Soft-shelled turtle fry hatching greenhouse
Patent Information
- Application Number
- CN202511133062.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-13
- Publication Date
- 2025-09-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing turtle egg hatching greenhouse cannot adjust the water volume according to different areas of the hatching frame, resulting in the fine sand around the hatching frame being relatively dry, affecting the hatching rate.
A turtle seedling hatching greenhouse was designed. The outer nozzle and the inner nozzle were combined with a slide rod to slide in the limit groove. The position of the nozzle was adjusted so that the amount of water sprayed around the hatching frame was within the device, which realized the water replenishment around the hatching frame and was equipped with an automatic collection device to collect the small turtles.
The device for controlling the amount of water around the incubation frame is realized, the device for automatically collecting the water around the incubation frame is realized, the device for automatically collecting the water around the incubation frame is realized, the moisture around the incubation frame is increased, the humidity around the incubation frame is increased, the temperature of the incubation frame is increased, and the hatching rate of the incubation frame is improved.
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Figure CN120678062A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a hatching greenhouse, in particular to a turtle seedling hatching greenhouse. Background Art
[0002] The turtle hatching greenhouse is a temperature-controlled room specially designed to improve the success rate of turtle egg hatching. This temperature-controlled room provides a controlled environment that allows the ideal temperature, humidity and other conditions to be maintained to promote the hatching of turtle eggs.
[0003] Existing large-scale turtle hatching methods often utilize greenhouses. Typically, incubation frames containing the eggs (some with numerous openings around them) are placed directly within the greenhouse. Manual operation or a spraying system is used to maintain humidity during incubation. Manual operation involves spraying water directly onto the surface of the fine sand within the incubation frame using a container held by a human hand. Spraying involves using a motorized element to drive a nozzle to spray water onto the sand within the incubation frame. Both methods suffer from the same problem: the amount of water sprayed cannot be adjusted to suit different areas of the incubation frame, requiring a greater amount of water to be sprayed around the frame. This is because the area around the incubation frame, which is in contact with air, is larger, so the sand around the frame is drier than the sand elsewhere. Therefore, increased water supply around the frame is crucial to improve the hatching rate of the eggs near the frame. Summary of the Invention
[0004] In order to overcome the shortcomings of the above-mentioned background technology in maintaining the humidity of the existing turtle egg incubation frame, the purpose of the present invention is to provide a turtle seedling incubation greenhouse.
[0005] The technical problem of the present invention is: a turtle seedling hatching greenhouse, including a temperature control room, a hatching rack, a placement plate and a spray device, a plurality of hatching racks are arranged at intervals at the bottom end of the temperature control room, a plurality of placement plates are arranged in sequence from top to bottom in the hatching rack, the front sides of the placement plates are provided with limiting grooves, the hatching racks are installed with spray devices, the spray devices include a water pipe, an external nozzle, an electric guide rail, a nozzle, an internal nozzle, a short spring and a slide rod, the rear end of the hatching rack is connected to the water pipe, the bottom ends of the placement plates are slidably connected to the external nozzle, the upper part of the rear end of the hatching rack is provided with an electric guide rail, the electric guide rail The moving parts are connected to all the outer nozzles, and a plurality of nozzles are arranged on the outer nozzles in sequence from front to back. The inner nozzle is slidably connected to the inside of the outer nozzle, and a telescopic hose is connected between the inner nozzle and the water pipe. The bottom end of the inner nozzle is provided with a plurality of water outlets in sequence from front to back, the frontmost and rearmost water outlets are semi-connected with the adjacent nozzles, and the remaining water outlets are fully connected with the adjacent nozzles. The front end of the outer nozzle is connected to a short spring, and the other end of the short spring is connected to the front side of the inner nozzle. The front side of the top end of the inner nozzle is connected to a sliding rod, and the upper part of the sliding rod is located in the limit groove.
