Green building energy-saving prefabricated wall

Through the combination of green planting institutions and green waterfall institutions, the problem of inflexible planting trough layout is solved, the photosynthesis of green plants and the ornamentality of green plants is improved, the operation and maintenance costs are reduced, and the high-quality greening and aesthetic needs are met.

CN120401689APending Publication Date: 2025-08-01HUNAN WANSHENG CONSTRUCTION CO LTD
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Patent Information

Application Number
CN202510653841.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

In the energy-saving prefabricated walls of existing green buildings, the layout of the planting troughs lacks flexibility and variability, resulting in uneven light, affecting the photosynthesis efficiency of green plants, and the decoration form is single, which cannot meet the needs of high-quality greening and aesthetics.

Method used

Green planting mechanisms are adopted, including power components, bearing mesh frames and green waterfall mechanisms, and rotation is driven by water flow power to ensure uniform vegetation and enhance ornamentality through waterproof lights; the installation mechanism design simplifies the maintenance process and improves maintenance convenience.

Benefits of technology

It has achieved the improvement of green plants photosynthesis, enhanced ornamentality and fun, and at the same time reduced operating costs and maintenance difficulties, providing a stable greening effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of building prefabricated walls, in particular to a green building energy-saving prefabricated wall which comprises a prefabricated wall body, a greening wall body is fixedly installed on the front face of the prefabricated wall body, a groove body is formed in the front face of the greening wall body, and installation mechanisms are installed on the two sides of the interior of the groove body at equal intervals. During use, a water pump is adopted to pump water in the bottom circulating water frame to the drainage guide frame, a continuous water curtain is formed through the water guide slope, an attractive waterfall scene is presented, water flow washes a stirring plate on the outer side of a rotating disc, the rotating disc is driven to rotate through a connecting rod, then the side frame and the bearing net frame are driven to rotate circularly, vegetation fully receives illumination, and the vegetation quality is improved. Meanwhile, a waterproof colored lamp is linked with a rotating structure, the ornamental value and interestingness are enhanced, rotation driving utilizes water flow power, the operation cost is reduced, in addition, a bearing net frame is rotationally connected with a side frame, the bearing net frame is automatically kept vertical under the action of gravity in the movement process, and it is ensured that flowerpot planting is stable.
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Description

Technical Field

[0001] This application relates to the technical field of prefabricated building walls, and particularly to a green building energy-saving prefabricated wall. Background Art

[0002] Under the background of vigorously promoting green development in the construction industry, the green building energy-saving prefabricated wall, as a key component to achieve the building energy-saving goal, has received extensive attention and research. Many technical solutions are committed to improving its energy-saving, environmental protection and other performances. For example, the green building energy-saving prefabricated wall proposed in the Chinese patent with the publication number "CN117052012A" improves the indoor heat preservation performance to a certain extent by setting up a planting heat preservation module and using green plants covering and heat preservation components. However, the existing technology still has obvious limitations. In the planting heat preservation module of this patent, the planting grooves are arranged linearly. When in use, the top planting frame will block the vegetation at the rear side of the bottom planting frame, making it difficult for the bottom planting frame to obtain uniform light, seriously affecting the photosynthesis efficiency of green plants, and weakening the ecological benefits. In addition, the fixed planting groove layout lacks flexibility and variability, resulting in a single building decoration form and insufficient interest, and cannot fully meet people's needs for high-quality greening and aesthetics of green buildings. Therefore, it is necessary to improve its design. Summary of the Invention

[0003] In order to improve the overall greening performance and the effect of greening during the application of the existing technology, this application provides a green building energy-saving prefabricated wall.

[0004] A green building energy-saving prefabricated wall provided by this application adopts the following technical solutions: including a prefabricated wall, a greening wall is fixedly installed on the front surface of the prefabricated wall, a groove body is opened on the front surface of the greening wall, installation mechanisms are installed at equal intervals on both sides inside the groove body, a greening planting mechanism is installed inside the groove body through the installation mechanisms, and a greening waterfall mechanism is arranged inside the prefabricated wall; The greening planting mechanism includes a power component, the power component is rotationally connected to the middle inside of the installation mechanism, side frames are fixedly connected at equal intervals in a ring shape inside the power component, the inner ends of the side frames are all rotationally connected with a bearing net frame, and a positioning component is fixedly connected to the top of the bearing net frame.

