Breeding identification assembly with detachable structure
By designing a detachable breeding marking assembly, the connection structure of the first half-snail ring and the second half-snail ring is solved, and the problem of difficult removal of traditional labeling assembly is achieved due to growth is achieved, which is convenient to install and disassemble, and the efficiency and accuracy of breeding management are improved.
Patent Information
- Application Number
- CN202421866863.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-08-05
AI Technical Summary
After the animal is worn for a long time, the loop is squeezed due to growth and is difficult to remove, resulting in inconvenience when replacing the logo component.
A breeding marking assembly with a removable structure is designed, including a first half-snail collar, a second half-snail collar and a connecting structure, and a rapid disassembly or assembly between the two is achieved through the connecting structure to form a complete collar.
It realizes the convenient installation and disassembly of marking components, adapts to the needs of animal growth, improves the convenience of disease prevention and control and traceability, and does not cause excessive hinderance to the daily activities of animals.
Smart Images

Figure CN222916778U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of animal breeding identification components, in particular to a breeding identification component with a detachable structure. Background Art
[0002] Farming identification components play a variety of important roles in the farming industry. They can accurately identify and track individual or group farmed animals. Through unique identification codes or marking methods, each animal has clear and identifiable identity information, which helps to understand its origin, growth history, health status, etc.
[0003] Traditional breeding identification components are often difficult to remove after being fixed or installed on animals. Therefore, a ring-like structure is commonly used, which is put on the legs or neck of the animal, and each animal's individual identification is printed on the ring-shaped structure. However, after the animal wears this ring-shaped structure for a long time, the ring may be squeezed and cannot be or is difficult to remove due to the growth of the animal. This will cause inconvenience when the identification component needs to be replaced to deal with traceability, disease prevention and control, etc.
[0004] For this reason, it is necessary to provide a breeding identification component that is easy to install and disassemble. Utility Model Content
[0005] The embodiment of the utility model provides a breeding identification component with a detachable structure to solve the problems in the prior art.
[0006] The embodiment of the utility model adopts the following technical scheme: a breeding identification component with a detachable structure, comprising a first half circle ring, a second half circle ring and a connecting structure, the first half circle ring and the second half circle ring are combined through the connecting structure to form a complete ring, the first half circle ring and the second half circle ring are both formed with an installation groove at the assembly surface, a group of connecting structures are arranged in each group of two opposite installation grooves and are used to realize a quick-release connection between the corresponding two installation surfaces.
[0007] Preferably, the installation groove on the first half-circle ring is formed with at least one plug-in block protruding from its assembly surface, and the installation groove on the second half-circle ring is formed with slots corresponding to the plurality of plug-in blocks one by one; when the first half-circle ring and the second half-circle ring form a complete ring, the plurality of plug-in blocks are respectively inserted into the plurality of slots.
[0008] Preferably, each set of connection structures includes a pressing plate and a limiting block. The pressing plate is slidably connected along the axial direction of the first half-loop ring in the corresponding installation groove, and the pressing plate is elastically connected to the bottom end of the installation groove. The limiting block is fixedly installed at the top of the installation groove of the second half-loop ring. One end of the pressing plate protrudes and extends outside the corresponding installation groove, and a clamping block is formed at this end. When the first half-loop ring and the second half-loop ring form a complete loop ring, at least a part of the side of the clamping block close to the pressing plate abuts against the inner end of the limiting block, and the pressing plate elastically abuts against the lower end of the limiting block.
[0009] Preferably, the connection structure further includes an unlocking button installed at the top of the installation groove of the second half-loop ring. At least a part of the upper end of the button passes through the second half-loop ring and is slidably connected thereto. When the first half-loop ring and the second half-loop ring form a complete loop ring, the button abuts against the clamping block, and by pressing the button, the clamping block and the pressing plate can be pushed to move together and disengage from the limiting block.
[0010] Preferably, an inclined wall extending obliquely from top to bottom towards the inner end is formed at the outer end of the limiting block, and the end of the clamping block away from the pressing plate is set as an arc wall.
[0011] Preferably, at least a part of the limiting block protrudes above the upper surface of the pressing plate.
[0012] Preferably, the width of the pressing plate is adapted to the width of the corresponding installation groove. A guide post is longitudinally installed in the installation groove of the first half-loop ring. The guide post is slidably matched with the first through hole on the pressing plate. A first spring is also installed on the guide post. The first spring is located below the pressing plate and is used to elastically support the pressing plate.
[0013] Preferably, wings are formed on the left and right sides of the button. Two guide rods are longitudinally installed in the installation groove of the second half-loop ring. The two guide rods are respectively slidably matched with the second through holes on the two wings, and a second spring for supporting the button is installed on each guide rod.
