Dendrobium nobile planting greenhouse

By designing mobile supports, lifting supports, protective sheds, pneumatic brakes, and solar panels for Dendrobium cultivation greenhouses, the problem of greenhouses being unable to be raised, lowered, or unfolded for adjustment has been solved. This has enabled convenient adjustment of the greenhouses and precise control of environmental factors, thereby improving the growth cycle and quality of Dendrobium.

CN224219024UActive Publication Date: 2026-05-12YINGSHAN ZONGKUN DENDROBIUM TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YINGSHAN ZONGKUN DENDROBIUM TECH DEV CO LTD
Filing Date
2025-06-09
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The existing dendrobium cultivation greenhouses cannot be raised, lowered, or extended to adjust according to different usage scenarios, which affects the maintenance of the plants inside.

Method used

A Dendrobium officinale cultivation greenhouse was designed, comprising a mobile support assembly, a lifting support assembly, a protective shed assembly, a pneumatic braking assembly, and a solar panel assembly. Through the coordinated operation of these components, the greenhouse can be moved, lifted, protected, and its solar energy can be utilized, thereby enhancing the greenhouse's convenience and environmental control capabilities.

Benefits of technology

It enables convenient adjustment of the greenhouse and precise control of environmental factors, improves the growth cycle and accumulation of medicinal components of Dendrobium, and enhances its resistance to extreme weather and pests.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dendrobe planting, and discloses a dendrobe planting greenhouse which comprises a movable support assembly and is characterized in that a lifting support assembly is installed at the top of the movable support assembly, and a protective shed assembly is fixedly installed at the top of the lifting support assembly; a pneumatic brake assembly is fixedly mounted on one side of the protective shed assembly, and a light energy plate assembly is mounted at the top of the pneumatic brake assembly. According to the device, the lifting support assembly is arranged in the device, so that when the device is used, the planting greenhouse can be unfolded from the upper portion through the arranged lifting support assembly, corresponding adjustment work can be carried out according to different use scenes, and the device is more convenient to use.
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Description

Technical Field

[0001] This utility model relates to the technical field of Dendrobium cultivation, specifically to a Dendrobium cultivation greenhouse. Background Technology

[0002] Dendrobium, a rare plant with both medicinal and ornamental value, has stringent requirements for its growth environment, and wild resources are on the verge of depletion due to over-harvesting. Traditional open-field and semi-wild cultivation methods are susceptible to seasonal changes, extreme weather (such as heavy rain, high temperatures, and cold waves), and pest infestations, resulting in significant fluctuations in Dendrobium yield and quality, making large-scale, standardized production difficult. With the ever-increasing market demand for Dendrobium, traditional cultivation methods can no longer meet market supply. While greenhouse cultivation can provide a relatively stable environment for Dendrobium growth to some extent, existing ordinary greenhouses suffer from insufficient precision in temperature and humidity control, poor ventilation and light transmission, imprecise irrigation and fertilization, and low space utilization. These issues make it difficult to fully simulate the native ecological conditions of Dendrobium, such as temperature, humidity, light, and ventilation, severely impacting the growth cycle and accumulation of medicinal components. Therefore, developing a Dendrobium cultivation greenhouse specifically designed for its growth characteristics, capable of precisely controlling environmental factors and optimizing the planting space layout, is crucial for improving Dendrobium yield and quality and promoting the sustainable development of the Dendrobium industry.

