Artemisia ordosica culture device for experiment for inhibiting flowering of Artemisia ordosica
Through the adjustable environmental simulation component and the Feng Shui energy supply component, natural light and water showering are simulated, combined with rotatable position adjustment and support distance adjustment components, the problems of light occlusion and data in the Artemisia santhemum culture device are solved, achieving a more natural growth environment and higher experimental accuracy.
Patent Information
- Application Number
- CN202510766538.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing culture devices cannot provide natural light, water-sinking and windy environments, resulting in inaccurate experimental data on flowering inhibition of Artemisia sarcophagus, and the light is easily blocked, and the determination of influencing factors is inaccurate.
The adjustable environmental simulation component, the Feng Shui energy supply component and the rotatable positioning component are adopted to simulate natural light and water showering, and the lighting distance is adjusted by supporting the distance adjustment component to prevent occlusion.
It provides a more natural growth environment, improves the accuracy of experimental data and the survival rate of Artemisia sarcoidae, and ensures sufficient light.
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Figure CN120266697A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of experiments for inhibiting the flowering of Artemisia ordosica, and specifically relates to a cultivation device for Artemisia ordosica used in experiments for inhibiting the flowering of Artemisia ordosica. Background Art
[0002] Artemisia ordosica is a plant of the genus Artemisia in the Compositae family. It can grow on fixed dunes and semi-fixed dunes. Artemisia ordosica has certain medicinal values. The whole herb, roots, flower buds and seeds of Artemisia ordosica can all be used as medicine. At the same time, the pollen of Artemisia ordosica floating in the air can cause allergies in humans, which is a common type of pollen allergy. In order to study the method for inhibiting the flowering of Artemisia ordosica, a cultivation device for Artemisia ordosica used in experiments for inhibiting the flowering of Artemisia ordosica is required.
[0003] The patent application with the publication number CN206061770U discloses a sapling cultivation device, including a cultivation box and several cultivation racks; a spray pipe is arranged above each cultivation rack, and a plurality of spray heads are installed on the spray pipe. Each spray pipe is respectively communicated with a liquid inlet pipe and a water inlet pipe. A first switch valve and a second switch valve are respectively arranged at both ends of each spray pipe. The liquid inlet pipe is connected to a nutrient box, and the water inlet pipe is communicated with a water storage tank. Water pumps are arranged on both the liquid inlet pipe and the water inlet pipe. A plurality of cultivation grooves are dug on each cultivation rack, and a spray head corresponds to each cultivation groove above. A cavity is arranged inside each cultivation rack. A rock filtering layer, a water permeable plate and a collecting hopper are sequentially arranged below the cultivation box. The bottom of the collecting hopper is respectively connected with a liquid return pipe and a water return pipe. Butterfly valves are installed on both the liquid return pipe and the water return pipe. A timer and a controller are arranged at the top of the cultivation box, and the controller is electrically connected with several heaters. To solve the problems of low intelligent level, low survival rate and a large amount of waste of water and nutrient solution in the existing cultivation device during the cultivation process.
[0004] When the above-mentioned comparative document is used, it can only water and supply nutrient solution to the cultivated seedlings through the controller and the timer, and cannot provide more natural environmental factors such as light, watering and wind in the cultivation device, and cannot provide a more natural growth environment for the seedlings cultivated in the experiment. During the process of cultivating and observing Artemisia ordosica, there is a problem that the data obtained for inhibiting the flowering of Artemisia ordosica is not accurate enough, and it is impossible to more accurately determine the influencing factors. At the same time, it is impossible to adjust the distance from the light according to the growth height of Artemisia ordosica, and in the experimental environment, there is a problem that the light is easily blocked. Summary of the Invention
[0005] The object of the present invention is to provide a cultivating device for Artemisia ordosica for inhibiting flowering, which solves the problem that the comparative document cannot provide a more natural growth environment for the seedlings cultivated in the experiment. During the cultivation and observation of Artemisia ordosica, it is easy to produce inaccurate data on inhibiting the flowering of Artemisia ordosica, and it is impossible to more accurately determine the influencing factors. At the same time, it is impossible to adjust the distance between the height of Artemisia ordosica growth and the light, and in the experimental environment, it is easy to produce the problem of light being blocked.
