A cattle and sheep lick block machine system

The clamping and sterilization modules of the cattle and sheep licking brick machine system solve the problems of unstable installation and bacterial contamination of the licking bricks, achieving uniform consumption and hygienic sterilization of the licking bricks, and improving the health and nutritional supplementation effect of cattle and sheep.

CN116491433BActive Publication Date: 2025-11-18NINGXIA UNIVERSITY
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Patent Information

Application Number
CN202310578411.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-22
Publication Date
2025-11-18
Estimated Expiration
2043-05-22

AI Technical Summary

Technical Problem

Existing cattle and sheep licking bricks are prone to detachment during installation, leading to resource waste, and are susceptible to bacterial contamination during long-term use, affecting the health of cattle and sheep.

Method used

A cattle and sheep licking brick machine system was designed. Through the cooperation of clamping module and sterilization module, the automatic adjustment and sterilization of licking bricks are realized, ensuring that the surface of the licking brick is uniformly edible and hygienic.

Benefits of technology

This effectively prevents excessive local consumption and loss of the licking brick, ensuring the cleanliness and hygiene of the licking brick surface, maintaining the electrolyte balance and nutritional supplementation of cattle and sheep, and improving their health.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of cattle and sheep lick brick, and particularly relates to a cattle and sheep lick brick machine system, which comprises a support, a horizontal rod and an adjusting module arranged in an up-down manner are installed on the outer side of the support, the other end of the adjusting module is connected with a clamping module capable of adjusting the brick, a sterilization module for sterilizing the brick is installed on the outer side of the horizontal rod, and a control unit with a timing function is installed on the outer side of the support; when the present application is used, the lick brick is placed on the outer side of the supporting column and is limited by the installation of the nut, during the eating process of the lick brick, the sterilization module and the clamping module cooperate after a period of time to automatically sterilize and disinfect the surface of the lick brick, so as to ensure that the cattle and sheep eat the lick brick healthily, meanwhile, the clamping module automatically tightens the lick brick to avoid the lick brick from falling due to excessive eating on one side and causing the waste of resources, in order to ensure that the extrusion rod stably slides and extrudes the lick brick, a sliding block is arranged to cooperate with a sliding frame to realize the stable sliding of the extrusion rod and the tightening of the lick brick under the pulling of the pull rope.
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Description

Technical Field

[0001] This invention relates to the field of cattle and sheep brick licking technology, specifically a cattle and sheep brick licking machine system. Background Technology

[0002] The feed we currently use contains a certain amount of minerals, but there are two problems: first, the mineral content is difficult to balance; second, most of the minerals are organically linked, making them difficult for cattle and sheep to absorb. Licks are additives that are easily absorbed by cattle and sheep through multiple processing steps, based on their physiological characteristics. Mineral licks contain macroelements such as calcium, phosphorus, and sodium, as well as microelements such as iron, copper, and zinc. They can maintain the electrolyte balance of cattle and sheep, prevent nutritional deficiencies, supplement their balance, and regulate nutrition. Moreover, they can prevent diseases in cattle and sheep, improve their production performance, and improve the quality of livestock products.

[0003] Currently, most commercially available licking bricks are square or cylindrical, and are typically installed by hanging them with ropes or attaching them to the outside of a pole. During consumption by cattle and sheep, excessive wear and tear can easily cause the licking bricks to detach from the rope or pole, fall to the ground, and become contaminated, rendering them inedible and wasting resources. Furthermore, because licking bricks are exposed to air for extended periods, they easily attract flying insects, leading to bacterial growth and the production of harmful toxins. Consuming these toxins can negatively impact the health of cattle and sheep. Therefore, this paper proposes a cattle and sheep licking brick machine system to address these issues. Summary of the Invention

[0004] The purpose of this invention is to provide a cattle and sheep brick-licking machine system to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] As an optional solution of the cattle and sheep brick licking machine system of the present invention, the cattle and sheep brick licking machine system includes a support frame, on the outside of the support frame are horizontal bars and an adjustment module distributed vertically, the other end of the adjustment module is connected to a clamping module that can adjust the bricks, on the outside of the horizontal bars are a sterilization module for sterilizing the bricks, and on the outside of the support frame is a control unit with a timing function.