[0005] Optionally, the installation mechanism includes guide rails, the guide rails are fixedly installed at equal intervals in a linear arrangement on both sides inside the groove body, installation plates are slidably connected inside the guide rails, and the inner sides of the installation plates are connected to the outer sides of the power component.

[0006] Optionally, the installation mechanism further includes a perforation and a limiting rod. The perforation is formed in the middle of the guide rail and the middle of the mounting plate. The limiting rod is inserted into the interior of the perforation, and the limiting rod penetrates through each perforation.

[0007] Optionally, a limiting top plate is fixedly installed at the top of the limiting rod, and a bridge-type handrail is fixedly connected to the top of the limiting top plate.

[0008] Optionally, the power assembly includes a turntable. The turntable is rotatably connected to the middle of the inner side of the mounting plate. The side frames are fixedly connected to the inner side of the turntable in an equidistant annular arrangement. Connecting rods are fixedly installed on the outer side of the turntable at equal intervals. The outer ends of the connecting rods are fixedly installed with toggle plates. The rear end of the toggle plate located at the rear is inserted into the interior of the greening waterfall mechanism, and waterproof color lights are fixedly connected to the toggle plates.

[0009] Optionally, the positioning assembly includes a top rail. The top rail is fixedly connected to one side of the top of the bearing mesh frame. A lead screw is rotatably connected to the interior of the top rail. The thread directions of the two ends of the lead screw are opposite. Both ends of the lead screw are threadedly connected with sliders. The sliders are slidably connected to both ends of the interior of the top rail. A positioning frame is fixedly connected to the top of the slider, and an adjustment group is fixedly connected to the front end of the top rail.

[0010] Optionally, the positioning frame includes a connecting block. The connecting block is fixedly connected to the top of the slider. A bent frame is fixedly installed on the top of the connecting block. A fixing rod is fixedly installed at the bottom of the bent frame. Clamping frames are fixedly installed at equal intervals on the inner side of the fixing rod. The inner sides of the clamping frames are arranged in a V shape.

[0011] Optionally, the adjustment group includes a fixing disk. The fixing disk is fixedly installed on the front of the top rail. An adjustment handle is rotatably connected to the front of the fixing disk. The rear side of the adjustment handle is fixedly connected to the front end of the lead screw. A locking screw is threadedly connected to the upper end of the adjustment handle. The end of the locking screw penetrates through the adjustment handle. Limiting holes are formed in the front of the fixing disk in an equidistant annular arrangement. The end of the locking screw is inserted into the interior of the limiting hole.

[0012] Optionally, the greening waterfall mechanism includes a circulating water frame, a water pump, a drainage guide frame, and a water guide slope. The circulating water frame is fixedly connected to the inner bottom of the tank body. The water pump is fixedly connected to the lower end of the back surface of the precast wall. The drainage guide frame is fixedly connected to the upper end of the front surface of the precast wall. The drainage guide frame is arranged at the upper end of the interior of the tank body. The input end of the drainage guide frame is communicated with the output end of the water pump. The input end of the water pump is communicated with the interior of the circulating water frame. The water guide slope is fixedly installed at the upper end of the interior of the tank body. The rear toggle plate extends to the lower end of the water guide slope.

[0013] Optionally, thin water guide frames are fixedly connected to the top slope surface of the water guide slope in a linear arrangement at equal intervals, and the output end of the thin water guide frame is arranged directly above the greening planting mechanism.