[0014] Preferably, an installation cavity is formed at the end of the first half-loop ring. The installation cavity is used to accommodate an electronic positioning member, and a cover plate is installed at the opening of the installation cavity through screws.
[0015] The above at least one technical solution adopted in the embodiment of the present invention can achieve the following beneficial effects:
[0016] The utility model can realize the quick disassembly or assembly between the first half loop and the second half loop through the connection structure, which is convenient for installing the loop formed by the two on the leg of an animal. Especially when it is necessary to replace the identification component during disease prevention and control, or when the size of the animal's leg does not match the size of the identification component as the animal grows, the disassembly and replacement operations can be carried out conveniently; and the annular loop formed after the installation of the whole identification component can match the shape of the animal's leg, which can not only be firmly fixed on the animal, but also will not cause excessive interference to its daily activities; through the electronic positioning component, the animal can be positioned and tracked in real time, and different animal individuals can be accurately identified. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The drawings described herein are used to provide a further understanding of the utility model, and constitute a part of the utility model. The schematic embodiments of the utility model and their descriptions are used to explain the utility model, and do not constitute an improper limitation to the utility model. In the drawings:
[0018] Figure 1 is a three-dimensional structure schematic diagram of the utility model;
[0019] Figure 2 is a top view of the utility model;
[0020] Figure 3 is Figure 2 a cross-sectional view taken along the A-A section in
[0021] Figure 4 is a partial three-dimensional structure schematic diagram of the first half loop of the utility model;
[0022] Figure 5 is a partial three-dimensional structure schematic diagram of the second half loop of the utility model;
[0023] Figure 6 is a partial structure explosion diagram of the first half loop of the utility model;
[0024] REFERENCE MARKS
[0025] 1 - First half loop; 11 - Installation groove; 12 - Insert block; 13 - Installation cavity; 14 - Electronic positioning component; 15 - Cover plate; 2 - Second half loop; 21 - Slot; 3 - Connection structure; 31 - Pressure plate; 311 - Clamping block; 312 - Arc wall; 313 - First through hole; 32 - Limit block; 321 - Inclined wall; 33 - Button; 331 - Flank; 332 - Second through hole; 34 - Guide post; 35 - First spring; 36 - Guide rod; 37 - Second spring; 4 - Soft pad. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] To make the objectives, technical solutions and advantages of the present utility model clearer, the technical solutions of the present utility model will be clearly and completely described below in conjunction with specific embodiments of the present utility model and the corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts belong to the scope of protection of the present utility model.
[0027] The following will, with reference to the drawings, detail the technical solutions provided by each embodiment of the present utility model.
[0028] Refer to Figures 1 to 6 As shown, an embodiment of the present utility model provides a breeding identification assembly with a detachable structure, including a first semi-loop ring 1, a second semi-loop ring 2, and a connection structure 3. The first semi-loop ring 1 and the second semi-loop ring 2 are combined through the connection structure 3 to form a complete loop.
[0029] An installation groove 11 is formed at the assembly surface of the first semi-loop ring 1 and the second semi-loop ring 2. A set of connection structures 3 are arranged in each pair of opposite installation grooves 11 and are used to realize the quick-release connection between the corresponding two installation surfaces; an installation cavity 13 is formed at the end of the first semi-loop ring 1, and the installation cavity 13 is used to accommodate an electronic positioning member 14 (such as Figure 6 as shown), a cover plate 15 is installed at the opening of the installation cavity 13 through screws. The electronic positioning member 14 is a prior art, which can accurately identify and track individual or group of breeding animals. Different electronic positioning members 14 are configured for each animal individual, so that each animal has clearly distinguishable identity information, which helps to understand its origin, growth process, health status, etc. At the same time, it also helps to standardize and refine the breeding management. It is convenient to record various data in the breeding process, such as feed feeding, disease prevention and control, breeding situation, etc.
[0030] In some practical applications, the identification assembly is applied to the breeding of forest musk deer. Through the connection structure 3, the first semi-loop ring 1 and the second semi-loop ring 2 can be quickly disassembled or assembled, which is convenient to install the loop formed by the two on the leg of the forest musk deer. Especially when the identification assembly needs to be replaced during disease prevention and control, or when the size of the leg of the forest musk deer does not match the size of the identification assembly as the forest musk deer grows, the disassembly and replacement operations can be carried out conveniently; and the annular loop formed after the installation of the entire identification assembly can match the leg shape of the forest musk deer, which can not only be firmly fixed on the forest musk deer, but also will not cause excessive interference to its daily activities; through the electronic positioning member 14, the forest musk deer can be positioned and tracked in real time, and different individual forest musk deer can be accurately identified.