[0006] Optionally, a collecting device is also included, which includes a water tank, a linear guide rail, a flip plate, a collecting frame, a rotating arm, a rotating pulley, a track and a mobile rack. A water tank is provided on the front side of the inner bottom end of the temperature control room, and rectangular through grooves are opened on the front and rear walls of the water tank. The flip plate and the mobile rack are slidingly connected between the two through grooves. The right end of the mobile rack is close to the left end of the flip plate. A linear guide rail is provided at the front end of the water tank, and the linear guide rail includes a moving part. The moving part is connected to the mobile rack, and the collecting frame is slidingly connected in the mobile rack. The front end of the moving part is rotatably connected to the rotating arm, and the rear end of the rotating arm passes through the moving part and is connected to the upper front end of the flip plate. The right side of the rear end of the rotating arm is rotatably connected to the rotating pulley, and a track is provided on the right side of the front end of the water tank.
[0007] Optionally, it further comprises an incubation frame and an anti-falling net frame. A plurality of incubation frames are sequentially arranged from top to bottom in the incubation frame, and the front lower part of the incubation frame is rotatably connected with the anti-falling net frame.
[0008] Optionally, a torsion spring is further included, and the left side of the rear end of the rotating arm is sleeved with the torsion spring, and the other end of the torsion spring is connected to the moving part.
[0009] Optionally, it also includes a sliding plate and a long spring. The sliding plate is slidably connected to the right side of the water tank, and multiple long springs are connected between the right end of the sliding plate and the inner left wall of the water tank.
[0010] Optionally, an inclined platform is also included, and the rear end of the water tank is connected to the inclined platform. The top of the inclined platform is an inclined surface, the front side of the inclined surface is high and the rear side is low, the height of the front side of the inclined surface is flush with the top of the water tank, and the rear side of the inclined surface is close to the ground.
[0011] Optionally, the limiting groove is a U-shaped groove with its opening facing the rear side of the hatching rack, the track is L-shaped, the entrance of the track is located at the lower left side, and the flip plate is an L-shaped plate with a large number of through holes spaced apart on the flip plate.
[0012] Optionally, a heater and a convection machine are further included. The heater is provided on the lower side of the inner left wall of the temperature control room, and the convection machine is installed on the lower side of the inner rear wall of the temperature control room.
[0013] Optionally, a door panel and a handle are further included. The right front end of the temperature control room is hinged with a door panel, and the door panel is provided with a handle.
[0014] Optionally, a sliding window is further included, and a sliding window is installed on the rear side of the right end of the temperature control room.
[0015] Compared with the prior art, the present invention has the following advantages: 1. The present invention sets an outer nozzle and an inner nozzle, combines a slide rod to slide in a limiting groove, and then pulls the inner nozzle to change its relative position in the outer nozzle, so that the amount of water sprayed by the nozzle around the hatching frame is twice that of the inner periphery, which is beneficial to replenishing moisture around the hatching frame and improving the overall hatching rate of turtle eggs in the hatching frame.
[0016] 2. It is equipped with an automatic collection device consisting of a flip plate, linear guide rail, rotating arm and track, which can effectively collect small turtles in the water tank and greatly reduce manual intervention. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0018] Figure 2 It is a schematic diagram of the three-dimensional structure of the heater and other components of the present invention.
[0019] Figure 3 It is a schematic diagram of the three-dimensional structure of the incubation rack and other components of the present invention.
[0020] Figure 4 It is a schematic diagram of the three-dimensional structure of the water pipe and other components of the present invention.
[0021] Figure 5 It is a schematic diagram of the three-dimensional structure of the inner nozzle and other components of the present invention.
[0022] Figure 6 This is a schematic diagram of the three-dimensional structure of the present invention for placing components such as plates.
[0023] Figure 7 It is a schematic diagram of the three-dimensional structure of the water storage tank and other components of the present invention.
[0024] Figure 8 It is a schematic diagram of the three-dimensional structure of the collecting frame and other components of the present invention.
[0025] Figure 9 It is a schematic diagram of the three-dimensional structure of the sliding plate and other components of the present invention.