[0003] Application number CN202222001393.0 discloses a greenhouse for cultivating Dendrobium officinale, including a greenhouse body. Two crossbeams are welded to the top of the greenhouse body. A fixing plate is fixedly connected to the middle of the bottom of the two crossbeams. A fixing column is fixedly connected to one side of the fixing plate. A collar is fitted around the outside of the fixing column. A straight rod is fixedly connected to the bottom of the collar. A flow-diverting hollow rod is fixedly connected to the bottom of the straight rod. Multiple nozzles are fixedly connected to the bottom of the flow-diverting hollow rod. The middle of the straight rod is movably connected to... With a driving mechanism, the Dendrobium officinale cultivation greenhouse provided by this utility model pushes the water resources sprayed from the nozzles at the bottom of the split hollow rod from the middle of the straight rod, so that the water resources will swing and irrigate, so as not to cause impact and damage to only a certain irrigation position, and can make all plants receive water resources in a balanced way, ensuring that the overall Dendrobium officinale growth is consistent. However, there is a shortcoming: when the device is used, it is not yet able to adjust the greenhouse to be raised or lowered or unfolded for different usage scenarios, so as to facilitate the maintenance of the plants inside. Utility Model Content

[0004] The purpose of this invention is to provide a Dendrobium cultivation greenhouse, which solves the problem that the device is not yet able to adjust the greenhouse height or opening for different usage scenarios to facilitate the maintenance of the plants inside.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model is a Dendrobium cultivation greenhouse, including a movable support assembly, a lifting support assembly installed on the top of the movable support assembly, a protective shed assembly fixedly installed on the top of the lifting support assembly, a pneumatic braking assembly fixedly installed on one side of the protective shed assembly, and a solar panel assembly installed on the top of the pneumatic braking assembly.

[0007] The lifting support assembly includes threaded rods, with the threaded rods on both sides fixedly installed between transmission wheel one and transmission wheel two, and a threaded moving plate installed at the middle limit of the threaded rods, with a lifting scissor hinge fixedly installed on the top of the threaded moving plate.

[0008] Furthermore, the movable support assembly includes a support base, with movable wheels installed diagonally at the bottom of the support base, and a brake motor fixedly installed on one side of the support base via a bracket. A transmission device is installed at the end of the brake motor, and a transmission wheel is installed in the middle of the end of the transmission device. The transmission wheel is limited and installed on one side of the support base by a rotating rod, and a transmission chain is limited and installed on the outer side of the transmission wheel.

[0009] Furthermore, a second transmission wheel is installed on the inner side of the other end of the transmission chain, and the second transmission wheel is installed on the other side of the support base frame by a rotating rod.

[0010] Furthermore, the protective shed assembly includes a lifting enclosure panel. The bottom two ends of the lifting enclosure panel are fixedly installed on the top of the lifting scissor hinge, and insect-repelling lamps are fixedly installed on the outer perimeter of the lifting enclosure panel. At the same time, a locking fastener is fixedly installed on the bottom perimeter of the lifting enclosure panel, and a protective cover is fixedly installed on the top of the lifting enclosure panel. The locking fastener is correspondingly limited in the locking groove, and the locking groove is opened on the outer perimeter of the supporting base frame.

[0011] Furthermore, the pneumatic braking assembly includes a pneumatic telescopic rod, the opening of which is hinged to one side of the outer wall of the lifting enclosure, and the other side of which is hinged to one side of a rocker arm. The bottom of the rocker arm is rotatably mounted on the bottom end of one side of the lifting enclosure via a limit bearing, and a movable rod is fixedly mounted on the top of the rocker arm.

[0012] Furthermore, the solar panel assembly includes a pneumatic pump, which is fixedly mounted on the top of the movable rod by a bracket, and a movable plate is installed at the end of the pneumatic pump. The two sides of the movable plate are slidably mounted on the limiting slide rod, and a connecting hinge rod is limited and connected to the middle of the top of the movable plate. A solar panel is installed at the end of the connecting hinge rod, and the two bottom ends of the solar panel are connected to the outside of the movable rod by the limiting bracket.

[0013] This utility model has the following beneficial effects:

[0014] (1) The Dendrobium planting greenhouse of this utility model has a lifting support component installed in the device, which allows the planting greenhouse to be opened from the top when using the device. This allows for corresponding adjustments to be made for different usage scenarios, making the device more convenient.

