Greening wall capable of being pulled, rotated and stopped
By designing a pullable, rotating, and stationary green wall, and using a T-shaped main structure and related components, the problems of green wall tipping over, uneven irrigation, and inability to adjust the flower angle have been solved. This has resulted in improved resistance to tipping, uniform irrigation, and convenient adjustment of the display, thus enhancing both aesthetics and maintenance efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 宋春欣
- Filing Date
- 2023-07-05
- Publication Date
- 2026-04-17
AI Technical Summary
Existing green walls are prone to collapse during use, have poor resistance to falling, are difficult to irrigate evenly and require considerable effort, and the angle of the flowers cannot be adjusted, affecting their aesthetic appeal.
A pullable, rotating, and stationary green wall was designed. It adopts a T-shaped main structure and combines components such as seals, load-bearing components, support plates, and adjustment components. The seals fix the water pipes, the support plates improve the support effect, and the adjustment components allow for easy rotation to display the flower angles.
It improves the green wall's resistance to collapse, enables uniform irrigation and convenient water pipe fixing, and allows for easy adjustment of the flower display angle, thus enhancing its aesthetic appeal and maintenance efficiency.
Smart Images

Figure CN121867002A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of green building technology, and in particular to a green wall that can be pulled, rotated, and stopped. Background Technology
[0002] Parks typically feature numerous green walls to showcase beautiful plants and enhance their aesthetic appeal.
[0003] Existing green walls are prone to collapse when subjected to impacts, indicating poor resistance to collapse. Watering the plants is also difficult due to uneven water distribution and the effort required, impacting maintenance efficiency. Furthermore, the flowers are typically more aesthetically pleasing from a single angle, but the inability to adjust the angle prevents the flowers from fully displaying their beauty, thus affecting the overall viewing experience. Summary of the Invention
[0004] In view of this, the present invention provides a green wall that can be pulled and rotated to stop, in order to solve the problem that existing green walls are prone to collapse when they are impacted, and that the green walls have poor resistance to collapse.
[0005] This invention provides a pullable, rotating, and stationary green wall, specifically comprising: a main body; the main body is T-shaped, made of plastic, with two grooves at the bottom and a top groove at the top, the top groove housing evenly arranged sealing elements, each sealing element being cylindrical with a circular groove at its bottom, the sealing elements being connected by rectangular plates, the outer ends of the rectangular plates being fixed with force-bearing elements, the force-bearing elements being L-shaped, the sealing elements and the force-bearing elements being made of rigid foam; and a bottom component, the bottom component being U-shaped, made of metal, with two bottom components installed at the bottom of the main body, each bottom component being embedded in the grooves on both sides of the main body, each bottom component having two outer grooves on both sides, each outer groove containing a movable plate, each movable plate having a support plate fixed to its outer end, the support plate being rectangular with a wedge-shaped outer end, the support plate... The top of the main body has a groove, and the support plate is made of elastic metal. A pressure plate is fixed to the top of every two support plates. The pressure plate is an inclined plate structure and is made of elastic metal. The adjusting component is a rectangular frame structure and is made of metal. The adjusting component is installed inside the bottom of the main body. The front side of the adjusting component has seven sets of teeth. Each set of teeth engages with a rotating head. The top of each rotating head is fixed with a connecting rod. The connecting rod is a cylindrical tubular structure and is made of stainless steel. The outside of the connecting rod has evenly arranged cross-shaped grooves. Evenly arranged auxiliary components are fixed to the outside of the connecting rod. The top of the auxiliary component is a circular structure, the bottom of the auxiliary component is an inclined structure, and the auxiliary component is made of plastic. The inside of the auxiliary component is a circular structure. Plants are planted inside the auxiliary component through soil. The auxiliary component is located at the bottom of the cross-shaped grooves. Each auxiliary component has four square holes at the bottom.