[0026] Figure 10 It is a schematic diagram of the three-dimensional structure of the rotating arm and other components of the present invention.
[0027] Markings in the accompanying drawings: 1. Temperature control room, 101. Door panel, 1011. Handle, 2. Incubation rack, 201. Placement plate, 2011. Limiting groove, 202. Incubation frame, 203. Spraying device, 2031. Water pipe, 2032. External nozzle, 2033. Nozzle, 2034. Internal nozzle, 2036. Short spring, 2037. Slide rod, 2038. Water outlet, 2039. Electric guide rail, 208. Anti-fall Net frame, 3. Collection device, 301. Water storage tank, 3011. Inclined platform, 302. Linear guide rail, 3021. Moving part, 303. Turning plate, 3031. Through hole, 304. Collection frame, 305. Rotating arm, 3051. Rotating pulley, 306. Torsion spring, 307. Track, 308. Sliding plate, 309. Long spring, 3010. Moving rack, 4. Heater, 5. Convection machine, 6. Sliding window. DETAILED DESCRIPTION
[0028] The following is a clear and complete description of the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0029] A turtle seedling hatching greenhouse, such as Figures 1-6As shown, it includes a temperature control room 1, an incubation rack 2, a placement plate 201 and a spray device 203. A plurality of incubation racks 2 are arranged at intervals at the bottom end of the temperature control room 1. The incubation rack 2 is used to receive a container containing turtle eggs. A plurality of placement plates 201 are arranged in sequence from top to bottom in the incubation rack 2. A limiting groove 2011 is provided on the front side of the placement plate 201. The limiting groove 2011 is a U-shaped groove. The opening of the U-shaped groove faces the rear side of the incubation rack 2. A spray device 203 is installed on the incubation rack 2. The spraying device 203 sprays water into the container containing the turtle eggs so that the turtle eggs are in a suitable hatching humidity. The spraying device 203 includes a water pipe 2031, an outer nozzle 2032, an electric guide rail 2039, a nozzle 2033, an inner nozzle 2034, a short spring 2036 and a slide bar 2037. The left side of the rear end of the hatching rack 2 is connected to the water pipe 2031, and the bottom end of the placement plate 201 is slidably connected to the outer nozzle 2032. An electric guide rail 2039 is provided at the upper rear end of the incineration rack 2. The moving part 3021 of the electric guide rail 2039 is connected to all the outer nozzles 2032. A plurality of nozzles 2033 are arranged on the outer nozzles 2032 in sequence from front to back. The inner nozzles 2032 are slidably connected to the inner nozzles 2034. A telescopic hose is connected between the inner nozzles 2034 and the water pipe 2031. The bottom end of the inner nozzle 2034 is provided with a plurality of outlets in sequence from front to back. The water outlet 2038, the frontmost and rearmost water outlets 2038 are semi-connected with the adjacent nozzles 2033, and the remaining water outlets 2038 are fully connected with the adjacent nozzles 2033. The front end of the outer nozzle 2032 is connected with a short spring 2036, and the other end of the short spring 2036 is connected to the front side of the inner nozzle 2034. The front side of the top end of the inner nozzle 2034 is connected with a slide rod 2037, and the upper part of the slide rod 2037 is located in the limit groove 2011.
[0030] like Figure 3 As shown, it also includes an incubation frame 202 and an anti-falling net frame 208. A plurality of incubation frames 202 are arranged in sequence from top to bottom in the incubation frame 2. The turtle eggs are placed in the incubation frames 202. A large number of small holes are spaced around the incubation frames 202. The front lower part of the incubation frame 2 is rotatably connected to the anti-falling net frame 208. Before the turtle eggs are hatched, the front side of the anti-falling net frame 208 can be held and the anti-falling net frame 208 can be rotated upward to make the anti-falling net frame 208 close to the incubation frame 2. When the turtle eggs are in the shelling stage, the anti-falling net frame 208 can be rotated to make it perpendicular to the incubation frame 2 (see FIG. Figure 3 ), the anti-falling net frame 208 is composed of a metal frame and an anti-falling net, which can protect the small turtles that fall onto the anti-falling net frame 208.
