Layered detachable frog egg incubation nest

CN224819220UActive Publication Date: 2026-10-09GUANGYUAN RONGFENG BREEDING CO LTD
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Patent Information

Application Number
CN202522259359.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-10-09
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0003]使用时孵化箱孵化的蟾蜍卵因为产出时间不一样,所以孵化周期不一样,常见的孵化箱是固定,中间需要调节和对产卵的孵化箱进行周转会比较麻烦

Benefits of technology

[0012]与现有技术相比,本实用新型的有益效果是:该分层可拆卸式蟾蜍产卵孵化巢不仅实现了便于拆卸功能,实现了水循环过滤功能,而且实现了水质监测功能;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to toad egg -laying hatching nest technical field discloses layered detachable toad egg -laying hatching nest, including support frame, the inside bottom of support frame installs transverse support rod, the inside two side walls of support frame install mounting seat, the inside installation of mounting seat has auxiliary wheel, the inside joint of mounting seat has hatching box, the bottom of hatching box top two sides is provided with sliding slot, the top of mounting seat installs illumination lamp, the left side of support frame installs control panel. The utility model discloses convenient to dismantle structure is set up, and when using, the inside of the mounting seat of the sliding slot of hatching box two sides and the insertion support frame inside two sides is inserted, lets the auxiliary wheel of sliding slot and mounting seat inside to carry out the joint sliding, and the inside of support frame is installed in succession in the stacking of multiple hatching boxes, and when using, can replace the shift according to the need to hatching box to the convenient to dismantle function is realized.
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Description

Technical Field

[0001] This utility model relates to the field of toad egg-laying and hatching nest technology, specifically a layered, detachable toad egg-laying and hatching nest. Background Technology

[0002] The hatching of toad eggs refers to the process by which fertilized eggs develop into tadpoles under certain environmental conditions. Hatching of toad eggs is a very important part of toad farming. Each pair of toads can lay about 3,000 eggs at a time. However, in nature, the survival rate of these eggs is not high, so artificial hatching is necessary. During the hatching process, it is necessary to precisely control the water quality, temperature, and microbial environment.

[0003] Because toad eggs hatched in incubators at different times, their incubation cycles vary. Common incubators are fixed, and adjusting or moving the incubators around can be cumbersome. Therefore, we propose a layered, detachable toad egg-laying and hatching nest to address these issues. Utility Model Content

[0004] The purpose of this invention is to provide a layered, detachable toad egg-laying and hatching nest to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a layered, detachable toad egg-laying and hatching nest, including a support frame, a horizontal support rod installed on the inner bottom of the support frame, mounting seats installed on the inner two side walls of the support frame, auxiliary wheels installed inside the mounting seats, an incubation box snapped into the mounting seats, and sliding grooves provided on the lower sides of the top of the incubation box.

[0006] As a further technical solution of this utility model, the mounting bases are arranged at equal intervals on both sides of the inside of the support frame, and the sliding grooves on both sides below the top of the incubator engage with the auxiliary wheels inside the mounting bases, and the sliding grooves slide with the auxiliary wheels inside the mounting bases.

[0007] As a further technical solution of this utility model, a light is installed on the top of the mounting base, a control panel is installed on the left side of the support frame, an outlet is provided on the front right side of the incubator, an output pipe is connected to the front end of the outlet, a water inlet is provided on the front left side of the incubator, a conveying pipe is connected to the front end of the water inlet, and a water pump is fixedly connected to the top of the conveying pipe.

[0008] As a further technical solution of this utility model, a filter box is connected to the rear end of the water pump. A polyurethane sponge layer is provided at the top inside the filter box. A porous ceramic ring layer is connected to the bottom of the polyurethane sponge layer. An activated carbon layer is connected to the bottom of the porous ceramic ring layer. A filter screen is connected to the bottom of the activated carbon layer.

[0009] As a further technical solution of this utility model, the polyurethane sponge layer, porous ceramic ring layer, activated carbon layer and filter screen are sequentially installed inside the filter box, and the filter box is connected to the incubator through a water pump and a delivery pipe.

[0010] As a further technical solution of this utility model, an egg-laying plate is installed at the bottom of the incubator, a heating rod is installed on the right side of the incubator, and an ammonia nitrogen sensor, a temperature sensor, and a pH sensor are installed sequentially at the rear end of the incubator.

[0011] As a further technical solution of this utility model, the ammonia nitrogen sensor, temperature sensor and pH sensor are electrically connected to the control panel via wires, and the heating rod is located on the inside left side of the incubator and is electrically connected to the control panel.

[0012] Compared with the prior art, the beneficial effects of this utility model are: the layered detachable toad egg-laying and hatching nest not only realizes the function of easy disassembly and water circulation filtration, but also realizes the function of water quality monitoring;

[0013] (1) By setting a structure that is easy to disassemble, the present invention is beneficial in that: when in use, the sliding grooves on both sides of the incubator are inserted into the inside of the mounting seats on both sides of the inner side of the support frame, so that the sliding grooves and the auxiliary wheels inside the mounting seats can be engaged and slid, and multiple sets of incubators can be stacked and installed inside the support frame in sequence. When in use, the incubators can be replaced and transferred as needed, thereby realizing the function of easy disassembly.

