Soft-shelled turtle fertilized egg incubator
The threaded shaft drives the water spray port movement and the fan accelerates heat flow, and combines the screen with a micro vibrating motor to solve the problems of uneven water spray, uneven temperature and screening difficulties in the existing turtle hatching box, and improves the hatching efficiency and shelling rate.
Patent Information
- Application Number
- CN202421888218.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The existing turtle hatching box lacks screening function, which makes it difficult to separate the eggshell from the sand, uneven water spray, and uneven temperature, which affects the hatching effect and efficiency.
The threaded shaft is used to drive the water spray port to move at a uniform speed to achieve uniform water spraying. The fan accelerates heat flow to ensure uniform temperature. The screen and micro vibrating motor are used to achieve automatic screening of eggshells and sand.
It improves the uniformity of water spray and temperature, simplifies the separation process between eggshells and sand, and improves the hatching efficiency and shelling rate.
Smart Images

Figure CN223110836U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of soft-shelled turtle hatching, and particularly relates to an incubation box for soft-shelled turtle fertilized eggs. Background Art
[0002] Soft-shelled turtles, also known as trionyx sinensis or soft-shelled turtles, are oviparous amphibious reptiles and are included in the "List of National Key Protected Economic Aquatic and Terrestrial Animal and Plant Resources". Soft-shelled turtles that are artificially bred and raised are not included in the scope of prohibited consumption. The reproduction of soft-shelled turtles is the key to solving the problem of fry for artificial soft-shelled turtle farming. Currently, there are many soft-shelled turtle hatching methods, usually including normal temperature hatching and indoor temperature-controlled hatching. Among them, the first method of normal temperature hatching can build hatching ponds indoors or outdoors and use hatching boxes for hatching. The hatching box is a more commonly used hatching method.
[0003] The existing hatching box does not have a screening function. After the hatching box hatches the fertilized eggs, eggshells will remain in the sand and need to be separated. Generally, the sand is taken out and then screened, which is very troublesome, increasing the workload, reducing work efficiency, and also does not have the function of uniform spraying. The sand in the hatching box needs to maintain a certain humidity, so it needs to be sprayed with water for humidification. However, the position of the general nozzle is fixed, and it is difficult to spray evenly during spraying, affecting the hatching effect and the hatching rate. In addition, the position of the heating tube is often fixed, and there is no structure to accelerate heat diffusion, resulting in a higher temperature around the heating tube and uneven heat, affecting the hatching result. To solve the above problems, we propose an incubation box for soft-shelled turtle fertilized eggs. Summary of the Utility Model
[0004] In order to overcome the defects in the above-mentioned prior art, the utility model provides an incubation box for soft-shelled turtle fertilized eggs. By driving the connecting rod and the water spraying port to move at a constant speed through the threaded shaft, more uniform water spraying can be realized; by driving the heat at the heating tube to flow faster through the fan, the overall temperature in the hatching room rises faster and the temperature is more uniform; through the sieve mesh and the micro vibration motor, automatic screening of the eggshells can be realized, and during the screening process, the staff can add sand or perform other operations to the bottom plate without simply waiting, improving the overall processing efficiency.
[0005] Technical Solution
[0006] An incubation box for soft-shelled turtle fertilized eggs, comprising a box body. An incubation room is arranged inside the box body. A water spraying mechanism for uniform water spraying is arranged above the incubation room. A heating tube is also arranged on the side wall of the incubation room. A fan for blowing air at the heating tube and accelerating heat flow is also arranged on the side wall of the incubation room. An incubation mechanism capable of separating soft-shelled turtle eggshells from sand is arranged below the incubation room. A first opening for the hatched soft-shelled turtles to climb out by themselves is arranged above the incubation mechanism and penetrates through the inner wall of the incubation room.
[0007] Further, the water spraying mechanism includes a water tank disposed at the lower part of the box body. A water pump is arranged in the water tank. The water pump is connected with a water pipe, and the other end of the water pipe is connected with a flexible hose located above the hatching chamber. The other end of the flexible hose is connected with a pipeline, and several water spraying nozzles are connected to the lower side of the pipeline.
[0008] Further, a connecting rod is fixedly arranged on the upper side of the pipeline. The connecting rod is penetrated and slidably connected with a limiting rod fixedly arranged between the front and rear walls of the hatching chamber. The other side of the connecting rod is also penetrated and threadedly connected with a threaded shaft. The threaded shaft is rotatably connected to the front and rear walls of the hatching chamber. One end of the threaded shaft is also power-connected to a motor fixedly arranged on the inner wall of the hatching chamber. An inlet is arranged in the water tank.
[0009] Further, a temperature and humidity sensor is arranged on the inner wall of the hatching chamber, and a controller is arranged on the upper side of the box body.
[0010] Further, a box door is arranged on one side wall of the hatching chamber.
[0011] Further, the hatching mechanism includes an inner box arranged at the bottom of the hatching chamber. A bottom plate is inserted into the upper side of the inner box. A hatching space is arranged on the upper side of the bottom plate. A second opening is arranged on one side of the inner box close to the box door. A screen is arranged in the second opening and inserted into the inner box. A screening space is arranged between the screen and the bottom plate. A collection box located at the bottom of the inner box is arranged on the lower side of the screen.
