Device for feeding yaks with lick bricks
By improving the yak feeding licking brick device, the assembly slot of the receiving base and vertical block is spliced with the tripod, and a residue trough and adsorption plate are set up to realize the collection and cleaning of saliva and residue, solve the pollution problem under the licking brick, and improve the convenience of cleaning and the stability of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Garze Tibetan Autonomous Prefecture Animal Husbandry Science Research Institute (Garze Tibetan Autonomous Prefecture Yak Industry Development Center)
- Filing Date
- 2026-02-28
- Publication Date
- 2026-05-12
AI Technical Summary
When the existing yak feeding brick licking device is in use, the bottom of the brick is hollowed out from the ground, causing saliva and residue to fall directly onto the ground, polluting the surface and making it difficult to clean.
A device was designed that includes a receiving base, a tripod, a fixing block, a licking chamber, and a suspension structure. The receiving base and the vertical block are connected to the lower end of the tripod through an assembly slot. A residue trough and an adsorption plate are set up. The residue is collected and cleaned by a cleaning body and a slide rail. The device is combined with a push-pull block and a scraping block for rapid cleaning.
This effectively prevents saliva and residue from directly polluting the ground, improves the ease of cleaning and the stability of the device, and ensures the normal use of the yak licking brick.
Smart Images

Figure CN122004146A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of yak feeding technology, and more specifically to a device for feeding yaks with licking bricks. Background Technology
[0002] Yak feeding licks are a nutritional supplement specially designed for yaks. They are in the form of blocks (usually brick-shaped) for yaks to lick freely, so that they can supplement essential minerals and trace elements, maintain their health and balance, and adapt to the living habits of yaks. Therefore, when feeding licking bricks, a special device can be used to fix the position of the licking brick. The device is sturdy, durable and practical, which can be used to ensure stable positioning in the special environment of the plateau and the wild, thus facilitating the licking effect of yaks. In summary, the inventors have found that existing yak feeding lick brick devices have the following main defects: current yak feeding lick brick devices are usually divided into triangular hanging frames, lick brick boxes, ground-fixed bases, and movable lick brick racks, etc. Therefore, this invention will improve the triangular hanging frame. Because current brick-licking devices (triangular brackets) are typically fixed vertically near campsites or fences, the brackets only suspend the bricks at the bottom center. This leaves the area below the bricks open and directly connected to the ground, causing residue and saliva from yaks licking the bricks to fall onto the ground. As the ground around the device becomes increasingly polluted, and due to air currents, this saliva and residue solidify on the surface, eventually polluting the ground and making it difficult to clean. Summary of the Invention
[0003] The technical solution adopted by the present invention to achieve the technical objective is: a device for feeding yaks with licking bricks, the structure of which includes: a receiving base, a tripod, a fixing block, a licking cavity, and a suspension structure. The upper edge of the receiving base determines the position of the tripod, the upper edge of the tripod is connected to the fixing block, and the internal licking cavity determines the position of the suspension structure. The lower part of the suspension structure communicates with the receiving base.
[0004] As a further improvement of the present invention, the receiving base is provided with a plug, the upper end of the plug is connected to an anti-slip plate, a vertical block is provided on the upper layer of the anti-slip plate, and an assembly groove is opened on the upper edge of the vertical block and a residue groove is opened at the center.
[0005] As a further improvement of the present invention, the residue tank is also provided with an adsorption plate, which is disposed in the lower layer of the limiting frame. A slide rail is opened in the inner wall of the limiting frame. An adsorption block is mounted in the center of the receiving cavity and a central groove is opened in the center. The slide rail in the inner wall of the limiting frame is also connected to a cleaning body and intersects and overlaps with the central groove of the adsorption block.
[0006] As a further improvement of the present invention, the licking brick is positioned above the receiving base by the internal suspension structure of the licking cavity of the tripod. Then, the vertical block of the receiving base is spliced with the lower end of the tripod through the assembly groove, so that the residue groove is connected to the licking brick of the suspension structure. The limiting frame of the residue groove uses the inner wall slide rail to allow the cleaning body to slide left and right, while the adsorption block pulls and positions the cleaning body.
