Forestry breeding device

By designing a forestry breeding and cultivation device with a bracket and inclined frame structure, an irrigation method that increases the number of seeds and matches the growth status is achieved, which solves the problems of low space utilization and simple irrigation methods of existing devices and improves seed survival rate and breeding efficiency.

CN120677957AInactive Publication Date: 2025-09-23ZHANGYE QINGXU LANDSCAPING CO LTD
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Patent Information

Application Number
CN202510877142.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2025-09-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing forestry breeding and cultivation equipment has low space utilization and simple irrigation methods, and is unable to carry out fine-grained irrigation according to the growth status of seeds, resulting in low seed survival rate.

Method used

A forestry breeding and cultivation device including a bracket, an inclined frame, a servo motor, a transmission belt, a water tank and an atomizing head was designed. The uniform arrangement of the cultivation seats was achieved by the inclined installation of the inclined frame. Combined with the setting of the servo motor-driven transmission belt and the water tank, an irrigation method that increases the number of seeds and matches the growth status was achieved. The atomizing head was used for foliar spraying to ensure the safety of the seeds.

Benefits of technology

The number of seeds cultivated in the same space has been increased, and the seed survival rate has been improved through refined irrigation methods, which has avoided leaf damage and improved breeding efficiency.

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Abstract

The invention discloses a forestry breeding device which is characterized in that the output end of a servo motor is provided with a belt wheel, the belt wheel is sleeved with a transmission belt, the transmission belt is provided with a connecting base, a culture base is welded to the connecting base, and a first water tank and a second water tank are arranged on an inclined frame in the moving direction of the culture base; the first water tank is provided with a ventage, and the second water tank is provided with an atomizing head. The inclined frame can be supported through the arrangement of the support, the inclined frame can be obliquely arranged on the support, the transmission belt is installed in the inclined frame, the connecting base is connected to the periphery of the transmission belt, and the culture base at the position of the inclined frame can be arranged in an inner layer and an outer layer, so that the one-time culture number of seeds is increased, and the first water tank and the second water tank are installed on the inclined frame; the first water tank can spray out columnar water flow, the second water tank can spray out atomized water, and different irrigation modes are selected according to the growth state of seeds, so that the seeds are prevented from being injured, and the survival rate of the seeds is increased.
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Description

Technical Field

[0001] The present application relates to the technical field of forestry breeding, and in particular to a forestry breeding and cultivation device. Background Art

[0002] Forests have long been known as the "lungs of the Earth," a testament to their importance to the global environment. For my country, forest resources and forestry are equally significant. On the one hand, forestry is a crucial component of agriculture, generating significant annual output value. On the other hand, the success or failure of forestry significantly impacts the overall quality of my country's ecological environment and, consequently, its ecological balance. This often overlooked fact is the most significant and valuable contribution of forestry to my country. From the perspective of my country's overall ecological environment, the regulatory and maintenance functions of forestry are even more important than its enormous economic benefits. Given this, it is crucial to prioritize forestry breeding and strengthen research efforts.

[0003] In order to improve the survival rate of seeds, indoor cultivation is currently the main method used. The seeds are planted in indoor incubators, and the light and irrigation methods are artificially controlled to improve the growth and survival rate of the seeds. However, most indoor cultivation devices are flat-laying, which takes up a large volume. In addition, the irrigation method is simple and cannot be watered according to the growth status of the seeds. Summary of the Invention

[0004] One of the purposes of this application is to provide a forestry breeding and cultivation device.

[0005] In order to achieve the above objectives, the technical solution adopted in this application is: a forestry breeding and cultivation device, including a bracket, a first water tank, a second water tank, a servo motor, an atomizing head and a water pipe, the bracket is welded with an inclined frame, the inclined frame is provided with a servo motor, the output end of the servo motor is provided with a pulley, the pulley is sleeved with a transmission belt, the transmission belt is provided with a connecting seat, the connecting seat is welded with a cultivation seat, the inclined frame in the moving direction of the cultivation seat is provided with a first water tank and a second water tank, the first water tank is provided with a leakage port, and the second water tank is provided with an atomizing head.