[0031] It should be noted that, to ensure the quality of the first half loop 1 and the second half loop 2, hard materials such as plastics can be used. To avoid damage to the animal's leg by the identification component, a soft pad 4 can be wrapped on the inner sides of the first half loop 1 and the second half loop 2 (such as Figure 1 shown).
[0032] In summary, the design of this identification component fully considers the special needs of forest musk deer farming. It can accurately and effectively identify each forest musk deer, and has good practicability and convenience, which helps to improve the efficiency and accuracy of forest musk deer farming management.
[0033] Specifically, as Figures 3 to 5 shown, at least one insertion block 12 protruding from its assembly surface is formed at the installation groove 11 on the first half loop 1, and a slot 21 corresponding to a plurality of insertion blocks 12 is formed at the installation groove 11 on the second half loop 2; when the first half loop 1 and the second half loop 2 form a complete loop, a plurality of insertion blocks 12 are respectively inserted into a plurality of slots 21, so as to ensure that the first half loop 1 and the second half loop 2 can be accurately positioned during assembly and avoid misalignment and other situations.
[0034] In some practical applications:
[0035] As Figures 3 to 5 shown, each set of connection structures 3 includes a pressing plate 31 and a limiting block 32.
[0036] The pressing plate 31 is slidably connected along the axial direction of the first half loop 1 in the corresponding installation groove 11, and the pressing plate 31 is elastically connected to the bottom end of the installation groove 11; in practical applications, by making the width of the pressing plate 31 match the width of the corresponding installation groove 11, a guide post 34 is longitudinally installed in the installation groove 11 of the first half loop 1, and the guide post 34 is slidably matched with the first through hole 313 on the pressing plate 31. A first spring 35 is also installed on the guide post 34, and the first spring 35 is located below the pressing plate 31 and is used to elastically support the pressing plate 31.
[0037] The limiting block 32 is fixedly installed at the top end of the installation groove 11 of the second half loop 2. One end of the pressing plate 31 protrudes and extends to the outside of the corresponding installation groove 11, and a clamping block 311 is formed at this end; when the first half loop 1 and the second half loop 2 form a complete loop, at least a part of the side of the clamping block 311 close to the pressing plate 31 abuts against the inner end of the limiting block 32, and the pressing plate 31 elastically abuts against the lower end of the limiting block 32.
[0038] Specifically, an inclined wall 321 extending obliquely from top to bottom towards its inner end is formed at the outer end of the limit block 32. The end of the clamping block 311 away from the pressing plate 31 is provided as an arc wall 312. At least part of the limit block 32 protrudes from the upper surface of the pressing plate 31.
[0039] Under the combined action of the inclined wall 321 and the arc wall 312, when the first half loop 1 and the second half loop 2 are assembled, that is, when the clamping block 311 approaches the limit block 32, the clamping block 311 first contacts the inclined wall 321. Under the pushing action of the inclined wall 321, the clamping block 311 and the pressing plate 31 move downward as a whole and compress the first spring 35. During the downward movement of the clamping block 311, the first half loop 1 and the second half loop 2 are still approaching each other. Finally, after the clamping block 311 moves to the inner side of the limit block 32, the clamping block 311 and the pressing plate 31 move upward under the elastic action of the first spring 35, so that at least part of the side of the clamping block 311 close to the pressing plate 31 abuts against the inner end of the limit block 32, and the pressing plate 31 elastically abuts against the lower end of the limit block 32, preventing the separation between the first half loop 1 and the second half loop 2, thereby realizing the installation between the two. During the whole installation process, only one process for the staff to push the first half loop 1 and the second half loop 2 closer is required, and the operation is convenient.
[0040] In some practical applications, considering the disassembly of the first half loop 1 and the second half loop 2, that is, removing the identification assembly from the animal's leg, the connecting structure 3 further includes an unlocking button 33 installed at the top of the installation groove 11 of the second half loop 2. At least part of the upper end of the button 33 passes through the second half loop 2 and is slidably connected thereto; when the first half loop 1 and the second half loop 2 form a complete loop, the button 33 abuts against the clamping block 311; by the staff pressing the two buttons 33 simultaneously, the corresponding clamping block 311 and the pressing plate 31 can be pushed to move together and disengage from the limit block 32. At this time, with the cooperation of the staff pulling the first half loop 1 and / or the second half loop 2, the separation between the two can be realized, and the operation process is convenient.