[0015] (2) The Dendrobium officinale planting greenhouse of this utility model is equipped with a pneumatic braking component and a light energy plate component. When using this device, the pneumatic braking component can be used to adjust the position of the light energy plate component in different directions. The light energy plate component can store a certain amount of energy, which can then be converted into energy for the insect repellent lamp.

[0016] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of the overall structure of a Dendrobium officinale cultivation greenhouse according to this utility model;

[0019] Figure 2 This is a schematic diagram of the structure of a mobile support assembly and a lifting support assembly for a Dendrobium officinale cultivation greenhouse according to this utility model;

[0020] Figure 3 This is a schematic diagram of the structure of a solar panel assembly for a Dendrobium officinale cultivation greenhouse according to this utility model;

[0021] Figure 4 This is a schematic diagram of the pneumatic braking component for a Dendrobium officinale cultivation greenhouse according to the present invention;

[0022] The attached diagram lists the components represented by each number as follows:

[0023] In the diagram: 1. Mobile support assembly; 2. Lifting support assembly; 3. Protective canopy assembly; 4. Pneumatic braking assembly; 5. Solar panel assembly; 101. Support base frame; 102. Moving wheels; 103. Brake motor; 104. Transmission device; 105. Transmission wheel one; 106. Transmission chain; 107. Transmission wheel two; 201. Threaded rod; 202. Threaded moving plate; 203. Lifting scissor hinge; 301. Lifting enclosure; 302. Insect repellent lamp; 303. Protective cover; 304. Locking fastener; 305. Locking groove; 401. Pneumatic telescopic rod; 402. Swing rod; 403. Limit bearing; 404. Moving rod; 501. Pneumatic pump; 502. Moving plate; 503. Limiting slide rod; 504. Connecting hinge rod; 505. Solar panel; 506. Limiting support. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figures 1-4 As shown, this utility model is a Dendrobium cultivation greenhouse, including a movable support assembly 1, a lifting support assembly 2 installed on the top of the movable support assembly 1, a protective shed assembly 3 fixedly installed on the top of the lifting support assembly 2, a pneumatic braking assembly 4 fixedly installed on one side of the protective shed assembly 3, and a solar panel assembly 5 installed on the top of the pneumatic braking assembly 4.

[0026] The lifting support assembly 2 includes a threaded rod 201. The threaded rods 201 on both sides are fixedly installed between the first transmission wheel 105 and the second transmission wheel 107. A threaded moving plate 202 is installed at the middle limit of the threaded rod 201. A lifting scissor hinge 203 is fixedly installed on the top of the threaded moving plate 202. In the lifting support assembly 2, when the first transmission wheel 105 and the second transmission wheel 107 rotate, the threaded rod 201 fixed between them rotates synchronously. The threaded moving plate 202 is threadedly engaged with the threaded rod 201. When the threaded rod 201 rotates, the threaded moving plate 202 moves up and down along the threaded rod 201. The lifting scissor hinge 203 on the top of the threaded moving plate 201 expands or contracts as the threaded moving plate 202 rises or falls, thereby driving the protective canopy assembly 3 to rise or fall.

[0027] By incorporating a lifting support assembly 2 into the device, the greenhouse can be expanded from above when using the device. This allows for adjustments to be made for different usage scenarios, making the device more convenient.

[0028] The movable support assembly 1 includes a support base 101. The bottom of the support base 101 is equipped with movable wheels 102 diagonally. A brake motor 103 is fixedly installed on one side of the support base 101 via a bracket. A transmission device 104 is installed at the end of the brake motor 103. A transmission wheel 105 is installed in the middle of the end of the transmission device 104. The transmission wheel 105 is limited and installed on one side of the support base 101 by a rotating rod. A transmission chain 106 is limited and installed on the outer side of the transmission wheel 105.