[0007] Currently, commercially available licking blocks are generally square or cylindrical, and are typically installed by hanging them with ropes or attaching them to the outside of a pole. During consumption by cattle and sheep, excessive wear in certain areas can cause the licking blocks to detach from the rope or pole, fall to the ground, become contaminated, and become inedible, resulting in resource waste. Furthermore, because licking blocks are exposed to air for extended periods, insects easily land on their surface, leading to bacterial growth and the production of harmful toxins. Consuming these bacteria can negatively impact the health of cattle and sheep. This device, however, involves attaching the licking block to a clamping module and limiting its position. During prolonged consumption, the licking block may become concave in certain areas. In this case, the licking block needs to be rotated to ensure proper contact between the licking block and the animal. The other side is used for feeding, ensuring that the outer surface of the licking block is evenly fed. Every certain period of time, for example, every 4 hours, the clamping module automatically repositions the licking block to ensure that different positions of the licking block are limited, thereby ensuring that uneaten or protruding parts are contacted and limited. Then, the clamping module is adjusted by the adjustment module to ensure that all directions of the licking block are evenly fed and that the licking block is not easy to fall off. During the long-term feeding of the licking block, bacteria will inevitably grow. This device uses a sterilization module that moves down and works with the clamping module to seal the licking block. At the same time, the sterilization module is activated to sterilize and disinfect the licking block, ensuring that cattle and sheep eat clean and hygienic licking blocks. This helps maintain the electrolyte balance of cattle and sheep, prevent nutritional deficiencies, supplement the balance of cattle and sheep, and regulate nutrition.

[0008] As an optional solution of the cattle and sheep brick licking machine system of the present invention, the sterilization module includes a guide plate and a sterilization frame. The top of the guide plate is fixedly connected to a crossbar, the bottom of the crossbar is fixedly connected to a first hydraulic rod, the bottom of the first hydraulic rod is fixedly connected to a sterilization frame, the side of the sterilization frame is slidably connected to the guide plate, and a sterilization lamp is installed inside the sterilization frame.

[0009] Over time, bacteria can easily grow on the surface of licking blocks, especially in summer when insects can easily bring bacteria to the surface. If cattle and sheep lick contaminated licking blocks for extended periods, it can negatively impact their health. This device, however, periodically activates the first hydraulic rod to move the lower sterilization frame downwards. As the frame moves downwards, it comes into contact with the outside of the clamping module's blocking plate. Simultaneously, when the frame reaches the docking rod position, it engages with the sealing base plate below the rod, sealing the licking block. Then, the sterilization lamp is activated to sterilize the outer surface of the licking block. After sterilization, the first hydraulic rod is activated again to move the sterilization frame upwards, separating it from the docking rod. Under gravity, the sealing base plate automatically moves downwards, ensuring that cattle and sheep can still consume the licking blocks. This device effectively sterilizes the licking blocks, allowing cattle and sheep to obtain necessary nutrients in a healthy manner.

[0010] As an optional solution to the cattle and sheep brick licking machine system of the present invention, the bottom of the sterilization frame and the end near the guide plate are set with an arc surface.

[0011] As the sterilization frame moves downwards, its bottom arc surface contacts the connecting rod. Because the upper surface of the connecting rod is also arc-shaped, when their arc surfaces contact, the sterilization frame squeezes the connecting rod, causing it to move closer to the adjustment module. As the sterilization frame gradually moves downwards, its connecting rod is set vertically, and the sealing base plate below is set horizontally. At this time, it can connect with the bottom of the sterilization frame, thereby sealing the sterilization frame and ensuring that the sterilization lamp can start normally to sterilize the licking brick.

[0012] As an optional solution of the cattle and sheep brick licking machine system of the present invention, the adjustment module includes a support rod and a rotating sleeve. One end of the support rod is fixedly connected to the bracket, and the other end of the support rod is fixedly connected to the rotating sleeve. The inner side of the rotating sleeve is rotatably connected to the clamping module.

[0013] A motor is fixedly connected to the outside of the support rod. A drive gear is fixedly connected to the end of the motor's main shaft. A driven gear meshes with the outside of the drive gear. The inside of the driven gear is fixedly connected to the clamping module.

[0014] During the clamping process, the licking brick is continuously consumed. When one side of the licking brick becomes concave due to consumption, the clamping module automatically clamps it after a period of time. The motor drives the drive gear to rotate, which in turn drives the driven gear, which in turn drives the inner clamping module to rotate. The clamping module and the rotating sleeve rotate relative to each other, thereby adjusting the position of the licking brick. This ensures that cattle and sheep consume the uneaten or protruding parts of the licking brick, preventing over-consumption in certain areas that could cause the licking brick to fall off and waste resources.