[0041] Specifically, side wings 331 are formed on the left and right sides of the button 33. Two guide rods 36 are longitudinally installed in the installation groove 11 of the second half loop 2. The two guide rods 36 are respectively in sliding fit with the second through holes 332 on the two side wings 331, and a second spring 37 for supporting the button 33 is installed on each guide rod 36. The second spring 37 mainly gives the button 33 an upward elastic force, so that the side wings 331 abut against the top of the corresponding installation groove 11, preventing the button 33 from falling into the installation groove 11 when the first half loop 1 and the second half loop 2 are not installed, and also ensuring that during the installation process of the first half loop 1 and the second half loop 2, the clamping block 311 can smoothly move to the inner end of the limit block 32.
[0042] The above are only embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various modifications and variations can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the scope of the claims of the present utility model.
Claims
1. A breeding identification component with a detachable structure, characterized in that: The invention comprises a first half-circle collar (1), a second half-circle collar (2) and a connecting structure (3); the first half-circle collar (1) and the second half-circle collar (2) are combined via the connecting structure (3) to form a complete collar; a mounting groove (11) is formed at the assembly surface of each of the first half-circle collar (1) and the second half-circle collar (2); a group of connecting structures (3) is arranged in each group of two opposite mounting grooves (11) and is used to realize a quick-release connection between the corresponding two mounting surfaces.
2. The breeding identification component with a detachable structure according to claim 1, characterized in that: At least one plug-in block (12) protruding from the assembly surface is formed at the installation groove (11) on the first half-ring (1), and slots (21) corresponding to the plurality of plug-in blocks (12) are formed at the installation groove (11) on the second half-ring (2); when the first half-ring (1) and the second half-ring (2) form a complete ring, the plurality of plug-in blocks (12) are respectively inserted into the plurality of slots (21).
3. The breeding identification component with a detachable structure according to claim 2, characterized in that: Each set of connection structures (3) comprises a pressing plate (31) and a limiting block (32), wherein the pressing plate (31) is slidably connected to the corresponding mounting groove (11) along the axial direction of the first half-ring (1), and the pressing plate (31) is elastically connected to the bottom end of the mounting groove (11), and the limiting block (32) is fixedly mounted on the top end of the mounting groove (11) of the second half-ring (2), and one end of the pressing plate (31) protrudes and extends to the outside of the corresponding mounting groove (11) and a clamping block (311) is formed on the end; When the first half-ring (1) and the second half-ring (2) form a complete ring, the side of the clamping block (311) close to the pressure plate (31) at least partially abuts against the inner end of the limit block (32), and the pressure plate (31) elastically abuts against the lower end of the limit block (32).
4. The breeding identification component with a detachable structure according to claim 3, characterized in that: The connection structure (3) further comprises an unlocking button (33) mounted on the top of the mounting groove (11) of the second half-circle collar (2); at least a portion of the upper end of the button (33) passes through the second half-circle collar (2) and is slidably connected thereto; when the first half-circle collar (1) and the second half-circle collar (2) form a complete collar, the button (33) abuts against the clamping block (311); by pressing the button (33), the clamping block (311) and the pressure plate (31) can be pushed to move together and disengage from the limiting block (32).
5. A farming identification component with a detachable structure according to claim 3 or 4, characterized in that: The outer end of the limit block (32) is formed with an inclined wall (321) extending from top to bottom towards its inner end, and the end of the clamping block (311) away from the pressing plate (31) is arranged as an arc-shaped wall (312).
6. The breeding identification component with a detachable structure according to claim 3, characterized in that: At least a portion of the limiting block (32) protrudes from the upper surface of the pressing plate (31).
7. The breeding identification component with a detachable structure according to claim 3, characterized in that: The width of the pressure plate (31) is adapted to the width of the corresponding mounting groove (11); a guide column (34) is longitudinally mounted in the mounting groove (11) of the first half-ring (1); the guide column (34) is slidably engaged with a first through hole (313) on the pressure plate (31); a first spring (35) is also mounted on the guide column (34); the first spring (35) is located below the pressure plate (31) and is used to elastically support the pressure plate (31).
8. The breeding identification component with a detachable structure according to claim 4, characterized in that: The button (33) is formed with side wings (331) on the left and right sides. Two guide rods (36) are longitudinally installed in the installation groove (11) of the second half-ring (2). The two guide rods (36) are respectively slidably engaged with the second through holes (332) on the two side wings (331), and each guide rod (36) is installed with a second spring (37) for supporting the button (33).
9. The breeding identification component with a detachable structure according to claim 1, characterized in that: An installation cavity (13) is formed at the end of the first half-ring (1), the installation cavity (13) is used to accommodate an electronic positioning component (14), and a cover plate (15) is installed at the opening of the installation cavity (13) by means of screws.