[0006] Optionally, the main body has a bottom groove at its inner bottom end. The bottom groove has a T-shaped structure, and an adjusting component is inserted inside the bottom groove. Each end of the bottom groove has an opening at its upper part, and each opening has evenly arranged rectangular slots on both sides of its top. The main body also has evenly arranged viewing slots inside, which are rectangular in structure. The viewing slots are connected in the middle by a circular hole. The bottom viewing slot communicates with the bottom groove through the circular hole, and the top viewing slot communicates with the top groove through the circular hole. A connecting rod is inserted inside the circular hole. The top groove has a rectangular structure, and its capacity is the same as that of all auxiliary components. The internal irrigation volume for plants is the same; a fixing member is fixed to the side of the top groove. The fixing member is made of plastic. The top of the fixing member is provided with a clamping groove. The top of the clamping groove is a rectangular structure, and the bottom of the clamping groove is an arc-shaped structure. The bottom of the inner side of the clamping groove is flush with the top of the force-bearing member. The outer edge of the clamping groove is an arc-shaped structure. A square groove is provided on each side of the inner side of the clamping groove. A clamping block is inserted into the inside of each square groove. The clamping block is an L-shaped structure. The inner angle of the clamping block is inclined. The inner side of each clamping block is provided with evenly arranged arc-shaped protrusions. The clamping block and the arc-shaped protrusions are all made of flexible rubber.
[0007] Optionally, each of the base components has a connecting groove on both sides of its interior. The connecting groove is T-shaped. Two insert rods are fixed on both sides of the bottom of each base component. The insert rods are wedge-shaped. A wedge-shaped plate is provided on the outer side of the bottom end of each insert rod. The insert rods and wedge-shaped plates are made of metal. A connector is inserted into the interior of each connecting groove. The connector is T-shaped and fixed to the bottom side of the main body. The connector is made of metal. The outer groove is rectangular. A round rod is provided inside each outer groove. A spring is fitted on the outer side of each round rod. The movable plate is L-shaped and made of metal. A round hole is provided inside each movable plate. A round rod is inserted into the round hole. The top of the movable plate contacts the bottom of the spring. A contact rod is fixed to the top of every two pressure plates. The contact rod is cylindrical and made of metal. The inner side of the contact rod contacts the base component.
[0008] Optionally, two support blocks are fixed to each side of the adjusting member. The support blocks are rectangular in structure, and each support block has evenly arranged rotating blocks on its outer side. The outer side of the rotating blocks slides in contact with the inner side of the bottom groove. A control plate is fixed to each end of the adjusting member. The control plate is a T-shaped plate made of metal and located inside the opening. Each control plate has a moving groove inside, with a rectangular top and an arc-shaped bottom. A limiting rod is inserted inside each moving groove; the limiting rod is cylindrical and made of metal. Each limiting rod has two T-shaped locking heads fixed to its exterior. The bottom of the locking head is inserted into the slot. The rotating head is circular and located at the bottom of the bottom groove. The bottom of the rotating head has annularly arranged toothed grooves. Each connecting rod has a top head fixed to its top. The top head is circular and has annularly arranged water inlet grooves on its exterior. Each water inlet groove has a metal filter screen inside. The interior of the water inlet groove is connected to the interior of the connecting rod. The top head is located inside the top groove. Each auxiliary component has an auxiliary plate fixed to its bottom. The auxiliary plate is disc-shaped and made of plastic. Beneficial effects
[0009] 1. By setting up sealing and force-bearing components, when this device needs to irrigate plants, the irrigation water pipe can be directly controlled to be embedded into the clamping groove of the fixing component, so that the water pipe can be clamped and fixed by the clamping block, making it easy to fix the water pipe. At the same time as the water pipe is fixed, the force-bearing component can be pressed to prevent it from rising, and then the water can be continuously added into the top groove, so that the top groove can temporarily store irrigation water. When the water overflows, the water pipe can be directly removed, so that the water pipe cannot press the force-bearing component. The water can use buoyancy to push the sealing and force-bearing components to rise, so that the water can enter the interior of the connecting rod and circulate. This allows the water to circulate and distribute evenly inside the connecting rod, making the irrigation of plants more even. The water in the top groove is added for irrigation at one time, avoiding irrigation in stages and improving the convenience of maintenance. 2. By setting up support plates and pressure plates, the device can be installed and used simultaneously with the base component during the main body installation. The base component can then drive the support plate and pressure plate to be installed together, allowing the contact rod to be stressed and contact the side of the base component. This allows the support plate to provide external auxiliary support to the main body, improving the support effect. When the main body encounters impact or collision, the support plate can bend using its own elasticity, while the moving plate can compress the spring. The pressure plate can bend under the force of the auxiliary rod, thereby improving the anti-tipping effect through elasticity and preventing the main body from tipping over. 3. By setting up connecting rods and auxiliary components, this device allows control over the planting of soil and plants within the auxiliary components during use, enabling the plants to bloom. When it is necessary to improve the visual appeal and adjust the display of the plants, both limiting rods can be pulled simultaneously to rise, allowing the locking block to disengage from the slot. This allows the limiting rods and control plate to move together, causing the adjusting component to shift accordingly. The adjusting component can then control the rotation of the rotating head via the locking teeth, causing the rotating head to drive the connecting rods and auxiliary components to rotate together. This allows the device to be easily pulled and rotated, enabling the auxiliary component to adjust the display angle of the flowers. After adjustment, pulling the limiting rods can be stopped, allowing them to fall back down under gravity, allowing the locking block to re-insert into the slot. This allows the device to be freely pulled, rotated, and stopped for display, enhancing its visual appeal. Attached Figure Description
[0010] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0011] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0012] In the attached diagram: Figure 1 This is a three-dimensional structural diagram of a green wall according to an embodiment of the present invention.