[0014] In summary, this application has the following beneficial technical effects: This device relies on the greening planting mechanism to achieve efficient and stable clamping and positioning of green plant pots. When in use, the flower pot is placed in the load-bearing net frame and placed between the clamping frames. The screw rod is driven to rotate by turning the adjustment handle. Based on the reverse thread design at both ends of the screw rod, the two sliders can be driven to slide synchronously in opposite directions in the top rail, thereby driving the bending frame and the fixing rod to work together, so that the V-shaped clamping frame can stably clamp the flower pot. This structure can adapt to flower pots of different sizes and achieve centering positioning. After completing the clamping adjustment, the locking screw is inserted into the limit hole and the screw rod is fixed by mechanical limit, thereby ensuring that the flower pot is firmly installed and providing reliable protection for the stable operation of the device. The greening waterfall mechanism gives this device a unique landscape and practical value. During operation, the water pump pumps the water in the bottom circulating water frame to the drainage guide frame, forming a continuous water curtain through the water guide slope, creating a beautiful waterfall landscape. The water flows over the toggle plate installed on the outside of the turntable, and drives the turntable to rotate through the connecting rod, thereby driving the side frames and the supporting grid to rotate cyclically. This design not only allows the vegetation on each supporting grid to fully receive light and improve the efficiency of photosynthesis, but also enhances the ornamental value and interest of the green wall through the linkage between the waterproof water lamp and the rotating structure. It is worth mentioning that the rotation drive relies entirely on water flow power, which significantly reduces the operating cost. At the same time, the supporting grid frame, due to its rotating connection design with the side frame, automatically maintains a vertical state under the action of gravity during movement, ensuring that the stability of the flower pot planting is not affected; The innovative design of the installation mechanism greatly improves the maintainability of the device. When the greening planting mechanism needs to be inspected and repaired, it is only necessary to pull the bridge handrail upwards to drive the limit top plate and the limit rod to move upward synchronously, so that the limit rod is disengaged from the perforation, and then the mounting plate can be pulled out from the guide rail to realize the disassembly of the greening planting mechanism. The installation process is reversed. After the mounting plate is inserted into the guide rail, the limit rod and the perforation are precisely matched to complete the stable installation. This pull-out limit design greatly simplifies the maintenance process, significantly improves the convenience and efficiency of device maintenance, and effectively reduces maintenance costs and time costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the overall structure of the embodiment of the present application; Figure 2 This is a schematic diagram of the rear view structure in an embodiment of the present application; Figure 3 This is a schematic diagram of the front structure of the entire separation state in an embodiment of the present application; Figure 4This is a schematic diagram of the rear view structure of the entire separated state in the embodiment of the present application; Figure 5 This is a schematic diagram of the top view of the structure in the overall separated state in the embodiment of the present application; Figure 6 This is a structural diagram of the greening planting mechanism in the embodiment of the present application; Figure 7 This is a schematic diagram of the top view of the supporting frame and positioning assembly in an embodiment of the present application; Figure 8 In the embodiment of this application Figure 7 A is an enlarged structural diagram of FIG.

[0016] Figure numerals: 1, prefabricated wall; 2, trough; 3, green planting mechanism; 31, power assembly; 311, turntable; 312, connecting rod; 313, waterproof color lamp; 314, toggle plate; 32, side frame; 33, load-bearing mesh frame; 34, positioning assembly; 341, top rail; 342, screw rod; 343, slider; 344, positioning frame; 3441, connecting block; 3442, bending frame; 3443, fixing rod; 3444, clamping Frame; 345. Adjustment group; 3451. Fixing plate; 3452. Adjustment handle; 3453. Locking screw; 3454. Limit hole; 4. Mounting mechanism; 41. Guide rail; 42. Mounting plate; 43. Limit rod; 44. Perforation; 45. Limit top plate; 46. Bridge handrail; 5. Green wall; 6. Green waterfall mechanism; 61. Circulating water frame; 62. Water pump; 63. Drainage guide frame; 64. Water guide slope; 65. Water guide frame. DETAILED DESCRIPTION

[0017] The following is combined with Figures 1-8 This application is described in further detail.

[0018] The embodiment of the present application discloses a green building energy-saving prefabricated wall 1. Figures 1-8 As shown, it includes a prefabricated wall 1, a green wall 5 is fixedly installed on the front of the prefabricated wall 1, a trough 2 is opened on the front of the green wall 5, mounting mechanisms 4 are installed at equal intervals on both sides of the interior of the trough 2, a green planting mechanism 3 is installed inside the trough 2 through the mounting mechanism 4, and a green waterfall mechanism 6 is provided inside the prefabricated wall 1; The greening planting mechanism 3 includes a power assembly 31. The power assembly 31 is rotatably connected to the middle inside of the installation mechanism 4. Side frames 32 are fixedly connected in an equidistant and annular arrangement inside the power assembly 31. The inner ends of the side frames 32 are all rotatably connected to a bearing mesh frame 33. A positioning assembly 34 is fixedly connected to the top of the bearing mesh frame 33. When the green building energy-saving precast wall 1 operates, the installation mechanism 4 is used to facilitate the installation and disassembly of the greening planting mechanism 3 in the tank body 2, providing convenience for the maintenance of the overall structure. In the greening planting mechanism 3, the power assembly 31 is rotatably connected to the middle inside of the installation mechanism 4. When the power assembly 31 operates, it can drive the side frames 32 fixedly connected in an equidistant and annular arrangement to rotate together. The bearing mesh frame 33 rotatably connected to the inner ends of the side frames 32 can perform a rotational motion driven by the side frames 32. The positioning assembly 34 at the top of the bearing mesh frame 33 can position and clamp the green plant flowerpots placed inside it to ensure the stability of the flowerpots during the rotation of the bearing mesh frame 33. At the same time, the greening waterfall mechanism 6 inside the precast wall 1 operates in coordination. Through functions such as creating a water flow landscape and driving related components to move, it cooperates with the greening planting mechanism 3 to jointly improve the greening, energy-saving, and aesthetic effects of the wall.

