Green building design ecological decorative plate

By integrating wind speed measurement and automatic shading mechanisms into the eco-friendly decorative panels designed for green buildings, the problem of plants tipping over in strong winds has been solved, achieving both decorative effect protection for plants and stability of the ecological environment under different wind speeds.

CN224538906UActive Publication Date: 2026-07-24POWERCHINA HUADONG ENG CORP LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
POWERCHINA HUADONG ENG CORP LTD
Filing Date
2025-08-01
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Plants within existing urban greening frameworks are prone to tipping over in strong winds, affecting both aesthetic appeal and the ecological environment.

Method used

Design a green building design eco-friendly decorative panel, including a frame body, a shielding mechanism, an anemometer and a controller. The anemometer monitors the wind speed, and the controller controls the shielding curtain to automatically roll up or unfold under different wind speeds to protect the plants.

Benefits of technology

The curtains automatically adjust their state under different wind speeds to protect plants and maintain a good decorative effect and ecological environment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224538906U_ABST
Patent Text Reader

Abstract

The utility model relates to a kind of green building design ecological decorative plates.It is applicable to environmental engineering construction technical field.The utility model adopts the technical scheme: a kind of green building design ecological decorative plate has: frame main body, soil is filled in frame main body, and plants are planted on soil;Shielding mechanism, it is arranged at the position of four around frame main body top, with shielding curtain and the winding mechanism that can drive shielding curtain winding, winding mechanism can wind shielding curtain to the position of four around plant that shielding curtain is arranged on frame main body;Wind speed measuring instrument, it is installed on frame main body, can measure the wind speed at the position of frame main body;Controller, shielding mechanism, wind speed measuring instrument are all with controller communication connection, controller can receive the wind speed obtained by wind speed measuring instrument, when the wind speed received by controller exceeds the wind speed value pre-set by controller, controller can control shielding mechanism to operate and make shielding curtain to shield plant.
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Description

Technical Field

[0001] This utility model relates to an eco-friendly decorative panel for green building design. It is applicable to the field of environmental engineering construction technology. Background Technology

[0002] With the progress of urbanization, green areas in cities are constantly shrinking. Currently, greening projects on roadsides and walls typically involve arranging frames and planting plants within them. However, due to limited space, the frames are small, and the plants within them are also small. In strong winds, the plants in the frames are prone to tipping over, affecting both the aesthetic appeal and the ecological environment. Utility Model Content

[0003] The technical problem to be solved by this utility model is: to solve the above-mentioned technical problem, this utility model provides an ecological decorative panel for green building design.

[0004] The technical solution adopted in this utility model is: a green building design eco-friendly decorative panel, which has the following characteristics: The main frame is filled with soil, and plants are grown on the soil. The shielding mechanism is arranged around the top of the main frame and has a shielding curtain and a rewinding mechanism that can drive the shielding curtain to rewind. The rewinding mechanism can rewind the shielding curtain to the position around the plants on the main frame. An anemometer, installed on the main frame, can measure the wind speed at the location of the main frame. The controller, shading mechanism, and anemometer are all communicatively connected to the controller. The controller receives wind speed data from the anemometer. When the wind speed received by the controller exceeds a preset wind speed value, the controller controls the shading mechanism to operate and cause the shading curtain to cover the plants. Thus, when the wind speed is low, the retracting mechanism retracts the shading curtain until it does not cover the plants inside the frame, allowing the plants inside the frame to be exposed, providing a good decorative effect. When the wind speed increases to the point where the wind speed information obtained by the anemometer is higher than the preset wind speed value in the controller, the controller controls the shading mechanism to operate and controls the drive to retract the shading curtain until it is positioned on the frame, providing good protection for the plants planted on the frame. When the wind speed decreases to the point where the wind speed information obtained by the anemometer is lower than the preset wind speed value in the controller, the controller controls the shading mechanism to operate and controls the drive to retract the shading curtain until it does not cover the plants inside the frame.

