Splicing type circulating irrigation green plant curtain wall system

By adopting spliced ​​circulation watering technology and driving mechanism in the green plant curtain wall system, the launch and replacement of planting pots is achieved, solving the problem of plant replacement in the existing system and expanding the scope of application of the system.

CN120130265AInactive Publication Date: 2025-06-13HANGZHOU SANWEI ECOLOGICAL GARDEN CO LTD
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Patent Information

Application Number
CN202510404944.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing green plant curtain wall system, the trough is placed into a whole large trough body structure, making it difficult to replace different types of plants, and the growth cycle and survival time of different types of plants are different, which affects the diversity and flexibility of the system.

Method used

The spliced ​​circular watering green plant curtain wall system is adopted, and the installation wall panels and basin seats are installed on the wall, combined with the driving mechanism and lifting components, the planting pots are launched and replaced.

Benefits of technology

It has achieved convenient replacement of green plants in planting pots in specific areas, expanded the scope of application of green plant curtain wall system, and solved the problem of difficult to replace plants in traditional designs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of green plant curtain walls, and discloses a splicing type circulating irrigation green plant curtain wall system which comprises a wall body, a top plate, a bottom plate and a mounting wall plate, a plurality of basin bases distributed in a rectangular array are arranged on the side, away from the wall body, of the mounting wall plate, and cross rods are fixed to the positions, corresponding to the bottoms of the basin bases, of the side wall of the mounting wall plate in pairs; the number of the transverse rods is equal to the number of the pot bases, connecting plates in sliding fit with the transverse rods are fixed to the positions, corresponding to the transverse rods, of the bottoms of the pot bases, a planting pot is arranged in each pot base, driving mechanisms are arranged between the wall body and the installation wall plate, the column number of the driving mechanisms is equal to the column number of the planting pots, and the positions of the driving mechanisms are in one-to-one correspondence with the column number of the planting pots. The driving mechanism comprises a pushing assembly used for driving the basin base to be pushed towards the side away from the wall body along the transverse rod and a lifting assembly used for driving the pushing assembly to ascend and descend. According to the green plant curtain wall system, the design defect that green plants in specific planting pots are difficult to take out and replace in traditional design is overcome, and the application range of the green plant curtain wall system is widened.
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Description

Technical Field

[0001] The present invention relates to the technical field of green plant curtain walls, and particularly to a spliced and circular irrigation green plant curtain wall system. Background Art

[0002] A green plant curtain wall system is a greening technology that plants plants on a vertical surface, also known as a vertical greening wall or an ecological wall. It uses special planting substrates, irrigation systems, and support structures to enable plants to grow on the wall and form a lush green landscape. The green plant curtain wall system is not only beautiful and generous, but also can effectively improve the indoor air quality, regulate the temperature and humidity, reduce noise pollution, and create a healthier and more comfortable working environment for employees. In addition, the green plant curtain wall system can beautify the city, isolate noise, purify the air, and save energy and reduce emissions.

[0003] In a Chinese invention patent with the publication number CN112640688B, an automatically irrigated green plant curtain wall system is disclosed, which includes a plurality of curtain wall panels vertically arranged in an array on a wall, a placement groove horizontally arranged outside the curtain wall panel, and a water supply device for supplying water to the placement groove. The water supply device includes a plurality of water supply branch pipes passing through the curtain wall panel and entering the placement groove, and a valve mechanism arranged on the water supply branch pipes. The placement groove contains soil, and green plants are planted in the soil. The valve mechanism includes a valve piece penetrating through the side of the water supply branch pipe, a fixing plate connected to the side of the valve piece away from the water supply branch pipe, a water-absorbing and swelling member connected to the fixing plate, and a support block for connecting the water-absorbing and swelling member and the bottom of the placement groove. The surface of the soil is higher than the top surface height of the water-absorbing and swelling member. The water-absorbing and swelling member absorbs water and swells to push the valve piece into the water supply branch pipe to block the water supply branch pipe, and the water-absorbing and swelling member loses water and shrinks to pull the valve piece out of the water supply branch pipe to connect the water supply branch pipe.

[0004] Regarding the above related technologies, the inventor believes that there are the following defects: The placement groove is a whole large groove structure. When green plants are planted in the placement groove to form a green plant curtain wall, in order to increase the diversity of the green plant curtain wall, different types of green plants may be planted at different positions in the length direction of the placement groove. However, different types of plants have different growth cycles, survival times, and survival difficulties. Once the green plants grow, the root systems of the green plants in the same placement groove affect each other, and it is difficult to replace the planted green plants. Summary of the Invention

[0005] In order to solve the above problems, the present invention provides a spliced and circular irrigation green plant curtain wall system.