[0014] (2) By setting up a water circulation filtration structure, the present invention is beneficial as follows: when in use, the water inside the incubator is transported to the output pipe through the outlet, and then the water inside the incubator is transported to the filter box through the output pipe. The water is filtered by the polyurethane sponge layer, porous ceramic ring layer and activated carbon layer inside the filter box to remove impurities, nitrify and purify the water inside the incubator. The purified water inside the filter box is then transported to the inside of the incubator through the inlet at the front of the incubator by the water pump, thereby realizing the water circulation filtration function.

[0015] (3) By setting up a water quality monitoring structure, the present invention is beneficial in that: when in use, the temperature inside the incubator needs to be maintained within a certain range. The ammonia nitrogen sensor, temperature sensor and pH sensor inside the incubator monitor the ammonia nitrogen, water temperature and pH value inside the incubator. The water temperature is adjusted by activating the heating rod inside the incubator to heat the water inside the incubator, thereby realizing the water quality monitoring function. Attached Figure Description

[0016] Figure 1 This is a front view structural diagram of the present utility model;

[0017] Figure 2 This is a schematic diagram of the support frame and incubator structure of this utility model;

[0018] Figure 3 This is an enlarged cross-sectional structural diagram of the filter box of this utility model;

[0019] Figure 4 This is an enlarged cross-sectional structural diagram of the incubator of this utility model.

[0020] In the diagram: 1. Control panel; 2. Support frame; 3. Light source; 4. Mounting base; 5. Incubator; 6. Output pipe; 7. Delivery pipe; 8. Outlet; 9. Inlet; 10. Horizontal support rod; 11. Filter box; 12. Water pump; 13. Heating rod; 14. Egg-laying plate; 15. Ammonia nitrogen sensor; 16. Temperature sensor; 17. pH sensor; 18. Sliding trough; 19. Auxiliary wheel; 20. Polyurethane foam layer; 21. Porous ceramic ring layer; 22. Activated carbon layer; 23. Filter screen. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-4 An embodiment of this utility model is provided: a layered and detachable toad egg-laying and hatching nest, including a support frame 2, a horizontal support rod 10 installed on the inner bottom of the support frame 2, mounting seats 4 installed on the inner two side walls of the support frame 2, auxiliary wheels 19 installed inside the mounting seats 4, an incubation box 5 snapped into the mounting seats 4, and sliding grooves 18 provided on the lower sides of the top of the incubation box 5.

[0023] Mounting bases 4 are evenly spaced on both sides of the inside of the support frame 2. The sliding grooves 18 on the lower sides of the top of the incubator 5 engage with the auxiliary wheels 19 inside the mounting base 4, and the sliding grooves 18 slide with the auxiliary wheels 19 inside the mounting base 4.

[0024] Specifically, such as Figure 1 and Figure 2As shown, by setting an easy-to-disassemble structure, when in use, the sliding grooves 18 on both sides of the incubator 5 are inserted into the inside of the mounting seats 4 on both sides of the inner side of the support frame 2, so that the sliding grooves 18 and the auxiliary wheels 19 inside the mounting seats 4 can be engaged and slid, and multiple sets of incubators 5 can be stacked and installed inside the support frame 2 in sequence. When in use, the incubators 5 can be replaced and transferred as needed, thus realizing the easy-to-disassemble function.

[0025] A light lamp 3 is installed on the top of the mounting base 4. A control panel 1 is installed on the left side of the support frame 2. An outlet 8 is set on the front right side of the incubator 5. An output pipe 6 is connected to the front end of the outlet 8. A water inlet 9 is set on the front left side of the incubator 5. A conveying pipe 7 is connected to the front end of the water inlet 9. A water pump 12 is fixedly connected to the top of the conveying pipe 7. A filter box 11 is connected to the rear end of the water pump 12. A polyurethane sponge layer 20 is set on the top inside the filter box 11. A porous ceramic ring layer 21 is connected to the bottom of the polyurethane sponge layer 20. An activated carbon layer 22 is connected to the bottom of the porous ceramic ring layer 21. A filter screen 23 is connected to the bottom of the activated carbon layer 22.

[0026] The polyurethane sponge layer 20, the porous ceramic ring layer 21, the activated carbon layer 22 and the filter screen 23 are sequentially installed inside the filter box 11. The filter box 11 is connected to the incubator 5 through the water pump 12 and the delivery pipe 7.

[0027] Specifically, such as Figure 1 and Figure 3 As shown, by setting up a water circulation filtration structure, when in use, the water inside the incubator 5 is transported to the output pipe 6 through the outlet 8, and then transported to the filter box 11 through the output pipe 6. The water inside the filter box 11 is filtered by the polyurethane sponge layer 20, the porous ceramic ring layer 21 and the activated carbon layer 22 to remove impurities, nitrify and purify the water inside the incubator 5. After purification, the purified water inside the filter box 11 is transported to the inside of the incubator 5 through the inlet 9 at the front end of the incubator 5 through the delivery pipe 7 by the water pump 12, thus realizing the water circulation filtration function.

