Feeding device for cattle breeding
By combining the lifting and forward movement devices with the pressure sensor of the sensing block, the position of the feeding box is automatically adjusted, which solves the problem of the existing device requiring manual monitoring, realizes automatic alignment of the material trough, and reduces labor costs and operational complexity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG FENGDI AGRICULTURAL TECHNOLOGY CO LTD
- Filing Date
- 2025-02-17
- Publication Date
- 2026-04-10
AI Technical Summary
Existing cattle feeding devices require real-time manual monitoring to prevent the feed trough from deviating, resulting in high labor costs and cumbersome operation.
The system employs a lifting and forward movement device combined with a sensor block. The pressure sensor in the sensor block automatically adjusts the position of the feeding box to ensure alignment of the material trough. The discharge motor is controlled by an electronic control system to avoid deviation and reduce manual intervention.
It achieves automatic alignment of the material trough, reduces the need for manual monitoring, lowers labor costs, avoids emergency discharge caused by trough deviation, and improves operational efficiency.
Smart Images

Figure CN224098462U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of feeding devices for cattle breeding, belong to feeding equipment field. BACKGROUND
[0002] The beef produced by beef cattle continuously satisfies people's life, and the key to the breeding of beef cattle is the feed fed, especially in the fattening period of beef cattle, the fattening period needs to ensure that beef cattle intake satisfies the nutrient substance of its rapid growth, not only can ensure the healthy growth of beef cattle, but also can ensure the beef quality of beef cattle, to achieve the economic benefit of breeding beef cattle.
[0003] Therefore, the device for feeding feed is very important, but the existing device is all through artificial observation discharge port position and then feeding, and the operator needs to keep staring at the position of trough to avoid deviation, which is very troublesome for large-scale breeding farm, and the labor cost is very high, and the feeding situation of feed also needs to be paid attention to, and it is unavoidable to be absent-minded. SUMMARY
[0004] According to the problem in the background, the utility model solves the problem: provide a kind of feeding device for cattle breeding, the alignment of trough for cattle is realized by the lifting and advancing device and sensing block of the device, it only needs to be pushed forward and observe the feeding situation after that, avoid the problem of deviation of trough and device, also reduce the labor cost, avoid the problem of absent-minded.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: provide a kind of for cattle breeding feeding device, including undercarriage car, ground wheel, handle, electric control box, lifting motor, lifting outer thread rod, lifting inner thread rod, lifting platform, large air spring, small air spring, forward motor, forward outer thread rod, forward inner thread rod, compression rod, inductive block and feeding box, four groups of ground wheel are equipped on the bottom of undercarriage car end face, handle is provided on the side of undercarriage car, electric control box is installed on the upper end face of undercarriage car, lifting motor is installed on the upper end face of undercarriage car and in the side of electric control box, the output end of lifting motor is connected with lifting outer thread rod, lifting outer thread rod is installed with lifting inner thread rod in cooperation, lifting inner thread rod is installed with lifting platform in the end of not being used in cooperation with lifting outer thread rod, lifting platform middle is equipped with long hole, compression rod is vertically installed on the side of lifting platform away from lifting inner thread rod, the other end of compression rod is installed with inductive block, large air spring connects lifting platform lower end face and undercarriage car upper end face, feeding box is installed above lifting platform, forward motor is installed on the upper end face of electric control box and in the side close to lifting motor, the output end of forward motor is connected with forward outer thread rod, forward outer thread rod is installed with forward inner thread rod in cooperation, small air spring is connected with the lower end face of feeding box and the outer wall of forward inner thread rod through the long hole of lifting platform, inductive block is installed in the end of forward inner thread rod not being used in cooperation with forward outer thread rod.
[0006] Preferably, the lifting platform and the feeding box are further provided with a sliding rail and a sliding block, the sliding rail is installed on the upper end face of the lifting platform, the sliding block is installed on the lower end face of the feeding box, the sliding rail and the sliding block are installed and used in cooperation, and the feeding box is installed on the sliding rail of the lifting platform through the sliding block.