[0015] As an optional solution of the cattle and sheep brick licking machine system of the present invention, the clamping module includes a rotating rod and a second hydraulic rod. The outer side of the rotating rod is connected to the adjustment module. A blocking plate is fixedly connected to one end of the rotating rod, and a support column is fixedly connected to the other end of the blocking plate. A nut is screwed to the other end of the support column.

[0016] The other end of the rotating rod is fixedly connected to a second hydraulic rod. The output end of the second hydraulic rod is fixedly connected to four sets of pull ropes, and the other end of the pull ropes is fixedly connected to a pressing rod. Pressure sensors are fixedly connected to the outer side of each pressing rod, and the outer side of the pressing rod is slidably connected to the inside of the baffle plate by a groove.

[0017] When cattle and sheep need to eat the licking block, the licking block is placed on the outside of the support column and screwed to one end of the support column with a nut. The nut and the baffle plate work together to limit the movement of the licking block. Then, by activating the second hydraulic rod, four sets of pull ropes are moved. The pull ropes are located inside the rotating rod, so their rotation does not affect normal operation. The movement of the four pull ropes causes the extrusion rod to slide, which in turn moves the pressure sensor on the outside, bringing it into contact with the licking block for compression and fixation. During prolonged use, the licking block may develop localized indentations. Periodically, the second hydraulic rod loosens the pull ropes, thus releasing the pressure. The rod and external pressure sensor separate from the lick brick. At this time, the lick brick will automatically rotate according to its own gravity. Then, the second hydraulic rod is restarted to drive the pull rope to move. The pull rope continues to drive the squeezing rod and pressure sensor to clamp the lick brick again. When the pressure sensor pressure in a certain area reaches a certain value, it means that the lick brick in this area has not been eaten or that the lick brick in this area has been eaten less than other areas. Then, by activating the adjustment module, the lick brick in the area with the higher pressure sensor value is turned downwards. This makes it easier for cattle and sheep to eat this part, ensuring that all parts of the lick brick are eaten evenly and avoiding local concavity of the lick brick, which would cause it to fall and be difficult to fix.

[0018] As an optional solution of the cattle and sheep brick licking machine system of the present invention, wherein: a sliding block is fixedly connected to the outer side of each extrusion rod, and a sliding frame is slidably connected to the other end of the sliding block; the bottom of the sliding frame is fixedly connected to the rotating rod.

[0019] Each of the extrusion rods is fixedly connected to a spring on its outer side, and the other end of the spring is fixedly connected to the sliding frame.

[0020] When the extrusion rod slides inside the baffle plate, a sliding block is fixedly connected to the outside of the extrusion rod to ensure stable sliding. The outside of the sliding block slides with the sliding frame. When the pull rope pulls the extrusion rod, the extrusion rod can slide stably and smoothly, avoiding the problem of the extrusion rod rotating on its own. At the same time, when the pull rope is loosened, its spring can squeeze the extrusion rod at one end to slide, ensuring that the external pressure sensor of the extrusion rod can be automatically reset, ensuring the normal operation of the next cycle.

[0021] As an optional solution of the cattle and sheep brick licking machine system of the present invention, the bottom of the baffle plate is rotatably connected to a connecting rod, and the bottom of the connecting rod is fixedly connected to an inclined sealing base plate.

[0022] The connecting rod and the sealing base plate are vertically arranged. When the sterilization frame moves downward, it contacts the connecting rod and gradually rotates the connecting rod. When the connecting rod is in a vertical state, the sealing base plate at its bottom is horizontally arranged to cooperate with the sterilization frame to achieve a sealing effect. When they separate, the connecting rod and the sealing base plate automatically reset, which does not easily affect the cattle and sheep's consumption of the licking brick.

[0023] As an optional solution to the cattle and sheep brick-licking machine system described in this invention, the number of connecting rods is two sets, and the top of the connecting rods is arc-shaped.

[0024] The top of the connecting rod is arc-shaped, which facilitates the contact of its two arc surfaces when the sterilization frame slides down, allowing the connecting rod to move. This makes it easier for the sterilization frame to cooperate with the sealing base plate below.