[0006] Preferably, a fixed plate is welded to the outside of the inclined frame, and the fixed plate is arranged along the length of the inclined frame. The fixed plate is arranged in a straight line as a whole, and a servo motor is fixedly connected to the fixed plate. The pulley on the servo motor is located on the inner side of the fixed plate, and a pulley with the same structure is connected to the other end of the fixed plate on the same side.

[0007] Preferably, a transverse plate is welded on the fixed plate of the inclined frame, the transverse plate is rectangular, the transverse plate is located in the middle of the fixed plate, the transverse plate and the fixed plate are L-shaped as a whole, the transverse plate is located inside the inclined frame, there is a certain gap between the transverse plate and the inclined frame, and the transmission belt is located in the space between the transverse plate and the inclined frame.

[0008] Preferably, an inner frame is welded on the horizontal plate inside the inclined frame, the inner frame has the same shape as the inclined frame, the inner frame is located inside the inclined frame, there is a space between the inner frame and the inclined frame, a connecting seat is slidably connected in the space between the inner frame and the inclined frame, the connecting seat is arranged in a circular shape as a whole, and the connecting seat passes through the inclined frame.

[0009] Preferably, an inner groove is provided on the outer wall of the inclined frame, a vertical rod is slidably connected to the inner groove, the vertical rod is arranged to pass through the inner groove, one end of the vertical rod is located in the inclined frame, a guide wheel is rotatably connected to the vertical rod in the inclined frame, the guide wheel is overlapped with the connecting seat, and the other end of the vertical rod is welded with a corresponding top seat.

[0010] Preferably, baffles are welded on the top seat, and the baffles are respectively located on both sides of the top seat. The baffles and the top seat are arranged in a cross shape as a whole, and the upper end of the top seat is rotatably connected to a support rod.

[0011] Preferably, a return spring is sleeved on the top seat, and the return spring is located on the top seat below the baffle. One end of the return spring is hung on the baffle, and the other end of the return spring is hung outside the inner groove.

[0012] Preferably, the other end of the support rod is rotatably connected to a blocking rod, and the blocking rod is generally cylindrical.

[0013] Preferably, the blocking rod is inserted into a connecting pipe, and the connecting pipe is welded to the water pipe.

[0014] Preferably, a through opening is provided on the blocking rod in the connecting pipe between the first water tank and the second water tank, and the positions of the through openings provided on the blocking rods of the first water tank and the second water tank are different.

[0015] Compared with the prior art, the present invention has the following advantages:

[0016] This forestry breeding and cultivation device can fix the inclined frame through the setting of the bracket, and the inclined frame can be installed on the bracket at an angle. After the inclined frame is set at an angle, the cultivation seats can be evenly arranged at the position of the inclined frame. A transmission belt is installed in the inclined frame, and the transmission belt can be evenly connected to the connecting seats of the cultivation seats. The cultivation seats can be arranged around the transmission belt for a week, thereby increasing the number of cultivation seats. The number of cultivation seats in the same space can be improved, thereby increasing the number of seeds cultivated. By installing pulleys on the transmission belt, the pulleys are located at both ends of the transmission belt, and the transmission belt can be stretched. A servo motor is installed on the pulley, and the servo motor can drive the transmission belt to rotate. When the connecting seat moves, the transmission belt can drive the connecting seat to move in the inclined frame, and the cultivation seat can change its position, so as to facilitate the observation of the seeds in the cultivation seat. The first water tank and the second water tank are installed on the inclined frame. The first water tank and the second water tank are respectively provided with a leak and an atomizing head. The first water tank can be directly sprayed for irrigation, and the atomizing head of the second water tank can spray atomized water. Different irrigation states can be selected according to the growth state of the seeds, so that the seeds can be directly irrigated. After the seeds grow, the leaves can also be sprayed. Through the setting, not only the number of seeds cultivated can be increased, but also irrigation can be carried out according to the growth of the seeds, thereby improving the survival rate of the seeds.