[0019] Please refer to Figures 3-8The power assembly 31 includes a turntable 311, which is rotatably connected to the middle of the inner side of the mounting plate 42. The side frames 32 are arranged in a ring shape at equal intervals and are fixedly connected to the inner side of the turntable 311. The outer side of the turntable 311 is fixedly installed with connecting rods 312 at equal intervals. The outer end of the connecting rod 312 is fixedly installed with a toggle plate 314. The rear end of the toggle plate 314 located at the rear side is inserted into the interior of the greening waterfall mechanism 6. The toggle plate 314 is fixedly connected with a waterproof water lamp 313. The positioning assembly 34 includes a top rail 341. The top rail 341 is fixedly connected to the top side of the supporting net frame 33. The interior of the top rail 341 is rotatably connected to a screw rod 342. The threads at both ends of the screw rod 342 are rotated in opposite directions. Both ends of the screw rod 342 are threadedly connected to a slider 343, and the slider 343 slides The top of the slider 343 is fixedly connected to the positioning frame 344, and the front end of the top rail 341 is fixedly connected to the adjustment group 345. The positioning frame 344 includes a connecting block 3441, and the connecting block 3441 is fixedly connected to the top of the slider 343. The top of the connecting block 3441 is fixedly installed with a bending frame 3442, and the bottom of the bending frame 3442 is fixedly installed with a fixing rod 3443. The inner side of the fixing rod 3443 is fixedly installed with a clamping frame 3444 at equal intervals. The inner side of the clamping frame 3444 is V-shaped. The adjustment group 345 includes a fixed plate 3451, which is fixedly installed on the front side of the top rail 341. The front side of the fixed plate 3451 is rotatably connected to the adjustment handle 3452. The adjustment handle 3452 is rotated. The rear side is fixedly connected to the front end of the screw rod 342, and the upper end of the adjusting handle 3452 is threadedly connected with a locking screw 3453. The end of the locking screw 3453 passes through the adjusting handle 3452. The front of the fixed plate 3451 is arranged in a ring shape with equal intervals to provide limiting holes 3454. The end of the locking screw 3453 is inserted into the inner side of the limiting hole 3454. During the operation of the power component 31 of this device, the turntable 311 is rotatably connected to the middle of the inner side of the mounting plate 42 to form the hub of the entire power transmission. When the greening waterfall mechanism 6 is started, the water flows from top to bottom to form an impact force. The rear toggle plate 314 inserted in the interior of the waterfall mechanism is the first to bear the brunt and is continuously flushed by the water flow. Since the toggle plate 314 is connected to the turntable through the connecting rod 312 311 are fixedly connected, and the impact force of the water flow is transmitted to the turntable 311 through the connecting rod 312, driving the turntable 311 to start rotating. The rotation of the turntable 311 further drives the side frames 32 fixed on its inner side in a ring shape with equal intervals to rotate together. The side frames 32 drive the supporting net frame 33 to rotate cyclically through the rotation connection. This cyclic rotation allows the vegetation on the supporting net frame 33 to change its position periodically, ensuring that every piece of vegetation has the opportunity to be fully exposed to the sun, thereby significantly improving the efficiency of photosynthesis. At the same time, the waterproof color lights 313 fixedly connected to the toggle plate 314 rotate synchronously with the toggle plate 314. At night or when there is insufficient light, the flashing colored lights and the flowing waterfall landscape complement each other, greatly enhancing the ornamental and artistic quality of the wall.The positioning component 34 is mainly responsible for the stable clamping and precise positioning of the green plant flowerpot. The top rail 341 is fixed to one side of the top of the bearing mesh frame 33. The lead screw 342 inside it is the key component to achieve the adjustment function. The operator rotates the adjustment handle 3452, which is fixedly connected to the front end of the lead screw 342, thereby driving the lead screw 342 to rotate within the top rail 341. Since the two ends of the lead screw 342 adopt a reverse thread design, when the lead screw 342 rotates, the two sliders 343 threadedly connected to it will slide in the opposite direction inside the top rail 341. The positioning frame 344 on the top of the slider 343 is composed of a connecting block 3441, a bending frame 3442, a fixing rod 3443, and a clamping frame 3444. The sliding of the slider 343 drives the bending frame 3442, the fixing rod 3443, and the clamping frame 3444 to move synchronously through the connecting block 3441. Among them, the inner side of the clamping frame 3444 is arranged in a V shape. This unique shape design enables the clamping frame 3444 to tightly wrap the flowerpot from multiple angles. By adjusting the position of the slider 343 to change the distance between the clamping frames 3444, flowerpots of different sizes can be adapted to achieve stable clamping of the flowerpot. After completing the clamping adjustment of the flowerpot, the operator passes the locking screw 3453 through the adjustment handle 3452 and screws it into the limit holes 3454 arranged in a ring on the fixed disk 3451. Through the tight fit of the locking screw 3453 and the limit holes 3454, a mechanical limit structure is formed to firmly fix the position of the lead screw 342, preventing the lead screw 342 from rotating and the clamping frame 3444 from loosening due to external forces during the subsequent rotation of the bearing mesh frame 33, thereby ensuring that the flowerpot always remains stable during the operation of the entire system and providing a reliable support environment for the growth of green plants.,