[0013] Figure 2 This is a bottom view structural diagram of a green wall according to an embodiment of the present invention.
[0014] Figure 3 This is an exploded three-dimensional structural diagram of a green wall according to an embodiment of the present invention.
[0015] Figure 4 This is an exploded bottom view of the green wall according to an embodiment of the present invention.
[0016] Figure 5 This is a partial cross-sectional exploded three-dimensional structural diagram of the main body of the green wall according to an embodiment of the present invention.
[0017] Figure 6 This is an exploded three-dimensional structural diagram of the base component of the green wall according to an embodiment of the present invention.
[0018] Figure 7 This is a partial cross-sectional exploded three-dimensional structural diagram of the adjusting component of the green wall according to an embodiment of the present invention.
[0019] Figure 8 This is a partial cross-sectional exploded bottom view of the adjusting component of the green wall according to an embodiment of the present invention.
[0020] List of reference numerals 1. Main body; 101. Bottom groove; 102. Card slot; 103. Viewing groove; 104. Top groove; 105. Fixing component; 106. Clamping block; 107. Sealing component; 108. Load-bearing component; 2. Base component; 201. Connecting groove; 202. Insert rod; 203. Connector; 204. Outer groove; 205. Moving plate; 206. Support plate; 207. Pressure plate; 208. Contact rod; 3. Adjusting component; 301. Support block; 302. Control plate; 303. Limiting rod; 304. Rotating head; 305. Connecting rod; 306. Top head; 307. Auxiliary component; 308. Auxiliary plate. Implementation
[0021] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.
[0022] Example 1: Please refer to Figures 1 to 8 As shown: This invention provides a pullable, rotating, and stationary green wall, comprising a main body 1; the main body 1 has a T-shaped structure and is made of plastic. The bottom of the main body 1 has two grooves, and the top of the main body 1 has a top groove 104. Evenly arranged sealing elements 107 are installed inside the top groove 104. Each sealing element 107 has a cylindrical structure and a circular groove at its bottom, allowing it to be installed inside the top groove 104. A top head 306 can be inserted into the circular groove of the sealing element 107 to seal it and prevent water leakage. The sealing elements 107 are connected by rectangular plates, allowing multiple sealing elements 107 to move together. A force-bearing element 108 is fixed to the outer end of the rectangular plates. The force-bearing element 108 has an L-shaped structure. Both the sealing elements 107 and the force-bearing element 108 are made of rigid foam material, ensuring that when water is added, the bottom of the water pipe continuously contacts the top of the force-bearing element 108, continuously pressing the sealing element 107 and preventing water leakage inside the top groove 104. A bottom element 2 is also included. 2 is a U-shaped structure. The base component 2 is made of metal. There are two base components 2, which are installed at the bottom of the main body 1. The two base components 2 are respectively embedded in the grooves on both sides of the main body 1 for positioning and installation. Each base component 2 has two outer grooves 204 on both sides. A movable plate 205 is inserted into the inside of each outer groove 204. A support plate 206 is fixed to the outer end of each movable plate 205. The support plate 206 has a rectangular structure and a wedge-shaped structure at the outer end to improve the support effect. The top of the support plate 206 has a groove to improve the elasticity of the support plate 206. The support plate 206 is made of elastic metal, which can improve the anti-tipping strength of the device and prevent the main body 1 from tipping over and being damaged. A