[0007] Preferably, the feeding box is further provided with an inlet, an outlet, an outlet motor, a rotating rod and a paddle, the inlet is installed on the upper end of the feeding box, the outlet is installed on one side of the feeding box and close to the compression rod, the outlet motor is installed on the other side of the feeding box and the output port penetrates through the wall of the feeding box, the rotating rod is connected to the output end of the outlet motor and inside the feeding box, and the paddle is installed on the rotating rod and inside the feeding box.
[0008] Preferably, the inductive block comprises an inductive roller, an inductive block body and a pressure sensor, the inductive roller is installed on one side end face of the inductive block body, and the pressure sensor is installed inside the inductive block body while the inductive roller contacts the pressure sensor.
[0009] Preferably, the electric control box controls the lifting motor, the forward motor, the inductive block and the outlet motor, the lifting motor and the forward motor control the inductive block to sense, the outlet motor is started again after the inductive block is sensed by pressure, and the outlet motor stops working after the inductive block is not sensed by pressure.
[0010] Preferably, the handle is vertically opposite to the rotating rod.
[0011] The utility model discloses the beneficial effect is:
[0012] 1, through the lift motor and the forward motor make the feeding box body be located at the suitable feeding position, is suitable for different material groove height, and the wide adaptability.
[0013] 2, the pressure sensor of inductive block can ensure that the position does not change, when changing, the discharge motor stops operation and also stops the discharge, avoids the problem that the feed is always produced under the emergency, and the existence of inductive gyro wheel avoids the friction to the material groove.
[0014] 3, the position of handle and actual discharge position are relatively vertical, so that manual can normally push forward also facilitate the attention material groove situation and the situation in the feeding box body, reduces the manual cost, avoids the situation of being absentminded. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the structural diagram of the utility model;
[0016] Figure 2 It is the structural diagram of inductive block;
[0017] In the drawing: 1 is the underframe car;2 is the ground wheel;3 is the handle;4 is the electric control box;5 is the lift motor;6 is the lift outer thread rod;7 is the lift inner thread rod;8 is the lift platform;9 is the air spring;10 is the small air spring;11 is the forward motor;12 is the forward outer thread rod;13 is the forward inner thread rod;14 is the pressing rod;15 is the inductive block;16 is the slide rail;17 is the sliding block;18 is the feeding box body;19 is the feeding port;20 is the discharge port;21 is the discharge motor;22 is the rotating rod;23 is the paddle;151 is the inductive gyro wheel;152 is the inductive block body;153 is the pressure sensor. DETAILED DESCRIPTION
[0018] The embodiment of the utility model will be further described below in combination with the drawings:
[0019] Embodiment 1
[0020] As Figure 1As shown, the utility model discloses chassis car 1, ground wheel 2, handle 3, electric control box 4, lifting motor 5, lifting outer thread rod 6, lifting inner thread rod 7, lifting platform 8, big air spring 9, small air spring 10, forward motor 11, forward outer thread rod 12, forward inner thread rod 13, pressure bar 14, inductive block 15 and feeding box 18, be equipped with four groups of ground wheel 2 on chassis car 1 lower end face, be provided with handle 3 on one side of chassis car 1, electric control box 4 is installed on the upper end face of chassis car 1, lifting motor 5 is installed on the upper end face of chassis car 1 and in the one side of electric control box 4, the output of lifting motor 5 is connected with lifting outer thread rod 6, lifting outer thread rod 6 is installed with lifting inner thread rod 7 in cooperation, the end of lifting inner thread rod 7 not with lifting outer thread rod 6 is used in cooperation installs lifting platform 8, the middle of lifting platform 8 is equipped with long hole, the side of lifting platform 8 away from lifting inner thread rod 7 is installed with pressure bar 14 perpendicularly, the other end of pressure bar 14 is installed with inductive block 15, big air spring 9 connects lifting platform 8 lower end face and chassis car 1 upper end face, feeding box 18 is installed above lifting platform 8, forward motor 11 is installed on the upper end face of electric control box 4 and in the one side close to lifting motor 5, the output of forward motor 11 is connected with forward outer thread rod 12, forward outer thread rod 12 is installed with forward inner thread rod 13 in cooperation, small air spring 10 is connected with the lower end face of feeding box 18 and the outer wall of forward inner thread rod 13 through the long hole of lifting platform 8, the end of forward inner thread rod 13 not with forward outer thread rod 12 is used in cooperation installs inductive block 15.