[0020] Please refer to Figures 1-5, the greening waterfall mechanism 6 includes a circulating water frame 61, a water pump 62, a drainage guide frame 63 and a water guide slope 64. The circulating water frame 61 is fixedly connected to the inner bottom of the tank body 2. The water pump 62 is fixedly connected to the lower end of the back surface of the precast wall 1. The drainage guide frame 63 is fixedly connected to the upper end of the front surface of the precast wall 1. The drainage guide frame 63 is arranged at the upper end inside the tank body 2. The input end of the drainage guide frame 63 is communicated with the output end of the water pump 62. The input end of the water pump 62 is communicated with the inside of the circulating water frame 61. The water guide slope 64 is fixedly installed at the upper end inside the tank body 2. The rear toggle plate 314 located at the rear extends to the lower end of the water guide slope 64. The water guide fine frames 65 are fixedly connected in a linear arrangement at equal intervals on the top slope surface of the water guide slope 64. The output end of the water guide fine frame 65 is arranged directly above the greening planting mechanism 3. The greening waterfall mechanism 6 works in coordination with components such as the circulating water frame 61, the water pump 62, the drainage guide frame 63 and the water guide slope 64 to achieve the functions of landscape creation and power supply. During operation, the water pump 62 is fixed to the lower end of the back surface of the precast wall 1. Its input end is communicated with the circulating water frame 61 located at the inner bottom of the tank body 2, and the output end is communicated with the drainage guide frame 63 fixed to the upper end of the front surface of the precast wall 1 and the upper end inside the tank body 2. After the water pump 62 is started, the water in the circulating water frame 61 is pumped and conveyed to the drainage guide frame 63. The drainage guide frame 63 collects and distributes the water flow, making the water flow evenly flow into the water guide slope 64. The water guide slope 64 is fixedly installed at the upper end inside the tank body 2 to form a water curtain waterfall landscape to improve the aesthetics. At the same time, the water guide fine frames 65 arranged at equal intervals on its top slope surface further refine the water flow and direct it directly above the greening planting mechanism 3, facilitating the sprinkling of a small amount of water liquid onto the top of the greening planting mechanism 3, thereby assisting in replenishing water for it. After the top is replenished with water, the water liquid will drip downward, thereby sequentially replenishing the flower pots in each load-bearing net frame 33 at the bottom, achieving a good water replenishment effect. During the process of the water flow flowing downward along the water guide slope 64, it impacts the rear toggle plate 314 extending to the lower end of the water guide slope 64. After the toggle plate 314 is stressed, it drives the turntable 311 of the greening planting mechanism 3 to rotate through the connecting rod 312, thereby driving the side frame 32 and the load-bearing net frame 33 to rotate in a cycle. This mechanism not only enhances the ornamental value of the wall through the water flow landscape, but also uses the water flow impact force to provide power for the greening planting mechanism 3, realizing the effective utilization of energy.