[0007] As a further improvement of the present invention, the receiving base is arranged on the ground in a parallel orientation and perpendicular to the tripod, the fixing block of the tripod is embedded in the edge of the fence, and the licking cavity provides installation space for the suspension structure.
[0008] As a further improvement of the present invention, the insert is solid and is vertically positioned at the lower center of the anti-slip plate. The anti-slip plate and the vertical block are parallel to each other. The assembly slot of the vertical block is set in a symmetrical orientation and matches the shape of the lower end of the tripod. The residue groove is vertically connected to the licking brick of the suspension structure.
[0009] As a further improvement of the present invention, the adsorption plate is parallel to the lower layer of the limiting frame and is embedded in the vertical block for parallel connection. The slide rail is set in a straight line on the inner wall of the limiting frame to restrain the edge of the cleaning body. The adsorption block is set in a vertical direction in the center of the limiting frame and is reinforced after the cleaning body is reset through the central groove.
[0010] As a further improvement of the present invention, the cleaning body is provided with a push-pull block, a balance block is welded to the lower end of the push-pull block and a vertical plate is mounted on the lower end of the balance block, a slider is connected to the edge of the vertical plate and a metal block is provided at the center of the surface, and a scraping block is fixed to the lower end of the vertical plate.
[0011] As a further improvement of the present invention, the push-pull block and the balance block are perpendicular to each other, the center point of the balance block and the vertical plate coincide, and the scraping block at the lower end is made of stainless steel and has a triangular solid blade shape. The slider is symmetrically arranged at the edge of the vertical plate and the metal block is protruding and inserted into the center groove of the adsorption block.
[0012] As a further improvement of the present invention, the metal block is also provided with a locking block, which is located at the edge of the welding frame and the inner wall of the welding frame is provided with a welding wall, and the edge of one end of the solid block is welded and fixed by the welding wall.
[0013] As a further improvement of the present invention, there are four locking blocks distributed at the edge of the welding frame. The welding wall of the welding frame is in contact with one end of the solid block. The solid block is in a convex shape and is embedded in the central groove and communicates with the adsorption block.
[0014] As a further improvement of the present invention, the suspension structure is provided with an assembly block, the assembly block is fixed to the outer surface of the top block and the lower end of the top block is provided with a connecting end, the lower end of the connecting end is fixed with a support rod, and the lower end of the support rod is connected with a clamping member.
[0015] As a further improvement of the present invention, the top block is a solid triangular shape and an assembly block is mounted on it at an inclined position. The connecting end of the top block is planar and is provided with two vertical support rods. The clamping part at the lower end of the support rods is in the shape of a "U".
[0016] As a further improvement of the present invention, the clamping member is also provided with a restraining block, which is disposed at the upper center of the fixing block through a groove, and the fixing block is equipped with an adjusting bolt at the edge and a clamping plate on the inner side.
[0017] As a further improvement of the present invention, the restraining block is a solid square shape and is embedded in the center of the lower end of the support rod through a groove, and the fixing block is in the shape of a "U" with two adjusting bolts on the edge to adjust the two inner clamping plates.
[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. This invention uses a receiving base at the lower end of the tripod as a base. The insert and anti-slip plate of the receiving base can improve the connection with the ground. Then, the assembly groove in the vertical block improves the verticality of the tripod and increases the connection stability with the fence. Then, the saliva and residue produced by the yak licking are collected through the residue trough. Then, the cleaning body is slid left and right using the built-in slide rail, which makes it easy to clean the residue trough and avoids the pollution caused by the residue being directly solidified on the ground.
[0019] 2. This invention improves upon the cleaning body by using a push-pull block to control the balance block, allowing the slider of the vertical plate to slide along the slide rail. Simultaneously, the scraping block at the lower end can horizontally scrape the bottom of the residue tank, thus pushing the residue to one end and removing the solidified residue, achieving a rapid cleaning effect. Finally, with the cooperation of the metal block, it can be inserted and fixed with the adsorption block after resetting. The adsorption and restraint of the adsorption block ensures the original point fixation of the cleaning body, preventing automatic movement and ensuring that the yak can lick the brick normally.