[0006] The above technical object of the present invention is achieved through the following technical solutions: A spliced circular irrigation green plant curtain wall system includes a wall body, a top plate fixed to the top of the wall body, a bottom plate fixed to the bottom of the wall body, and an installation wall plate fixed between the top plate and the bottom plate and arranged parallel to the wall body. On the side of the installation wall plate away from the wall body, a plurality of basin seats are arranged in a rectangular array. At the position corresponding to the bottom of the basin seats on the side wall of the installation wall plate, cross bars are fixedly paired. The number of pairs of cross bars is equal to the number of basin seats. At the position corresponding to the cross bars on the bottom of the basin seats, connecting plates slidably matched with the cross bars are fixed. A planting pot is arranged in each basin seat. A driving mechanism is arranged between the wall body and the installation wall plate. The number of columns of the driving mechanism is equal to the number of columns of the planting pots and the positions correspond one by one. The driving mechanism includes a top pushing component for driving the basin seat to push towards the side away from the wall body along the cross bar and a lifting component for driving the top pushing component to lift and lower.

[0007] By adopting the above technical solutions, when the green plants in a certain planting pot need to be replaced due to reasons such as the growth cycle, the staff only needs to drive the top pushing component to lift and lower through the lifting component, so that the top pushing component drives the basin seat to push towards the side away from the wall body along the cross bar, and then the planting pot at the corresponding position can be pushed out, which is convenient for replacing the green plants in the planting pot, changes the design defect that it is difficult to take out and replace the green plants in the planting pot in a specific area in the traditional design, and expands the application range of the green plant curtain wall system.

[0008] Further, the top pushing component includes a T-shaped push rod rotatably connected to the side wall of the basin seat close to the wall body. The T-shaped push rod penetrates through the installation wall plate and has a clearance fit. The top pushing component further includes a first C-shaped plate located between the wall body and the installation wall plate, a first special-shaped rod fixed between the upper side plate body and the lower side plate body of the first C-shaped plate, and a second special-shaped rod fixed between the upper side plate body and the lower side plate body of the first C-shaped plate. The second special-shaped rod and the first special-shaped rod are located in the same vertical plane. The second special-shaped rod is located on the side away from the installation wall plate of the first special-shaped rod. The first special-shaped rod includes a C-shaped section and a straight section integrally formed at the end of the C-shaped section. There are two straight sections and they are respectively located at both ends of the C-shaped section. The structure and shape of the second special-shaped rod and the first special-shaped rod are the same. The ratio between the C-shaped sections of the first special-shaped rod and the second special-shaped rod is equal to the ratio between the straight sections of the second special-shaped rod and the second special-shaped rod. The rod section of the T-shaped push rod close to the wall body is located between the C-shaped sections of the first special-shaped rod and the second special-shaped rod. The lifting component is used to control the lifting and lowering of the first C-shaped plate. An elastic holding component for keeping the T-shaped push rod horizontal is arranged on the installation wall plate.

[0009] Further, the lifting assembly includes an electric push rod fixed to the side wall of the wall close to the mounting wall panel, a second C-shaped plate fixed to the end of the push rod of the electric push rod, and a lateral guide rod fixed to the side wall of the wall close to the mounting wall panel. The lateral guide rod penetrates through the vertical plate section of the second C-shaped plate and is in sliding fit therewith. The lifting assembly further includes a threaded rod rotatably mounted between the upper side plate body and the lower side plate body of the second C-shaped plate, a vertical guide rod fixed between the upper side plate body and the lower side plate body of the second C-shaped plate, and a motor fixed to the upper side plate body of the second C-shaped plate and driving the threaded rod to rotate. The threaded rod penetrates through the upper side plate body of the first C-shaped plate and is in threaded connection therewith. The threaded rod penetrates through the lower side plate body of the first C-shaped plate and is in sliding fit therewith. The vertical guide rod penetrates through the first C-shaped plate and is in sliding fit therewith.

[0010] By adopting the above technical solution, when the green plants in a certain planting pot need to be replaced due to reasons such as the growth cycle, the staff only needs to start the motor to drive the threaded rod to rotate. Since the threaded rod is in threaded connection with the upper side plate body of the second C-shaped plate and the vertical guide rod penetrates through the second C-shaped plate and is in sliding fit therewith, the first C-shaped plate can be lifted or lowered, so that the first special-shaped rod and the second special-shaped rod are lifted or lowered synchronously with the first C-shaped plate. After the top or bottom of the C-shaped section of the first special-shaped rod abuts against the rod section on the side away from the pot seat of the T-shaped push rod, the T-shaped push rod is flipped, so as to lift or lower the first C-shaped plate, the first special-shaped rod and the second special-shaped rod. Until the first C-shaped plate moves to the height corresponding to the planting pot where the green plants need to be replaced, the T-shaped push rod remains horizontal under the action of the elastic holding assembly. At this time, the staff only needs to start the electric push rod, and the push rod of the electric push rod can drive the second C-shaped plate to move towards the side away from the wall until the planting pot where the green plants need to be replaced is completely pushed out. Then the staff can easily replace the green plants in the planting pot. Similarly, controlling the electric push rod in the reverse direction can control the reset of the planting pot after the green plants are replaced.

