Foot ring shell for physiological monitoring in chicken feeding process and chicken foot ring

By designing a locking assembly and a multi-ring waterproof structure in the chicken leg ring, the problem of insufficient waterproof performance of traditional chicken leg rings is solved, realizing stable monitoring of the circuit board and reliable use of the leg ring, and supporting disassembly and reuse.

CN223772806UActive Publication Date: 2026-01-09WUHAN AINONG YUNLIAN TECH CO LTD
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Patent Information

Application Number
CN202423264260.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2026-01-09
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Traditional chicken-foot rings lack sufficient waterproofing, making them prone to circuit board failure due to water or liquid intrusion, thus affecting the stability and reliability of monitoring equipment.

Method used

A foot ring housing including a locking assembly and a receiving base is designed. Multiple waterproof structures are formed at the connection using first and second rubber rings. The locking assembly is fixed to the chicken foot by a ring lock, ensuring that the circuit board is in a closed receiving cavity and preventing liquid from entering.

Benefits of technology

It significantly improves the waterproof performance of the chicken leg ring, ensuring that the circuit board works normally in complex environments. The simple structure makes it easy to disassemble and assemble, and it supports the reliable recycling and reuse of the leg ring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intelligent livestock breeding, in particular to a foot ring shell and a chicken foot ring for physiological monitoring in the chicken feeding process, which comprise a lock catch assembly and a containing base, the containing base comprises a first cover body and a second cover body, the lock catch assembly is used for being fixed with a chicken foot, and the second cover body is used for being fixed with the chicken foot. The lock catch assembly is arranged on the first cover body; the first cover body and the second cover body are connected to form an accommodating cavity; according to the utility model, the lock catch assembly is fixed with the chicken foot, the lock catch assembly is connected with the accommodating base, the circuit board is arranged in the accommodating base, and the accommodating cavity is waterproof through the first rubber ring and the second rubber ring in multiple aspects, so that external liquid can be effectively prevented from entering the accommodating cavity to damage the circuit board; the water drainage performance of the chicken foot ring is improved to a great extent, so that the foot ring shell can be better applied to a physiological monitoring scene in the chicken feeding process, and stable and reliable work of monitoring equipment is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent livestock breeding technology, and in particular to a leg ring shell and a chicken leg ring used for physiological monitoring during chicken feeding. Background Technology

[0002] Building smart animal husbandry, and applying information technology to livestock production, is an essential path to modernizing livestock management. Currently, the smart animal husbandry industry is developing rapidly and its scale is increasing daily, driving traditional farming methods towards large-scale, intensive, and intelligent operations. Consequently, managing livestock identification information and health status is becoming an increasingly significant challenge. For example, in the event of infectious diseases such as epidemics, if livestock with abnormal health conditions cannot be accurately identified, the interests of businesses and the health of consumers cannot be guaranteed.

[0003] In chicken farming, smart leg bands, serving as carriers of information technology functions, are becoming increasingly common. However, traditional leg bands have complex outer shells, and the complex living environment of chickens makes the circuit boards in traditional leg bands susceptible to damage from water or other liquids, leading to malfunctions. Therefore, there are higher requirements for the waterproofness of chicken leg bands.

[0004] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content

[0005] The technical problem this invention aims to solve is how to improve the waterproof performance of chicken foot rings.

[0006] The present invention adopts the following technical solution:

[0007] In a first aspect, a leg ring shell for physiological monitoring during chicken rearing is provided, including a locking assembly 1 and a receiving base 2. The receiving base 2 includes a first cover 20 and a second cover 21. The locking assembly 1 is used to fix the chicken foot and is disposed on the first cover 20.

[0008] The first cover 20 includes a first receiving portion 200, and the second cover 21 includes a second receiving portion 210; the first receiving portion 200 and the second receiving portion 210 are connected to form a receiving cavity 201, which is used to place a circuit board;

[0009] A first rubber ring 3 is provided between the top of the second receiving portion 210 and the top of the first receiving portion 200, and a second rubber ring 4 is provided between the bottom of the first receiving portion 200 and the bottom wall of the second receiving portion 210. The first rubber ring 3 and the second rubber ring 4 are used to prevent external liquid from entering the receiving cavity 201.