pressure plate 207 is fixed to the top of every two support plates 206. The pressure plate 207 has an inclined plate structure and is made of elastic metal. It can use elasticity to assist in support and thus prevent the main body 1 from tipping over.Adjusting component 3 is a rectangular frame structure made of metal. It is installed inside the bottom of the main body 1. The front of the adjusting component 3 has seven sets of locking teeth, each engaging a rotating head 304. This allows the adjusting component 3 to move while simultaneously controlling the rotation of the rotating head 304, enabling it to rotate the connecting rod 305 and auxiliary component 307 together. The auxiliary component 307 then adjusts the plant's display angle. Each rotating head 304 has a connecting rod 305 fixed to its top. The connecting rod 305 is a cylindrical tubular structure that allows water to circulate within it, facilitating... The irrigation system uses a stainless steel connecting rod 305. The outer surface of the connecting rod 305 has evenly arranged cross-shaped grooves to allow water to drain. Evenly arranged auxiliary components 307 are fixed to the outer surface of the connecting rod 305. Each auxiliary component 307 has a circular top and an inclined bottom. The auxiliary components 307 are made of plastic and have a circular interior for planting soil. The plants are planted inside the auxiliary components 307, which are located at the bottom of the cross-shaped grooves. Each auxiliary component 307 has four square holes at its bottom to allow excess water to drain.
[0023] refer to Figure 5The main body 1 has a bottom groove 101 at its inner bottom end. The bottom groove 101 has a T-shaped structure. An adjusting member 3 is inserted into the bottom groove 101, allowing the adjusting member 3 to be freely pulled and adjusted within it. An opening is provided at each end of the bottom groove 101, allowing the control plate 302 to be guided and pulled within it. Each opening has evenly arranged slots 102 on both sides of its top. The slots 102 have a rectangular structure, used to insert and fix the locking blocks within them, allowing the adjusting member 3 to move easily. The main body 1 also has evenly arranged viewing slots 103 inside. The viewing slots 103 have a rectangular structure and are connected in the middle by a round hole. The bottom viewing slots 103 communicate with the bottom groove 101 through the round hole, allowing the connecting rod 305 to be installed inside. The top viewing slots 103 communicate with the top groove 104 through the round hole, allowing water to enter the top head 306. A connecting rod 305 is inserted into the round hole. The top groove 104 is rectangular. The structure can store water inside, allowing for convenient addition of water to irrigate plants. The capacity of the top groove 104 is the same as the irrigation volume of all auxiliary components 307. A fixing component 105, made of plastic, is fixed to the side of the top groove 104 to assist in fixing the water pipe. The top of the fixing component 105 has a clamping groove with a rectangular top and an arc-shaped bottom, allowing the water pipe to be embedded and clamped. The bottom of the inner side of the clamping groove is flush with the top of the force-bearing component 108, and the outer edge of the clamping groove has an arc-shaped structure. A square groove is provided on each side of the inner side of the clamping groove, and a clamping block 106 is inserted into each square groove. The clamping block 106 has an L-shaped structure with an inclined inner angle. Each clamping block 106 has evenly arranged arc-shaped protrusions on its inner side. Both the clamping block 106 and the arc-shaped protrusions are made of flexible rubber to assist in clamping and preventing slippage of the water pipe, ensuring continuous irrigation and improving irrigation efficiency.