[0011] Further, a linear chute is provided at the top of the rod section of the T-shaped push rod connected to the mounting wall panel. The elastic holding assembly includes an annular plate body sleeved on the rod section of the T-shaped push rod connected to the mounting wall panel and having a clearance fit therewith, a connecting block integrally formed on the inner side of the annular plate body and slidably fitted with the linear chute, and a spring sleeved on the rod section of the T-shaped push rod connected to the mounting wall panel. One end of the spring is fixed to the side wall of the mounting wall panel close to the wall, and the other end of the spring is fixed to the side wall of the annular plate body away from the wall.

[0012] By adopting the above technical scheme, the spring has good elastic effect and at the same time has a certain torsion force and the ability to maintain its original shape. When the spring is in its original length state, the T-shaped push rod is in a horizontal state. When a section of the T-shaped push rod close to the wall is resisted by the top or bottom of the C-shaped section of the first special-shaped rod, the connecting block on the annular plate slides with the straight groove on the T-shaped push rod, so that the annular plate rotates synchronously with the T-shaped push rod, and the spring is twisted in the process. Until the first special-shaped rod, the second special-shaped rod and the first C-shaped plate pass through the T-shaped push rod, the T-shaped push rod is reset under the elastic force of the spring, so that the first C-shaped plate, the first special-shaped rod and the second special-shaped rod move to the height of the planting pot where the green plant needs to be replaced, so that the push rod of the electric push rod can control the corresponding pot seat and the planting pot to move out after extension, which is conducive to replacing the corresponding green plants.

[0013] Furthermore, an irrigation mechanism for irrigating green plants in the planting pots is arranged between the top plate and the bottom plate, and the irrigation mechanism includes a circulating irrigation component and a drainage component, and the circulating irrigation component includes a water collecting tank arranged on the mounting wall panel near the bottom of the mounting wall panel, a water pump fixed to the top of the top plate, a water inlet pipe fixed and connected to the water inlet of the water pump, a water outlet pipe fixed and connected to the water outlet pipe of the water pump, a water distribution pipe fixed and connected to the end of the water outlet pipe away from the water pump, and a return pipe fixed and connected to the bottom of the water distribution pipe, the water inlet end of the water inlet pipe passes through the mounting wall panel and the water collecting tank and extends to the bottom of the water collecting tank, and the main section of the water inlet pipe and the return pipe are both located between the wall and the mounting wall The number of the return pipes is equal to the number of columns of the basin seats and their positions correspond one to one, and the water outlet end of the return pipe passes through the installation wall panel and the side wall of the sump; the number of the drainage components is equal to the number of the basin seats and their positions correspond one to one, and each group of the drainage components includes a drainage pipe fixed and connected to the side of the return pipe away from the wall, the drainage pipe passes through the installation wall panel and is gap-fitted, the length direction of the drainage pipe is parallel to the length direction of the cross bar, and a plug-in hole for plugging the drainage pipe is provided on the side of the basin seat close to the wall, and the plug-in hole extends to the bottom of the planting pot, and the drainage component also includes a cotton strip arranged in the drainage pipe, and the end of the cotton strip close to the wall extends into the return pipe.

[0014] By adopting the above technical solution, after the water pump starts working, the water in the water collection tank is pumped from the water inlet pipe to the water outlet pipe, and then returns to the water collection tank through the water distribution pipe and the return pipe in turn. The cotton strip drains part of the water that passes through the drainage pipe into the pot seat to provide for the growth of green plants in the planting pot, thereby completing the circulation irrigation of green plants in the green plant curtain wall system.

[0015] Furthermore, an interception net is commonly fixed to the bottom of the two connecting plates corresponding to the basin seat.

[0016] By adopting the above technical solution, the interception net reduces the probability that the vines of green plants climb onto the upper horizontal bars and affect the movement of the connecting plates and the pot seats.

[0017] Furthermore, the planting pot is arranged at an angle, and the distance between the planting pot and the mounting wall panel decreases from top to bottom.

[0018] By adopting the above technical solution, a filter screen is detachably provided in the water collecting tank, the filter screen is arranged horizontally, and the water outlet end of the return pipe is higher than the top of the filter screen.