[0029] A second transmission wheel 107 is installed on the inner side of the other end of the transmission chain 106. The second transmission wheel 107 is installed on the other side of the support frame 101 by a rotating rod. After the brake motor 103 in the movable bracket assembly 1 is started, it drives the transmission device 104 to rotate, and the first transmission wheel 105 at the end of the transmission device 104 rotates accordingly. The transmission chain 106 on the outer side of the first transmission wheel 105 meshes with the second transmission wheel 107, transmitting power to the second transmission wheel 107, so that the two transmission wheels rotate synchronously. The movable wheels 102 installed diagonally at the bottom of the support frame 101 move as a whole under the drive of the transmission wheels.

[0030] The protective shed assembly 3 includes a lifting panel 301. The bottom ends of the lifting panel 301 are fixedly installed on the top of the lifting scissor hinge 203. Insect-repelling lamps 302 are fixedly installed on the outer perimeter of the lifting panel 301. Locking fasteners 304 are fixedly installed around the bottom of the lifting panel 301, and a protective cover 303 is fixedly installed on the top of the lifting panel 301. The locking fasteners 304 are correspondingly positioned in locking grooves 305, which are formed on the outer perimeter of the supporting base frame 101. The lifting panel 301 of the protective shed assembly 3 is installed on the top of the lifting scissor hinge 203 and can rise and fall with it. The insect-repelling lamps 302 on the outer perimeter repel pests by emitting light, protecting the Dendrobium plants. The locking fastener 304 at the bottom of the lifting enclosure 301 engages with the locking groove 305 on the outer wall of the supporting base 101. When the protective shed is lowered into position, the locking fastener 304 engages with the locking groove 305, fixing the position of the protective shed and enhancing the stability of the shed. The protective cover 303 at the top provides a sheltered environment for the Dendrobium officinale from wind and rain.

[0031] The pneumatic braking assembly 4 includes a pneumatic telescopic rod 401. The opening end of the pneumatic telescopic rod 401 is hinged to one side of the outer wall of the lifting enclosure 301, and the other side of the pneumatic telescopic rod 401 is hinged to one side of a rocker arm 402. The bottom of the rocker arm 402 is rotatably mounted on the bottom end of one side of the lifting enclosure 301 via a limit bearing 403, and a movable rod 404 is fixedly mounted on the top of the rocker arm 402. The pneumatic telescopic rod 401 of the pneumatic braking assembly 4 connects the lifting enclosure 301 and the rocker arm 402 respectively via hinges. When the pneumatic telescopic rod 401 extends or retracts, it pushes the rocker arm 402 to rotate around the limit bearing 403, causing the movable rod 404 at the top of the rocker arm 402 to move accordingly, thereby adjusting and braking the position of the solar panel assembly 5.

[0032] The solar panel assembly 5 includes a pneumatic pump 501, which is fixedly mounted on the top of a movable rod 404 via a bracket. A movable plate 502 is mounted at the end of the pneumatic pump 501. The two sides of the movable plate 502 are slidably mounted on a limiting slide rod 503, and a connecting hinge rod 504 is connected to the middle of the top of the movable plate 502. A solar panel 505 is mounted at the end of the connecting hinge rod 504. The bottom ends of the solar panel 505 are connected to the outside of the movable rod 404 via a limiting bracket 506. The pneumatic pump 501 of the solar panel assembly 5 is mounted on the top of the movable rod 404. When activated, it pushes the movable plate 502 to slide on the limiting slide rod 503. The movable plate 502 drives the solar panel 505 to rotate via the connecting hinge rod 504, adjusting the angle of the solar panel 505 to better receive sunlight and convert solar energy into electrical energy to power the equipment inside the greenhouse.