[0031] like Figure 7 and Figure 9As shown, it also includes an inclined platform 3011, a sliding plate 308 and a long spring 309. The rear end of the water tank 301 is connected to the inclined platform 3011. The top of the inclined platform 3011 is an inclined surface. The front side of the inclined surface is high and the back side is low. The height of the front side of the inclined surface is flush with the top of the water tank 301, and the back side of the inclined surface is close to the ground. The inclined platform 3011 is used to guide the small turtle to crawl into the water tank 301. The sliding plate 308 is slidably connected to the right side of the water tank 301. Multiple long springs 309 are connected between the right end of the sliding plate 308 and the inner left wall of the water tank 301.
[0032] like Figure 1 and Figure 2 As shown, it also includes a door panel 101, a handle 1011, a heater 4, a convection machine 5 and a sliding window 6. The door panel 101 is hinged on the front side of the right end of the temperature-controlled room 1. The door panel 101 is provided with a handle 1011. When the breeding personnel need to enter the temperature-controlled room 1, they can hold the handle 1011, rotate the door panel 101 to open the temperature-controlled room 1, and then enter the temperature-controlled room 1. A heater 4 is provided on the lower side of the inner left wall of the temperature-controlled room 1. The heater 4 is used to maintain the constant temperature environment of the temperature-controlled room 1. A convection machine 5 is installed on the lower side of the inner rear wall of the temperature-controlled room 1. The convection machine 5 is used to promote air circulation in the temperature-controlled room 1. A sliding window 6 is installed on the rear side of the right end of the temperature-controlled room 1. When ventilation is needed, the sliding window 6 can be opened.
[0033] like Figure 8 As shown, a torsion spring 306 is further included. The left side of the rear end of the rotating arm 305 is sleeved with the torsion spring 306. The other end of the torsion spring 306 is connected to the moving member 3021. The torsion spring 306 is used to assist the flip plate 303 in resetting.
[0034] like Figure 7-10As shown, it also includes a collecting device 3, which is used to collect small turtles. The collecting device 3 includes a water tank 301, a linear guide rail 302, a flip plate 303, a collecting frame 304, a rotating arm 305, a rotating pulley 3051, a track 307 and a mobile rack 3010. A water tank 301 is provided on the front side of the inner bottom end of the temperature control room 1. Rectangular through grooves are provided on the front and rear walls of the water tank 301. A flip plate 303 and a mobile rack 3010 are slidably connected between the two through grooves. The flip plate 303 is an L-shaped plate. A large number of through holes 3031 are spaced apart on the flip plate 303. The right end of the mobile rack 3010 is close to the left end of the flip plate 303. The front end of 301 is provided with a linear guide rail 302, which includes a moving part 3021, which is connected to the moving frame 3010, and a collection frame 304 is slidably connected to the mobile frame 3010. The front end of the moving part 3021 is rotatably connected to a rotating arm 305, and the rear end of the rotating arm 305 passes through the moving part 3021 and is connected to the front upper part of the flip plate 303. The right side of the rear end of the rotating arm 305 is rotatably connected to a rotating pulley 3051. A track 307 is provided on the right side of the front end of the water storage tank 301. The track 307 is L-shaped, and the entrance of the track 307 is located at the lower left side. A certain amount of water is added to the water storage tank 301. After the small turtles are hatched from the turtle eggs, they will instinctively crawl towards the water tank 301, climb out of the hatching frame 202, fall from the hatching frame 2 to the anti-falling net frame 208, climb from the anti-falling net frame 208 to the inclined platform 3011, and then fall from the top front side of the inclined platform 3011 into the water tank 301. The small turtles will gather in the water tank 301. When a certain amount of small turtles have accumulated in the water tank 301 and need to be collected, the linear guide rail 302 is started, and the linear guide rail 302 drives the flip plate 303, the movable frame 3010 and the collection frame 304 to move to the right together. During this process, the small turtles will gather on the flip plate 303, when the rotating pulley 3051 enters the track 307, the rotating pulley 3051 will move along the track 307 during the rotation process. The rotating pulley 