[0012] Further, a control space is arranged in the inner wall of the inner box close to the box door. A slot is arranged in the bottom wall of the control space. A fixing pin penetrating the bottom plate and inserted into the slot is arranged in the control space.
[0013] Further, a micro vibration motor is arranged on the outer wall of the inner box.
[0014] Advantageous Effects
[0015] Compared with the prior art, the present utility model has the following advantageous effects: The threaded shaft drives the connecting rod and the water spraying nozzles to move uniformly, so as to realize more uniform water spraying; The fan drives the heat at the heating pipe to flow faster, so that the overall temperature in the hatching chamber rises faster and the temperature is more uniform; The automatic screening of eggshells is realized through the screen and the micro vibration motor, and the screening process does not affect the staff to handle other work. For example, sand can be added to the bottom plate to improve the overall processing efficiency. The overall screening operation is also very simple. After screening, the collection of sand and eggshells is automatically realized, which is convenient for subsequent processing; A first opening is arranged in the hatching chamber, which is convenient for the soft-shelled turtles to climb out by themselves after hatching successively. Description of the Drawings
[0016] Figure 1 Schematic diagram of the structure of an incubator for fertilized soft-shelled turtle eggs of the present utility model;
[0017] Figure 2 is Figure 1 An enlarged view of part A in
[0018] Reference numerals in the drawings
[0019] Spraying mechanism 901, hatching mechanism 902, box body 1, water tank 2, water pump 3, water pipe 4, inner box 5, hatching space 51, screening space 52, collection box 6, screen 7, heating pipe 8, fan 9, water spray nozzle 10, pipeline 11, hose 12, connecting rod 13, limiting rod 14, motor 15, threaded shaft 16, controller 17, hatching chamber 18, temperature and humidity sensor 19, first opening 20, second opening 21, box door 22, water inlet 23, slot 24, micro vibration motor 25, fixing pin 26, control space 27. Specific embodiments
[0020] To better illustrate and explain the content of the present utility model, the following is an elaboration in combination with the drawings and embodiments:
[0021] There is Figures 1-2 As shown in the figure, the present utility model discloses an incubator for fertilized soft-shelled turtle eggs, which includes a box body 1. An incubating chamber 18 is arranged inside the box body 1. A spraying mechanism 901 for uniformly spraying water is arranged above the incubating chamber 18. A heating pipe 8 is also arranged on the side wall of the incubating chamber 18. A fan 9 for blowing air to the heating pipe 8 and accelerating heat flow is also arranged on the side wall of the incubating chamber 18. A hatching mechanism 902 capable of separating the soft-shelled turtle eggshell from the sand is arranged below the incubating chamber 18. A first opening 20 for the hatched soft-shelled turtles to climb out by themselves is arranged above the hatching mechanism 902 and penetrates through the inner wall of the incubating chamber 18.
[0022] Furthermore, the spraying mechanism 901 includes a water tank 2 arranged at the lower part of the box body 1. A water pump 3 is arranged inside the water tank 2. The water pump 3 is connected with a water pipe 4. The other end of the water pipe 4 is connected with a hose 12 located above the incubating chamber 18. The other end of the hose 12 is connected with a pipeline 11. A plurality of water spray nozzles 10 are connected to the lower side of the pipeline 11.
[0023] Further, a connecting rod 13 is fixedly arranged on the upper side of the pipeline 11. The connecting rod 13 is penetrated and slidably connected with a limiting rod 14 fixedly arranged between the front and rear walls of the hatching chamber 18. The other side of the connecting rod 13 is also penetrated and threadedly connected with a threaded shaft 16. The threaded shaft 16 is rotatably connected to the front and rear walls of the hatching chamber 18. One end of the threaded shaft 16 is also power-connected to a motor 15 fixedly arranged on the inner wall of the hatching chamber 18. An inlet 23 is arranged in the water tank 2.
[0024] Further, a temperature and humidity sensor 19 is arranged on the inner wall of the hatching chamber 18, and a controller 17 is arranged on the upper side of the box body 1.
[0025] Further, a box door 22 is arranged on one side wall of the hatching chamber 18.
[0026] Further, the hatching mechanism 902 includes an inner box 5 arranged at the bottom of the hatching chamber 18. A bottom plate 28 is inserted into the upper side of the inner box 5. A hatching space 51 is arranged on the upper side of the bottom plate 28. A second opening 21 is arranged on one side of the inner box 5 close to the box door 22. A screen 7 inserted into the inner box 5 is arranged in the second opening 21. A screening space 52 is arranged between the screen 7 and the bottom plate 28. A collection box 6 located at the bottom of the inner box 5 is arranged on the lower side of the screen 7.
[0027] Further, a control space 27 is arranged in one side wall of the inner box 5 close to the box door 22. A slot 24 is arranged in the bottom wall of the control space 27. A fixing pin 26 penetrating the bottom plate 28 and inserted into the slot 24 is arranged in the control space 27.