[0017] When the vertical rod is pushed, the vertical rod can move outward, and the guide wheel will move into the inner groove, so as not to block the connecting seat, and the connecting seat can move normally. When the vertical rod is pushed, the vertical rod will move outward of the oblique frame, and the vertical rod can drive the support rod to move, and the support rod can push the blocking rod, which can move in the connecting pipe of the water pipe. When the vertical rod is pushed from the outside, the blocking rod at the first water tank position will move toward the water tank. When the pipe position is movable, the opening on the blocking rod can be connected to the water pipe, the opening of the blocking rod of the second water tank will be away from the water pipe, and the first water tank can flow out a columnar water flow, so as to directly irrigate the cultivation seat. According to different needs, when the connecting seat is away from the vertical rod, the vertical rod will be pushed by the reset spring and reset. When the vertical rod is reset, it will pull the support rod, and the blocking rod can be reset. The opening of the blocking rod at the first water tank position will be away from the water pipe, and the opening of the blocking rod at the second water tank position can be moved to the water pipe position. When the water flows into the second water tank, the first water tank will not spray water outward, and the atomizing head can spray out atomized water, so as to spray the leaf surface of the seeds. After watering the grown seeds, the leaf surface will not be damaged, thereby ensuring the safety of the seeds. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 The overall structure of the present invention is shown in FIG. Figure 1 .

[0019] Figure 2 The overall structure of the present invention is shown in FIG. Figure 2 .

[0020] Figure 3 The overall structure of the present invention is shown in FIG. Figure 3 .

[0021] Figure 4 Schematic diagram of the connection of the atomizing head in the present invention.

[0022] Figure 5 It is a structural schematic diagram of the opening in the present invention.

[0023] Figure 6 For the present invention Figure 2 Schematic diagram of the enlarged structure of area A in the middle.

[0024] Figure 7 For the present invention Figure 3 Schematic diagram of the enlarged structure of area B in the middle.

[0025] In the figure: 1. bracket; 2. servo motor; 3. inclined frame; 4. fixed plate; 5. culture seat; 6. first water tank; 7. second water tank; 8. water pipe; 9. inner frame; 10. transmission belt; 11. connecting seat; 12. pulley; 13. horizontal plate; 14. vertical rod; 15. guide wheel; 16. inner groove; 17. connecting pipe; 18. blocking rod; 19. support rod; 20. top seat; 21. baffle; 22. return spring; 23. atomizing head; 24. leakage port; 25. through port. DETAILED DESCRIPTION

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 any creative efforts shall fall within the scope of protection of the present invention.

[0027] like Figures 1 to 7As shown, the present invention provides a forestry breeding and cultivation device, including a bracket 1, a first water tank 6, a second water tank 7, a servo motor 2, an atomizing head 23 and a water pipe 8. An inclined frame 3 is welded on the bracket 1, and a servo motor 2 is arranged on the inclined frame 3. The output end of the servo motor 2 is provided with a pulley 12, and a transmission belt 10 is sleeved on the pulley 12. A connecting seat 11 is provided on the transmission belt 10, and a cultivation seat 5 is welded on the connecting seat 11. The first water tank 6 and the second water tank 7 are provided on the inclined frame 3 in the moving direction of the cultivation seat 5. A leakage port 24 is opened on the first water tank 6, and an atomizing head 23 is provided on the second water tank 7. The inclined frame 3 can be supported by the setting of the bracket 1, and the inclined frame 3 can be arranged obliquely on the bracket 1. A transmission belt 10 is installed in the inclined frame 3, and the transmission belt 10 is connected to a connecting seat 11 around it. The culture seat 5 at the position of the inclined frame 3 will be arranged in two layers, inner and outer, thereby increasing the number of seeds cultured at one time. The first water tank 6 and the second water tank 7 are installed on the inclined frame 3. The first water tank 6 can spray columnar water flow, and the second water tank 7 can spray atomized water. Different irrigation methods are selected according to the growth status of the seeds to avoid seed injury, thereby improving the survival rate of the seeds.