[0025] Compared with the prior art, the beneficial effects of the present invention are:

[0026] When in use, the invention places the licking brick outside the support column and limits its position by installing a nut. During the licking process, after a period of time, the surface of the licking brick can be automatically sterilized and disinfected by the cooperation of the sterilization module and the clamping module, ensuring that cattle and sheep eat the licking brick healthily. At the same time, the clamping module can automatically tighten the licking brick to prevent it from falling off due to excessive consumption on one side.

[0027] When the sterilization module slides down and engages with the clamping module, the bottom of the sterilization frame of the clamping module engages with the rotating rod and the sealing base plate to automatically seal the area where the licking brick is located, forming a sealed chamber. This helps to sterilize the bacteria on the surface of the licking brick and ensures that cattle and sheep can eat normally.

[0028] Meanwhile, this device uses a pressure sensor on the outside of the squeezing rod to clamp the licking brick. When one side of the licking brick is concave, it indicates that the side is over-eaten. When the pressure sensor on the outside of the squeezing rod detects a large pressure, it indicates that the degree of eating is low. By activating the adjustment module, the direction of the licking brick can be changed to ensure that all parts of the licking brick are evenly eaten and to prevent the licking brick from detaching from the support column.

[0029] To ensure the stable sliding of the extrusion rod and its ability to compress the brick, a sliding block is installed in conjunction with the sliding frame. This allows the extrusion rod to slide stably and tighten the brick when pulled by the rope. Attached Figure Description

[0030] Figure 1 A schematic diagram of the overall structure of a cattle and sheep brick-licking machine system;

[0031] Figure 2 A system for licking bricks by cattle and sheep Figure 1 A schematic diagram of the structure at point A;

[0032] Figure 3 A schematic diagram of the sterilization module structure of a cattle and sheep brick-licking machine system;

[0033] Figure 4 A schematic diagram of the rotating rod in a cattle / sheep brick-licking machine system;

[0034] Figure 5 This is a schematic diagram of the sliding frame of a cattle and sheep brick-licking machine system.

[0035] In the diagram: 1. Support; 2. Crossbar; 3. Sterilization module; 301. Guide plate; 302. First hydraulic rod; 303. Sterilization frame; 304. Sterilization lamp; 4. Adjustment module; 401. Support rod; 402. Rotating sleeve; 403. Motor; 404. Drive gear; 405. Driven gear; 5. Clamping module; 501. Rotating rod; 502. Second hydraulic rod; 503. Baffle plate; 504. Support column; 505. Nut; 506. Connecting rod; 507. Sealing base plate; 508. Extrusion rod; 509. Pressure sensor; 510. Sliding frame; 511. Pull rope; 512. Spring; 513. Sliding block. Detailed Implementation

[0036] Example 1:

[0037] Please see Figure 1 and Figure 2The present invention provides a technical solution:

[0038] A system for licking bricks by cattle and sheep includes a support frame 1. A horizontal bar 2 and an adjustment module 4 are installed on the outer side of the support frame 1. The other end of the adjustment module 4 is connected to a clamping module 5 that can adjust the bricks. A sterilization module 3 for sterilizing the bricks is installed on the outer side of the horizontal bar 2. A control unit with a timing function is also installed on the outer side of the support frame 1.

[0039] Currently, commercially available licking blocks are generally square or cylindrical, and are typically installed by hanging them with ropes or attaching them to the outside of a pole. During consumption by cattle and sheep, excessive wear in certain areas can cause the licking blocks to detach from the rope or pole, fall to the ground, and become contaminated and inedible, resulting in resource waste. Furthermore, because licking blocks are exposed to air for extended periods, insects easily land on their surface, leading to bacterial growth and the production of harmful toxins. Consuming these bacteria can negatively impact the health of cattle and sheep. This device, however, involves installing the licking block on clamping module 5 and limiting its position. During prolonged consumption, the licking block may become concave in some areas. In this case, the licking block needs to be rotated to ensure the cattle and sheep consume the other side, guaranteeing even consumption of the outer surface. The control unit allows for… Every so often, for example, every 4 hours, the clamping module 5 automatically repositions the licking brick, ensuring that different positions of the licking brick are restrained, thus ensuring that uneaten or protruding parts are in contact with the licking brick. Then, the clamping module 5 is adjusted by the adjustment module 4 to ensure that all parts of the licking brick are consumed evenly and that the licking brick does not easily fall off. This device is not limited to automatically repositioning the licking brick by the clamping module 5 every 4 hours; the time can be automatically adjusted by the control unit. During the long-term consumption of the licking brick, bacteria will inevitably grow. This device uses the sterilization module 3, which moves down and cooperates with the clamping module 5, to seal the licking brick and simultaneously activate the sterilization module 3 to sterilize and disinfect the licking brick, ensuring that cattle and sheep consume clean and hygienic licking bricks. This helps maintain the electrolyte balance of cattle and sheep, prevent nutritional deficiencies, supplement their nutritional balance, and regulate their nutrition.