[0021] Big air spring 9 and small air spring 10 support the whole device, and due to the air spring, the device can also be contracted, facilitating the up-down movement of the whole device.
[0022] As Figure 2 As shown, in order to ensure that the position does not deviate, the position is ensured by a pressure sensor, the inductive block 15 includes an inductive roller 151, an inductive block body 152, and a pressure sensor 153, the inductive roller 151 is installed on one side of the end face of the inductive block body 152, and the pressure sensor 153 is installed inside the inductive block body 152 while the inductive roller 151 contacts the pressure sensor 153.
[0023] In order to facilitate control, the electric control box 4 controls the lifting motor 5, the forward motor 11, the inductive block 15, and the discharging motor 21, the lifting motor 5 and the forward motor 11 control the inductive block 15 to sense, when the inductive block 15 is subjected to pressure sensing, the discharging motor 21 is turned on again, while the lifting motor 5 and the forward motor 11 stop operating, when the inductive block 15 is not subjected to pressure sensing, the discharging motor 21 stops operating.
[0024] In use, first place the device in the appropriate position relative to the trough, then turn on the device, the lifting motor 5 and the forward motor 11 start to work, under the action of the lifting outer threaded rod 6, the lifting inner threaded rod 7, the forward outer threaded rod 12 and the forward inner threaded rod 13, the feeding box 18 runs to the appropriate position, then the induction block 15 hits the trough, the induction roller 151 is extruded, the pressure sensor 153 is subjected to pressure sensing, at this time the lifting motor 5 and the forward motor 11 stop working, and the feeding starts.
[0025] Example 2
[0026] On the basis of example 1, the lifting platform 8 and the feeding box 18 are further provided with a sliding rail 16 and a sliding block 17, the sliding rail 16 is installed on the upper end face of the lifting platform 8, the sliding block 17 is installed on the lower end face of the feeding box 18, the sliding rail 16 and the sliding block 17 are cooperatively installed and used, and the feeding box 18 is installed on the sliding rail 16 of the lifting platform 8 through the sliding block 17.
[0027] In this way, the front and rear positions of the entire feeding box 18 can be controlled, and the up and down positions of the feeding box 18 are ensured to be fixed.
[0028] In order to facilitate discharging, the feeding box 18 is further provided with a feeding port 19, a discharging port 20, a discharging motor 21, a rotating rod 22 and a paddle 23, the feeding port 19 is installed on the upper end of the feeding box 18, the discharging port 20 is installed on one side of the feeding box 18 and is close to the pressing rod 14, the discharging motor 21 is installed on the other side of the feeding box 18 and the output port penetrates through the wall of the feeding box 18, the rotating rod 22 is connected to the output end of the discharging motor 21 and is inside the feeding box 18, and the paddle 23 is installed on the rotating rod 22 and is inside the feeding box 18.
[0029] After the induction block 15 hits the trough and the induction roller 151 is extruded, the pressure sensor 153 is subjected to pressure sensing, the discharging motor 21 starts to work, the rotating rod 22 drives the paddle 23 to rotate, thereby the feed is discharged, the entire feeding action is completed, and the motor speed is controllable and suitable for various speeds of forward movement.
[0030] In order to enable manual pushing and facilitate attention to the conditions of the trough and the feeding box, the handle 3 is vertically opposite to the position of the rotating rod 22.
