixedly connected with the stirring head 15, the stirring head 15 rotates under the drive of the rotating rod 14, stirs and mixes the forage and the additive, drives the forage and the additive to enter the inside of the guide chute 3 under the action of inertia, the outer surface of the rotating rod 14 is fixedly connected with the crushing cutter head 16, and the crushing cutter head 16 is located below the stirring head 15, the crushing cutter head 16 rotates under the drive of the rotating rod 14, crushes the forage after preliminary crushing, and drives the forage to enter the inside of the guide chute 3 under the action of inertia, the outer surface of the fixed shell 1 is fixedly connected with the supporting rod 21, and the supporting rod 21 is provided with four, the supporting rod 21 is fixedly connected to the outer surface of the fixed shell 1, provides a fixed point for the universal wheel 22 fixedly connected to the bottom thereof, the bottom of the supporting rod 21 is fixedly connected with the universal wheel 22, the universal wheel 22 is in contact with the outer ground, and the supporting force conducted to the inside thereof through the ground provides support for the whole device.
[0021] Reference Figure 1 - and Figure 6The top of the shielding cover 2 is fixedly connected with the first pressure weighing sensor 17. The first pressure weighing sensor 17 is provided with twelve, and the first pressure weighing sensor 17 is located outside the second motor 13. The first pressure weighing sensor 17 is fixedly connected to the top of the shielding cover 2, and provides a fixed point for the feed hopper 18 fixedly connected to the top thereof. The first pressure weighing sensor 17 weighs the weight of the additive in the feed hopper 18. When the additive reaches the specified weight, the first pressure weighing sensor 17 delivers electric energy to the inside of the second electric throttle valve 20. The top of the four first pressure weighing sensors 17 is fixedly connected with the feed hopper 18. When it is necessary to inject the additive into the inside of the fixed shell 1, the additive can be injected into the inside of the feed hopper 18 by external force. At this time, the feed hopper 18 provides a temporary storage space for the additive. The bottom of the feed hopper 18 is throughly connected with the guide pipe 19. After the guide pipe 19 is communicated, the guide pipe 19 delivers the additive to the inside of the fixed shell 1. The outer surface of the guide pipe 19 is throughly connected with the second electric throttle valve 20. When electric energy is delivered to the inside of the second electric throttle valve 20 by the first pressure weighing sensor 17, the second electric throttle valve 20 opens to drive the inside of the guide pipe 19 to be communicated. The back of the fixed shell 1 is fixedly connected with the bearing plate 23. The bearing plate 23 is fixedly connected to the back of the fixed shell 1, and provides a fixed point for the second pressure weighing sensor 24 fixedly connected to the top thereof. The top of the bearing plate 23 is fixedly connected with the second pressure weighing sensor 24. The second pressure weighing sensor 24 is provided with four. The second pressure weighing sensor 24 provides a fixed point for the bearing disc 25 fixedly connected to the top thereof. When the weight information is transmitted to the inside of the second pressure weighing sensor 24, the second pressure weighing sensor 24 delivers detection data to the inside of the external display component, assisting the staff to determine the weight of the forage. The top of the four second pressure weighing sensors 24 is fixedly connected with the bearing disc 25. The bearing disc 25 is fixedly connected to the top of the second pressure weighing sensor 24. When it is necessary to weigh the feed, the forage can be moved to the top of the bearing disc 25 by external force.
