Adjustable sunshade wall page system utilizing recycled materials

By designing an adjustable shading wall system, utilizing recycled materials and automatic adjustment functions, the problem of insufficient indoor lighting caused by shading brick walls is solved, achieving a combination of shading and plant cultivation, thus achieving energy-saving and environmentally friendly effects.

CN224200178UActive Publication Date: 2026-05-05CHINA CONSTR FIFTH ENG DIV CORP LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA CONSTR FIFTH ENG DIV CORP LTD
Filing Date
2025-05-20
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing sunshade brick walls are difficult to provide space for planting plants and can only adjust the angle of individual bricks, resulting in insufficient indoor lighting.

Method used

Design an adjustable shading wall panel system that uses wall panels made of recycled materials. The light transmission channel can be adjusted by rotating the wall panels. Combined with planting troughs and sprinklers, it provides a growing environment for plants and automatically adjusts the shading effect through light and temperature sensors.

Benefits of technology

It increases indoor light intensity when light is low and provides effective shading when light is strong, reducing heat accumulation and energy consumption, while providing the water and nutrients needed for plant growth, thus achieving an energy-saving and environmentally friendly shading effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable sunshade wall page system utilizing recycled materials, which comprises a support frame fixed on an outer wall, the front end of the support frame extends out of the outer wall, a plurality of wall pages are rotatably arranged at the front end of the support frame, the lower ends of the wall pages are rotatably connected with support legs, a plurality of recycled bricks are arranged in the wall pages, and planting bricks are arranged among part of the recycled bricks. The front ends of the planting bricks extend out of the wall page, planting grooves are formed in the front ends of the planting bricks, and spray heads are arranged on a frame of the wall page. Compared with the prior art, when light is weak, the light-transmitting channel is opened by rotating the wall page, and the indoor brightness can be effectively improved. When the sunlight is strong, the light-transmitting channel is closed by rotating the wall page, the sunlight is blocked outside the wall page, and the sunshade effect is guaranteed. Secondly, the planting grooves are formed in the planting bricks of the wall page, so that nutrients and water can be well retained. And thirdly, spray heads are arranged so that water can be conveniently sprayed to plants in the planting grooves, and meanwhile the wall page can be rapidly cooled.
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Description

Technical Field

[0001] This utility model relates to the field of shading wall technology, and in particular to an adjustable shading wall system utilizing recycled materials. Background Technology

[0002] In regions with hot summers and warm winters, or hot summers and cold winters, Class A public buildings should implement shading measures for south-, east-, and west-facing exterior windows and translucent curtain walls. Movable building shading systems can reduce solar radiation while also adjusting the angle of sunlight to ensure indoor comfort. They can be widely used in facade renovations during urban renewal projects, as well as in other public buildings such as public restrooms where privacy and ventilation are crucial. Currently, double-layered shading brick walls (or terracotta panel walls) are common in some public buildings abroad. By adjusting the angle of individual terracotta panels, varied facade effects can be created, and the double-layered walls provide effective shading. However, because only a single panel can be adjusted, and the adjustment angle is limited, the amount of light entering the interior is limited when sunlight is weak. Furthermore, because the outer wall is exposed to solar radiation, it accumulates a large amount of heat, which indirectly radiates heat into the building's interior, weakening the effect of blocking solar radiation in summer. Secondly, vertical greening has been widely used in many cities, commonly found in building exteriors, public spaces, interior decoration, and landscape design. Vertical greening can improve air quality, absorb carbon dioxide, reduce noise and dust pollution, and bring greenery into urban spaces. Furthermore, vertical greening can regulate indoor temperature, improve building insulation, and help save energy and reduce carbon emissions. Currently, vertical greening both domestically and internationally primarily uses plants adapted to vertical environments and grown on fixed walls. Sufficient water and nutrients are required for plant growth and survival, making maintaining moisture and providing adequate nutrients on vertical surfaces a challenge. Utility Model Content

[0003] This invention provides an adjustable sunshade wall system using recycled materials to solve the problems of existing sunshade brick walls, which make it difficult to provide space for planting plants and can only adjust the angle of a single brick, resulting in insufficient indoor lighting.