[0006] The present invention solves the above technical problems through the following technical solutions. The present invention includes.
[0007] Preferably, a culture tray, an adjustable environment simulation component and a feng shui energy supply component are provided. The adjustable environment simulation component is installed on the side wall of the culture tray. The adjustable environment simulation component includes a bracket. The bracket is installed on one side of the culture tray. A fluorescent lamp and a feng shui spray plate are fixedly installed on the side wall of the bracket close to the culture tray. A middle transition ring is fixedly installed on the side of the bracket away from the feng shui spray plate. A connecting pipe is fixedly installed between the middle transition ring and the feng shui spray plate. A servo motor I is fixedly installed inside the middle transition ring. An adjusting disc that closely adheres to the inner side wall of the middle transition ring is fixedly installed on the output shaft of the servo motor I. Air inlet holes and water inlet holes are opened on the side wall of the middle transition ring. Communication holes corresponding to the air inlet holes and the water inlet holes are opened on the adjusting disc. The feng shui energy supply component includes a telescopic hose I and a telescopic hose II. The telescopic hose I is fixedly connected to the middle transition ring and communicated with the air inlet hole. An air pump is fixedly installed on the telescopic hose I. The telescopic hose II is fixedly connected to the middle transition ring and communicated with the water inlet hole. A water tank is sleeved below the telescopic hose II. A water pump fixedly connected to the telescopic hose II is installed inside the water tank.
[0008] Preferably, a rotatable position adjusting component is installed above the culture tray. The rotatable position adjusting component is used to drive the bracket to move.
[0009] Preferably, the rotatable position adjusting component includes a slide rail, a gear, a servo motor II and a servo motor III. The slide rail is penetrated inside the bracket. The gear and the servo motor II are both installed inside the slide rail. A tooth groove is opened inside the slide rail. The gear is fixedly connected to the output shaft of the servo motor II and meshes with the tooth groove. The servo motor II is fixedly connected to the bracket. One end of the slide rail is fixedly connected to the output shaft of the servo motor III.
[0010] Preferably, a support adjustable distance component is installed on the culture tray. The support adjustable distance component is used to drive the culture tray to lift.
[0011] Preferably, the support and adjustable distance component includes a cross frame, which is installed below the culture tray. A sleeve is sleeved below the cross frame. A pull rod is welded on the side wall of the cross frame, and a linear cylinder one is installed on the pull rod.
[0012] Preferably, a culture box is installed outside the culture tray. The first telescopic hose and the second telescopic hose penetrate through the side wall of the culture box. The air pump is fixedly installed on the outer side wall of the culture box. The slide rail is rotatably connected to the inner wall of the culture box. The servo motor three is fixedly installed on the outer side wall of the culture box. The pull rod penetrates through the side wall of the culture box, and the fixed end of the linear cylinder one is fixedly connected to the outer side wall of the culture box.
[0013] Preferably, an inclined water drainage plate is fixedly installed inside the culture box, and the inclined water drainage plate is fixedly installed below the sleeve.
[0014] Preferably, an air exchange hole is opened on the side wall of the culture box. A cover plate is rotatably installed on the side wall of the culture box. The cover plate is located on one side of the air exchange hole. A linear cylinder two is rotatably connected to the cover plate, and the fixed end of the linear cylinder two is hinged to the outer side wall of the culture box.