[0022] The functional principle of this utility model can be explained through the following operation: First, the forage is moved to the top of the support plate 25. At this time, the support plate 25 transmits the weight to the inside of the second pressure weighing sensor 24. The second pressure weighing sensor 24 then transmits the detection data to the inside of the external display component to assist the operator in determining the weight of the forage. Then, the forage is moved to the inside of the crushing shell 5. After that, through the external control component, electrical energy is transmitted to the inside of the first motor 6. At this time, the first motor 6 transmits the rotational power to the inside of the crushing roller 7 through the electromagnetic effect. The crushing roller 7 performs preliminary crushing of the forage. The crushing shell 5 conveys the preliminary crushed forage to the inside of the fixed shell 1. At the same time, the additive can be injected into the inside of the feed hopper 18 by external force. At this time, the feed hopper 18 provides a temporary storage space for the additive. The first pressure weighing sensor... The device 17 weighs the additive inside the feed hopper 18. When the additive reaches the specified weight, the first pressure weighing sensor 17 transmits electrical energy to the second electric throttle valve 20. The second electric throttle valve 20 opens and drives the internal connection of the feed guide pipe 19. The feed guide pipe 19 delivers the additive to the inside of the fixed shell 1. When the reversing time arrives, the timer reversing switch 12 transmits electrical energy to the first electric throttle valve 4, the delivery pump 9, and the second motor 13 respectively. The first electric throttle valve 4 opens and drives the internal connection of the feed guide trough 3. The feed guide trough 3 delivers the feed to the inside of the external feeding trough. The delivery pump 9 generates suction on the water in the water tank 8 and delivers the water to the inside of the output pipe 10. The output pipe 10 delivers the water to the inside of the output head 11. The output head 11 delivers the water to the inside of the feeding trough, completing the feeding and watering of the beef cattle.
[0023] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A beef cattle field bed integrated automatic water feeding and feeding equipment, comprising a fixed shell (1) and a shielding cover (2), characterized in that, The top of the fixed shell (1) is threadedly connected with a shielding cover (2), the front of the fixed shell (1) is through-connected with a material guide chute (3), the top of the material guide chute (3) is through-connected with a first electric throttle valve (4), the top of the fixed shell (1) is through-connected with a crushing shell (5), both sides of the crushing shell (5) are fixedly connected with a first motor (6), the output end of the first motor (6) is fixedly connected with a fixedly connected with a crushing roller (7), the front of the fixed shell (1) is fixedly connected with a water tank (8), and the water tank (8) is located above the material guide chute (3), the front of the water tank (8) is fixedly connected with a delivery pump (9), and the input end of the delivery pump (9) extends into the inside of the water tank (8), the output end of the delivery pump (9) is connected with an output pipe (10), the tail end of the output pipe (10) is fixedly connected with an output head (11), and the front of the water tank (8) is fixedly connected with a timing reversing switch (12).
2. The integrated cattle yard and bed automatic water and feed feeding device according to claim 1, characterized in that, The top of the shielding cover (2) is fixedly connected with a second motor (13), the second motor (13) is located in front of the crushing shell (5), and the output end of the second motor (13) extends below the shielding cover (2), the output end of the second motor (13) is fixedly connected with a rotating rod (14), the outer surface of the rotating rod (14) is fixedly connected with a stirring head (15), the outer surface of the rotating rod (14) is fixedly connected with a crushing cutter head (16), and the crushing cutter head (16) is located below the stirring head (15).
3. The integrated cattle yard and bed automatic water and feed feeding device according to claim 1, characterized in that, The top of the shielding cover (2) is fixedly connected with a first pressure weighing sensor (17), the first pressure weighing sensor (17) is provided with twelve, and the first pressure weighing sensor (17) is located on the outer side of the second motor (13), the top of four first pressure weighing sensors (17) is fixedly connected with a feeding hopper (18), the bottom of the feeding hopper (18) is through-connected with a material guide pipe (19), and the outer surface of the material guide pipe (19) is through-connected with a second electric throttle valve (20).
4. The integrated cattle yard and bed automatic water and feed feeding device according to claim 1, characterized in that, The outer surface of the fixed shell (1) is fixedly connected with a supporting rod (21), and the supporting rod (21) is provided with four, the bottom of the supporting rod (21) is fixedly connected with a universal wheel (22).
5. The integrated cattle yard and bed automatic water and feed feeding device according to claim 1, characterized in that, The back of the fixed shell (1) is fixedly connected with a bearing plate (23), the top of the bearing plate (23) is fixedly connected with a second pressure weighing sensor (24), and the second pressure weighing sensor (24) is provided with four, the top of four second pressure weighing sensors (24) is fixedly connected with a bearing disc (25).
6. The integrated cattle yard and bed automatic water and feed feeding device according to claim 1, characterized in that, The top of the water tank (8) is through-connected with a water inlet pipe (26).