[0019] By adopting the above technical solution, the filter screen plays a good filtering role on the backflow water, reducing the probability of clogging the water inlet pipe due to the backflow water containing more impurities.

[0020] In summary, the present invention has the following beneficial effects:

[0021] 1. In the present application, when the green plants in a certain planting pot need to be replaced due to the growth cycle or other reasons, the staff only needs to drive the pushing assembly to rise and fall through the lifting assembly, so that the pushing assembly drives the pot seat to push along the horizontal bar toward the side away from the wall, so that the planting pot at the corresponding position can be pushed out, thereby facilitating the replacement of the green plants in the planting pot, changing the design defect of the traditional design that it is difficult to take out and replace the green plants in the planting pots in a specific area, and expanding the scope of application of the green plant curtain wall system;

[0022] 2. In the present application, the spring has good elastic effect, and at the same time has a certain torsion force and the ability to maintain its original shape. When the spring is in its original length state, the T-shaped push rod is in a horizontal state. When a section of the T-shaped push rod close to the wall is resisted by the top or bottom of the C-shaped section of the first special-shaped rod, the connecting block on the annular plate slides with the straight groove on the T-shaped push rod, so that the annular plate rotates synchronously with the T-shaped push rod, and the spring is twisted in the process. Until the first special-shaped rod, the second special-shaped rod and the first C-shaped plate pass through the T-shaped push rod, the T-shaped push rod is reset under the elastic force of the spring, so that the first C-shaped plate, the first special-shaped rod and the second special-shaped rod move to the height of the planting pot where the green plant needs to be replaced, so that the push rod of the electric push rod can control the corresponding pot seat and the planting pot to move out after extension, which is conducive to the replacement of the corresponding green plants. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a schematic diagram of the overall structure of an embodiment of the present invention;

[0024] Figure 2 This is a structural schematic diagram of an embodiment of the present invention due to highlighting the circulating irrigation component;

[0025] Figure 3 is a schematic structural diagram of an embodiment of the present invention for highlighting a driving mechanism;

[0026] Figure 4 FIG. is a schematic structural diagram of the embodiment of the present invention for highlighting the pushing assembly;

[0027] Figure 5 is Figure 4 an enlarged schematic view of part A in FIG.

[0028] Figure 6 is Figure 4 an enlarged schematic view of part B in FIG.

[0029] In the figure: 1, wall; 11, top plate; 12, bottom plate; 2, installation wall panel; 21, cross bar; 3, basin seat; 31, planting basin; 32, insertion hole; 4, connecting plate; 5, driving mechanism; 51, pushing assembly; 511, T-shaped push rod; 5111, linear chute; 512, first C-shaped plate; 513, first special-shaped rod; 514, second special-shaped rod; 5141, C-shaped section; 5142, linear section; 52, lifting assembly; 521, electric push rod; 522, second C-shaped plate; 523, horizontal guide rod; 524, threaded rod; 525, vertical guide rod; 526, motor; 6, elastic holding assembly; 61, annular plate body; 62, connecting block; 63, spring; 7, irrigation mechanism; 71, circulating irrigation assembly; 711, water collecting tank; 7111, filter screen; 712, water pump; 713, water inlet pipe; 714, water outlet pipe; 715, water distribution pipe; 716, return pipe; 72, drainage assembly; 721, drainage pipe; 722, cotton strip; 8, interception net. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application; obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0031] Such as Figures 1-6As shown in the figure, an embodiment of the present application discloses a spliced circular irrigation green plant curtain wall system, which includes a wall 1, a top plate 11 fixed to the top of the wall 1, a bottom plate 12 fixed to the bottom of the wall 1, and an installation wall plate 2 fixed between the top plate 11 and the bottom plate 12 and arranged parallel to the wall 1. A plurality of basin seats 3 distributed in a rectangular array are arranged on the side of the installation wall plate 2 away from the wall 1. Cross bars 21 are fixedly paired at positions on the side wall of the installation wall plate 2 corresponding to the bottoms of the basin seats 3. The number of pairs of cross bars 21 is equal to the number of basin seats 3. Connecting plates 4 that are slidably matched with the cross bars 21 are fixed at positions on the bottoms of the basin seats 3 corresponding to the cross bars 21. A planting pot 31 is arranged in each basin seat 3. A driving mechanism 5 is arranged between the wall 1 and the installation wall plate 2. The number of columns of the driving mechanism 5 is equal to the number of columns of the planting pots 31 and the positions correspond one by one. The driving mechanism 5 includes a pushing component 51 for driving the basin seat 3 to push towards the side away from the wall 1 along the cross bar 21 and a lifting component 52 for driving the pushing component 51 to lift and lower.