[0040] Example 2

[0041] This embodiment is an improvement made to Implementation 1. Please refer to [link / reference]. Figure 1 and Figure 3Specifically, the sterilization module 3 includes a guide plate 301 and a sterilization frame 302. The top of the guide plate 301 is fixedly connected to the crossbar 2. The bottom of the crossbar 2 is fixedly connected to a first hydraulic rod 302. The bottom of the first hydraulic rod 302 is fixedly connected to a sterilization frame 303. The side of the sterilization frame 303 is slidably connected to the guide plate 301. A sterilization lamp 304 is installed inside the sterilization frame 303.

[0042] Over time, bacteria can easily grow on the surface of licking blocks, especially in summer when mosquitoes and other insects can easily bring bacteria. If cattle and sheep lick contaminated licking blocks for extended periods, it can negatively impact their health. This device, however, periodically activates the first hydraulic rod 302 to move the lower sterilization frame 303 downwards. As the sterilization frame 303 moves downwards, it rests against the outside of the clamping module 5's baffle plate 503. Simultaneously, when the sterilization frame 303 reaches the position where it engages with the docking rod 506, the sterilization frame 303 and the docking rod 506 work together to achieve sterilization. 03. The sealing base plate 507 below the docking rod 506 contacts and connects, thus sealing the licking brick. Then, the sterilizing lamp 304 is activated, which sterilizes the outer surface of the licking brick. After sterilization, the sterilizing frame 303 is moved upward by activating the first hydraulic rod 302, and the sterilizing frame 303 separates from the docking rod 506. At this time, under the action of gravity, the sealing base plate 507 automatically moves downward. This will not affect the cattle and sheep's consumption of the licking brick. This device can effectively sterilize the licking brick, allowing the cattle and sheep to supplement their nutrition normally and healthily.

[0043] Example 3

[0044] This embodiment is an improvement upon the two implementation examples. Please refer to [link / reference]. Figure 3 Specifically, the bottom of the sterilization frame 303 and the end near the guide plate 301 are curved.

[0045] As the sterilization frame 303 moves downward, its bottom arc surface contacts the connecting rod 506. Since the upper surface of the connecting rod 506 is also arc-shaped, when their arc surfaces contact, the sterilization frame 303 squeezes the connecting rod 506, causing it to move closer to the adjustment module 4. During the gradual downward movement of the sterilization frame 303, the connecting rod 506 is vertically positioned, and the sealing base plate 507 below is horizontally positioned. At this time, it can connect with the bottom of the sterilization frame 303, thereby sealing the sterilization frame 303 and ensuring that the sterilization lamp 304 can start normally to sterilize the brick.

[0046] Example 4

[0047] This embodiment is an improvement upon the three implementation examples. Please refer to [link / reference]. Figure 1 and Figure 2Specifically, the adjustment module 4 includes a support rod 401 and a rotating sleeve 402. One end of the support rod 401 is fixedly connected to the bracket 1, and the other end of the support rod 401 is fixedly connected to the rotating sleeve 402. The inner side of the rotating sleeve 402 is rotatably connected to the clamping module 5.

[0048] A motor 403 is fixedly connected to the outer side of the support rod 401. A drive gear 404 is fixedly connected to the end of the main shaft of the motor 403. A driven gear 405 meshes with the outer side of the drive gear 404. The inner side of the driven gear 405 is fixedly connected to the clamping module 5.

[0049] During the clamping process of the clamping module 5, the licking brick is constantly being consumed. When one side of the licking brick becomes concave due to consumption, after a period of time, the clamping module 5 automatically clamps the licking brick. The starting motor 403 drives the drive gear 404 to rotate, which in turn drives the driven gear 405 to rotate. The driven gear 405 then drives the inner clamping module 5 to rotate. The clamping module 5 and the rotating sleeve 402 rotate relative to each other, thereby adjusting the position of the licking brick. This ensures that cattle and sheep consume the uneaten or protruding parts of the licking brick, avoiding excessive local consumption that could cause the licking brick to fall off and waste resources.