3051 first moves to the right along the track 307, then moves upward along the track 307, and then moves a distance downward along the track 307. The upper part of the rotating arm 305 moves along with the rotating pulley 3051, and the lower part of the rotating arm 305 is moved to the rightmost side of the linear guide 302 by the linear guide 302. Under the action of the rotating arm 305, the flip plate 303 will rotate around the connection between it and the rotating arm 305, and the rotation angle is greater than 90 degrees (reference Figure 10), at this time the small turtle will slide from the flip plate 303 into the collecting frame 304, and the collecting frame 304 will be taken out, thus completing the collection of the small turtle. Before the flip plate 303 starts to rotate, the flip plate 303 has already abutted the sliding plate 308. When the flip plate 303 flips, the flip plate 303 will push the sliding plate 308 to move to the right, and the sliding plate 308 will block the right end of the flip plate 303 to prevent the small turtle from crawling out from the right end of the flip plate 303. In the process of the sliding plate 308 moving to the right, all the long springs 309 are changed from the initial state to the compressed state. After completing the collection of the small turtle, the linear guide 302 will drive the flip plate 303 back to the initial position, and the torsion spring 306 drives the flip plate 303 to reset. The flip plate 303 no longer squeezes the sliding plate 308, and the long spring 309 resets and drives the sliding plate 308 back to the initial position, waiting for the next collection of the small turtle.
[0035] When using this greenhouse, first, you need to put the turtle eggs into the hatching frame 202, remove the hatching frame 202 on the hatching rack 2, put a certain amount of turtle eggs into the hatching frame 202, spread the turtle eggs in the hatching frame 202, and then use moist fine sand to cover the surface of the turtle eggs. After completion, put the hatching frame 202 with the turtle eggs installed back on the hatching rack 2. According to this method, all the turtle eggs to be hatched are installed in all the hatching frames 202, turn on the heater 4 and the convection machine 5. The heater 4 in this embodiment can set the temperature. Adjust the heater 4 to a suitable temperature. The convection machine 5 blows the gas flow in the temperature control room 1 so that the upper and lower temperatures in the temperature control room 1 reach a balance. When the fine sand covering the surface of the turtle eggs needs to be When watering is to be sprayed, before that, the water pipe 2031 is connected to an external water supply device, which is turned on. The device can transport water to the inner nozzle 2034 and make the water spray out from the nozzle 2033, and start the electric guide rail 2039. The electric guide rail 2039 will drive all the outer nozzles 2032 to move to the right, and the slide bar 2037 will move along the limit groove 2011, dividing the limit groove 2011 into three parts, with the straight slide in the middle as the middle part, the left side connected to the straight slide as the left part, and the right side connected to the straight slide as the right part. Initially, the slide bar 2037 is located in the left part of the limit groove 2011, and the relative positions of the outer nozzle 2032 and the inner nozzle 2034 can be referred to Figure 5At this time, the nozzles 2033 are all located at the leftmost side of the top of the incubation frame 202. The water outlets 2038 at the frontmost and rearmost sides are semi-connected with the adjacent nozzles 2033, and the remaining water outlets 2038 are fully connected with the adjacent nozzles 2033. At this time, the amount of water sprayed by the nozzles 2033 at the frontmost and rearmost sides is only half of that of the remaining nozzles 2033. Hereinafter, the nozzles 2033 at the frontmost and rearmost sides are referred to as the two-side nozzles 2033, and the remaining nozzles 2033 are referred to as the middle nozzles 2033. The nozzles 2033 spray water to wet the fine sand at the leftmost side of the incubation frame 202. Afterwards, as the electric guide rail 2039 drives the outer nozzle 2032 and The inner nozzle 2034 moves to the right together, and the slide bar 2037 moves to the right along the limit groove 2011. The slide bar 2037 moves from the left part of the limit groove 2011 to the middle part. Under the action of the limit groove 2011, the slide bar 2037 will pull the inner nozzle 2034 forward. During this process, the short spring 2036 changes from the initial state to the extended state, which makes the inner nozzle 2034 gradually move forward half the distance of the water outlet 2038. This