[0028] An egg-laying plate 14 is installed at the bottom of the incubator 5. A heating rod 13 is installed on the right side of the incubator 5. An ammonia nitrogen sensor 15, a temperature sensor 16, and a pH sensor 17 are installed sequentially at the rear of the incubator 5.

[0029] The ammonia nitrogen sensor 15, temperature sensor 16 and pH sensor 17 are electrically connected to the control panel 1 via wires, and the heating rod 13 is located on the inside left side of the incubator 5 and is electrically connected to the control panel 1.

[0030] Specifically, such as Figure 1 and Figure 4As shown, by setting up a water quality monitoring structure, the incubator 5 needs to maintain a certain temperature range during use. The ammonia nitrogen sensor 15, temperature sensor 16 and pH sensor 17 inside the incubator 5 monitor the ammonia nitrogen, water temperature and pH value inside the incubator 5. The water temperature is adjusted by activating the heating rod 13 inside the incubator 5 to heat the water inside the incubator 5, thereby realizing the water quality monitoring function.

[0031] Working Principle: This invention uses sliding grooves 18 on both sides of the incubator 5 to engage with the mounting seats 4 on both sides of the inner side of the support frame 2. Multiple incubators 5 are stacked and installed inside the support frame 2. Then, an egg-laying plate 14 containing the hatching eggs is placed inside the incubator 5. Water is injected into the incubator 5. The ammonia nitrogen sensor 15, temperature sensor 16, and pH sensor 17 inside the incubator 5 monitor the ammonia nitrogen, water temperature, and pH value. The heating rod 1 inside the incubator 5 is activated. 3. The water inside the incubator 5 is heated to regulate the water temperature. At the same time, the water inside the incubator 5 is transported to the output pipe 6 through the outlet 8. The water inside the incubator 5 is then transported to the filter box 11 through the output pipe 6. The water inside the filter box 11 is filtered by the polyurethane sponge layer 20, the porous ceramic ring layer 21 and the activated carbon layer 22 to remove impurities, nitrify and purify the water inside the incubator 5. The purified water inside the filter box 11 is then transported to the inside of the incubator 5 through the inlet 9 at the front end of the incubator 5 through the delivery pipe 7. This process increases oxygen and controls the water quality, temperature and microbial environment.

[0032] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A layered, detachable toad egg-laying and hatching nest, including a support frame (2), characterized in that: A horizontal support rod (10) is installed on the inner bottom of the support frame (2). Mounting seats (4) are installed on the inner two side walls of the support frame (2). An auxiliary wheel (19) is installed inside the mounting seat (4). An incubator (5) is snapped into the mounting seat (4). A sliding groove (18) is provided on the lower part of the top two sides of the incubator (5).

2. The layered, detachable toad egg-laying and hatching nest according to claim 1, characterized in that: The mounting bases (4) are evenly spaced on both sides of the inside of the support frame (2). The sliding grooves (18) on the lower sides of the top of the incubator (5) engage with the auxiliary wheels (19) inside the mounting bases (4). The sliding grooves (18) slide with the auxiliary wheels (19) inside the mounting bases (4).

3. The layered, detachable toad egg-laying and hatching nest according to claim 1, characterized in that: A light lamp (3) is installed on the top of the mounting base (4), a control panel (1) is installed on the left side of the support frame (2), an outlet (8) is provided on the right side of the front end of the incubator (5), an output pipe (6) is connected to the front end of the outlet (8), a water inlet (9) is provided on the left side of the front end of the incubator (5), a conveying pipe (7) is connected to the front end of the water inlet (9), and a water pump (12) is fixedly connected to the top of the conveying pipe (7).

4. The layered, detachable toad egg-laying and hatching nest according to claim 3, characterized in that: The rear end of the water pump (12) is connected to a filter box (11). The top of the filter box (11) is provided with a polyurethane sponge layer (20). The bottom of the polyurethane sponge layer (20) is connected to a porous ceramic ring layer (21). The bottom of the porous ceramic ring layer (21) is connected to an activated carbon layer (22). The bottom of the activated carbon layer (22) is connected to a filter screen plate (23).

5. The layered, detachable toad egg-laying and hatching nest according to claim 4, characterized in that: The polyurethane sponge layer (20), porous ceramic ring layer (21), activated carbon layer (22) and filter screen (23) are sequentially installed inside the filter box (11), and the filter box (11) is connected to the incubator (5) through a water pump (12) and a delivery pipe (7).

6. The layered, detachable toad egg-laying and hatching nest according to claim 1, characterized in that: An egg-laying plate (14) is installed at the bottom inside the incubator (5). A heating rod (13) is installed on the right side inside the incubator (5). An ammonia nitrogen sensor (15), a temperature sensor (16), and a pH sensor (17) are installed sequentially at the rear end inside the incubator (5).

7. The layered, detachable toad egg-laying and hatching nest according to claim 6, characterized in that: The ammonia nitrogen sensor (15), temperature sensor (16) and pH sensor (17) are electrically connected to the control panel (1) via wires. The heating rod (13) is located on the inside left side of the incubator (5) and is electrically connected to the control panel (1).