[0028] A fixed plate 4 is welded to the outside of the inclined frame 3. The fixed plate 4 is arranged along the length of the inclined frame 3 and is arranged in a straight line. The fixed plate 4 is fixedly connected to the servo motor 2. The pulley 12 on the servo motor 2 is located on the inner side of the fixed plate 4. The other end of the fixed plate 4 on the same side is connected to a pulley 12 of the same structure. The setting of the fixed plate 4 can achieve the fixation of the inner frame 9, the servo motor 2 and the pulley 12, thereby supporting the transmission belt 10, which can rotate. During the rotation, the position of the culture seat 5 can be adjusted, thereby facilitating observation.

[0029] A transverse plate 13 is welded to the fixed plate 4 of the oblique frame 3. The transverse plate 13 is rectangular and located in the middle of the fixed plate 4. The transverse plate 13 and the fixed plate 4 form an L-shaped arrangement. The transverse plate 13 is located inside the oblique frame 3, with a certain gap between the transverse plate 13 and the oblique frame 3. The transmission belt 10 is located in the space between the transverse plate 13 and the oblique frame 3. The arrangement of the transverse plate 13 fixes the inner frame 9, creates a gap between the inner frame 9 and the oblique frame 3, and facilitates the installation of the connecting seat 11. The connecting seat 11 is restrained and will not separate from the oblique frame 3. The arrangement allows the connecting seat 11 to move within the oblique frame 3.

[0030] During implementation, the inclined frame 3 can be fixed by setting the bracket 1, and the inclined frame 3 can be installed on the bracket 1 at an angle. After the inclined frame 3 is set at an angle, the culture seats 5 can be evenly arranged at the position of the inclined frame 3. A transmission belt 10 is installed in the inclined frame 3, and the transmission belt 10 can be evenly connected to the connecting seat 11 of the culture seat 5. The culture seat 5 can be arranged around the transmission belt 10 for a week, thereby increasing the number of culture seats 5. The number of culture seats 5 in the same space can be improved, thereby increasing the number of seeds cultivated. By installing a pulley 12 on the transmission belt 10, the pulley 12 is located at both ends of the transmission belt 10, and the transmission belt 10 can be stretched. A servo motor 2 is installed on the pulley 12, and the servo motor 2 can drive the transmission When the belt 10 rotates, the transmission belt 10 can drive the connecting seat 11 to move in the inclined frame 3, and the culture seat 5 can change its own position, so as to facilitate the observation of the seeds in the culture seat 5. The first water tank 6 and the second water tank 7 are installed on the inclined frame 3. The first water tank 6 and the second water tank 7 are respectively provided with a leak 24 and an atomizing head 23. The first water tank 6 can be directly sprayed for irrigation, and the atomizing head 23 of the second water tank 7 can spray atomized water. Different irrigation states can be selected according to the growth state of the seeds, so that the seeds can be directly irrigated. After the seeds grow, the leaves can also be sprayed. By setting, not only the number of seeds cultivated can be increased, but also irrigation can be carried out according to the growth of the seeds, thereby improving the survival rate of the seeds.

[0031] An inner frame 9 is welded to the horizontal plate 13 inside the oblique frame 3. The inner frame 9 has the same shape as the oblique frame 3 and is located inside the oblique frame 3. There is a space between the inner frame 9 and the oblique frame 3. A connecting seat 11 is slidably connected in the space between the inner frame 9 and the oblique frame 3. The connecting seat 11 is arranged in a circular shape and passes through the oblique frame 3. The setting of the connecting seat 11 can support the culture seat 5. When the connecting seat 11 moves, the culture seat 5 can move, thereby achieving position adjustment.

[0032] An inner groove 16 is provided on the outer wall of the inclined frame 3. A vertical rod 14 is slidably connected to the inner groove 16. The vertical rod 14 passes through the inner groove 16. One end of the vertical rod 14 is located inside the inclined frame 3. A guide wheel 15 is rotatably connected to the vertical rod 14 inside the inclined frame 3. The guide wheel 15 overlaps the connecting seat 11. The other end of the vertical rod 14 is welded to a corresponding top seat 20. The provision of the inner groove 16 can wrap around the vertical rod 14. When the vertical rod 14 is pushed, the guide wheel 15 will move as a whole into the inner groove 16, thereby preventing the connecting seat 11 from being restricted and unable to move along the inclined frame 3, thereby ensuring the normal movement of the connecting seat 11.