[0033] The Dendrobium officinale cultivation greenhouse mainly consists of a mobile support assembly 1, a lifting support assembly 2, a protective shed assembly 3, a pneumatic braking assembly 4, and a solar panel assembly 5. Each assembly works in concert through specific parts to achieve functions such as greenhouse movement, lifting, protection, and solar energy utilization. When the brake motor 103 in the mobile support assembly 1 starts, it drives the transmission device 104, causing the first transmission wheel 105 at the end of the transmission device 104 to rotate. The transmission chain 106 on the outside of the first transmission wheel 105 meshes with the second transmission wheel 107, transmitting power to the second transmission wheel 107, causing the two transmission wheels to rotate synchronously. The mobile wheels 102, diagonally mounted at the bottom of the support frame 101, move the entire greenhouse under the drive of the transmission wheels. In the lifting support assembly 2, when the first transmission wheel 105 and the second transmission wheel 107 rotate, the threaded rod 201 fixed between them rotates synchronously. The threaded moving plate 202 and the threaded rod 201 are threaded together. When the threaded rod 201 rotates, the threaded moving plate 202 moves up and down along the threaded rod 201. The lifting scissor hinge 203 at the top of the threaded moving plate 201 expands or contracts as the threaded moving plate 202 rises or falls, thereby driving the protective shed assembly 3 to rise or fall. The lifting enclosure 301 of the protective shed assembly 3 is installed on the top of the lifting scissor hinge 203 and can rise and fall with the lifting scissor hinge 203. The insect-repelling lamps 302 on the outer perimeter wall repel pests by emitting light, protecting the Dendrobium plants. The locking fastener 304 at the bottom of the lifting enclosure 301 cooperates with the locking groove 305 on the outer wall of the supporting base frame 101. When the protective shed is lowered into place, the locking fastener 304 engages with the locking groove 305, fixing the position of the protective shed and enhancing the stability of the greenhouse. The protective cover 303 at the top provides a sheltered environment for the Dendrobium. The pneumatic telescopic rod 401 of the pneumatic braking assembly 4 is connected to the lifting enclosure 301 and the swing rod 402 respectively via hinges. When the pneumatic telescopic rod 401 extends or retracts, it pushes the swing rod 402 to rotate around the limit bearing 403. The moving rod 404 at the top of the swing rod 402 moves accordingly, realizing the adjustment and braking of the position of the solar panel assembly 5. The pneumatic pump 501 of the solar panel assembly 5 is installed on the top of the moving rod 404. After starting, it pushes the moving plate 502 to slide on the limit slide rod 503.The movable plate 502 drives the solar panel 505 to rotate via the connecting hinge rod 504, adjusting the angle of the solar panel 505 to better receive sunlight and convert light energy into electrical energy to power the equipment inside the greenhouse. The brake motor 103 is activated, and the transmission device 104 drives the first transmission wheel 105 to rotate. The first transmission wheel 105 drives the second transmission wheel 107 to rotate via the transmission chain 106. The rotation of the transmission wheels drives the movable wheel 102 at the bottom of the support frame 101 to roll, moving the greenhouse to the designated position. The brake motor 103 is then turned off, stopping the greenhouse movement. The brake motor 103 is then activated again, causing the first transmission wheel 105 and the second transmission wheel 107 to rotate, driving the threaded rod 201 to rotate. The threaded movable plate 202 moves upward or downward under the rotation of the threaded rod 201, and the threaded movable plate 202 drives the lifting scissor hinge 203 to unfold or retract. The lifting enclosure 301 and protective cover 303 are raised or lowered. When the protective shed reaches the appropriate height, the brake motor 103 is turned off. During the use of the shed, the insect-repelling lamp 302 continues to work to drive away pests. When the shed is raised or lowered to the correct position, the locking fastener 304 at the bottom of the lifting enclosure 301 automatically engages with the locking groove 305 of the support base 101 to fix the position of the protective shed. According to the angle of sunlight, the pneumatic telescopic rod 401 is activated. The pneumatic telescopic rod 401 extends and retracts, pushing the swing rod 402 to rotate, which in turn moves the moving rod 404 to adjust the approximate position of the solar panel assembly 5. The pneumatic pump 501 is activated, pushing the moving plate 502 to slide on the limit slide rod 503. The moving plate 502 drives the solar panel 505 to rotate through the connecting hinge rod 504, precisely adjusting the angle of the solar panel 505 so that it faces the sunlight and efficiently absorbs solar energy to generate electricity.