[0015] Preferably, a heating pipe is installed below the interior of the culture box.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. By the combined use of the adjustable environment simulation component, the feng shui energy supply component and the rotatable position adjustment component, it can achieve the effect of providing a more natural light, watering and wind environment factors inside the culture device, and can provide a more natural growth environment for the seedlings growing in the experiment. During the cultivation, observation and recording of Artemisia ordosica, it is beneficial to summarize more accurate factors for inhibiting the flowering of Artemisia ordosica and improve the accuracy of experimental data.
[0017] 2. By the use of the support and adjustable distance component, it can achieve the effect of adjusting the distance from the light according to the growth height of Artemisia ordosica, prevent the light in the experimental environment from being blocked, and is beneficial for different parts of Artemisia ordosica to obtain sufficient light, which is beneficial for the survival and growth of Artemisia ordosica. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is the front view structural schematic diagram of the present invention; Figure 2 It is the front view structural schematic diagram of the adjustable environment simulation component and the feng shui energy supply component of the present invention; Figure 3 It is the top view structural schematic diagram of the rotatable position adjustment component of the present invention; Figure 4 Rear view structural schematic diagram of the support adjustable distance component of the present invention; Figure 5 Left view structural schematic diagram of the present invention; Figure 6 Cross-sectional structural schematic diagram of the present invention.
[0019] The numbers in the figure represent: 1. Culture tray; 2. Adjustable environment simulation component; 201. Bracket; 202. Fluorescent lamp; 203. Feng shui spray plate; 204. Middle transition ring; 205. Connecting pipe; 206. Servo motor I; 207. Adjusting disc; 3. Feng shui energy supply component; 301. Retractable hose I; 302. Retractable hose II; 303. Air pump; 304. Water tank; 305. Water pump; 4. Air inlet hole; 5. Water inlet hole; 6. Communication hole; 7. Rotatable position adjustment component; 701. Slide rail; 702. Gear; 703. Servo motor II; 704. Servo motor III; 8. Tooth groove; 9. Support adjustable distance component; 901. Cross frame; 902. Sleeve; 903. Pull rod; 904. Linear cylinder I; 10. Culture box; 11. Inclined water discharge plate; 12. Ventilation hole; 13. Cover plate; 14. Linear cylinder II; 15. Heating pipe. Specific implementation mode
[0020] The above and other technical features and advantages of the present invention will be described in more detail below with reference to the accompanying drawings.
[0021] Embodiment 1 The present invention provides a technical solution: a black sagebrush cultivation device for inhibiting the flowering experiment of black sagebrush, as Figure 1-6As shown in the figure, it includes a culture tray 1, an adjustable environmental simulation component 2 and a feng shui energy supply component 3. The adjustable environmental simulation component 2 is installed on the side wall of the culture tray 1. The adjustable environmental simulation component 2 includes a bracket 201 which can support a fluorescent lamp 202 and a feng shui spray plate 203. The bracket 201 is installed on one side of the culture tray 1. The fluorescent lamp 202 and the feng shui spray plate 203 are fixedly installed on the side wall of the bracket 201 close to the culture tray 1. The fluorescent lamp 202 can provide light for Artemisia ordosica, and the feng shui spray plate 203 can provide water source for Artemisia ordosica. A middle transition ring 204 is fixedly installed on the side of the bracket 201 away from the feng shui spray plate 203. The middle transition ring 204 can convey wind and water flow to the feng shui spray plate 203. A connecting pipe 205 is fixedly installed between the middle transition ring 204 and the feng shui spray plate 203. The connecting pipe 205 can connect the feng shui spray plate 203 and the middle transition ring 204. A servo motor 206 is fixedly installed inside the middle transition ring 204. The servo motor 206 can drive an adjustment disk 207 to rotate. The adjustment disk 207 is fixedly installed on the output shaft of the servo motor 206 and closely adheres to the inner side wall of the middle transition ring 204. The adjustment disk 207 can drive a communication hole 6 to rotate. An air inlet hole 4 and a water inlet hole 