[0032] When the green plants in a certain planting pot 31 need to be replaced due to reasons such as the growth cycle, the staff only needs to drive the pushing component 51 to lift and lower through the lifting component 52, so that the pushing component 51 drives the basin seat 3 to push towards the side away from the wall 1 along the cross bar 21, and then the planting pot 31 at the corresponding position can be pushed out, thus facilitating the replacement of the green plants in the planting pot 31. This changes the design defect in the traditional design that it is difficult to take out and replace the green plants in the planting pot 31 in a specific area, and expands the applicable range of the green plant curtain wall system.

[0033] The pushing component 51 includes a T-shaped push rod 511 rotatably connected to the side wall of the basin seat 3 close to the wall 1, the T-shaped push rod 511 penetrates through the installation wall panel 2 and has a clearance fit. The pushing component 51 further includes a first C-shaped plate 512 located between the wall 1 and the installation wall panel 2, a first special-shaped rod 513 fixed between the upper side plate body and the lower side plate body of the first C-shaped plate 512, and a second special-shaped rod 514 fixed between the upper side plate body and the lower side plate body of the first C-shaped plate 512. The second special-shaped rod 514 and the first special-shaped rod 513 are in the same vertical plane, the second special-shaped rod 514 is located on the side of the first special-shaped rod 513 away from the installation wall panel 2. The first special-shaped rod 513 includes a C-shaped section 5141 and a straight section 5142 integrally formed with the end of the C-shaped section 5141. There are two straight sections 5142 and they are respectively located at both ends of the C-shaped section 5141. The second special-shaped rod 514 has the same structure and shape as the first special-shaped rod 513. The ratio between the C-shaped section 5141 of the first special-shaped rod 513 and the C-shaped section 5141 of the second special-shaped rod 514 is equal to the ratio between the straight section 5142 of the second special-shaped rod 514 and the straight section 5142 of the second special-shaped rod 514. The rod section of the T-shaped push rod 511 close to the wall 1 is located between the C-shaped section 5141 of the first special-shaped rod 513 and the C-shaped section 5141 of the second special-shaped rod 514. The lifting component 52 is used to control the lifting of the first C-shaped plate 512. An elastic holding component 6 for keeping the T-shaped push rod 511 horizontal is arranged on the installation wall panel 2.

[0034] The lifting component 52 includes an electric push rod 521 fixed to the side wall of the wall 1 close to the installation wall panel 2, a second C-shaped plate 522 fixed to the push rod end of the electric push rod 521, and a horizontal guiding rod 523 fixed to the side wall of the wall 1 close to the installation wall panel 2. The horizontal guiding rod 523 penetrates through the vertical plate section of the second C-shaped plate 522 and has a sliding fit. The lifting component 52 further includes a threaded rod 524 rotatably installed between the upper side plate body and the lower side plate body of the second C-shaped plate 522, a vertical guiding rod 525 fixed between the upper side plate body and the lower side plate body of the second C-shaped plate 522, and a motor 526 fixed to the upper side plate body of the second C-shaped plate 522 and driving the threaded rod 524 to rotate. The threaded rod 524 penetrates through the upper side plate body of the first C-shaped plate 512 and has a threaded connection, the threaded rod 524 penetrates through the lower side plate body of the first C-shaped plate 512 and has a sliding fit. The vertical guiding rod 525 penetrates through the first C-shaped plate 512 and has a sliding fit.

[0035] When the green plants in a certain planting pot 31 need to be replaced due to reasons such as the growth cycle, the staff only need to start the motor 526 to drive the threaded rod 524 to rotate. Since the threaded rod 524 is threadedly connected to the upper side plate body of the second C-shaped plate 522, and the vertical guide rod 525 penetrates through the second C-shaped plate 522 and is in sliding fit, the first C-shaped plate 512 can be lifted and lowered, so that the first special-shaped rod 513 and the second special-shaped rod 514 are lifted and lowered synchronously with the first C-shaped plate 512. After the top or bottom of the C-shaped section 5141 of the first special-shaped rod 513 abuts against the rod section of the T-shaped push rod 511 away from the basin seat 3, the T-shaped push rod 511 is flipped, so that the first C-shaped plate 512, the first special-shaped rod 513 and the second special-shaped rod 514 can be lifted and lowered. Until the first C-shaped plate 512 moves to the height corresponding to the planting pot 31 where the green plants need to be replaced, the T-shaped push rod 511 remains horizontal under the action of the elastic holding assembly 6. At this time, the staff only need to start the electric push rod 521, and the push rod of the electric push rod 521 can drive the second C-shaped plate 522 to move towards the side away from the wall 1 until the planting pot 31 where the green plants need to be replaced is completely pushed out. Then the staff can easily replace the green plants in the planting pot 31. Similarly, by controlling the electric push rod 521 in the reverse direction, the planting pot 31 with the replaced green plants can be controlled to reset.