[0021] Please refer to Figures 1-5, the installation mechanism 4 includes guide rails 41. The guide rails 41 are fixedly installed on both sides inside the trough body 2 at equal intervals in a linear arrangement. Inside each of the guide rails 41, there is a slidably connected mounting plate 42. The inner side of the mounting plate 42 is connected to the outer side of the power assembly 31. The installation mechanism 4 further includes through holes 44 and limiting rods 43. The through holes 44 are opened in the middle of the guide rails 41 and the middle of the mounting plate 42. The limiting rods 43 are inserted into the interiors of the through holes 44. The limiting rods 43 penetrate through each of the through holes 44. At the top of the limiting rods 43, there is a fixedly installed limiting top plate 45. At the top of the limiting top plate 45, there is a fixedly connected bridge-type handrail 46. The installation mechanism 4 of this device works in coordination through components such as guide rails 41, mounting plates 42, through holes 44, limiting rods 43, limiting top plates 45, and bridge-type handrails 46 to achieve the stable installation and convenient disassembly of the greening planting mechanism 3. The guide rails 41 are fixedly installed on both sides inside the trough body 2 to provide a sliding track for the mounting plates 42. The inner side of the mounting plate 42 is connected to the outer side of the power assembly 31, which can drive the entire greening planting mechanism 3 to move. When in use, insert the mounting plate 42 along the guide rail 41 into the trough body 2 to align the through holes 44 on the mounting plate 42 with those on the guide rail 41. Insert the limiting rod 43 into the through hole 44 to penetrate through each component. At this time, the limiting top plate 45 at the top of the limiting rod 43 fits against the top of the guide rail 41. By applying force to press down the limiting top plate 45 through the bridge-type handrail 46, the limiting rod 43 can be firmly fixed, thereby stably installing the mounting plate 42 and the connected greening planting mechanism 3 inside the trough body 2. When disassembly and maintenance are required, lift the bridge-type handrail 46 upward to drive the limiting top plate 45 and the limiting rod 43 to move upward, so that the limiting rod 43 disengages from the through hole 44, and then the mounting plate 42 can be pulled out along the guide rail 41 to achieve the disassembly of the greening planting mechanism 3.