[0050] Example 5

[0051] This embodiment is an improvement upon the four implementation examples. Please refer to [link / reference]. Figure 1 , Figure 2 , Figure 4 and Figure 5 Specifically, the clamping module 5 includes a rotating rod 501 and a second hydraulic rod 502. The outer side of the rotating rod 501 is connected to the adjustment module 4. One end of the rotating rod 501 is fixedly connected to a baffle plate 503. The other end of the baffle plate 503 is fixedly connected to a support column 504, and the other end of the support column 504 is screwed with a nut 505.

[0052] The other end of the aforementioned rotating rod 501 is fixedly connected to a second hydraulic rod 502. The output end of the aforementioned second hydraulic rod 502 is fixedly connected to four sets of pull ropes 511, and the other end of the pull ropes 511 is fixedly connected to a pressing rod 508. Pressure sensors 509 are fixedly connected to the outer side of the aforementioned pressing rod 508, and the outer side of the pressing rod 508 is slidably connected to the inside of the baffle plate 503 by a sliding groove.

[0053] When cattle and sheep need to eat the licking block, the licking block is placed on the outside of the support column 504 and screwed to one end of the support column 504 by a nut 505. At this time, the nut 505 and the baffle plate 503 work together to limit the movement of the licking block. Then, by activating the second hydraulic rod 502, the four sets of pull ropes 511 can be moved. The pull ropes 511 are located inside the rotating rod 501, so the rotation of the rotating rod 501 will not affect its normal use. The movement of the four sets of pull ropes 511 causes the squeezing rod 508 to slide. The squeezing rod 508 causes the outer pressure sensor 509 to move and contact the licking block to squeeze and fix it. At the same time, during the long-term consumption of the licking block, local concavity of the licking block will appear. Every once in a while, the second hydraulic rod 502 will activate the pull ropes 511 to move. 11. Loosen the pressure bar 508 and the external pressure sensor 509 from the lick brick. At this time, the lick brick will rotate automatically according to its own weight. Then, restart the second hydraulic rod 502 to drive the pull rope 511 to move. The pull rope 511 continues to drive the pressure bar 508 and the pressure sensor 509 to clamp the lick brick again. When the pressure of the local pressure sensor 509 reaches a certain value, it means that the lick brick in this part has not been eaten or that the degree of eating of the lick brick in this part is relatively light compared with other parts. Then, by activating the adjustment module 4, the lick brick part in the area with a larger pressure sensor 509 value is turned downwards. At this time, it is convenient for cattle and sheep to eat this part, ensuring that all parts of the lick brick are eaten evenly, and avoiding the local concavity of the lick brick, which would cause it to fall and be difficult to fix.

[0054] Example 6

[0055] This embodiment is an improvement upon the previous five implementations. Please refer to [link / reference]. Figure 2 and Figure 5 Specifically, each of the above-mentioned extrusion rods 508 is fixedly connected to a sliding block 513, and the other end of the sliding block 513 is slidably connected to a sliding frame 510. The bottom of the sliding frame 510 is fixedly connected to the rotating rod 501.

[0056] Springs 512 are fixedly connected to the outer side of the aforementioned extrusion rods 508, and the other end of the springs 512 is fixedly connected to the sliding frame 510.

[0057] When the extrusion rod 508 slides inside the baffle plate 503, a sliding block 513 is fixedly connected to the outside of the extrusion rod 508 to ensure stable sliding. The outside of the sliding block 513 slides with the sliding frame 510. When the pull rope 511 pulls the extrusion rod 508 to move, the extrusion rod 508 can slide stably and smoothly, avoiding the problem of the extrusion rod 508 rotating on its own. At the same time, when the pull rope 511 is loosened, its spring 512 can squeeze the extrusion rod 508 at one end to slide, ensuring that the external pressure sensor 509 can automatically reset the extrusion rod 508, ensuring the normal operation of the next cycle.

[0058] Example 7

[0059] This embodiment is an improvement upon the previous six implementations. Please refer to [link / reference]. Figure 4 Specifically, the bottom of the aforementioned baffle plate 503 is rotatably connected to a docking rod 506, and the bottom of the docking rod 506 is fixedly connected to an inclined sealing base plate 507.