[0024] refer to Figure 6Each base component 2 has a connecting groove 201 on both sides inside. The connecting groove 201 has a T-shaped structure and is used to insert a connector 203 for splicing. Two insert rods 202 are fixed to the bottom sides of each base component 2. The insert rods 202 have a wedge-shaped structure, and each insert rod 202 has a wedge-shaped plate on its bottom end. This allows them to be inserted into the soil to assist in fixing the main body 1 and improve its fixation. The insert rods 202 and the wedge-shaped plate are made of metal. A connector 203 is inserted into each connecting groove 201. The connector 203 has a T-shaped structure and is fixed to the bottom side of the main body 1, allowing for easy splicing of the main body 1 and base component 2. The connector 203 is made of metal. The outer groove 204 has a rectangular structure and is used for... The movable plate 205 is inserted into the groove 204. Each groove 204 has a round rod inside, which is inserted into the round hole of the movable plate 205 to guide the movable plate 205. A spring is fitted on the outside of each round rod, which can continuously push the movable plate 205 with elasticity. The movable plate 205 has an L-shaped structure and is made of metal. Each movable plate 205 has a round hole inside, and a round rod is inserted into the round hole. The top of the movable plate 205 contacts the bottom of the spring. A contact rod 208 is fixed at the top of every two pressure plates 207. The contact rod 208 has a cylindrical structure and is made of metal. The inner side of the contact rod 208 contacts the bottom part 2 and can slide, thereby increasing the support strength of the pressure plate 207.
[0025] refer to Figure 7 and Figure 8Two support blocks 301 are fixed on both sides of the adjusting component 3. The support blocks 301 are rectangular and can be positioned inside the bottom groove 101 to support the main body 1. Each support block 301 has evenly arranged rotating blocks on its outer side. The outer side of the rotating blocks slides in contact with the inner side of the bottom groove 101, which can control the smooth sliding displacement of the adjusting component 3 and improve the pulling efficiency. A control plate 302 is fixed at both ends of the adjusting component 3. The control plate 302 is a T-shaped plate structure and is made of metal. The control plate 302 is located inside the opening and can be moved freely inside the opening. Each control plate 302 has a moving groove inside. The top of the moving groove is rectangular and the bottom is arc-shaped, so that the limiting rod 303 can be pulled freely inside it. A limiting rod 303 is inserted into the moving groove. The limiting rod 303 is cylindrical and made of metal. Two clips with T-shaped structures are fixed on the outside of each limiting rod 303. The bottom of the clamp head is inserted into the inside of the clamp slot 102 and can be clamped and fixed with the clamp slot 102, so that the control plate 302 and the adjusting member 3 cannot move. The rotating head 304 has a circular structure and is located at the bottom of the bottom groove 101. The bottom of the rotating head 304 has a ring-shaped toothed groove for engaging with the clamp teeth, so that when the adjusting member 3 drives the clamp teeth to move, the rotating head 304 can be easily controlled to rotate. Each connecting rod 305 has a top head 306 fixed at its top. The top head 306 has a circular structure and a ring-shaped water inlet groove on its outside, which can allow water to enter for irrigation. Each water inlet groove has a metal filter screen inside, which can filter the water. The inside of the water inlet groove is connected to the inside of the connecting rod 305. The top head 306 is located inside the top groove 104. Each auxiliary member 307 has an auxiliary plate 308 fixed at its bottom. The auxiliary plate 308 has a disc-shaped structure and is made of plastic, so that excess water can enter the interior of the auxiliary plate 308 for storage.
[0026] Example 2: When this device is used during the rainy season, rainwater can be collected and stored inside the top trough 104 after it falls, and then flow downward through the drainage trough and connecting rod 305, so that rainwater can be conveniently collected to irrigate plants.