[0033] Baffles 21 are welded to the top seat 20 and are located on either side of the top seat 20. The baffles 21 and the top seat 20 are arranged in a cross shape. The upper end of the top seat 20 is rotatably connected to the support rod 19. The baffles 21 restrict the return spring 22 so that the return spring 22 will not separate from the top seat 20. The connection between the top seat 20 and the vertical rod 14 can drive the support rod 19, which in turn drives the blocking rod 18, thereby realizing the movement of the blocking rod 18.

[0034] A return spring 22 is sleeved on the top seat 20. The return spring 22 is located on the top seat 20 below the baffle 21. One end of the return spring 22 is hooked on the baffle 21, and the other end of the return spring 22 is hooked outside the inner groove 16. The return spring 22 can drive the vertical rod 14 in the opposite direction, thereby ensuring the vertical rod 14 is reset, so that the vertical rod 14 can be extended into the interior of the diagonal frame 3 again next time.

[0035] The other end of the support rod 19 is rotatably connected to a blocking rod 18, which is cylindrical in shape. By blocking the blocking rod 18, the connecting pipe 17 can be blocked, thereby ensuring the restriction of the water pipe 8.

[0036] The blocking rod 18 is inserted in the connecting pipe 17, and the connecting pipe 17 is welded on the water pipe 8. The flow of the water body can be realized by the water pipe 8, thereby ensuring that the first water tank 6 and the second water tank 7 have the injection of the water body.

[0037] A through hole 25 is formed on the blocking rod 18 in the connecting pipe 17 between the first water tank 6 and the second water tank 7. The through holes 25 are located at different positions on the blocking rods 18 of the first water tank 6 and the second water tank 7. The through hole 25 allows water to circulate. When the through hole 25 is away from the water pipe 8, the water is blocked, thereby achieving batch water discharge from the first water tank 6 and the second water tank 7.

[0038] When the vertical rod 14 is pushed upwards, the vertical rod 14 can move outwards, and the guide wheel 15 will move into the inner groove 16, thereby not blocking the connecting seat 11, and the connecting seat 11 can move normally. When the vertical rod 14 is pushed upwards, the vertical rod 14 will move outwards of the oblique frame 3, and the vertical rod 14 can drive the support rod 19 to move, and the support rod 19 can push the blocking rod 18, and the blocking rod 18 can move in the connecting pipe 17 of the water pipe 8. When the vertical rod 14 is pushed upwards, the position of the first water tank 6 is The blocking rod 18 will move toward the position of the water pipe 8, and the opening 25 on the blocking rod 18 will be able to communicate with the water pipe 8. The opening 25 of the blocking rod 18 of the second water tank 7 will be away from the water pipe 8, and the first water tank 6 will be able to flow out a columnar water flow, thereby directly irrigating the cultivation seat 5. According to different needs, when the connecting seat 11 is away from the vertical rod 14, the vertical rod 14 will be pushed by the reset spring 22 and reset. When the vertical rod 14 is reset, it will pull the support rod 19, and the blocking rod 18 will be able to reset. The opening 25 of the blocking rod 18 at the position of the first water tank 6 will be away from the water pipe 8, and the opening 25 of the blocking rod 18 at the position of the second water tank 7 will be able to move to the position of the water pipe 8. When the water flows into the second water tank 7, the first water tank 6 will not spray water outward, and the atomizing head 23 will be able to spray atomized water, thereby spraying the leaf surface of the seeds. After watering the grown seeds, the leaf surface will not be damaged, thereby ensuring the safety of the seeds.