[0010] Preferably, the locking assembly 1 includes a base plate 10, a support column 11, and a ring lock 12. The base plate 10 is connected to the support column 11, and the support column 11 is connected to the ring lock 12. The ring lock 12 is used to fix the chicken leg. The base plate 10 is engaged on the first cover 20.

[0011] Preferably, the top of the first cover 20 is provided with a limiting block 202 and symmetrically arranged guide grooves 203, and the base plate 10 includes a limiting port 100 and symmetrically arranged guide strips 101; the guide strips 101 are slidably arranged in the guide grooves 203, and the limiting port 100 is used to abut against the limiting block 202.

[0012] Preferably, the guide groove 203 is provided with a slot 204, and the guide strip 101 is provided with a locking block 102. When the locking block 102 is aligned with the slot 204, the locking block 102 is engaged in the slot 204.

[0013] Preferably, the ring lock 12 has an arc-shaped, tapered structure.

[0014] Preferably, the annular lock 12 has toothed structures 120 arranged sequentially, and the support column 11 is provided with a locking opening 110; the toothed structures 120 are disposed in the locking opening 110.

[0015] Preferably, an elastic structure 111 is provided on one side of the lock 110.

[0016] Preferably, the base plate 10, the support column 11, and the ring lock 12 are integrally formed.

[0017] Preferably, the first cover 20 and the second cover 21 are circular, and the outer diameter of the first receiving portion 200 matches the inner diameter of the second receiving portion 210.

[0018] In a second aspect, a chicken leg ring for physiological monitoring during chicken rearing is provided, comprising a circuit board and the outer shell of the leg ring for physiological monitoring during chicken rearing as described in the first aspect, wherein the circuit board is disposed in the receiving cavity 201, and the locking assembly 1 is used to fix it to the chicken foot.

[0019] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0020] This utility model uses a locking assembly 1 to fix the chicken foot, connects the locking assembly 1 and the receiving base 2, and places the circuit board in the receiving base 2. The receiving cavity 201 is waterproofed from multiple aspects by the first rubber ring 3 and the second rubber ring 4, which can effectively prevent external liquid from entering the receiving cavity 201 and causing damage to the circuit board. This greatly improves the water drainage performance of the chicken foot ring, so that the foot ring shell can be better used in the physiological monitoring of chickens in the process of raising chickens, and ensures that the monitoring equipment works stably and reliably.

[0021] Meanwhile, the leg ring shell provided by this utility model for physiological monitoring during chicken breeding has a simple structure and is easy to assemble and disassemble. The locking component 1 can be adjusted and quickly fixed, and the entire leg ring shell can be recycled and reused without loss. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the structure of a leg ring shell for physiological monitoring during chicken rearing, provided by an embodiment of this utility model;

[0024] Figure 2 This is a schematic diagram of the structure of a receiving base provided in an embodiment of this utility model;

[0025] Figure 3 This is a structural schematic diagram of a locking assembly provided in an embodiment of the present utility model;

[0026] Figure 4 This is a schematic diagram of another structure of a locking assembly provided in an embodiment of the present utility model;

[0027] Figure 5 This is a schematic diagram of the structure of a first cover provided in an embodiment of the present utility model;

[0028] Figure 6 This is a schematic diagram of the structure of a base plate provided in an embodiment of the present utility model;

[0029] Figure 7 This is a more detailed structural schematic diagram of a base plate provided in an embodiment of the present utility model;

[0030] Figure 8 This is a schematic diagram of the structure of a chicken foot ring provided in an embodiment of this utility model.

[0031] In all the accompanying drawings, the same reference numerals denote the same structure, wherein:

[0032] Locking assembly 1, base plate 10, limiting port 100, guide bar 101, first notch 1010, second notch 1011, locking block 102, support column 11, locking port 110, elastic structure 111, ring lock 12, toothed structure 120, receiving base 2, first cover 20, first receiving part 200, receiving cavity 201, limiting block 202, guide groove 203, locking port 204, second cover 21, second receiving part 210, first rubber ring 3, second rubber ring 4. Detailed Implementation

[0033] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0034] Unless the context otherwise requires, throughout the specification and claims, the term "comprising" is interpreted as openly inclusive, meaning "including, but not limited to." In the description of the specification, terms such as "one embodiment," "some embodiments," "exemplary embodiment," "example," "specific example," or "some examples" are intended to indicate that a particular feature, structure, material, or characteristic associated with that embodiment or example is included in at least one embodiment or example of this disclosure. The illustrative representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics mentioned may be included in any suitable manner in any one or more embodiments or examples; that is, although they may be incorporated into embodiments or examples using the above terms for reasons such as order and position, it does not limit them to be incorporated in combination by a single embodiment or example.