[0005] The shading mechanism has a bracket mounted above the main frame. A first rotating shaft and a second rotating shaft, arranged horizontally, are mounted at the upper and lower ends of the bracket. The first and second rotating shafts are rotatably mounted on the bracket and are driven by a drive mechanism mounted on the bracket to rotate in the same direction. A shading curtain is positioned between the first and second rotating shafts and has through holes. When the first and second rotating shafts rotate synchronously, the shading curtain can move up and down until the through holes on the curtain are located between the first and second rotating shafts. Thus, when the drive mechanism drives the first and second rotating shafts to rotate in the same direction, it can move the shading curtain on the first and second rotating shafts up and down. When the shading curtain moves until the through holes on the curtain are between the first and second rotating shafts, the shading curtain does not shade the plants on the main frame, and the plants on the main frame are exposed. When the shading curtain moves until the through holes on the curtain are not between the first and second rotating shafts, the shading curtain does shade the plants on the main frame.

[0006] The drive mechanism has a drive motor mounted on a bracket. A first rotating shaft is connected to the output shaft of the drive motor. A first pulley is mounted at the end of the first rotating shaft, and a second pulley is mounted at the end of the second rotating shaft. The first and second pulleys are connected to the same belt. Thus, when the drive motor is running, the first and second rotating shafts can rotate synchronously. When the first and second rotating shafts rotate synchronously in both directions, they can drive the curtains on the first and second rotating shafts to move up and down.

[0007] A mounting plate is installed on the side wall of the main frame, and bolts are installed on the mounting plate, allowing the main frame to be mounted to the wall via bolts. This facilitates the installation of the main frame onto the wall.

[0008] A horizontally arranged mesh layer is installed within the main frame structure. Each end of the mesh layer has a locking block, and a groove is formed on the inner wall of the main frame structure to engage with the locking blocks. This allows the mesh layer to be easily installed within the main frame structure through the engagement of the locking blocks and grooves. After the mesh layer is installed, soil is filled into the main frame structure. The mesh layer stabilizes the soil within the main frame structure, which is beneficial for the stable planting of plants.

[0009] Vertically arranged partitions are installed within the main frame structure to divide the area within the frame. This facilitates the division of the area within the frame and allows for the appropriate filling of corresponding soil areas when different types of plants are planted within the same frame.

[0010] The main frame has a base plate, with columns installed around the base plate and horizontal plates installed between adjacent columns. The horizontal plates and the base plate together form a planting area.

[0011] Drainage holes are provided on the base plate. This allows excess water inside the frame to drain through the drainage holes after the frame is filled with soil and planted.

[0012] The columns extend downwards to form support feet. In this way, after the main body of the frame is placed on the bottom surface, the support feet prevent the bottom surface from closing the drainage holes on the bottom plate, thus maintaining the good drainage performance of the drainage holes.

[0013] The curtain has an outer elastic film and an inner moisturizing film.

[0014] The beneficial effects of this utility model are as follows: By setting a frame body, filling the frame body with soil, and planting plants on the soil, this utility model achieves good decorative and ecological effects; by setting drainage holes on the bottom plate of the frame body, it facilitates the drainage of excess water; by installing an mounting plate on the frame body and mounting bolts on the mounting plate, it facilitates the installation of the frame body on a wall; by having a hidden support frame at the bottom of the bottom plate, it facilitates lifting the bottom plate off the ground when the frame body is placed on the ground, avoiding affecting the drainage performance of the drainage holes on the bottom plate; by setting a bracket on the frame body, and installing a first and second rotating shaft on the bracket, the first and second rotating shafts are driven by a drive mechanism to rotate in the same direction. A curtain is arranged between the first and second rotating shafts, and the curtain can move back and forth between the first and second rotating shafts when they rotate synchronously in both directions. The curtain has through holes, so that when the drive mechanism drives the curtain between the first and second rotating shafts... When the curtain moves to a position where the through-hole is between the first and second rotating shafts, the curtain does not shield the plants on the frame. When the drive mechanism moves the curtain between the first and second rotating shafts until the through-hole is no longer between them, the curtain shields the plants on the frame. This invention, by installing a wind speed meter and controller on the frame, allows the wind speed meter to monitor the wind speed in the area where the frame is located in real time and send the data to the controller. The wind speed received by the controller is higher than a preset value. When the wind speed is within a certain value, the controller will control the drive motor to run and drive the curtain to move until the through hole on the curtain is not between the first and second rotating shafts. At this time, the curtain can cover the plants inside the frame and protect them. When the wind speed decreases to a value lower than the wind speed value preset in the controller, the controller will control the drive motor to run and drive the curtain to move until the through hole on the curtain is between the first and second rotating shafts. At this time, the curtain fails to cover the plants inside the frame and the plants are exposed, which has a good decorative effect. Attached Figure Description

[0015] Figure 1 : A schematic diagram of the structure of this utility model.