[0060] The connecting rod 506 and the sealing base plate 507 are vertically arranged. When the sterilization frame 303 moves downward, it contacts the connecting rod 506 and gradually rotates the connecting rod 506. When the connecting rod 506 is in a vertical state, the sealing base plate 507 at its bottom is horizontally arranged to cooperate with the sterilization frame 303 to achieve a sealing effect. When they separate, the connecting rod 506 and the sealing base plate 507 automatically reset, which does not easily affect the cattle and sheep's consumption of the licking brick.

[0061] Example 8

[0062] This embodiment is an improvement upon the seven implementation examples. Please refer to [link / reference]. Figure 2 and Figure 4 Specifically, there are two sets of the aforementioned connecting rods 506, and the top of the connecting rods 506 is arc-shaped.

[0063] The upper part of the connecting rod 506 is arc-shaped, which facilitates the contact of its two arc surfaces when the sterilization frame 303 slides down, and allows the connecting rod 506 to move. This makes it convenient for the sterilization frame 303 to cooperate with the sealing base plate 507 below.

[0064] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only for the purpose of helping to understand the method and core ideas of the present invention. The above descriptions are only preferred embodiments of the present invention. It should be noted that due to the limitations of textual expression, while there are objectively infinite specific structures, those skilled in the art can make several improvements, modifications, or changes without departing from the principles of the present invention, and can also combine the above technical features in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of the present invention.

Claims

1. A system for feeding cattle and sheep to lick bricks, characterized in that: Includes a bracket (1), on the outside of the bracket (1) are a horizontal bar (2) and an adjustment module (4) arranged vertically, and the other end of the adjustment module (4) is connected to a clamping module (5) that can adjust the bricks. On the outside of the horizontal bar (2) is a sterilization module (3) for sterilizing the bricks. On the outside of the bracket (1) is a control unit with a timer function. The sterilization module (3) includes a guide plate (301) and a sterilization frame (303). The top of the guide plate (301) is fixedly connected to the crossbar (2). The bottom of the crossbar (2) is fixedly connected to a first hydraulic rod (302). The bottom of the first hydraulic rod (302) is fixedly connected to the sterilization frame (303). The side of the sterilization frame (303) is slidably connected to the guide plate (301). A sterilization lamp (304) is installed inside the sterilization frame (303). The bottom of the sterilization frame (303) and the end near the guide plate (301) are curved. The adjustment module (4) includes a support rod (401) and a rotating sleeve (402). One end of the support rod (401) is fixedly connected to the bracket (1), and the other end of the support rod (401) is fixedly connected to the rotating sleeve (402). The inner side of the rotating sleeve (402) is rotatably connected to the clamping module (5). A motor (403) is fixedly connected to the outside of the support rod (401). A drive gear (404) is fixedly connected to the end of the main shaft of the motor (403). A driven gear (405) meshes with the outside of the drive gear (404). The inside of the driven gear (405) is fixedly connected to the clamping module (5). The clamping module (5) includes a rotating rod (501) and a second hydraulic rod (502). The outer side of the rotating rod (501) is connected to the adjustment module (4). One end of the rotating rod (501) is fixedly connected to a baffle plate (503), and the other end of the baffle plate (503) is fixedly connected to a support column (504). The other end of the support column (504) is screwed with a nut (505). The other end of the rotating rod (501) is fixedly connected to a second hydraulic rod (502). The output end of the second hydraulic rod (502) is fixedly connected to four sets of pull ropes (511), and the other end of the pull ropes (511) is fixedly connected to a pressing rod (508). Pressure sensors (509) are fixedly connected to the outer side of the pressing rod (508), and the outer side of the pressing rod (508) is slidably connected to the inside of the baffle plate (503) by a groove.

2. The cattle and sheep brick-licking machine system according to claim 1, characterized in that: The outer side of each extrusion rod (508) is fixedly connected to a sliding block (513), and the other end of the sliding block (513) is slidably connected to a sliding frame (510). The bottom of the sliding frame (510) is fixedly connected to the rotating rod (501). Each of the compression rods (508) is fixedly connected to a spring (512), and the other end of the spring (512) is fixedly connected to the sliding frame (510).

3. The cattle and sheep brick-licking machine system according to claim 1, characterized in that: The bottom of the baffle plate (503) is rotatably connected to a docking rod (506), and the bottom of the docking rod (506) is fixedly connected to an inclined sealing base plate (507).

4. The cattle and sheep brick-licking machine system according to claim 3, characterized in that: The number of the connecting rods (506) is two sets, and the top of the connecting rods (506) is arc-shaped.

Citation Information

Patent Citations

  • Licking block support

    CN112640804A