[0035] In the description of this utility model, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of embodiments of this disclosure, unless otherwise stated, "a plurality of" means two or more. Furthermore, for example, the description may use the prefix "A" or "B" to describe the same type of nouns as two independent entities. In this case, the features defined with "A" and "B" are used only to distinguish between similar entities and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features.

[0036] In describing some embodiments, the terms "coupled," "coupled," and "connected," and their derivative expressions, may be used. For example, the term "connected" may be used in describing some embodiments to indicate that two or more components have direct physical or electrical contact with each other. Similarly, the term "coupled" may be used in describing some embodiments to indicate that two or more components have direct physical or electrical contact. However, the terms "connected" or "coupled" may also refer to two or more components that do not have direct contact with each other but still cooperate or interact with each other, such as "optical coupling" or "wireless connection." The embodiments disclosed herein are not necessarily limited to the scope of this invention.

[0037] Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0038] Example 1:

[0039] To address the waterproofing issues of existing electronic leg rings, Embodiment 1 of this utility model provides a leg ring shell for physiological monitoring during chicken rearing. In one embodiment, such as... Figure 1 and Figure 2 As shown, the device includes a locking assembly 1 and a receiving base 2. The receiving base 2 includes a first cover 20 and a second cover 21. The locking assembly 1 is used to fix the chicken feet and is disposed on the first cover 20. The first cover 20 includes a first receiving portion 200, and the second cover 21 includes a second receiving portion 210. The first receiving portion 200 and the second receiving portion 210 are connected to form a receiving cavity 201, which is used to place a circuit board. A first rubber ring 3 is provided between the top of the second receiving portion 210 and the top of the first receiving portion 200, and a second rubber ring 4 is provided between the bottom of the first receiving portion 200 and the bottom wall of the second receiving portion 210. The first rubber ring 3 and the second rubber ring 4 are used to prevent external liquid from entering the receiving cavity 201.

[0040] The locking assembly 1 plays a key role in securing the chicken's feet, and it is set on the first cover 20. This arrangement allows the foot ring to be securely worn on the chicken's feet, facilitating subsequent monitoring of the chicken's physiological condition.

[0041] After the second receiving part 210 is connected to the first receiving part 200, a limiting platform (not labeled in the figure) is correspondingly provided on the first receiving part 200, and the position where the top of the second receiving part 210 abuts against the limiting platform is the top of the first receiving part 200.

[0042] In one embodiment, the first cover 20 and the second cover 21 are circular, and the outer diameter of the first receiving portion 200 matches the inner diameter of the second receiving portion 210. The first cover 20 has a first receiving portion 200, and the second cover 21 has a second receiving portion 210. The two receiving portions are connected to each other to form a receiving cavity 201. The receiving cavity 201 is used to house a circuit board containing core components for monitoring chicken physiology. Placing the circuit board within the relatively independent and enclosed receiving cavity 201 protects it from external interference, ensuring the normal operation of the monitoring function. In one embodiment, the first receiving portion 200 and the second receiving portion 210 can be connected together by a threaded connection.

[0043] This embodiment employs two waterproof structures to waterproof the receiving cavity 201. The first waterproof structure includes: when the first cover 20 and the second cover 21 are connected via the first receiving portion 200 and the second receiving portion 210, the first rubber ring 3 is positioned at the gap between the first receiving portion 200 and the second receiving portion 210. This effectively fills any small gaps, preventing external liquids from seeping into the receiving cavity 201 from the cover connection point, and preventing rainwater, water from the chicken's activity environment, and other liquids from entering from the side and damaging the circuit board. In one embodiment, the first rubber ring 3 can be a circular rubber ring, with its diameter set to fit precisely onto the first receiving portion 200.