[0016] Figure 2 This is a schematic diagram of the structure of the shielding mechanism in this utility model when it shields the plants on the frame body.

[0017] Figure 3 : A schematic diagram of the structure of the shielding mechanism in this utility model when it does not shield the plants on the frame body.

[0018] Figure 4 : A schematic diagram of the frame structure in Embodiment 3 of this utility model.

[0019] Figure 5 : A schematic diagram of the frame structure in Embodiment 4 of this utility model.

[0020] Figure 6 : A schematic diagram of the structure of the blind curtain in this utility model.

[0021] Figure 7 : Connection block diagram of this utility model.

[0022] In the diagram: 1. Frame body; 1-1. Mounting plate; 1-2. Bolt; 1-3. Mesh layer; 1-4. Clip; 1-5. Partition; 1-6. Base plate; 1-7. Column; 1-8. Horizontal plate; 1-9. Support leg; 2. Shielding mechanism; 2-1. Bracket; 2-2. First rotating shaft; 2-3. Second rotating shaft; 2-4. Shielding curtain; 2-5. Through hole; 2-6. Drive motor; 2-7. First pulley; 2-8. Second pulley; 2-9. Belt; 2-10. Elastic membrane; 2-11. Moisturizing membrane; 3. Anemometer; 4. Controller. Detailed Implementation

[0023] The present invention will be further described in detail below with reference to the accompanying drawings and through embodiments. The following embodiments are explanations of the present invention, but the present invention is not limited to the following embodiments.

[0024] This embodiment is an eco-friendly decorative panel for green building design, comprising a frame body 1, a base plate 1-6, columns 1-7 installed around the base plate 1-6, and horizontal panels 1-8 installed between adjacent columns 1-7, with each horizontal panel 1-8 and the base plate 1-6 enclosing a planting area. Soil is filled within the planting area of ​​the frame body 1, and plants are planted on the soil.

[0025] In this embodiment, drainage holes are provided on the base plate 1-6 so that excess water inside the frame body 1 can be discharged through the drainage holes on the base plate 1-6.

[0026] In this embodiment, the columns 1-7 extend downward to form support feet 1-9. Thus, when the frame body 1 is placed on the ground, the support feet 1-9 can lift the base plate 1-6, preventing the base plate 1-6 from directly contacting the ground and causing the drainage holes on the base plate 1-6 to become blocked.

[0027] In this embodiment, a mounting plate 1-1 is installed on the side wall of the frame body 1, and bolts 1-2 are installed on the mounting plate 1-1. The frame body 1 can be installed on the wall by means of bolts 1-2. In this way, it is convenient to install the frame body 1 on the wall by means of the threaded engagement between the bolts 1-2 and the wall.

[0028] In this embodiment, a shielding mechanism 2 is arranged around the frame body 1. The shielding mechanism 2 has a shielding curtain 2-4 and a winding mechanism that can drive the shielding curtain 2-4 to roll up. The winding mechanism can roll up the shielding curtain 2-4 so that the shielding curtain 2-4 is arranged around the plants on the frame body 1. An anemometer 3 is installed on the frame body 1. The anemometer 3 can measure the wind speed at the location of the frame body 1.

[0029] In this embodiment, the blind curtain 2-4 has an outer elastic film 2-10 and an inner moisturizing film 2-11. The elastic film 2-10 is made of polyester fiber or polyurethane, and the moisturizing film 2-11 is made of cotton.

[0030] Furthermore, in this embodiment, both the shielding mechanism 2 and the anemometer 3 are connected to the controller 4. The controller 4 can receive the wind speed obtained by the anemometer 3. When the wind speed received by the controller 4 is higher than the preset wind speed value of the controller 4, the controller 4 can control the shielding mechanism 2 to operate and make the shielding curtain 2-4 shield the plants. Thus, when the wind speed is low, the winding mechanism rolls up the shielding curtain 2-4 to the plants inside the frame body 1 that are not shielded by the shielding curtain 2-4, allowing the plants inside the frame body 1 to be exposed, providing a good decorative effect; when the wind speed increases to the point where the wind speed information obtained by the anemometer 3 is higher than the preset wind speed value in the controller 4, the controller 4 controls the shielding mechanism 2 to operate and controls the drive to roll up the shielding curtain 2-4 until it is placed on the frame body 1, providing good protection for the plants planted on the frame body 1; when the wind speed decreases to the point where the wind speed information obtained by the anemometer 3 is lower than the preset wind speed value in the controller 4, the controller 4 controls the shielding mechanism 2 to operate and controls the drive to roll up the shielding curtain 2-4 to the plants inside the frame body 1 that are not shielded.