[0036] A linear chute 5111 is provided at the top of the rod section of the T-shaped push rod 511 connected to the installation wall panel 2. The elastic holding assembly 6 includes an annular plate body 61 sleeved on the rod section of the T-shaped push rod 511 connected to the installation wall panel 2 and in clearance fit, a connecting block 62 integrally formed on the inner side of the annular plate body 61 and slidably fitted with the linear chute 5111, and a spring 63 sleeved on the rod section of the T-shaped push rod 511 connected to the installation wall panel 2. One end of the spring 63 is fixed to the side wall of the installation wall panel 2 close to the wall 1, and the other end of the spring 63 is fixed to the side wall of the annular plate body 61 away from the wall 1.

[0037] The spring 63 has good elastic force, and at the same time has a certain torsional force and the ability to maintain its original state. When the spring 63 is in its original length state, the T-shaped push rod 511 is in a horizontal state. When the section of the T-shaped push rod 511 close to the wall 1 is abutted by the top or bottom of the C-shaped section 5141 of the first special-shaped rod 513, since the connecting block 62 on the annular plate body 61 is slidably matched with the one-word chute 5111 on the T-shaped push rod 511, the annular plate body 61 rotates synchronously with the T-shaped push rod 511. The spring 63 is twisted during this process. Until the first special-shaped rod 513, the second special-shaped rod 514 and the first C-shaped plate 512 pass through the T-shaped push rod 511, the T-shaped push rod 511 is reset under the elastic force of the spring 63, so that the first C-shaped plate 512, the first special-shaped rod 513 and the second special-shaped rod 514 move to the height where the planting pot 31 for the green plant to be replaced is located, facilitating the control of the corresponding pot seat 3 and the planting pot 31 to move out after the push rod of the electric push rod 521 extends, which is beneficial to replacing the corresponding green plants.

[0038] An irrigation mechanism 7 for irrigating the green plants in the planting pot 31 is arranged between the top plate 11 and the bottom plate 12. The irrigation mechanism 7 includes a circulating irrigation component 71 and a drainage component 72. The circulating irrigation component 71 includes a water collecting tank 711 arranged at a position close to the bottom of the installation wall panel 2, a water pump 712 fixed to the top of the top plate 11, a water inlet pipe 713 fixedly connected and communicated with the water inlet of the water pump 712, a water outlet pipe 714 fixedly connected and communicated with the water outlet pipe 714 of the water pump 712, a water distribution pipe 715 fixedly connected and communicated with the end of the water outlet pipe 714 far from the water pump 712, and a return pipe 716 fixedly connected and communicated with the bottom of the water distribution pipe 715. The water inlet end of the water inlet pipe 713 passes through the installation wall panel 2 and the water collecting tank 711 and extends to the bottom of the water collecting tank 711. The main pipe section of the water inlet pipe 713 and the return pipe 716 are both located between the wall 1 and the installation wall panel 2. The number of the return pipes 716 is equal to the number of columns of the pot seats 3 and the positions correspond one by one. The water outlet end of the return pipe 716 penetrates through the installation wall panel 2 and the side wall of the water collecting tank 711. The number of groups of the drainage components 72 is equal to the number of the pot seats 3 and the positions correspond one by one. Each group of drainage components 72 includes a drainage pipe 721 fixedly connected and communicated with the side of the return pipe 716 far from the wall 1. The drainage pipe 721 penetrates through the installation wall panel 2 and is in clearance fit. The length direction of the drainage pipe 721 is parallel to the length direction of the cross bar 21. A plug hole 32 for the drainage pipe 721 to be plugged and matched is arranged on one side of the pot seat 3 close to the wall 1. The plug hole 32 extends to the bottom of the planting pot 31. The drainage component 72 further includes a cotton strip 722 arranged in the drainage pipe 721. One end of the cotton strip 722 close to the wall 1 extends into the return pipe 716.

[0039] After the water pump 712 works, it pumps the water in the water collecting tank 711 to the water outlet pipe 714 through the water inlet pipe 713, and then the water flows back to the water collecting tank 711 through the water distribution pipe 715 and the return pipe 716 in sequence. The cotton strip 722 diverts part of the passing moisture to the basin base 3 through the diversion pipe 721 to supply the water required for the growth of the green plants in the planting pot 31, completing the circulating irrigation of the green plants in the green plant curtain wall system.

[0040] To reduce the probability that the basin base 3 cannot be smoothly pushed out due to the excessive growth of the green plants, a blocking net 8 is fixedly installed at the bottom of the two connecting plates 4 corresponding to the basin base 3. The blocking net 8 reduces the probability that the vines of the green plants climb onto the upper cross bar 21 and affect the movement of the connecting plate 4 and the basin base 3. To facilitate the smooth growth of the green plants in the planting pot 31, the planting pot 31 is inclined, and the distance between the planting pot 31 and the installation wall panel 2 decreases from top to bottom.