[0044] The second waterproof structure includes a second rubber ring 4 disposed between the bottom of the first receiving portion 200 and the bottom wall of the second cover 21. In one embodiment, the second rubber ring 4 can be an annular rubber ring, the shape of which can match the bottom surface of the first receiving portion 200. During the installation of the second cover 21, the bottom surface of the first receiving portion 200 abuts the second rubber ring 4 against the bottom wall of the second receiving portion 210, thereby further ensuring the dryness of the environment where the circuit board is located inside the receiving cavity 201 and improving the waterproof performance of the entire foot ring shell.

[0045] In order to secure the locking assembly 1 to the chicken foot, in one embodiment, such as Figure 3 As shown, the locking assembly 1 includes a base plate 10, a support column 11, and a ring lock 12. The base plate 10 is connected to the support column 11, and the support column 11 is connected to the ring lock 12. The ring lock 12 is used to fix the chicken leg. The base plate 10 is engaged on the first cover 20.

[0046] The base plate 10 is the basic component connecting the entire locking assembly 1 to the first cover 20 of the foot ring shell. It plays a role in bearing and fixing. It is installed on the first cover 20 by snapping, so that the locking assembly 1 and the base 2 can be tightly integrated into a whole, ensuring stability during subsequent use.

[0047] One end of the support column 11 is connected to the base plate 10, and the other end is connected to the ring lock 12, serving as a bridge for connection and support. The proper connection between the base plate 10 and the ring lock 12 ensures the structural continuity of the entire locking assembly 1.

[0048] In one embodiment, the ring lock 12 has an arc-shaped, tapered structure. The part of the ring lock 12 that directly secures to the chicken leg is ring-shaped, fitting snugly around the chicken leg and using a suitable tightening or fixing method to firmly attach the leg band to the chicken's foot. The ring design conforms to the shape of the chicken leg, providing a comfortable and stable fixation, ensuring the leg band won't easily fall off while minimizing obstruction and discomfort to the chicken's movement. For the stability of the locking assembly 1, the base plate 10, the support column 11, and the ring lock 12 are integrally formed.

[0049] In one embodiment, such as Figure 4 As shown, the annular lock 12 has toothed structures 120 arranged in sequence, and the support column 11 is provided with a lock opening 110; the toothed structures 120 are disposed in the lock opening 110.

[0050] During installation, the ring lock 12 is fitted onto the chicken's foot, and the toothed structure 120 is embedded in the lock opening 110. The lock opening 110 provides a space for accommodating and positioning the toothed structure 120. When the toothed structure 120 on the ring lock 12 is positioned in the lock opening 110, the two cooperate to fix the ring lock 12 onto the chicken's foot. The length of the toothed structure 120 entering the lock opening 110 can be flexibly adjusted according to the thickness of the chicken's foot.

[0051] The lock opening 110 has a certain elasticity, and the toothed structure 120 is provided with serrations along the opposite direction of entering the lock opening 110. The contact surface between the lock opening 110 and the toothed structure 120 can be set as a rough surface to further increase the friction of the toothed structure 120. At the same time, the elasticity at the lock opening 110 will hold the toothed structure 120 in the lock opening 110. In one embodiment, a tooth groove (not shown in the figure) matching the toothed structure 120 can be provided on the contact surface between the lock opening 110 and the toothed structure 120 to embed the toothed structure 120 into the tooth groove to prevent the ring lock 12 from falling off.

[0052] After the ring lock 12 is fixed to the chicken's foot, even if the chicken moves, walks, runs, or even struggles frequently, the ring lock 12 is unlikely to come loose or the leg band will fall off the chicken's foot. This ensures that the leg band can be worn stably on the chicken's foot for a long time, allowing for continuous and effective monitoring of the chicken's physiological condition.

[0053] To enable the reuse of the chicken leg rings, they need to be disassembled. In one embodiment, such as... Figure 4 As shown, an elastic structure 111 is provided on one side of the lock opening 110. When it is necessary to remove the ring lock 12 from the chicken foot, the elastic structure 111 is moved to remove the toothed structure 120 from the lock opening 110, thus completing the removal of the chicken foot ring.