Claims
1. A feeding device for cattle breeding, characterized in that, The utility model provides a kind of feeding machine, including underframe car (1), ground wheel (2), handle (3), electric control box (4), lifting motor (5), lifting outer threaded rod (6), lifting inner threaded rod (7), lifting platform (8), big air spring (9), small air spring (10), forward motor (11), forward outer threaded rod (12), forward inner threaded rod (13), pressing rod (14), induction block (15) and feeding box (18), four groups of ground wheel (2) are equipped on the lower end surface of underframe car (1), handle (3) is set on the side of underframe car (1), electric control box (4) is installed on the upper end surface of underframe car (1), lifting motor (5) is installed on the upper end surface of underframe car (1) and in the side of electric control box (4), the output end of lifting motor (5) is connected with lifting outer threaded rod (6), lifting outer threaded rod (6) is installed with lifting inner threaded rod (7) in cooperation, lifting inner threaded rod (7) is installed with lifting platform (8) in the end of not being used in cooperation with lifting outer threaded rod (6), lifting platform (8) middle is equipped with long hole, pressing rod (14) is vertically installed on the side of lifting platform (8) away from lifting inner threaded rod (7), pressing rod (14) other end is installed with induction block (15), big air spring (9) connects lifting platform (8) lower end surface and underframe car (1) upper end surface, feeding box (18) is installed above lifting platform (8), forward motor (11) is installed on the upper end surface of electric control box (4) and in the side close to lifting motor (5), the output end of forward motor (11) is connected with forward outer threaded rod (12), forward outer threaded rod (12) is installed with forward inner threaded rod (13) in cooperation, small air spring (10) is connected with the lower end surface of feeding box (18) and the outer wall of forward inner threaded rod (13) through the long hole of lifting platform (8), forward inner threaded rod (13) is installed with induction block (15) in the end of not being used in cooperation with forward outer threaded rod (12).
2. The feeding device for cattle breeding according to claim 1, characterized in that The lifting platform (8) and feeding box (18) are also provided with a slide rail (16) and a sliding block (17), the slide rail (16) is installed on the upper end surface of the lifting platform (8), the sliding block (17) is installed on the lower end surface of the feeding box (18), and the slide rail (16) and the sliding block (17) are installed and used in cooperation, the feeding box (18) is installed on the slide rail (16) of the lifting platform (8) through the sliding block (17).
3. The feeding device for cattle breeding according to claim 1, characterized in that The feeding box (18) is also provided with an inlet (19), an outlet (20), an outlet motor (21), a rotating rod (22) and a paddle (23), the inlet (19) is installed on the upper end of the feeding box (18), the outlet (20) is installed on one side of the feeding box (18) and close to the pressing rod (14), the outlet motor (21) is installed on the other side of the feeding box (18) and the output port penetrates through the wall of the feeding box (18), the rotating rod (22) is connected to the output end of the outlet motor (21) and inside the feeding box (18), and the paddle (23) is installed on the rotating rod (22) and inside the feeding box (18).
4. The feeding device for cattle breeding according to claim 1, characterized in that The induction block (15) comprises an induction roller (151), an induction block body (152) and a pressure sensor (153), the induction roller (151) is installed on one side end face of the induction block body (152), and the pressure sensor (153) is installed in the induction block body (152) while the induction roller (151) contacts the pressure sensor (153).
5. The feeding device for cattle breeding according to claim 1, characterized in that The electric control box (4) controls the lifting motor (5), the forward motor (11), the induction block (15) and the discharging motor (21), the lifting motor (5) and the forward motor (11) control the induction block (15) to induct, the discharging motor (21) is started again when the induction block (15) is inducted by pressure, and the discharging motor (21) stops working when the induction block (15) is not inducted by pressure.
6. The feeding device for cattle breeding according to claim 1, characterized in that The handle (3) is vertically opposite to the rotary rod (22).