[0004] This utility model provides an adjustable sunshade wall panel system using recycled materials, including a support frame fixed to an exterior wall, the front end of the support frame extending out of the exterior wall, multiple wall panels rotatably mounted on the front end of the support frame, the lower end of each wall panel rotatably connected to a support leg, multiple recycled bricks disposed inside each wall panel, planting bricks disposed between some of the recycled bricks, the front end of each planting brick extending out of the wall panel, a planting groove provided at the front end of each planting brick, and a spray nozzle disposed on the edge of each wall panel.

[0005] Preferably, a first water pipe is provided inside the wall panel, a second water pipe is provided inside the support frame, the nozzle is connected to the first water pipe, and a rotary joint is provided between the first water pipe and the second water pipe.

[0006] Preferably, a first sleeve is fixed to the bottom of the support frame, a second sleeve is fixed to the upper end of the wall panel, a bearing is provided between the first sleeve and the second sleeve, the pipe between the first water pipe and the second water pipe is located inside the second sleeve, and the second sleeve is located inside the first sleeve.

[0007] Preferably, the border of the wall panel is rectangular, the recycled bricks within the border are divided into multiple layers from top to bottom, and the planting bricks are divided into three groups from top to bottom, with each group of planting bricks including at least two layers of recycled bricks.

[0008] Preferably, each layer of planting bricks is distributed in a wavy pattern.

[0009] Preferably, multiple vertical ribs are fixed inside the frame, and the recycled bricks and planting bricks are fixed on the vertical ribs.

[0010] Preferably, the wall panel further includes multiple light-transmitting holes, which are formed by four recycled bricks arranged on the top, bottom, left, and right sides.

[0011] Preferably, a light sensor is provided on the frame, the second sleeve extends into the support frame, and a worm gear is provided on the second sleeve inside the support frame, the worm gear being connected to a drive mechanism.

[0012] Preferably, the support frame includes multiple L-shaped rods, and a first crossbeam and a second crossbeam are fixed to the upper end of the L-shaped rods. The first crossbeam is located at the front end of the support frame.

[0013] Preferably, the support leg includes a base plate, a third sleeve is fixed on the base plate, a fourth sleeve is fixed at the bottom of the frame, the fourth sleeve is rotatably connected to the third sleeve, and a steel ball is provided on the fourth sleeve below the third sleeve.

[0014] Compared to existing technologies, this invention opens the light-transmitting channel by rotating the wall panels when light is weak, effectively increasing indoor brightness. When sunlight is strong, the light-transmitting channel is closed by rotating the wall panels, blocking sunlight and ensuring a shading effect. Secondly, planting troughs are set on the planting bricks of the wall panels, which effectively retain nutrients and water, facilitating plant cultivation. Thirdly, the sprinkler heads allow for convenient watering of the plants in the planting troughs and also quickly cool the wall panels. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the structure of the wall panel of this utility model;

[0018] Figure 3 This is a cross-sectional view of the wall panel of this utility model at the worm gear and worm shaft;

[0019] Figure 4 This is a cross-sectional view of the wall panel of this utility model at the bearing.

[0020] Figure label:

[0021] 1. Exterior wall, 2. Support frame, 3. Wall panel, 4. Second water pipe, 5. First sleeve, 6. Second sleeve, 7. Bearing, 8. Worm gear, 9. Support leg, 21. L-shaped rod, 22. First crossbeam, 23. Second crossbeam, 31. Recycled brick, 32. Planting brick, 321. Planting trough, 33. Frame, 34. Nozzle, 35. First water pipe, 36. Vertical rib, 37. Fourth sleeve, 91. Base plate, 92. Third sleeve, 93. Steel ball, 100. Light-transmitting hole. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0023] See attached document Figure 1 and attached Figure 2This embodiment provides an adjustable sunshade wall panel system utilizing recycled materials, including a support frame 2 fixed to an exterior wall 1. The front end of the support frame 2 extends out of the exterior wall 1, and multiple wall panels 3 are rotatably mounted on the front end of the support frame 2. Windows are provided on the exterior wall 1, and the wall panels 3 are located in front of the windows. The lower end of the wall panels 3 is rotatably connected to a support leg 9. Multiple recycled bricks 31 are provided inside the wall panels 3, and planting bricks 32 are arranged between some of the recycled bricks 31. The front end of the planting bricks 32 extends outside the wall panels 3, and a planting groove 321 is provided at the front end of the planting bricks 32. Sprayers 34 are provided on the frame 33 of the wall panels 3. In this invention, when the light is weak, rotating the wall panels 3 creates a light-transmitting channel between adjacent wall panels 3, allowing more light to enter the room. When the light is strong, rotating the wall panels 3 arranges them in a row, closing the light-transmitting channel and blocking sunlight from entering. This provides good sunshade for the room, reduces heat accumulation, lowers the load on the air conditioning system, and thus reduces energy consumption. Secondly, by setting planting troughs 321 on the planting bricks 32 of the wall panel 3, nutrients and water can be retained well, making it convenient for plant planting. Thirdly, the setting of the sprinkler head 34 can conveniently spray water on the plants in the planting troughs 321, and at the same time quickly cool down the wall panel 3.