[0054] The locking assembly 1 and the first cover 20 can be integrally formed; alternatively, designing the locking assembly 1 and the first cover 20 separately facilitates installation. In one embodiment, such as... Figure 5 As shown, the top of the first cover 20 is provided with a limiting block 202 and symmetrically arranged guide grooves 203; as Figure 6 and Figure 7 As shown, the base plate 10 includes a limiting port 100 and symmetrically arranged guide bars 101; the guide bars 101 are slidably disposed in the guide groove 203, and the limiting port 100 is used to abut against the limiting block 202.

[0055] The guide bar 101 is slidably disposed in the guide groove 203. When the locking assembly 1 is installed on the first cover 20, the guide bar 101 slides along the guide groove 203, so that the base plate 10 can accurately dock with the first cover 20 in a predetermined direction, ensuring the accuracy of the installation position.

[0056] When the base plate 10 slides along the guide groove 203 to the appropriate position via the guide strip 101, the limiting block 202 enters the limiting port 100. The two cooperate to achieve the limiting function of the base plate 10 on the first cover 20. This can prevent the base plate 10 from excessive displacement or loosening after installation, and further strengthen the connection between the locking assembly 1 and the first cover 20. This ensures that the locking assembly 1 can still be stably engaged with the first cover 20 even in the face of various chicken movements during subsequent use, ensuring the reliability and stability of the leg ring on the chicken's foot, and thus ensuring the continuous and effective implementation of physiological monitoring of the chicken.

[0057] During the process of installing the base plate 10 onto the first cover 20, relying solely on the cooperation between the guide groove 203 and the guide strip 101 to achieve initial positioning and the docking of the limiting block 202 and the limiting port 100 to limit displacement is insufficient. To further ensure that the base plate 10 can be firmly fixed onto the first cover 20, a tight and reliable connection is formed between the locking assembly 1 and the first cover 20 of the leg ring shell. This ensures that when the entire leg ring is worn on the chicken's foot, the locking assembly 1 will not loosen or even fall off due to the chicken's daily activities, such as walking, running, or pawing. To further secure the base plate 10 onto the first cover 20, in one embodiment, as follows... Figure 5 As shown, the guide groove 203 is provided with a bayonet 204, such as Figure 6 and Figure 7 As shown, the guide bar 101 is provided with a locking block 102; when the locking block 102 is aligned with the slot 204, the locking block 102 is engaged in the slot 204.

[0058] More specifically, refer to Figure 6 and Figure 7 The guide bar 101 is provided with a first notch 1010, which divides the guide bar 101 into two segments. The locking block 102 is provided on one segment of the guide bar 101. The first notch 1010 extends to the body of the base plate 10. A second notch 1011 is provided on the body of the base plate 10. The extension direction of the second notch 1011 is the same as the extension direction of the guide bar 101. The first notch 1010 and the second notch 1011 intersect near the locking block 102. The second notch 1011 is slightly larger than the length of the locking block 102. This structure can ensure that the locking block 102 can be accurately and stably locked into the locking slot 204. As the guide bar 101 slides along the guide groove 203, the groove wall of the guide groove 203 applies pressure to the locking block 102. The second notch 1011 provides movement space for the locking block 102, allowing the locking block 102 to move towards the body of the base plate 10. When the locking block 102 slides to the locking slot 204, the pressure applied to the locking block 102 is gradually released, and the locking block 102 pops out and locks into the locking slot 204.

[0059] When the guide strip 101 slides along the guide groove 203 until it stops, the base plate 10 has reached the accurate installation position through the guide structure, and the locking block 102 is aligned with the locking slot 204. Subsequently, the locking block 102 will automatically engage with the locking slot 204, and the two will interlock and lock together. In this way, the possible displacement of the base plate 10 relative to the first cover 20 in the horizontal direction is further restricted from the side. In conjunction with the limiting function of the limiting block 202 and the limiting slot 100, the connection between the two is reinforced in multiple dimensions, so that the entire locking assembly 1 is firmly fixed on the first cover 20, making the overall structure of the leg ring more stable and reliable, and better able to adapt to various complex situations in the chicken breeding environment and the activity state of the chickens.

[0060] In summary, this embodiment uses the locking assembly 1 to fix the chicken foot, connects the locking assembly 1 and the receiving base 2, and places the circuit board in the receiving base 2. The first rubber ring 3 and the second rubber ring 4 provide waterproofing to the receiving cavity 201 from multiple aspects, which can effectively prevent external liquids from entering the receiving cavity 201 and causing damage to the circuit board. This greatly improves the water drainage performance of the chicken foot ring, allowing the foot ring shell to be better applied in physiological monitoring scenarios during chicken breeding, ensuring the stable and reliable operation of the monitoring equipment.