[0022] The implementation principle of a green building energy-saving precast wall 1 in an embodiment of this application is as follows: The greening planting mechanism 3 equipped in this device constructs a systematic flowerpot clamping and positioning system. During actual use, first place the flowerpot carrying green plants inside the carrying mesh frame 33 so that the flowerpot is in the inner space of the clamping frame 3444. Subsequently, the operator twists the adjustment handle 3452 to drive the lead screw 342 to rotate. Since the two ends of the lead screw 342 adopt reverse thread design, during the rotation of the lead screw 342, it can drive two sliders 343 to slide synchronously and in opposite directions inside the top rail 341. The sliding of the sliders 343 drives the bending frame 3442 and the fixed rod 3443 to produce linkage through mechanical connection, causing the V-shaped clamping frame 3444 inside the fixed rod 3443 to displace. This V-shaped structure design, using its unique geometric shape, can form stable support and restraint for the flowerpot from multiple angles, thereby achieving firm clamping of the flowerpot; For flower pots of different sizes, the mechanism can adapt to various flower pot types and achieve the function of centering by adjusting the relative positions of the two sliders 343 and changing the spacing of the clamping frames 3444. After completing the flower pot clamping adjustment, in order to ensure the fixation of the screw rod 342 and prevent the clamping structure from loosening due to external force during subsequent use, the operator can insert the locking screw 3453 into the limiting hole 3454. The locking screw 3453 and the limiting hole 3454 are inserted and matched with each other to form a mechanical limiting structure, thereby effectively fixing the screw rod 342, ensuring that the flower pot always remains stable during the operation of the device, and providing a reliable support environment for the growth of green plants. The greening waterfall mechanism 6 is the core part of the device to achieve the functions of landscape creation and vegetation maintenance. When it is in operation, water is first injected into the circulating water frame 61 at the bottom as the water reserve for the entire waterfall system. After the water pump 62 is started, the water pump 62 uses its power device to pump the water in the circulating water frame 61 upward and transport it to the drainage guide frame 63 through the pipeline. The drainage guide frame 63 adopts a special structural design, which can evenly disperse the transported water and discharge it into the water guide slope 64 in the form of sheet water flow. The water guide slope 64 guides the water flow to fall along a specific path through a reasonable slope setting and diversion design, and finally forms a continuous water curtain, presenting the visual effect of a waterfall. This waterfall landscape not only enhances the aesthetics of the wall but also has functional value. As the waterfall water falls, it generates an impact force on the toggle plate 314 installed on the outside of the turntable 311. The toggle plate 314 is connected to the turntable 311 via a connecting rod 312. Under the impact of the water flow, the toggle plate 314 drives the connecting rod 312 to move, thereby driving the turntable 311 to rotate. The rotation of the turntable 311 drives the side frames 32 and the supporting grid inside it to produce cyclic rotation through mechanical transmission. This rotation mode enables the vegetation on each supporting grid to periodically move to the front position, fully receiving light, effectively improving the efficiency of vegetation photosynthesis and creating favorable conditions for the growth of green plants. In addition, the mechanism is further provided with waterproof color lights 313 on the outside of the turntable 311, and the colored lights move synchronously with the toggle plate 314. During the rotation of the turntable 311, the waterproof color lights 313 rotate along with the toggle plate 314, forming a dynamic effect of light and shadow interlaced, further enhancing the ornamental and interesting nature of the green wall 5. It is worth noting that the rotation power of the entire supporting grid is entirely derived from the flushing effect of the waterfall water flow, without the need for additional driving energy, while reducing operating costs and achieving efficient energy utilization. At the same time, the supporting grid frame 33 and the side frame 32 are connected in a rotating manner. During the rotation of the supporting grid frame 33, due to the effect of gravity, it can automatically adjust its posture and always maintain a vertical state, thereby ensuring the stability of the flower pot during the planting process and avoiding adverse effects on the growth of green plants due to tilting or shaking; The design of the installation mechanism 4 aims to improve the maintainability of the greening planting mechanism 3 of the device. When maintenance of the greening planting mechanism 3 is required, the operator can pull the bridge handrail 46 upward to drive the connected limit top plate 45 to move upward synchronously. The upward movement of the limit top plate 45 will pull the limit rod 43 upward, causing the limit rod 43 to gradually disengage from the through hole 44. When the limit rod 43 is completely separated from the through hole 44, the limit constraint between the mounting plate 42 and the guide rail 41 is released. At this time, the operator can easily pull out the mounting plate 42 from the inside of the guide rail 41, thereby realizing the disassembly of the greening planting mechanism 3 from the inside of the trough body 2; During the installation process, the operation procedure is the opposite. First, align the mounting plate 42 with the guide rail 41 and slowly insert it into the inside of the guide rail 41 to form a sliding fit between the mounting plate 42 and the guide rail 41. Subsequently, accurately insert the limit rod 43 into the through hole 44. Through the mutual insertion and limitation of the limit rod 43 and the through hole 44, a stable mechanical connection structure is formed to firmly fix the mounting plate 42 inside the guide rail 41. This installation method not only ensures the stability of the mounting plate 42 but also provides a reliable foundation for the installation of the bearing mesh frame 33, enabling the bearing mesh frame 33 to be stably installed inside the device; The installation mechanism 4 adopts a pull-out type limit design. The entire disassembly and assembly process does not require the use of complex tools. The operator only needs to simply pull the limit rod 43 to disengage it from or insert it into the through hole 44 to quickly complete the pulling operation of the mounting plate 42 inside the guide rail 41. This simple and efficient design significantly reduces the difficulty and time cost of maintenance and improves the maintainability of the device, providing a strong guarantee for the long-term stable operation of the device and further enhancing the convenience and practicality of the device during actual use.

[0023] The above are all preferred embodiments of this application. It does not limit the protection scope of this application accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. A green building energy-saving precast wall (1), characterized in that; The invention comprises a prefabricated wall (1), a green wall (5) is fixedly mounted on the front of the prefabricated wall (1), a trough (2) is provided on the front of the green wall (5), mounting mechanisms (4) are mounted at equal intervals on both sides of the interior of the trough (2), a greening planting mechanism (3) is mounted inside the trough (2) via the mounting mechanism (4), and a greening waterfall mechanism (6) is provided inside the prefabricated wall (1); The greening planting mechanism (3) comprises a power assembly (31), the power assembly (31) being rotatably connected to the middle of the inner side of the mounting mechanism (4), the inner side of the power assembly (31) being fixedly connected to side frames (32) arranged in a ring shape at equal intervals, the inner ends of the side frames (32) being rotatably connected to a bearing net frame (33), and the top of the bearing net frame (33) being fixedly connected to a positioning assembly (34).