5 are opened on the side wall of the middle transition ring 204. The air inlet hole 4 can facilitate the conveyance of wind into the middle transition ring 204 through the communication hole 6, and the water inlet hole 5 can convey water flow into the middle transition ring 204 through the communication hole 6. Communication holes 6 corresponding to the air inlet hole 4 and the water inlet hole 5 are opened on the adjustment disk 207. The communication holes 6 can drive the air inlet hole 4 or the water inlet hole 5 to communicate with the middle transition ring 204. A rotatable position adjustment component 7 is installed above the culture tray 1. The rotatable position adjustment component 7 is used to drive the bracket 201 to move. The rotatable position adjustment component 7 includes a slide rail 701, a gear 702, a servo motor 703 and a servo motor 704. The slide rail 701 can limit the position of the servo motor 703. The gear 702 can mesh with a tooth groove 8. The servo motor 703 can drive the gear 702 to rotate. The servo motor 704 can drive the slide rail 701 to rotate. The slide rail 701 is penetrated inside the bracket 201. The gear 702 and the servo motor 703 are both installed inside the slide rail 701. A tooth groove 8 is opened inside the slide rail 701. The gear 702 is fixedly connected to the output shaft of the servo motor 703 and meshes with the tooth groove 8. The servo motor 703 is fixedly connected to the bracket 201. One end of the slide rail 701 is fixedly connected to the output shaft of the servo motor 704. The feng shui energy supply component 3 includes a telescopic hose 301 and a telescopic hose 302. The telescopic hose 301 and the telescopic hose 302 can respectively convey wind and water flow into the middle transition ring 204 through the air inlet hole 4 and the water inlet hole 5. The telescopic hose 301 is fixedly connected to the middle transition ring 204 and communicates with the air inlet hole 4. An air pump 303 is fixedly installed on the telescopic hose 301. The air pump 303 can convey wind to the telescopic hose 301.The telescopic hose II 302 is fixedly connected to the middle transition ring 204 and is connected to the water inlet hole 5. A water tank 304 is sleeved below the telescopic hose II 302. The water tank 304 can store water flow. A water pump 305 fixedly connected to the telescopic hose II 302 is installed in the water tank 304. The water pump 305 can supply water flow to the telescopic hose II 302.,
[0022] According to Figure 5 As shown, by starting the servo motor III 704 to drive the slide rail 701 to rotate backward, the slide rail 701 presents an inclined state. The rotation of the slide rail 701 can drive the bracket 201 to rotate, and the bracket 201 can drive the fluorescent lamp 202 to rotate. Since the bracket 201 can limit the servo motor II 703, it can prevent the external rotation of the servo motor II 703 itself. By starting the servo motor II 703 to drive the gear 702 to rotate, after the gear 702 meshes with the tooth groove 8, it is reversely extruded. The gear 702 can slide in the slide rail 701 along the tooth groove 8. The gear 702 can drive the servo motor II 703 to slide in the slide rail 701. The servo motor II 703 can drive the bracket 201 to slide along the outside of the slide rail 701. The bracket 201 can drive the fluorescent lamp 202 to move along the slide rail 701. The fluorescent lamp 202 can rise from the left to the upper right rear, and after reaching the highest point of the slide rail 701, it can descend to a position close to the front below the right side, so as to simulate the rising and setting of the sun.
[0023] When the feng shui spray plate 203 is located on the left side of the culture tray 1, at this time, start the servo motor I 206 to drive the adjustment disk 207 to rotate. The adjustment disk 207 drives the communication hole 6 to rotate. The communication hole 6 is aligned with the air inlet hole 4. At this time, the water inlet hole 5 is sealed by the adjustment disk 207. By starting the air pump 303 to supply air into the telescopic hose I 301, the air in the telescopic hose I 301 enters the middle transition ring 204 through the air inlet hole 4 and the communication hole 6. The air inside the middle transition ring 204 enters the feng shui spray plate 203 through the connecting pipe 205. The air inside the feng shui spray plate 203 is sprayed above the culture tray 1, which can supply air to the Artemisia ordosica cultured in the culture tray 1. At the same time, the cover plate 13 is opened, which can make the air exchange hole 12 opened. At this time, it is convenient for the air to circulate in the culture box 10.