[0031] Example 2 is a green building design eco-decorative panel. Based on Example 1, in this example, the shielding mechanism 2 has a bracket 2-1 installed above the frame body 1. A first rotating shaft 2-2 and a second rotating shaft 2-3 arranged horizontally are installed at the upper and lower ends of the bracket 2-1. The first rotating shaft 2-2 and the second rotating shaft 2-3 are rotatably installed on the bracket 2-1. The first rotating shaft 2-2 and the second rotating shaft 2-3 are driven by a drive mechanism installed on the bracket 2-1 and rotate in the same direction. The shielding curtain 2-4 is arranged between the first rotating shaft 2-2 and the second rotating shaft 2-3. The shielding curtain 2-4 has a through hole 2-5. When the first rotating shaft 2-2 and the second rotating shaft 2-3 rotate synchronously, the shielding curtain 2-4 can move up and down until the through hole 2-5 on the shielding curtain 2-4 is located between the first rotating shaft 2-2 and the second rotating shaft 2-3. Thus, when the drive mechanism drives the first rotating shaft 2-2 and the second rotating shaft 2-3 to rotate synchronously in the forward or reverse direction, it can cause the curtain 2-4 to roll up between the first rotating shaft 2-2 and the second rotating shaft 2-3. When the drive mechanism moves the curtain 2-4 between the first rotating shaft 2-2 and the second rotating shaft 2-3 until the through hole 2-5 on the curtain 2-4 is between the first rotating shaft 2-2 and the second rotating shaft 2-3, the curtain 2-4 does not provide shade for the plants on the frame body 1; when the drive mechanism moves the curtain 2-4 between the first rotating shaft 2-2 and the second rotating shaft 2-3 until the through hole 2-5 on the curtain 2-4 is not between the first rotating shaft 2-2 and the second rotating shaft 2-3, the curtain 2-4 provides shade for the plants on the frame body 1.

[0032] The first rotating shafts 2-2 and the second rotating shafts 2-3 located around the top of the main frame 1 are connected by universal joint couplings. In this way, the drive motor 2-6 can drive the curtains 2-4 located around the top of the main frame 1 to move synchronously during operation.

[0033] In this embodiment, the drive mechanism includes a drive motor 2-6 mounted on a bracket 2-1. A first rotating shaft 2-2 is connected to the output shaft of the drive motor 2-6. A first pulley 2-7 is mounted at the end of the first rotating shaft 2-2, and a second pulley 2-8 is mounted at the end of the second rotating shaft 2-3. The first pulley 2-7 and the second pulley 2-8 are connected to the same belt 2-9. Thus, when the drive motor 2-6 is running, the belt 2-9, the first pulley 2-7, and the second pulley 2-8 can drive the first rotating shaft 2-2 and the second rotating shaft 2-3 to rotate in the same direction.

[0034] Example 3 is an eco-friendly decorative panel for green building design. Based on Example 1, in this example, a horizontally arranged mesh layer 1-3 is arranged inside the frame body 1. Each end of the mesh layer 1-3 has a locking block 1-4, and a slot is formed on the inner wall of the frame body 1 to cooperate with the locking blocks 1-4. Thus, the mesh layer 1-3 is easily installed and removed from the frame body 1 through the cooperation of the locking blocks 1-4 on the mesh layer 1 and the slot on the inner wall of the frame body 1. After the mesh layer 1-3 is installed inside the frame body 1, soil is filled into the frame body 1. The mesh layer 1-3 stabilizes the soil inside the frame body 1, which is beneficial for the stability of plants planted in the soil. The plant roots can also grow downwards through the mesh openings in the mesh layer 1-3.

[0035] Furthermore, multiple mesh layers 1-3 are arranged within the main frame 1, with the mesh size of each mesh layer 1-3 gradually decreasing from top to bottom.