[0028] Further, a micro vibration motor 25 is arranged on the outer wall of the inner box 5.
[0029] Specifically, during use, when the temperature and humidity sensor 19 detects a low temperature, the controller 17 controls the heating tube 8 to be powered on, and then the fan 9 starts. Thus, the air passes through the heating tube 8 to form hot air that slowly flows in the hatching chamber 18, accelerating the overall temperature rise and making the temperature in the hatching chamber 18 more uniform;
[0030] The rotation speed of the fan 9 is relatively slow. The fan 9 is designed to drive the air circulation and accelerate the heat flow;
[0031] When the temperature and humidity sensor 19 detects a low humidity, the water pump 3 starts and sprays water through the water spraying port 10. At the same time, the motor 15 starts and drives the threaded shaft 16 to rotate, thereby driving the connecting rod 13 to move forward or backward uniformly. When moving to the end, the controller 17 controls the motor 15 to reverse, so as to realize uniform water spraying;
[0032] After hatching is completed, open the box door 22, then pull out the fixing pin 26 and pull out the bottom plate 28, so that all the sand falls onto the sieve 7. At this time, the micro-vibration motor 25 is started to realize the automatic screening of eggshells;
[0033] During the screening process, the bottom plate 28 can be reset, and then the staff can add sand or perform other operations on the bottom plate 28 without waiting for screening, thus improving the overall processing efficiency;
[0034] When the screening is completed, the staff can pull out the sieve 7 to collect the eggshells, and pull out the collection box 6 to obtain the screened sand.
[0035] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the technical solutions of the present invention have been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A soft-shelled turtle fertilized egg incubation box, characterized in that: It includes a box body (1). Inside the box body (1), there is an incubation chamber (18). Above the incubation chamber (18), there is a water spraying mechanism (901) for uniformly spraying water. On the side wall of the incubation chamber (18), there is also a heating pipe (8). On the side wall of the incubation chamber (18), there is also a fan (9) for blowing air on the heating pipe (8) to accelerate heat flow. Below the incubation chamber (18), there is an incubation mechanism (902) capable of separating the soft-shelled turtle eggshells from the sand. Above the incubation mechanism (902), there is a first opening (20) that penetrates the inner wall of the incubation chamber (18) for the hatched soft-shelled turtles to climb out by themselves.
2. The hatching box for soft-shelled turtle fertilized eggs according to claim 1, wherein: The water spraying mechanism (901) includes a water tank (2) arranged at the lower part of the box body (1). Inside the water tank (2), there is a water pump (3). The water pump (3) is connected to a water pipe (4). The other end of the water pipe (4) is connected to a flexible pipe (12) located above the incubation chamber (18). The other end of the flexible pipe (12) is connected to a pipe (11). The lower side of the pipe (11) is connected to a number of water spraying nozzles (10).
3. The hatching box for soft-shelled turtle fertilized eggs according to claim 2, characterized in that: On the upper side of the pipe (11), there is a connecting rod (13) fixedly arranged. The connecting rod (13) is penetrated and slidably connected with a limiting rod (14) fixedly arranged between the front and rear walls of the incubation chamber (18). The other side of the connecting rod (13) is also penetrated and threadedly connected with a threaded shaft (16). The threaded shaft (16) is rotatably connected to the front and rear walls of the incubation chamber (18). One end of the threaded shaft (16) is also power-connected to a motor (15) fixedly arranged on the inner wall of the incubation chamber (18). Inside the water tank (2), there is a water inlet (23).
4. A soft-shelled turtle fertilized egg incubator according to claim 3, characterized in that: On the inner wall of the incubation chamber (18), there is a temperature and humidity sensor (19). On the upper side of the box body (1), there is a controller (17).
5. The hatching box for soft-shelled turtle fertilized eggs according to claim 4, wherein: On one side wall of the incubation chamber (18), there is a box door (22) opened.
6. The hatching box for soft-shelled turtle fertilized eggs according to claim 5, characterized in that: The incubation mechanism (902) includes an inner box (5) arranged at the bottom of the incubation chamber (18). Above the inner box (5), a bottom plate (28) is inserted. Above the bottom plate (28), there is an incubation space (51). On one side of the inner box (5) close to the box door (22), there is a second opening (21). Inside the second opening (21), there is a sieve (7) inserted into the inner box (5). Between the sieve (7) and the bottom plate (28), there is a screening space (52). Below the sieve (7), there is a collection box (6) located at the bottom of the inner box (5).
7. The incubation box for soft-shelled turtle fertilized eggs according to claim 6, wherein: Inside one side wall of the inner box (5) close to the box door (22), there is a control space (27). Inside the bottom wall of the control space (27), there is a slot (24). Inside the control space (27), there is a fixing pin (26) that penetrates the bottom plate (28) and is inserted into the slot (24).
8. A soft-shelled turtle fertilized egg incubation box according to claim 7, characterized in that: On the outer wall of the inner box (5), there is a micro vibration motor (25).