[0024] By starting the servo motor three 704 to drive the slide rail 701 to rotate, the slide rail 701 is reset to a vertical state. By starting the servo motor one 206 to drive the adjustment disk 207 to rotate, the adjustment disk 207 drives the communication hole 6 to rotate, so that the communication hole 6 is aligned with the water inlet hole 5. At this time, the air inlet hole 4 is sealed by the adjustment disk 207. By starting the water pump 305 to drive the water flow inside the water tank 304 to enter the second telescopic hose 302, the water flow inside the second telescopic hose 302 enters the middle transition ring 204 through the water inlet hole 5 and the communication hole 6. The water flow inside the middle transition ring 204 enters the air and water spray plate 203 through the connecting pipe 205, and the water flow inside the air and water spray plate 203 is sprayed out. According to the above steps of starting the servo motor two 703 to drive the support 201 to move, the support 201 can drive the air and water spray plate 203 to move along the slide rail 701, and the water flow sprayed on the air and water spray plate 203 can be sprayed on the Artemisia ordosica on the culture tray 1, so as to water the Artemisia ordosica.
[0025] Embodiment 2 As Figure 4-6 shown, a support and distance adjustment assembly 9 is installed on the culture tray 1. The support and distance adjustment assembly 9 is used to drive the culture tray 1 to lift and lower. The support and distance adjustment assembly 9 includes a cross frame 901. The cross frame 901 can support the culture tray 1. The cross frame 901 is installed below the culture tray 1. A sleeve 902 is sleeved below the cross frame 901. The sleeve 902 can support and limit the bottom of the cross frame 901. When the cross frame 901 lifts and lowers, the sleeve 902 can improve the stability of the cross frame 901 and prevent the cross frame 901 from tilting. A pull rod 903 is welded on the side wall of the cross frame 901. The pull rod 903 can connect the cross frame 901 with the first linear cylinder 904. The first linear cylinder 904 is installed on the pull rod 903. The first linear cylinder 904 can drive the pull rod 903 to lift and lower.
[0026] When the Artemisia ordosica grows taller, by starting the first linear cylinder 904 to drive the pull rod 903 to descend, the pull rod 903 drives the cross frame 901 to descend. The cross frame 901 can slide inside the sleeve 902. The sleeve 902 can stabilize the cross frame 901. The descent of the cross frame 901 can drive the culture tray 1 to descend, and the Artemisia ordosica inside the culture tray 1 can descend, so as to prevent the Artemisia ordosica from blocking the light.
[0027] As Figure 1 and Figure 5-6As shown, a culture box body 10 is installed outside the culture tray 1. A first telescopic hose 301 and a second telescopic hose 302 are arranged through the side wall of the culture box body 10, which can facilitate the connection between the first telescopic hose 301 and the second telescopic hose 302 and the middle transition ring 204, and can support the first telescopic hose 301 and the second telescopic hose 302 at the same time. An air pump 303 is fixedly installed on the outer side wall of the culture box body 10, and the culture box body 10 can fix the air pump 303. A slide rail 701 is rotatably connected to the inner wall of the culture box body 10, and the inner wall of the culture box body 10 can limit the slide rail 701 to facilitate the rotation of the slide rail 701 along the central axis of the connection part inside the culture box body 10. A third servo motor 704 is fixedly installed on the outer side wall of the culture box body 10, and the culture box body 10 can fix the third servo motor 704. A pull rod 903 is arranged through the side wall of the culture box body 10. The fixed end of a first linear cylinder 904 is fixedly connected to the outer side wall of the culture box body 10, and the culture box body 10 can fix the telescopic end of the first linear cylinder 904. At the same time, the culture box body 10 can provide a suitable growth environment for Artemisia ordosica Krasch..