will make the nozzles 2033 on both sides fully connected with the adjacent water outlet 2038, and the middle nozzle 2033 is half connected with the adjacent water outlet 2038. At this time, the water volume of the nozzles 2033 on both sides is the middle one. The amount of water sprayed by the middle nozzle 2033 becomes twice that of the nozzles 2033 on both sides, and the middle nozzle 2033 wets the fine sand on the far right of the hatching frame 202. When the sliding rod 2037 enters the right part from the middle part of the limiting groove 2011, the short spring 2036 will gradually reset. Under the pull of the short spring 2036, the inner nozzle 2034 will gradually move backward by half the distance of the water outlet 2038 and return to the initial position, which is relative to the outer nozzle 2032. At this time, the amount of water sprayed by the middle nozzle 2033 becomes twice that of the nozzles 2033 on both sides, and the middle nozzle 2033 wets the fine sand on the far right of the hatching frame 202. After the moving part 3021 moves to the far right, the electric guide rail 2039 will drive the inner nozzle 2034, the outer nozzle 2032 and the nozzles 2033 thereon to move to the left and return to the left side of the incubation frame 2. In the process of the nozzles 2033 moving to the left, the changes in the amount of water sprayed by the middle nozzle 2033 and the nozzles 2033 on both sides can refer to the above process. In the process of the electric guide rail 2039 driving the nozzles 2033 to move, the nozzles 2033 spray more water on the periphery of the incubation frame 202, which is beneficial to replenish the moisture on the periphery of the incubation frame 202. After completing the spraying work of the incubation frame 202, the electric guide rail 2039 and the external water supply equipment can be turned off.
[0036] The technical principles of the embodiments of the present invention have been described above in conjunction with specific embodiments. These descriptions are intended solely to explain the principles of the embodiments of the present invention and should not be construed in any way as limiting the scope of protection of the embodiments of the present invention. Based on the explanations herein, those skilled in the art will be able to conceive of other specific implementations of the embodiments of the present invention without inventive effort, and such implementations will fall within the scope of protection of the embodiments of the present invention.
Claims
1. A turtle seedling incubation greenhouse, comprising a temperature-controlled room (1), characterized in that: The invention also includes an incubation rack (2), a placement plate (201) and a spray device (203). A plurality of incubation racks (2) are arranged at intervals at the inner bottom end of the temperature control room (1). A plurality of placement plates (201) are arranged in order from top to bottom in the incubation racks (2). The front sides of the placement plates (201) are provided with limiting grooves (211). The incubation racks (2) are each equipped with a spray device (203). The spray device (203) includes a water pipe (2031), an external spray pipe (2031), and a plurality of external spray pipes (2031). 32), electric guide rail (2039), nozzle (2033), inner nozzle (2034), short spring (2036) and slide rod (2037), the left side of the rear end of the hatching rack (2) is connected with a water pipe (2031), the bottom end of the placement plate (201) is slidably connected with the outer nozzle (2032), the upper part of the rear end of the hatching rack (2) is provided with an electric guide rail (2039), the moving part (3021) of the electric guide rail (2039) is connected to all the outer nozzles The nozzle (2032) is connected to the outer nozzle (2032), and a plurality of nozzles (2033) are sequentially arranged on the outer nozzle (2032) from front to back. The inner nozzle (2034) is slidably connected to the inner nozzle (2034), and a telescopic hose is connected between the inner nozzle (2034) and the water pipe (2031). The bottom end of the inner nozzle (2034) is sequentially arranged from front to back with a plurality of water outlets (2038). The water outlets (2038) on the front and rear sides are arranged in a spaced manner. ) are semi-connected with the adjacent nozzles (2033), and the remaining water outlets (2038) are fully connected with the adjacent nozzles (2033). The front end of the outer nozzle (2032) is connected to a short spring (2036), the other end of the short spring (2036) is connected to the front side of the inner nozzle (2034), and the top front side of the inner nozzle (2034) is connected to a slide rod (2037), and the upper part of the slide rod (2037) is located in the limit groove (2011).