[0020] 3. With the improvement of the suspension structure, the assembly block of the top block can be inserted and connected to the inner wall of the tripod. Then, the parallel connecting end of the lower end of the top block can determine the position of the two support rods. With the cooperation of the vertical fixed support rods, the stability of the clamping component can be guaranteed, preventing swaying and improving the stability of the yak licking brick. Then, the clamping component can be clamped and fixed to the clamp plate through the adjusting bolt, so as to facilitate the disassembly of the licking brick. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of a device for feeding yaks with brick licks.
[0022] Figure 2 This is a three-dimensional structural diagram of an improved receiver base.
[0023] Figure 3 This is a three-dimensional structural diagram of an improved residue tank.
[0024] Figure 4 This is a schematic diagram of a three-dimensional structure of an improved cleaning agent.
[0025] Figure 5 This is a cross-sectional structural diagram of an improved metal block.
[0026] Figure 6 This is a three-dimensional structural diagram of an improved suspension structure.
[0027] Figure 7 This is a three-dimensional structural diagram of an improved clamping component.
[0028] In the diagram: receiver base-1, tripod-2, fixing block-3, licking chamber-4, suspension structure-5; Insert block-11, anti-slip plate-12, vertical block-13, assembly slot-14, residue slot-15; Adsorption plate-151, limiting frame-152, slide rail-153, adsorption block-154, central groove-155, cleaning body-156; Push-pull block-1561, balance block-1562, vertical plate-1563, slider-1564, metal block-1565, scraper block-1566; Locking block-5651, welding frame-5652, welding wall-5653, solid block-5654; Assembly block-51, top block-52, connecting end-53, support rod-54, clamping component-55; Constraint block-551, Groove-552, Fixing block-553, Adjusting bolt-554, Clamping plate-555. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings: Example 1: Figures 1 to 5 As shown: This invention provides a device for feeding yaks with licking bricks. Its structure includes: a receiving base 1, a tripod 2, a fixing block 3, a licking cavity 4, and a suspension structure 5. The upper edge of the receiving base 1 determines the position of the tripod 2. The upper edge of the tripod 2 is connected to the fixing block 3, and the internal licking cavity 4 determines the position of the suspension structure 5. The lower part of the suspension structure 5 is connected to the receiving base 1.
[0030] The receiving base 1 is provided with a plug 11, and the upper end of the plug 11 is connected to an anti-slip plate 12. A vertical block 13 is provided on the upper layer of the anti-slip plate 12. An assembly groove 14 is opened on the upper edge of the vertical block 13 and a residue groove 15 is opened at the center.
[0031] The residue tank 15 is also provided with an adsorption plate 151, which is located in the lower layer of the limiting frame 152. A slide rail 153 is opened in the inner wall of the limiting frame 152. An adsorption block 154 is mounted in the center of the receiving cavity 153 and a central groove 155 is opened in the center. The slide rail 153 in the inner wall of the limiting frame 152 is also connected to a cleaning body 156, which intersects and overlaps with the central groove 155 of the adsorption block 154.
[0032] In this process, the licking brick is positioned above the receiving base 1 by the internal suspension structure 5 of the licking cavity 4 of the tripod 2. Then, the vertical block 13 of the receiving base 1 is spliced with the lower end of the tripod 2 through the assembly groove 14, and the residue groove 15 is connected to the licking brick of the suspension structure 5. The limiting frame 152 of the residue groove 15 allows the cleaning body 156 to slide left and right using the inner wall slide rail 153. At the same time, the adsorption block 154 pulls and positions the cleaning body 156.
[0033] The receiving base 1 is set on the ground in a parallel orientation and is perpendicular to the tripod 2. The fixing block 3 of the tripod 2 is embedded in the edge of the fence, and the licking cavity 4 provides installation space for the suspension structure 5.
[0034] The insert 11 is solid and is vertically positioned at the lower center of the anti-slip plate 12. The anti-slip plate 12 and the vertical block 13 are parallel to each other. The assembly slot 14 of the vertical block 13 is set in a symmetrical position and matches the shape of the lower end of the tripod 2. The residue slot 15 is vertically connected to the brick licking structure 5.