[0028] As Figure 5-6 shown, an inclined water drainage plate 11 is fixedly installed inside the culture box body 10. The inclined water drainage plate 11 can facilitate the outflow of water. When the water flow sprayed by the wind and water spraying plate 203 flows onto the inclined water drainage plate 11 inside the culture box body 10 below the culture tray 1, the inclined water drainage plate 11 is installed obliquely. A water outlet hole is opened on the side wall of the culture box body 10 at the lower end of the inclined water drainage plate 11. The water flow on the inclined water drainage plate 11 can be discharged from the water outlet hole out of the culture box body 10, which can prevent the water flow from accumulating inside the culture box body 10. The inclined water drainage plate 11 is fixedly installed below the sleeve 902.
[0029] As Figure 1 and Figure 5 shown, an air exchange hole 12 is opened on the side wall of the culture box body 10. The air exchange hole 12 can facilitate the air circulation inside the culture box body 10. A cover plate 13 is rotatably installed on the side wall of the culture box body 10. The cover plate 13 can seal the air exchange hole 12. The cover plate 13 is located on one side of the air exchange hole 12. A second linear cylinder 14 is rotatably connected to the cover plate 13. The second linear cylinder 14 can drive the cover plate 13 to open and close. The fixed end of the second linear cylinder 14 is hinged to the outer side wall of the culture box body 10.
[0030] When it is necessary to simulate windy weather inside the culture box 10, start the linear cylinder two 14 to drive the cover plate 13 to rotate upward. The opening of the cover plate 13 can open the air exchange hole 12. The wind and water spraying plate 203 sprays wind into the culture box 10, and the wind can flow out of the culture box 10 from the air exchange hole 12, enabling the air inside the culture box 10 to circulate. After ventilation, start the linear cylinder two 14 to extend and drive the cover plate 13 to rotate downward. The cover plate 13 can cover one side of the air exchange hole 12 to seal the air exchange hole 12.
[0031] As Figure 6 shown, a heating pipe 15 is installed below the interior of the culture box 10. Starting the heating pipe 15 can heat the interior of the culture box 10, providing a warm growth environment for Artemisia ordosica.
[0032] The above are only the preferred embodiments of the present invention, which are illustrative rather than restrictive to the present invention. Those skilled in the art understand that many changes, modifications, and even equivalents can be made within the spirit and scope defined by the claims of the present invention, but all will fall within the protection scope of the present invention.
Claims
1. A cultivation device for Artemisia ordosica used in the experiment of inhibiting the flowering of Artemisia ordosica, characterized in that, It includes a culture tray (1), an adjustable environment simulation component (2) and a feng shui energy supply component (3). The adjustable environment simulation component (2) is installed on the side wall of the culture tray (1). The adjustable environment simulation component (2) includes a bracket (201). The bracket (201) is installed on one side of the culture tray (1). A fluorescent lamp (202) and a feng shui spray plate (203) are fixedly installed on the side wall of the bracket (201) close to the culture tray (1). A middle transition ring (204) is fixedly installed on the side of the bracket (201) away from the feng shui spray plate (203). A connecting pipe (205) is fixedly installed between the middle transition ring (204) and the feng shui spray plate (203). A servo motor one (206) is fixedly installed inside the middle transition ring (204). An adjusting disc (207) that closely adheres to the inner side wall of the middle transition ring (204) is fixedly installed on the output shaft of the servo motor one (206). Air inlet holes (4) and water inlet holes (5) are opened on the side wall of the middle transition ring (204). Communication holes (6) corresponding to the air inlet holes (4) and the water inlet holes (5) are opened on the adjusting disc (207). The feng shui energy supply component (3) includes a telescopic hose one (301) and a telescopic hose two (302). The telescopic hose one (301) is fixedly connected to the middle transition ring (204) and communicated with the air inlet hole (4). An air pump (303) is fixedly installed on the telescopic hose one (301). The telescopic hose two (302) is fixedly connected to the middle transition ring (204) and communicated with the water inlet hole (5). A water tank (304) is sleeved below the telescopic hose two (302). A water pump (305) fixedly connected to the telescopic hose two (302) is installed in the water tank (304).