2. A turtle seedling hatching greenhouse according to claim 1, characterized in that: The temperature control room (1) further comprises a collecting device (3), the collecting device (3) comprising a water storage tank (301), a linear guide rail (302), a flip plate (303), a collecting frame (304), a rotating arm (305), a rotating pulley (3051), a track (307) and a moving frame (3010), wherein the water storage tank (301) is provided at the front side of the inner bottom end of the temperature control room (1), and rectangular through grooves are provided on the front and rear walls of the water storage tank (301), and the flip plate (303) and the moving frame (3010) are slidably connected between the two through grooves, and the right end of the moving frame (3010) is closely attached to the left end of the flip plate (303). A linear guide rail (302) is provided at the front end of the water storage tank (301), the linear guide rail (302) includes a moving part (3021), the moving part (3021) is connected to the moving frame (3010), a collection frame (304) is slidably connected to the inside of the moving frame (3010), the front end of the moving part (3021) is rotatably connected to a rotating arm (305), the rear end of the rotating arm (305) passes through the moving part (3021) and is connected to the upper front end of the flip plate (303), the right side of the rear end of the rotating arm (305) is rotatably connected to a rotating pulley (3051), and a track (307) is provided on the right side of the front end of the water storage tank (301).
3. A turtle seedling hatching greenhouse according to claim 2, characterized in that: The hatching frame (202) and the anti-netting frame (208) are also included. A plurality of hatching frames (202) are sequentially arranged at intervals from top to bottom in the hatching frame (2). The front lower portion of the hatching frame (2) is rotatably connected to the anti-netting frame (208).
4. A turtle seedling hatching greenhouse according to claim 3, characterized in that: It also includes a torsion spring (306), which is sleeved on the left side of the rear end of the rotating arm (305), and the other end of the torsion spring (306) is connected to the moving member (3021).
5. A turtle seedling hatching greenhouse according to claim 4, characterized in that: The water storage tank (301) further comprises a sliding plate (308) and a long spring (309). The sliding plate (308) is slidably connected to the right side of the water storage tank (301). A plurality of long springs (309) are connected between the right end of the sliding plate (308) and the inner left wall of the water storage tank (301).
6. A turtle seedling hatching greenhouse according to claim 5, characterized in that: The utility model further comprises an inclined platform (3011), the rear end of the water storage tank (301) is connected to the inclined platform (3011), the top end of the inclined platform (3011) is an inclined surface, the front side of the inclined surface is higher than the rear side, the height of the front side of the inclined surface is flush with the top end of the water storage tank (301), and the rear side of the inclined surface is close to the ground.
7. A turtle seedling hatching greenhouse according to claim 6, characterized in that: The limiting groove (2011) is a U-shaped groove, the opening of which faces the rear side of the incubation rack (2), the track (307) is L-shaped, the entrance of the track (307) is located at the lower left side, and the flip plate (303) is an L-shaped plate, with a large number of through holes (3031) spaced apart on the flip plate (303).
8. A turtle seedling hatching greenhouse according to claim 7, characterized in that: It also includes a heater (4) and a convection machine (5). The heater (4) is provided on the lower side of the inner left wall of the temperature control room (1), and the convection machine (5) is installed on the lower side of the inner rear wall of the temperature control room (1).
9. A turtle seedling hatching greenhouse according to claim 8, characterized in that: It also includes a door panel (101) and a handle (1011). The door panel (101) is hingedly connected to the front side of the right end of the temperature control room (1), and the handle (1011) is provided on the door panel (101).
10. A turtle seedling hatching greenhouse according to claim 9, characterized in that: It also includes a sliding window (6), which is installed on the rear side of the right end of the temperature control room (1).