[0034] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A Dendrobium officinale cultivation greenhouse, comprising a movable support assembly (1), characterized in that: The top of the mobile support assembly (1) is equipped with a lifting support assembly (2), the top of the lifting support assembly (2) is fixedly equipped with a protective canopy assembly (3), a pneumatic braking assembly (4) is fixedly equipped on one side of the protective canopy assembly (3), and a solar panel assembly (5) is installed on the top of the pneumatic braking assembly (4). The lifting bracket assembly (2) includes a threaded rod (201), and the threaded rods (201) on both sides are fixedly installed in the middle of the first transmission wheel (105) and the second transmission wheel (107). A threaded moving plate (202) is installed in the middle of the threaded rod (201), and a lifting scissor hinge (203) is fixedly installed on the top of the threaded moving plate (202).

2. The Dendrobium officinale cultivation greenhouse according to claim 1, characterized in that: The movable support assembly (1) includes a support base (101), with movable wheels (102) installed diagonally at the bottom of the support base (101), and a brake motor (103) fixedly installed on one side of the support base (101) by a bracket. A transmission device (104) is installed at the end of the brake motor (103), and a transmission wheel (105) is installed in the middle of the end of the transmission device (104). The transmission wheel (105) is limited and installed on one side of the support base (101) by a rotating rod, and a transmission chain (106) is limited and installed on the outer side of the transmission wheel (105).

3. The Dendrobium officinale cultivation greenhouse according to claim 2, characterized in that: The transmission chain (106) has a transmission wheel (107) installed on the inner side of the other end, and the transmission wheel (107) is installed on the other side of the support base (101) by a rotating rod.

4. The Dendrobium officinale cultivation greenhouse according to claim 1, characterized in that: The protective shed assembly (3) includes a lifting enclosure (301). The bottom ends of the lifting enclosure (301) are fixedly installed on the top of the lifting scissor hinge (203). Insect repellent lamps (302) are fixedly installed on the outer perimeter of the lifting enclosure (301). At the same time, a locking fastener (304) is fixedly installed on the bottom perimeter of the lifting enclosure (301). A protective cover (303) is fixedly installed on the top of the lifting enclosure (301). The locking fastener (304) is correspondingly limited in the locking groove (305). The locking groove (305) is opened on the outer perimeter of the supporting base frame (101).

5. A Dendrobium cultivation greenhouse according to claim 1, characterized in that: The pneumatic braking assembly (4) includes a pneumatic telescopic rod (401). The opening end of the pneumatic telescopic rod (401) is installed on one side of the outer wall of the lifting enclosure (301) via a hinge, and the other side of the pneumatic telescopic rod (401) is connected to one side of the rocker arm (402) via a hinge. The bottom of the rocker arm (402) is rotatably installed on the bottom end of one side of the lifting enclosure (301) via a limit bearing (403), and a moving rod (404) is fixedly installed on the top of the rocker arm (402).

6. A Dendrobium officinale cultivation greenhouse according to claim 1, characterized in that: The solar panel assembly (5) includes a pneumatic pump (501), which is fixedly mounted on the top of the moving rod (404) by a bracket. A moving plate (502) is installed at the end of the pneumatic pump (501). The two sides of the moving plate (502) are slidably mounted on the limiting slide rod (503). A connecting hinge rod (504) is connected to the middle of the top of the moving plate (502). A solar panel (505) is installed at the end of the connecting hinge rod (504). The bottom two ends of the solar panel (505) are connected to the outside of the moving rod (404) by a limiting bracket (506).