[0061] Meanwhile, the leg ring shell provided in this embodiment for physiological monitoring during chicken breeding has a simple structure and is easy to assemble and disassemble. The locking component 1 can be adjusted and quickly fixed, and the entire leg ring shell can be recycled and reused without loss.

[0062] Example 2:

[0063] Example 1 presented a leg ring shell for physiological monitoring during chicken rearing. This example will present a chicken leg ring for physiological monitoring during chicken rearing. In one example, such as... Figure 8 As shown, it includes a circuit board (not shown) and a foot ring housing, the circuit board being disposed in the receiving cavity 201 (see reference). Figure 2 In the process, the locking assembly 1 is used to fix the chicken feet.

[0064] The specific structure of the circuit board and the ankle ring housing will not be described in detail in this embodiment.

[0065] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A leg ring shell for physiological monitoring during chicken rearing, characterized in that, It includes a locking assembly (1) and a receiving base (2), the receiving base (2) including a first cover (20) and a second cover (21), the locking assembly (1) is used to fix the chicken feet, and the locking assembly (1) is disposed on the first cover (20); The first cover (20) includes a first receiving portion (200), and the second cover (21) includes a second receiving portion (210); the first receiving portion (200) and the second receiving portion (210) are connected to form a receiving cavity (201), which is used to place a circuit board; A first rubber ring (3) is provided between the top of the second receiving part (210) and the top of the first receiving part (200), and a second rubber ring (4) is provided between the bottom of the first receiving part (200) and the bottom wall of the second receiving part (210). The first rubber ring (3) and the second rubber ring (4) are used to prevent external liquid from entering the receiving cavity (201).

2. The leg ring shell for physiological monitoring during chicken rearing as described in claim 1, characterized in that, The locking assembly (1) includes a base plate (10), a support column (11) and a ring lock (12). The base plate (10) and the support column (11) are connected, and the support column (11) is connected to the ring lock (12). The ring lock (12) is used to fix the chicken leg. The base plate (10) is engaged on the first cover (20).

3. The leg ring shell for physiological monitoring during chicken rearing as described in claim 2, characterized in that, The top of the first cover (20) is provided with a limiting block (202) and a symmetrically arranged guide groove (203). The base plate (10) includes a limiting port (100) and a symmetrically arranged guide strip (101). The guide strip (101) is slidably arranged in the guide groove (203), and the limiting port (100) is used to abut against the limiting block (202).

4. The leg ring shell for physiological monitoring during chicken rearing as described in claim 3, characterized in that, The guide groove (203) is provided with a bayonet (204), and the guide strip (101) is provided with a locking block (102). When the locking block (102) is aligned with the bayonet (204), the locking block (102) is engaged in the bayonet (204).

5. The leg ring shell for physiological monitoring during chicken rearing as described in claim 2, characterized in that, The ring lock (12) has an arc-shaped waist structure.

6. The leg ring shell for physiological monitoring during chicken rearing as described in claim 2, characterized in that, The ring lock (12) has toothed structures (120) arranged in sequence, and the support column (11) is provided with a lock opening (110); the toothed structures (120) are disposed in the lock opening (110).

7. The leg ring shell for physiological monitoring during chicken rearing as described in claim 6, characterized in that, One side of the lock (110) is provided with an elastic structure (111).

8. The leg ring shell for physiological monitoring during chicken rearing according to claim 2, characterized in that, The base plate (10), the support column (11), and the ring lock (12) are integrally formed.

9. The leg ring shell for physiological monitoring during chicken rearing as described in claim 1, characterized in that, The first cover (20) and the second cover (21) are circular, and the outer diameter of the first receiving part (200) matches the inner diameter of the second receiving part (210).

10. A chicken leg ring for physiological monitoring during chicken rearing, characterized in that, The device includes a circuit board and a leg ring housing for physiological monitoring during chicken rearing as described in any one of claims 1-9, wherein the circuit board is disposed in the receiving cavity (201) and the locking assembly (1) is used to secure the chicken foot.