2. The Artemisia ordosica culture device for inhibiting Artemisia ordosica flowering experiment according to claim 1, wherein, A rotatable position adjustment component (7) is installed above the culture tray (1). The rotatable position adjustment component (7) is used to drive the bracket (201) to move.
3. The Artemisia ordosica cultivation device for inhibiting the flowering of Artemisia ordosica in an experiment according to claim 2, characterized in that, The rotatable position adjustment component (7) includes a slide rail (701), a gear (702), a servo motor two (703) and a servo motor three (704). The slide rail (701) is arranged inside the bracket (201). The gear (702) and the servo motor two (703) are both installed inside the slide rail (701). A tooth groove (8) is opened inside the slide rail (701). The gear (702) is fixedly connected to the output shaft of the servo motor two (703) and meshes with the tooth groove (8). The servo motor two (703) is fixedly connected to the bracket (201). One end of the slide rail (701) is fixedly connected to the output shaft of the servo motor three (704).
4. The Artemisia ordosica culture device for inhibiting the flowering of Artemisia ordosica in an experiment according to claim 3, characterized in that, A support distance adjustment component (9) is installed on the culture tray (1). The support distance adjustment component (9) is used to drive the culture tray (1) to lift.
5. The Artemisia ordosica culture device for inhibiting Artemisia ordosica flowering experiment according to claim 4, characterized in that, The support and adjustable distance component (9) includes a cross frame (901), the cross frame (901) is installed below the culture tray (1), a sleeve (902) is sleeved below the cross frame (901), a pull rod (903) is welded on the side wall of the cross frame (901), and a linear cylinder one (904) is installed on the pull rod (903).
6. The Artemisia ordosica cultivation device for inhibiting the flowering of Artemisia ordosica in an experiment according to claim 5, characterized in that, A culture box body (10) is installed outside the culture tray (1), the telescopic hose one (301) and the telescopic hose two (302) penetrate through the side wall of the culture box body (10), the air pump (303) is fixedly installed on the outer side wall of the culture box body (10), the slide rail (701) is rotatably connected with the inner wall of the culture box body (10), the servo motor three (704) is fixedly installed on the outer side wall of the culture box body (10), the pull rod (903) penetrates through the side wall of the culture box body (10), and the fixed end of the linear cylinder one (904) is fixedly connected with the outer side wall of the culture box body (10).
7. The Artemisia ordosica cultivation device for inhibiting the flowering of Artemisia ordosica in an experiment according to claim 6, characterized in that, An inclined water drainage plate (11) is fixedly installed inside the culture box body (10), and the inclined water drainage plate (11) is fixedly installed below the sleeve (902).
8. The Artemisia ordosica cultivation device for inhibiting the flowering of Artemisia ordosica in the experiment according to claim 7, characterized in that, A ventilation hole (12) is formed in the side wall of the culture box body (10), a cover plate (13) is rotatably installed on the side wall of the culture box body (10), the cover plate (13) is located on one side of the ventilation hole (12), a linear cylinder two (14) is rotatably connected to the cover plate (13), and the fixed end of the linear cylinder two (14) is hinged to the outer side wall of the culture box body (10).
9. The Artemisia ordosica culture device for inhibiting the flowering of Artemisia ordosica in an experiment according to claim 8, characterized in that, A heating pipe (15) is installed below the inside of the culture box body (10).
Citation Information
Patent Citations
Sapling culture apparatus
CN206061770U