[0039] The working principle of the present invention is as follows: the inclined frame 3 can be fixed by setting the bracket 1, and the inclined frame 3 can be installed on the bracket 1 at an angle. After the inclined frame 3 is set at an angle, the culture seats 5 can be evenly arranged at the position of the inclined frame 3. A transmission belt 10 is installed in the inclined frame 3, and the transmission belt 10 can be evenly connected to the connecting seat 11 of the culture seat 5. The culture seat 5 can be arranged around the transmission belt 10 for a week, thereby increasing the number of culture seats 5. The number of culture seats 5 in the same space can be improved, thereby increasing the number of seeds cultivated. By installing a pulley 12 on the transmission belt 10, the pulley 12 is located at both ends of the transmission belt 10, and the transmission belt 10 can be stretched. A servo motor 2 is installed on the pulley 12, and the servo motor 2 can drive the transmission belt 10 to rotate. , the transmission belt 10 can drive the connecting seat 11 to move in the inclined frame 3, and the culture seat 5 can change its own position, so as to facilitate the observation of the seeds in the culture seat 5. The first water tank 6 and the second water tank 7 are installed on the inclined frame 3. The first water tank 6 and the second water tank 7 are respectively provided with a leak 24 and an atomizing head 23. The first water tank 6 can be directly sprayed for irrigation, and the atomizing head 23 of the second water tank 7 can spray atomized water. Different irrigation states can be selected according to the growth state of the seeds, so that the seeds can be directly irrigated. After the seeds grow, the leaves can also be sprayed on the leaves. By setting it up, not only the number of seeds cultivated can be increased, but also the seeds can be irrigated according to their growth, thereby improving the survival rate of the seeds. By installing an inner groove 16 on the inclined frame 3, the inner groove 16 can be installed in the vertical rod 14, the vertical rod 14 can be active at the position of the inner groove 16, the vertical rod 14 can penetrate the inner groove 16 when the vertical rod 14 The lower end of the vertical rod 14 can be extended into the inclined frame 3, the vertical rod 14 is located in the moving direction of the connecting seat 11, and the guide wheel 15 is installed on the end of the vertical rod 14 inside the inclined frame 3. When the connecting seat 11 moves toward the position of the vertical rod 14, the vertical rod 14 will be pushed, and the vertical rod 14 can move outward, and the guide wheel 15 will move into the inner groove 16, thereby not blocking the connecting seat 11, and the connecting seat 11 can move normally. When the vertical rod 14 is pushed, the vertical rod 14 will move toward the outside of the inclined frame 3, and the vertical rod 14 can drive the support rod 19 to move, and the support rod 19 can push the blocking rod 18, and the blocking rod 18 can move in the connecting pipe 17 of the water pipe 8. When the vertical rod 14 is pushed from the outside, the blocking rod 18 at the position of the first water tank 6 will move toward the position of the water pipe 8, and the through-hole 25 on the blocking rod 18 will be able to communicate with the water pipe 8, and the through-hole 25 of the blocking rod 18 of the second water tank 7 will be away from the water pipe 8, and the first water tank 6 will be able to flow out a columnar water flow, thereby directly irrigating the cultivation seat 5. According to different needs, when the connecting seat 11 is away from the vertical rod 14, the vertical rod 14 will be pushed by the reset spring 22 and reset. When the vertical rod 14 is reset, it will pull the support rod 19, and the blocking rod 18 will be able to reset. The through-hole 25 of the blocking rod 18 at the position of the first water tank 6 will be away from the water pipe 8, and the through-hole 25 of the blocking rod 18 at the position of the second water tank 7 can be moved to the position of the water pipe 8. When the water flows into the second water tank 7, the first water tank 6 will not spray water outward.The atomizing head 23 can spray atomized water to spray the leaves of the seeds. After watering the grown seeds, the leaves will not be damaged, thus ensuring the safety of the seeds.

[0040] The above describes the basic principles, main features, and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-described embodiments. The above-described embodiments and the specification merely illustrate the principles of the present application. Various changes and improvements may be made to the present application without departing from the spirit and scope of the present application. These changes and improvements fall within the scope of the present application for which protection is sought. The scope of protection claimed by the present application is defined by the appended claims and their equivalents.