[0035] The adsorption plate 151 is parallel to the lower layer of the limiting frame 152 and is embedded in the vertical block 13 for parallel connection. The slide rail 153 is set in a straight line on the inner wall of the limiting frame 152 to restrain the edge of the cleaning body 156. The adsorption block 154 is set in a vertical direction in the center of the limiting frame 152 and is reinforced after the cleaning body 156 is reset through the central groove 155.
[0036] The cleaning body 156 is provided with a push-pull block 1561. A balance block 1562 is welded to the lower end of the push-pull block 1561, and a vertical plate 1563 is mounted on the lower end of the balance block 1562. A slider 1564 is connected to the edge of the vertical plate 1563, and a metal block 1565 is provided at the center of the surface. A scraping block 1566 is fixed to the lower end of the vertical plate 1563.
[0037] The push-pull block 1561 and the balance block 1562 are perpendicular to each other. The center point of the balance block 1562 and the vertical plate 1563 coincides with each other. The scraping block 1566 at the lower end is made of stainless steel and has a triangular solid blade shape. The slider 1564 is symmetrically arranged at the edge of the vertical plate 1563 and the metal block 1565 is a protrusion inserted into the center groove 155 of the adsorption block 154.
[0038] The metal block 1565 is further provided with a locking block 5651. The locking block 5651 is located at the edge of the welding frame 5652 and the inner wall of the welding frame 5652 is provided with a welding wall 5653. The edge of one end of the solid block 5654 is welded and fixed by the welding wall 5653.
[0039] The locking block 5651 consists of four blocks distributed at the edge of the welding frame 5652. The welding wall 5653 of the welding frame 5652 is in contact with one end of the solid block 5654. The solid block 5654 is in a convex shape and is embedded in the central groove 155, which communicates with the adsorption block 154.
[0040] The specific functions and operation procedures of this embodiment are as follows: In this invention, the device for feeding yaks with licking bricks can determine the position of the tripod 2 through the receiving base 1. Then, the upper edge fixing block 3 of the tripod 2 can be connected to the fence, thus effectively ensuring the device's fixation at the fence position. Subsequently, the licking cavity 4 of the tripod 2 uses the suspension structure 5 to fix the licking brick, allowing the licking brick to be suspended. At the same time, the lower end is connected to the receiving base 1. When the yak licks the brick through the licking cavity 4, the saliva and residue will fall vertically to the receiving base 1, preventing solidification and environmental pollution after falling directly to the ground. Therefore, the vertical block 13 of the receiving base 1 can be connected to the fence through the lower anti-slip plate 12 and the insert block 11. The ground is intersected and connected in parallel. Then, the assembly slot 14 of the vertical block 13 will be intersected and spliced with the lower end of the tripod 2. At the same time, the residue trough 15 in the center can communicate with the licking brick, so that yak saliva and residue can be stably received through the residue trough 15, achieving the isolation of residue from the ground. The limiting frame 152 set in the residue trough 15 can be connected to the vertical block 13 through the lower adsorption plate 151. Then, the inner wall slide rail 153 of the limiting frame 152 allows the edge of the cleaning body 156 to be embedded, so that the cleaning body 156 can move laterally through the slide rail 153, pushing the residue in the lower layer inside the residue trough 15, and removing the solidified residue, improving efficiency. For improved cleaning convenience, when the cleaning body 156 is finished and reset, its position can be controlled by the adsorption block 154 and the central groove 155, preventing the cleaning body 156 from moving automatically and affecting the yak's normal brick licking. This effectively improves the usability of the current device. Subsequently, the push-pull block 1561 of the cleaning body 156 can manually drive the lower balance block 1562 to move. The slider 1564 of the vertical plate 1563 at the lower end of the balance block 1562 can be embedded in the slide rail 153. The position control of the slide rail 153 allows the vertical plate 1563 and the lower scraping block 1566 to move linearly, so that the scraping block 1566, in its solid blade form, can move linearly. It can quickly and stably process residues. When finally resetting, the metal block 1565 is inserted into the central groove 155 so that the adsorption plate 154 can adsorb and fix it. At the same time, when the metal block 1565 is connected to the vertical plate 1563, the welding frame 5652 is first fixed by the edge locking block 5651. Then, the welding wall 5653 of the welding frame 5652 allows the solid block 5654 to be embedded. Through the cooperation of the welding wall 5653, it can complete the fixed splicing with the solid block 5654, ensuring the stability when it is pulled through the central groove 155 of the adsorption block 154, preventing it from falling off, thus improving the stability of the current device during operation.