[0036] Example 4 is an eco-friendly decorative panel for green building design. Based on Example 1, in this example, vertically arranged partitions 1-5 are provided within the main frame 1. These partitions 1-5 divide the area within the main frame 1. This facilitates the division of the area within the main frame 1, and allows for the filling of corresponding soil areas within the same area when different types of plants are planted within the same main frame 1.

[0037] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A green building design eco-friendly decorative panel, characterized in that: have: The main frame (1) is filled with soil and plants are planted on the soil. The shielding mechanism (2) is arranged around the frame body (1) and has a shielding curtain (2-4) and a winding mechanism that can drive the shielding curtain (2-4) to be rolled up. The winding mechanism can roll up the shielding curtain (2-4) to the position of the shielding curtain (2-4) around the plant on the frame body (1). An anemometer (3) is installed on the frame body (1) and can measure the wind speed at the location of the frame body (1); The controller (4), the shielding mechanism (2), and the wind speed measuring instrument (3) are all connected to the controller (4) for communication. The controller (4) can receive the wind speed obtained by the wind speed measuring instrument (3). When the wind speed received by the controller (4) is higher than the wind speed value preset by the controller (4), the controller (4) can control the shielding mechanism (2) to operate and make the shielding curtain (2-4) shield the plants.

2. The green building design eco-decorative panel according to claim 1, characterized in that: The shielding mechanism (2) has a bracket (2-1) installed above the frame body (1). A first rotating shaft (2-2) and a second rotating shaft (2-3) arranged in a horizontal direction are installed at the upper and lower ends of the bracket (2-1). The first rotating shaft (2-2) and the second rotating shaft (2-3) are rotatably installed on the bracket (2-1). The first rotating shaft (2-2) and the second rotating shaft (2-3) are driven by a drive mechanism installed on the bracket (2-1) and rotate in the same direction. The shielding curtain (2-4) is arranged between the first rotating shaft (2-2) and the second rotating shaft (2-3). The shielding curtain (2-4) has a through hole (2-5). When the first rotating shaft (2-2) and the second rotating shaft (2-3) rotate synchronously, the shielding curtain (2-4) can move up and down until the through hole (2-5) on the shielding curtain (2-4) is located between the first rotating shaft (2-2) and the second rotating shaft (2-3).

3. The green building design eco-decorative panel according to claim 2, characterized in that: The drive mechanism has a drive motor (2-6) mounted on a bracket (2-1), a first rotating shaft (2-2) connected to the output shaft of the drive motor (2-6), a first pulley (2-7) mounted at the end of the first rotating shaft (2-2), a second pulley (2-8) mounted at the end of the second rotating shaft (2-3), and the first pulley (2-7) and the second pulley (2-8) connected to the same belt (2-9).

4. The green building design eco-decorative panel according to claim 1, characterized in that: An mounting plate (1-1) is installed on the side wall of the frame body (1), and bolts (1-2) are installed on the mounting plate (1-1). The frame body (1) can be installed on the wall by bolts (1-2).

5. The green building design eco-decorative panel according to claim 1, characterized in that: A horizontally arranged mesh layer (1-3) is arranged inside the frame body (1). Both ends of the mesh layer (1-3) are provided with a locking block (1-4). A slot is made on the inner wall of the frame body (1) to cooperate with the locking block (1-4).

6. The green building design eco-decorative panel according to claim 1, characterized in that: A partition (1-5) arranged vertically is provided inside the frame body (1), and the partition (1-5) can divide the area inside the frame body (1).

7. The green building design eco-decorative panel according to claim 1, characterized in that: The main frame (1) has a base plate (1-6), and columns (1-7) are installed around the base plate (1-6). Horizontal plates (1-8) are installed between two adjacent columns (1-7), and each horizontal plate (1-8) and the base plate (1-6) enclose a planting area.

8. The green building design eco-decorative panel according to claim 7, characterized in that: Drainage holes are made on the base plate (1-6).

9. The green building design eco-decorative panel according to claim 8, characterized in that: The column (1-7) extends downward to form a support foot (1-9).

10. The green building design eco-decorative panel according to claim 1, characterized in that: The blind curtain (2-4) has an outer elastic film (2-10) and an inner moisturizing film (2-11).