[0027] The specific usage and function of this embodiment: In this invention, when this device is needed, the main body 1 can be installed and used manually. First, the bottom part 2 is embedded into the groove of the main body 1, so that the connector 203 can be inserted into the connecting groove 201, allowing the bottom part 2 to be positioned and assembled. Then, the main body 1 is placed in the desired display position, so that the control plate 302 can be inserted into the soil, thereby assisting in fixing the main body 1. At the same time, the support plate 206 is positioned on both sides of the main body 1 for support. Then, the plants are planted in the soil inside the auxiliary part 307, allowing the plants to be planted. For convenient planting and viewing, when the main body 1 encounters collisions or impacts, the support plate 206 and pressure plate 207 can bend due to their own elasticity, while the moving plate 205 can compress the spring, thereby improving the support effect of the main body 1 with elastic force, preventing the main body 1 from tipping over. Then, the irrigation water pipe is controlled to be embedded into the inside of the clamping groove, so that the clamping block 106 can assist in clamping and fixing the water pipe. At the same time, the bottom of the water pipe can contact the top of the force-bearing member 108, so that the sealing member 107 can be displaced downward under force, allowing the sealing member 107 to cover the inside of the top head 306, thereby draining the water pipe. The water tank is sealed, and water is continuously added to the top tank 104 until it is full. After overflowing, the water pipe can be pulled to remove it, preventing the force-bearing component 108 from being pressed down. This allows the sealing component 107 and the force-bearing component 108 to rise due to their own buoyancy, automatically opening the drainage tank. Water can then be discharged through the connecting rod 305 and the cross-shaped groove, allowing water to evenly enter the auxiliary component 307 and thus evenly irrigate the plants, improving the convenience and uniformity of plant irrigation. When it is necessary to adjust the display angle of the plants, the two limit rods can be pulled first. When 303 rises, the locking block can be pulled out from inside the slot 102, freeing the adjusting component 3. Then, the limiting rod 303 and the adjusting component 3 are pulled together, allowing the adjusting component 3 to rotate the rotating head 304 through the locking block. The rotating head 304 can then drive the connecting rod 305 and the auxiliary component 307 to adjust the angle. Once the angle is adjusted, the pulling of the limiting rod 303 can be stopped, allowing it to fall and the locking block to be inserted into the slot 102 for positioning. This allows the plant to rotate and adjust its viewing angle, effectively enhancing its aesthetic appeal.
Claims
1. A green wall that can be pulled, rotated, and stopped, characterized in that: include: Main body (1); The main body (1) is a T-shaped structure, the main body (1) is made of plastic, the bottom of the main body (1) is provided with two grooves, the top of the main body (1) is provided with a top groove (104), the top groove (104) is installed with uniformly arranged sealing elements (107), the sealing elements (107) are cylindrical structures, the bottom of the sealing elements (107) is provided with a circular groove, the sealing elements (107) are connected by rectangular plates, the outer end of the rectangular plates is fixed with a force-bearing element (108), the force-bearing element (108) is an L-shaped structure, the sealing elements (107) and the force-bearing element (108) are made of rigid foam material; bottom part ( 2) The bottom component (2) is a U-shaped structure and is made of metal. There are two bottom components (2). The two bottom components (2) are installed at the bottom of the main body (1). The two bottom components (2) are respectively embedded in the grooves on both sides of the main body (1). Each bottom component (2) has two outer grooves (204) on both sides. A movable plate (205) is inserted into the inside of each outer groove (204). A support plate (206) is fixed at the outer end of each movable plate (205). The support plate (206) is a rectangular structure. The outer end of the support plate (206) is a wedge-shaped structure. The top of the support plate (206) is provided with The support plate (206) has a groove and is made of elastic metal. A pressure plate (207) is fixed at the top of every two support plates (206). The pressure plate (207) is an inclined plate structure and is made of elastic metal. The adjusting component (3) is a rectangular frame structure and is made of metal. The adjusting component (3) is installed inside the bottom end of the main body (1). The front side of the inside of the adjusting component (3) is provided with seven sets of teeth. Each set of teeth engages with a rotating head (304). A connecting rod (305) is fixed at the top of each rotating head (304). It is a cylindrical tubular structure. The connecting rod (305) is made of stainless steel. The outside of the connecting rod (305) is provided with uniformly arranged cross-shaped through grooves. The outside of the connecting rod (305) is fixed with uniformly arranged auxiliary parts (307). The top of the auxiliary part (307) is a circular structure, and the bottom of the auxiliary part (307) is an inclined structure. The auxiliary part (307) is made of plastic. The inside of the auxiliary part (307) is a circular structure. Plants are planted inside the auxiliary part (307) through soil. The auxiliary part (307) is located at the bottom of the cross-shaped through grooves. Each auxiliary part (307) has four square holes at the bottom.
2. The pullable, rotating, and stationary green wall as described in claim 1, characterized in that: The main body (1) has a bottom groove (101) at its inner bottom end. The bottom groove (101) is a T-shaped structure. An adjusting member (3) is inserted inside the bottom groove (101). An opening is provided above each of the two ends of the bottom groove (101). A slot (102) is evenly arranged on both sides of the top of each opening. The slot (102) is a rectangular structure.