[0041] Example 2: Figures 6 to 7 As shown: This invention provides a device for feeding yaks with licking bricks. Its structure includes an assembly block 51 on the suspension structure 5, which is fixed to the outer surface of the top block 52 and has a connecting end 53 at the lower end of the top block 52. A support rod 54 is fixed at the lower end of the connecting end 53 and a clamping member 55 is connected to the lower end of the support rod 54.
[0042] The top block 52 is a solid triangular shape and has an assembly block 51 mounted on it at an inclined position. The connecting end 53 of the top block 52 is planar and has two vertical support rods 54. The clamping part 55 at the lower end of the support rods 54 is in the shape of a "U".
[0043] The clamping member 55 is further provided with a restraining block 551. The restraining block 551 is set at the upper center of the fixing block 553 through a groove 552. The fixing block 553 is equipped with an adjusting bolt 554 at its edge and a clamping plate 555 on its inner side.
[0044] The restraining block 551 is a solid square shape and is embedded in the center of the lower end of the support rod 54 through the groove 552. The fixing block 553 is in the shape of a "U" and has two adjusting bolts 554 on its edge to adjust the two inner clamping plates 555.
[0045] The specific functions and operation procedures of this embodiment are as follows: In this invention, the triangular top block 52 of the suspension structure 5 can be spliced with the inside of the tripod 2 through the edge assembly block 51. Then, the parallel connecting end 53 at the lower end of the top block 52 can determine the position of the two vertical support rods 54, so that the clamping member 55 can be vertically fixed by the cooperation of the solid vertical support rods 54, ensuring that the yak will not shake when eating the licking brick in the clamping member 55, thereby improving the eating stability of the licking brick. Then, the fixing block 553 of the clamping member 55 can be spliced with the lower end of the support rod 54 through the groove 552 and the restraining block 551. Subsequently, the fixing block 553 controls the rotation of the clamping plate 555 through the adjusting bolt 554. For this purpose, the clamping plate 555 can clamp both ends of the licking brick. The self-locking property of the thread of the adjusting bolt 554 improves the fixation of the licking brick and prevents it from falling. At the same time, the rotation adjustment can easily loosen the clamping plate 555, so that the licking brick can be quickly replaced, thereby further improving the use effect of the current device.
[0046] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solutions described in this invention, or by designing similar technical solutions by those skilled in the art under the inspiration of the technical solutions described in this invention, falls within the protection scope of this invention.
Claims
1. A device for feeding yaks with licking bricks, the structure of which includes: The receiver base (1), tripod (2), fixing block (3), licking cavity (4), and suspension structure (5) are provided. The upper edge of the receiver base (1) determines the position of the tripod (2). The upper edge of the tripod (2) is connected to the fixing block (3), and the licking cavity (4) inside determines the position of the suspension structure (5). The lower part of the suspension structure (5) is connected to the receiver base (1). The characteristic feature is that: The receiving base (1) is provided with a plug (11), and the upper end of the plug (11) is connected to an anti-slip plate (12). A vertical block (13) is provided on the upper layer of the anti-slip plate (12). An assembly groove (14) is opened on the upper edge of the vertical block (13) and a residue groove (15) is opened in the center. The residue tank (15) is also provided with an adsorption plate (151). The adsorption plate (151) is located in the lower layer of the limiting frame (152). A slide rail (153) is opened in the inner wall of the limiting frame (152). An adsorption block (154) is mounted in the center of the receiving cavity (153) and a central groove (155) is opened in the center. The slide rail (153) in the inner wall of the limiting frame (152) is also connected to a cleaning body (156) and intersects and overlaps with the central groove (155) of the adsorption block (154). The licking brick is positioned above the receiving base (1) by the internal suspension structure (5) of the licking cavity (4) of the tripod (2). Then, the vertical block (13) of the receiving base (1) is spliced with the lower end of the tripod (2) through the assembly groove (14). The residue groove (15) is connected to the licking brick of the suspension structure (5). The limiting frame (152) of the residue groove (15) uses the inner wall slide rail (153) to allow the cleaning body (156) to slide left and right. At the same time, the adsorption block (154) pulls and positions the cleaning body (156).