[0024] In another embodiment of this utility model: a first water pipe 35 is provided inside the wall panel 3, a second water pipe 4 is provided inside the support frame 2, the nozzle 34 is connected to the first water pipe 35, and a rotary joint is provided between the first water pipe 35 and the second water pipe 4. Through this structural design, the first water pipe 35 is hidden inside the wall panel 3, and the second water pipe 4 is hidden inside the support frame 2.

[0025] As another embodiment of this utility model: refer to the appendix Figure 4 The bottom of the support frame 2 is fixed with a first sleeve 5, and the upper end of the wall panel 3 is fixed with a second sleeve 6. A bearing 7 is provided between the first sleeve 5 and the second sleeve 6. The pipe between the first water pipe 35 and the second water pipe 4 is located inside the second sleeve 6. A rotary joint is located on the pipe. The second sleeve 6 is located inside the first sleeve 5.

[0026] As another embodiment of this utility model: refer to the appendix Figure 3 A light sensor is installed on the frame 33. The second sleeve 6 extends into the support frame 2. A worm gear 8 is connected to the second sleeve 6 inside the support frame 2. The worm gear 8 is connected to a drive mechanism. One embodiment of the drive mechanism is as follows: the drive mechanism includes a steering gear and a drive motor. The output shaft of the drive motor is connected to a transmission shaft. The transmission shaft is connected to the worm gear 8 through the steering gear. The drive motor is communicatively connected to the light sensor. When the light sensor detects strong light, it controls the drive motor to close the wall panels 3, so that the wall panels 3 on each side of the building are arranged in a row. When the light sensor detects weak light, it controls the drive motor to open the wall panels 3, allowing a large amount of light to enter the room.

[0027] In another embodiment of this utility model, a temperature sensor is provided on the frame 33. When the temperature of the wall panel 3 is detected to be greater than a predetermined value, the temperature sensor controls the nozzle 34 to spray water so that the wall panel 3 can be cooled down quickly. The nozzle 34 is also equipped with manual control so that watering can be performed according to the condition of the plants.

[0028] As another embodiment of this utility model: the frame 33 of the wall panel 3 is rectangular, the recycled bricks 31 inside the frame 33 are divided into multiple layers from top to bottom, and the planting bricks 32 are divided into three groups from top to bottom, each group of planting bricks 32 including at least two layers of planting bricks 32.

[0029] As another embodiment of this utility model: each layer of planting bricks 32 is distributed in a wave-like pattern, and two adjacent planting troughs 321 are staggered to provide more growing space for plants.

[0030] One way to fix the recycled bricks 31 and the planting bricks 32 is as follows: multiple vertical ribs 36 are fixed inside the frame 33, and the recycled bricks 31 and the planting bricks 32 are fixed on the vertical ribs 36.

[0031] In another embodiment of this utility model: a fixing pipe is pre-embedded in the planting brick 32 and the recycled brick 31, and the vertical reinforcement 36 passes through the fixing pipe. The recycled brick 31 and the planting brick 32 form holes in the pre-embedded PVC pipe (fixing pipe) during the pouring process, and then the recycled brick 31 is connected in series and fixed with the vertical reinforcement 36, or the recycled brick 31 and the planting brick 32 are connected in series and fixed.