[0041] A filter screen 7111 is detachably installed in the water collecting tank 711. The filter screen 7111 is horizontally arranged, and the water outlet end of the return pipe 716 is higher than the top of the filter screen 7111. The filter screen 7111 plays a good filtering role in the returned water, reducing the probability that the water inlet pipe 713 is blocked due to the excessive impurities in the returned water.

[0042] The above are only the preferred embodiments of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the concept of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, several improvements and refinements made without departing from the principle of the present invention should also be regarded as within the protection scope of the present invention.

Claims

1. A spliced ​​circulating watering green plant curtain wall system, comprising a wall (1), a top plate (11) fixed to the top of the wall (1), a bottom plate (12) fixed to the bottom of the wall (1), and a mounting wall plate (2) fixed between the top plate (11) and the bottom plate (12) and arranged parallel to the wall (1), wherein: A plurality of pot seats (3) distributed in a rectangular array are arranged on the side of the installation wall panel (2) away from the wall body (1); cross bars (21) are fixed in pairs at positions corresponding to the side wall of the installation wall panel (2) and the bottom of the pot seats (3); the number of pairs of the cross bars (21) is equal to the number of the pot seats (3); a connecting plate (4) that slidably cooperates with the cross bars (21) is fixed at positions corresponding to the bottom of the pot seats (3) and the cross bars (21); a planting pot (31) is arranged in each pot seat (3); a driving mechanism (5) is arranged between the wall body (1) and the installation wall panel (2); the number of columns of the driving mechanism (5) is equal to the number of columns of the planting pots (31) and the positions correspond one to one; the driving mechanism (5) comprises a pushing assembly (51) for driving the pot seats (3) along the cross bars (21) toward the side away from the wall body (1) and a lifting assembly (52) for driving the pushing assembly (51) to rise and fall.

2. According to claim 1, the spliced ​​circulating watering green plant curtain wall system is characterized by: The push assembly (51) comprises a T-shaped push rod (511) rotatably connected to a side wall of the basin seat (3) close to the wall (1), the T-shaped push rod (511) passes through the mounting wall plate (2) and is clearance-fitted, and the push assembly (51) further comprises a first C-shaped plate (512) located between the wall (1) and the mounting wall plate (2), a first special-shaped rod (512) fixed between an upper plate body of the first C-shaped plate (512) and a lower plate body of the first C-shaped plate (512), and a first special-shaped rod (512) fixed between an upper plate body of the first C-shaped plate (512) and a lower plate body of the first C-shaped plate (512). 13) and a second special-shaped rod (514) fixed between an upper plate body of the first C-shaped plate (512) and a lower plate body of the first C-shaped plate (512), wherein the second special-shaped rod (514) and the first special-shaped rod (513) are located on the same vertical plane, the second special-shaped rod (514) is located on a side of the first special-shaped rod (513) away from the installation wall panel (2), and the first special-shaped rod (513) includes a C-shaped segment (5141) and a second special-shaped rod (514) connected to the C-shaped segment (5141). ) has a segment (5142) integrally formed at the end thereof, the segment (5142) being provided with two segments and being respectively located at the two ends of the C-shaped segment (5141), the second special-shaped rod (514) and the first special-shaped rod (513) having the same structure and shape, the ratio between the C-shaped segment (5141) of the first special-shaped rod (513) and the C-shaped segment (5141) of the second special-shaped rod (514) being equal to the ratio between the segment (5142) of the second special-shaped rod (514) and the C-shaped segment (5141) of the second special-shaped rod (514). The ratio between a section (5142) of a first special-shaped rod (514) and a section (5143) of a second special-shaped rod (514); the section of the T-shaped push rod (511) close to the wall (1) is located between the C-shaped section (5141) of the first special-shaped rod (513) and the C-shaped section (5141) of the second special-shaped rod (514); the lifting assembly (52) is used to control the lifting of the first C-shaped plate (512); and the installation wall panel (2) is provided with an elastic retaining assembly (6) for maintaining the horizontality of the T-shaped push rod (511).