2. The device for feeding yaks with licking bricks according to claim 1, characterized in that: The receiving base (1) is set on the ground in a parallel orientation and perpendicular to the tripod (2). The fixing block (3) of the tripod (2) is embedded in the edge of the fence. The licking cavity (4) provides installation space for the suspension structure (5).
3. The device for feeding yaks with licking bricks according to claim 1, characterized in that: The insert (11) is solid and is set vertically at the lower center of the anti-slip plate (12). The anti-slip plate (12) and the vertical block (13) are parallel to each other. The assembly slot (14) of the vertical block (13) is set in a symmetrical position and matches the shape of the lower end of the tripod (2). The residue groove (15) is vertically connected to the licking brick of the suspension structure (5).
4. The device for feeding yaks with licking bricks according to claim 1, characterized in that: The adsorption plate (151) is parallel to the lower layer of the limiting frame (152) and is embedded in the vertical block (13) for parallel connection. The slide rail (153) is set in a straight line on the inner wall of the limiting frame (152) to restrain the edge of the cleaning body (156). The adsorption block (154) is set in a vertical position in the center of the limiting frame (152) and is reinforced after the cleaning body (156) is reset through the central groove (155).
5. The device for feeding yaks with licking bricks according to claim 1, characterized in that: The cleaning body (156) is provided with a push-pull block (1561), a balance block (1562) is welded to the lower end of the push-pull block (1561), and a vertical plate (1563) is mounted on the lower end of the balance block (1562). A slider (1564) is connected to the edge of the vertical plate (1563), and a metal block (1565) is provided at the center of the surface. A scraping block (1566) is fixed to the lower end of the vertical plate (1563). The push-pull block (1561) and the balance block (1562) are perpendicular to each other. The center point of the balance block (1562) and the vertical plate (1563) coincide. The scraping block (1566) at the lower end is made of stainless steel and is in the form of a triangular solid blade. The slider (1564) is symmetrically positioned at the edge of the vertical plate (1563), and the metal block (1565) is in the form of a protrusion inserted into the center groove (155) of the adsorption block (154).
6. The device for feeding yaks with licking bricks according to claim 5, characterized in that: The metal block (1565) is also provided with a locking block (5651), which is located at the edge of the welding frame (5652) and the inner wall of the welding frame (5652) is provided with a welding wall (5653). The edge of one end of the solid block (5654) is welded and fixed by the welding wall (5653). The locking block (5651) consists of four blocks and is distributed at the edge of the welding frame (5652). The welding wall (5653) of the welding frame (5652) is in contact with one end of the solid block (5654). The solid block (5654) is in a raised shape and is embedded in the central groove (155) and communicates with the adsorption block (154).
7. The device for feeding yaks with licking bricks according to claim 1, characterized in that: The suspension structure (5) is provided with an assembly block (51), the assembly block (51) is fixed to the outer surface of the top block (52) and the bottom end of the top block (52) is provided with a connecting end (53), the bottom end of the connecting end (53) is fixed with a support rod (54), and the bottom end of the support rod (54) is connected with a clamping member (55). The top block (52) is a triangular solid shape and has an assembly block (51) mounted on it at an inclined position. The connecting end (53) of the top block (52) is a planar shape and is provided with two vertical support rods (54). The clamping part (55) at the lower end of the support rod (54) is in the shape of a "U".
8. The device for feeding yaks with licking bricks according to claim 7, characterized in that: The clamping member (55) is also provided with a restraining block (551), which is set at the upper center of the fixing block (553) through a groove (552). The fixing block (553) is equipped with an adjusting bolt (554) at the edge and a clamping plate (555) on the inner side. The restraining block (551) is a solid square shape and is embedded in the center of the lower end of the support rod (54) through the groove (552). The fixing block (553) is in the shape of a "U" and has two adjusting bolts (554) on the edge to adjust the two inner clamps (555).