Claims

1. A forestry breeding and cultivation device, comprising a bracket (1), a first water tank (6), a second water tank (7), a servo motor (2), an atomizing head (23) and a water pipe (8), characterized in that: An inclined frame (3) is welded to the bracket (1), a servo motor (2) is arranged on the inclined frame (3), a pulley (12) is provided at the output end of the servo motor (2), a transmission belt (10) is sleeved on the pulley (12), a connecting seat (11) is provided on the transmission belt (10), a culture seat (5) is welded on the connecting seat (11), a first water tank (6) and a second water tank (7) are provided on the inclined frame (3) in the moving direction of the culture seat (5), a leakage port (24) is opened on the first water tank (6), and an atomizing head (23) is provided on the second water tank (7).

2. A forestry breeding and cultivation device according to claim 1, characterized in that: A fixed plate (4) is welded to the outside of the inclined frame (3), the fixed plate (4) is arranged along the length of the inclined frame (3), and the fixed plate (4) is arranged in a straight line as a whole. A servo motor (2) is fixedly connected to the fixed plate (4), and a pulley (12) on the servo motor (2) is located on the inner side of the fixed plate (4), and a pulley (12) with the same structure is connected to the other end of the fixed plate (4) on the same side.

3. A forestry breeding and cultivation device according to claim 2, characterized in that: A transverse plate (13) is welded to the fixed plate (4) of the inclined frame (3), the transverse plate (13) is arranged in a rectangular shape, the transverse plate (13) is located in the middle of the fixed plate (4), the transverse plate (13) and the fixed plate (4) are arranged in an L-shape as a whole, the transverse plate (13) is located inside the inclined frame (3), there is a certain gap between the transverse plate (13) and the inclined frame (3), and the transmission belt (10) is located in the space between the transverse plate (13) and the inclined frame (3).

4. A forestry breeding and cultivation device according to claim 3, characterized in that: An inner frame (9) is welded to the transverse plate (13) inside the inclined frame (3), and the inner frame (9) has the same shape as the inclined frame (3). The inner frame (9) is located inside the inclined frame (3), and there is a space between the inner frame (9) and the inclined frame (3). A connecting seat (11) is slidably connected in the space between the inner frame (9) and the inclined frame (3), and the connecting seat (11) is arranged in a circular shape as a whole, and the connecting seat (11) runs through the inclined frame (3).

5. The forestry breeding and cultivation device according to claim 4, characterized in that: An inner groove (16) is provided on the outer wall of the inclined frame (3), and a vertical rod (14) is slidably connected to the inner groove (16). The vertical rod (14) is arranged to pass through the inner groove (16). One end of the vertical rod (14) is located in the inclined frame (3). A guide wheel (15) is rotatably connected to the vertical rod (14) in the inclined frame (3). The guide wheel (15) overlaps the connecting seat (11), and the other end of the vertical rod (14) is welded to a corresponding top seat (20).

6. The forestry breeding and cultivation device according to claim 5, characterized in that: A baffle (21) is welded to the top seat (20), and the baffles (21) are respectively located on both sides of the top seat (20). The baffles (21) and the top seat (20) are arranged in a cross shape as a whole, and the upper end of the top seat (20) is rotatably connected to a support rod (19).

7. The forestry breeding and cultivation device according to claim 6, characterized in that: A return spring (22) is sleeved on the top seat (20). The return spring (22) is located on the top seat (20) below the baffle (21). One end of the return spring (22) is hooked on the baffle (21), and the other end of the return spring (22) is hooked outside the inner groove (16).

8. The forestry breeding and cultivation device according to claim 7, characterized in that: The other end of the support rod (19) is rotatably connected to a blocking rod (18), and the blocking rod (18) is arranged in a cylindrical shape as a whole.

9. The forestry breeding and cultivation device according to claim 8, characterized in that: The blocking rod (18) is inserted into the connecting pipe (17), and the connecting pipe (17) is welded to the water pipe (8).

10. The forestry breeding and cultivation device according to claim 9, characterized in that: A through opening (25) is provided on the blocking rod (18) in the connecting pipe (17) of the first water tank (6) and the second water tank (7), and the positions of the through opening (25) on the blocking rod (18) of the first water tank (6) and the second water tank (7) are different.

Citation Information

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