3. The pullable, rotating, and stationary green wall as described in claim 2, characterized in that: The main body (1) has evenly arranged viewing troughs (103) inside. The viewing troughs (103) are rectangular in structure. The viewing troughs (103) are connected in the middle by a round hole. The bottom viewing troughs (103) are connected to the bottom trough (101) through a round hole. The top viewing troughs (103) are connected to the top trough (104) through a round hole. A connecting rod (305) is inserted into the round hole. The top trough (104) is rectangular in structure. The capacity of the top trough (104) is the same as the amount of water for the plants inside all the auxiliary parts (307).
4. The green wall that can be pulled, rotated, and stopped as described in claim 1, characterized in that: The top groove (104) is fixed with a fastener (105) on its side. The fastener (105) is made of plastic. The top of the fastener (105) is provided with a clamping groove. The top of the clamping groove is a rectangular structure, and the bottom of the clamping groove is an arc-shaped structure. The bottom of the inner side of the clamping groove is flush with the top of the force-bearing member (108). The outer edge of the clamping groove is an arc-shaped structure. A square groove is provided on each side of the inner side of the clamping groove. A clamping block (106) is inserted into the inner side of each square groove. The clamping block (106) is an L-shaped structure. The inner angle of the clamping block (106) is an inclined structure. The inner side of each clamping block (106) is provided with evenly arranged arc-shaped protrusions. The clamping block (106) and the arc-shaped protrusions are both made of flexible rubber.
5. The green wall that can be pulled, rotated, and stopped as described in claim 1, characterized in that: Each of the base pieces (2) has a connecting groove (201) on both sides of its interior. The connecting groove (201) is a T-shaped structure. Two insert rods (202) are fixed on both sides of the bottom of each base piece (2). The insert rods (202) are wedge-shaped structures. A wedge plate is provided on the outside of the bottom end of each insert rod (202). The insert rods (202) and the wedge plate are made of metal.
6. The pullable, rotating, and stationary green wall as described in claim 5, characterized in that: Each of the connecting slots (201) has a connector (203) inserted inside. The connector (203) has a T-shaped structure and is fixed to the bottom side of the main body (1). The connector (203) is made of metal. The outer slot (204) has a rectangular structure. Each outer slot (204) has a round rod inside and a spring is fitted on the outside of each round rod.
7. The pullable, rotating, and stationary green wall as described in claim 6, characterized in that: The movable plate (205) has an L-shaped structure and is made of metal. Each movable plate (205) has a round hole inside and a round rod is inserted inside the round hole. The top of the movable plate (205) contacts the bottom of the spring. A contact rod (208) is fixed at the top of every two pressure plates (207). The contact rod (208) has a cylindrical structure and is made of metal. The inner side of the contact rod (208) contacts the bottom piece (2).
8. The pullable, rotating, and stationary green wall as described in claim 2, characterized in that: Two support blocks (301) are fixed on both sides of the adjusting member (3). The support blocks (301) are rectangular structures. Each support block (301) has evenly arranged rotating blocks on its outer side. The outer side of the rotating blocks slides in contact with the inner side of the bottom groove (101). A control plate (302) is fixed at both ends of the adjusting member (3). The control plate (302) is a T-shaped plate structure. The control plate (302) is made of metal and is located inside the opening.
9. The pullable, rotating, and stationary green wall as described in claim 8, characterized in that: Each control panel (302) has a movable slot inside. The top of the movable slot is rectangular and the bottom is arc-shaped. A limiting rod (303) is inserted inside each movable slot. The limiting rod (303) is cylindrical and made of metal. Two clips are fixed to the outside of each limiting rod (303). The clips are T-shaped and the bottom of the clips are inserted into the slot (102). The rotating head (304) is circular and is located at the bottom of the bottom slot (101). The bottom of the rotating head (304) is provided with annularly arranged toothed grooves.
10. The pullable, rotating, and stationary green wall as described in claim 1, characterized in that: Each of the connecting rods (305) has a top head (306) fixed at its top end. The top head (306) has a circular structure and annular water inlet grooves on its outside. Each water inlet groove has a metal filter screen inside. The inside of the water inlet groove is connected to the inside of the connecting rod (305). The top head (306) is located inside the top groove (104). Each auxiliary component (307) has an auxiliary plate (308) fixed at its bottom. The auxiliary plate (308) has a disc-shaped structure and is made of plastic.