3. The spliced ​​circulating watering green plant curtain wall system according to claim 2 is characterized by: The lifting assembly (52) comprises an electric push rod (521) fixed to a side wall of the wall body (1) close to the side where the wall panel (2) is installed, a second C-shaped plate (522) fixed to the push rod end of the electric push rod (521), and a transverse guide rod (523) fixed to the side wall of the wall body (1) close to the side where the wall panel (2) is installed, wherein the transverse guide rod (523) penetrates the vertical plate section of the second C-shaped plate (522) and slidably cooperates therewith, and the lifting assembly (52) further comprises a plate body rotatably mounted on the upper side of the second C-shaped plate (522) and a plate body rotatably mounted on the lower side of the second C-shaped plate (522). A threaded rod (524) is provided between the upper plate body of the second C-shaped plate (522) and the lower plate body of the second C-shaped plate (522), a vertical guide rod (525) is fixed between the upper plate body of the second C-shaped plate (522) and the lower plate body of the second C-shaped plate (522), and a motor (526) is fixed on the upper plate body of the second C-shaped plate (522) and drives the threaded rod (524) to rotate, the threaded rod (524) passes through the upper plate body of the first C-shaped plate (512) and is threadedly connected, the threaded rod (524) passes through the lower plate body of the first C-shaped plate (512) and is slidably fitted, and the vertical guide rod (525) passes through the first C-shaped plate (512) and is slidably fitted.

4. The spliced ​​circulating watering green plant curtain wall system according to claim 3 is characterized by: A straight groove (5111) is provided at the top of the rod section where the T-shaped push rod (511) is connected to the mounting wall panel (2); the elastic retaining assembly (6) comprises an annular plate body (61) sleeved on the rod section where the T-shaped push rod (511) is connected to the mounting wall panel (2) and is clearance-matched; a connecting block (62) integrally formed with the inner side of the annular plate body (61) and slidably matched with the straight groove (5111); and a spring (63) sleeved on the rod section where the T-shaped push rod (511) is connected to the mounting wall panel (2); one end of the spring (63) is fixed to the side wall of the mounting wall panel (2) close to the wall (1), and the other end of the spring (63) is fixed to the side wall of the annular plate body (61) away from the wall (1).

5. The spliced ​​circulating watering green plant curtain wall system according to claim 4 is characterized by: An irrigation mechanism (7) for irrigating green plants in the planting pot (31) is arranged between the top plate (11) and the bottom plate (12), the irrigation mechanism (7) comprising a circulating irrigation component (71) and a drainage component (72), the circulating irrigation component (71) comprising a water collecting tank (711) arranged at a position of the mounting wall plate (2) close to the bottom of the mounting wall plate (2), a water pump (712) fixed to the top of the top plate (11), a water inlet pipe (713) fixed to and connected to the water inlet of the water pump (712), a water outlet pipe (714) fixed to and connected to the water outlet pipe (714) of the water pump (712), and a water outlet pipe (715) fixed to and connected to the water outlet pipe (716) of the water pump (716). 14) a water distribution pipe (715) fixed and connected to one end away from the water pump (712) and a return pipe (716) fixed and connected to the bottom of the water distribution pipe (715), the water inlet end of the water inlet pipe (713) passes through the installation wall panel (2) and the water collecting tank (711) and extends to the bottom of the water collecting tank (711), the main pipe section of the water inlet pipe (713) and the return pipe (716) are both located between the wall (1) and the installation wall panel (2), the number of the return pipes (716) is equal to the number of the columns of the basin seat (3) and the positions correspond one to one, and the water outlet end of the return pipe (716) passes through the installation wall panel (2) and the side wall of the water collecting tank (711); The number of groups of the drainage components (72) is equal to the number of the pot seats (3) and their positions correspond one to one. Each group of the drainage components (72) comprises a drainage tube (721) fixed to and connected to the side of the return tube (716) away from the wall (1). The drainage tube (721) passes through the mounting wall panel (2) and is loosely fitted. The length direction of the drainage tube (721) is parallel to the length direction of the cross bar (21). A plug-in hole (32) for plugging and fitting the drainage tube (721) is provided on the side of the pot seat (3) close to the wall (1). The plug-in hole (32) extends to the bottom of the planting pot (31). The drainage components (72) further comprise a cotton strip (722) arranged in the drainage tube (721). The end of the cotton strip (722) close to the wall (1) extends into the return tube (716).

6. The spliced ​​circulating watering green plant curtain wall system according to claim 5 is characterized by: An interception net (8) is fixed to the bottom of two connecting plates (4) corresponding to the basin seat (3).

7. The spliced ​​circulating watering green plant curtain wall system according to claim 5 is characterized by: The planting pot (31) is arranged at an angle, and the distance between the planting pot (31) and the mounting wall panel (2) decreases from top to bottom.

8. The spliced ​​circulating watering green plant curtain wall system according to claim 5 is characterized by: A filter screen (7111) is detachably provided in the water collecting tank (711), the filter screen (7111) is arranged horizontally, and the water outlet end of the return pipe (716) is higher than the top of the filter screen (7111).

Citation Information

Patent Citations

  • An automatically irrigated green wall system

    CN112640688B