[0032] In another embodiment of this utility model, the wall panel 3 also includes multiple light-transmitting holes 100, which are formed by four recycled bricks 31 arranged on the top, bottom, left, and right sides. Through this structural design, even when the wall panel 3 is closed, the interior can still receive some supplemental lighting through the light-transmitting holes 100.

[0033] As another embodiment of this utility model: refer to the appendix Figure 1 The support frame 2 includes multiple L-shaped rods 21. The upper end of the L-shaped rods 21 is fixed with a first crossbeam 22 and a second crossbeam 23. The first crossbeam 22 is located at the front end of the support frame 2.

[0034] In another embodiment of this utility model: the first crossbeam 22 and the second crossbeam 23 are distributed around the building, with the four first crossbeams 22 connected end to end and the four second crossbeams 23 connected end to end.

[0035] As another embodiment of the present invention: the support leg 9 includes a base plate 91, a third sleeve 92 is fixed on the base plate 91, a fourth sleeve 37 is fixed at the bottom of the frame 33, the fourth sleeve 37 is rotatably connected to the third sleeve 92, and a steel ball 93 is provided on the fourth sleeve 37 below the third sleeve 92.

[0036] Specifically, the recycled brick 31 is made from recycled waste soil, achieving the goals of resource reuse and low-carbon environmental protection.

[0037] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. An adjustable shading wall panel system utilizing recycled materials, characterized in that, The device includes a support frame fixed to an exterior wall, with the front end of the support frame extending out of the exterior wall. Multiple wall panels are rotatably mounted on the front end of the support frame, and the lower end of each wall panel is rotatably connected to a support leg. Multiple recycled bricks are installed inside each wall panel, and planting bricks are installed between some of the recycled bricks. The front end of each planting brick extends out of the wall panel, and the front end of each planting brick is provided with a planting groove. Sprayers are installed on the edge of each wall panel.

2. The adjustable shading wall panel system utilizing recycled materials according to claim 1, characterized in that, The wall panel is equipped with a first water pipe, the support frame is equipped with a second water pipe, the nozzle is connected to the first water pipe, and a rotary joint is provided between the first water pipe and the second water pipe.

3. The adjustable shading wall panel system utilizing recycled materials according to claim 2, characterized in that, The bottom of the support frame is fixed with a first sleeve, and the upper end of the wall panel is fixed with a second sleeve. A bearing is provided between the first sleeve and the second sleeve. The pipe between the first water pipe and the second water pipe is located inside the second sleeve, and the second sleeve is located inside the first sleeve.

4. The adjustable shading wall panel system utilizing recycled materials according to claim 3, characterized in that, The wall panel has a rectangular border, and the recycled bricks within the border are divided into multiple layers from top to bottom. The planting bricks are divided into three groups from top to bottom, and each group of planting bricks includes at least two layers of planting bricks.

5. The adjustable shading wall panel system utilizing recycled materials according to claim 4, characterized in that, The planting bricks in each layer are distributed in a wavy pattern.

6. The adjustable shading wall panel system utilizing recycled materials according to claim 5, characterized in that, Multiple vertical ribs are fixed inside the frame, and the recycled bricks and planting bricks are fixed on the vertical ribs.

7. The adjustable shading wall panel system utilizing recycled materials according to claim 6, characterized in that, The wall panel also includes multiple light-transmitting holes, which are formed by four recycled bricks arranged on the top, bottom, left, and right sides.

8. The adjustable shading wall panel system utilizing recycled materials according to claim 7, characterized in that, A light sensor is provided on the frame, and the second sleeve extends into the support frame. A worm gear is provided on the second sleeve inside the support frame, and the worm gear is connected to a drive mechanism.

9. The adjustable shading wall panel system utilizing recycled materials according to claim 1, characterized in that, The support frame includes multiple L-shaped rods, and a first crossbeam and a second crossbeam are fixed to the upper end of the L-shaped rods. The first crossbeam is located at the front end of the support frame.

10. The adjustable shading wall panel system utilizing recycled materials according to claim 1, characterized in that, The support leg includes a base plate, on which a third sleeve is fixed. A fourth sleeve is fixed at the bottom of the frame, and the fourth sleeve is rotatably connected to the third sleeve. A steel ball is provided on the fourth sleeve below the third sleeve.