2. The green building energy-saving precast wall (1) according to claim 1, characterized in that: The mounting mechanism (4) comprises guide rails (41), which are linearly arranged at equal intervals and fixedly mounted on both sides of the trough body (2). The interiors of the guide rails (41) are slidably connected to mounting plates (42), and the inner sides of the mounting plates (42) are connected to the outer sides of the power assembly (31).

3. The green building energy-saving precast wall (1) according to claim 2, characterized in that: The mounting mechanism (4) further comprises a through hole (44) and a limiting rod (43), wherein the through hole (44) is opened in the middle of the guide rail (41) and the middle of the mounting plate (42), and the limiting rod (43) is inserted into the inside of the through hole (44), and the limiting rod (43) passes through each through hole (44).

4. A green building energy-saving precast wall (1) according to claim 3, characterized in that: A limiting top plate (45) is fixedly mounted on the top of the limiting rod (43), and a bridge-type handrail (46) is fixedly connected to the top of the limiting top plate (45).

5. A green building energy-saving precast wall (1) according to claim 4, characterized in that: The power assembly (31) includes a turntable (311), the turntable (311) being rotatably connected to the middle of the inner side of the mounting plate (42), the side frames (32) being arranged in a ring shape at equal intervals and fixedly connected to the inner side of the turntable (311), the outer side of the turntable (311) being fixedly mounted with connecting rods (312) at equal intervals, the outer ends of the connecting rods (312) being fixedly mounted with a toggle plate (314), the rear end of the toggle plate (314) being located at the rear side being inserted into the interior of the greening waterfall mechanism (6), and the toggle plate (314) being fixedly connected with a waterproof water lamp (313).

6. A green building energy-saving precast wall (1) according to claim 5, characterized in that: The positioning assembly (34) includes a top rail (341), the top rail (341) is fixedly connected to one side of the top of the supporting net frame (33), the top rail (341) is rotatably connected to a screw rod (342) at the inside, the screw rod (342) has two ends with threads rotating in opposite directions, both ends of the screw rod (342) are threadedly connected to sliders (343), the sliders (343) are slidably connected to the inside ends of the top rail (341), the top of the slider (343) is fixedly connected to a positioning frame (344), and the front end of the top rail (341) is fixedly connected to an adjustment group (345).

7. A green building energy-saving precast wall (1) according to claim 6, characterized in that: The positioning frame (344) includes a connecting block (3441), the connecting block (3441) is fixedly connected to the top of the slider (343), a bending frame (3442) is fixedly installed on the top of the connecting block (3441), a fixing rod (3443) is fixedly installed on the bottom of the bending frame (3442), and a clamping frame (3444) is fixedly installed at equal intervals on the inner side of the fixing rod (3443), and the inner side of the clamping frame (3444) is arranged in a V shape.

8. A green building energy-saving precast wall (1) according to claim 7, characterized in that: The adjustment group (345) includes a fixed disk (3451), the fixed disk (3451) is fixedly mounted on the front of the top rail (341), the front of the fixed disk (3451) is rotatably connected to an adjustment handle (3452), the rear side of the adjustment handle (3452) is fixedly connected to the front end of the screw rod (342), the upper end of the adjustment handle (3452) is threadedly connected to a locking screw (3453), the end of the locking screw (3453) passes through the adjustment handle (3452), and the front of the fixed disk (3451) is provided with limiting holes (3454) arranged in a ring shape at equal intervals, and the end of the locking screw (3453) is inserted into the inner side of the limiting hole (3454).

9. A green building energy-saving precast wall (1) according to claim 8, characterized in that: The greening waterfall mechanism (6) comprises a circulating water frame (61), a water pump (62), a drainage guide frame (63) and a water guide slope (64), wherein the circulating water frame (61) is fixedly connected to the bottom of the trough body (2), the water pump (62) is fixedly connected to the lower end of the back side of the prefabricated wall (1), the drainage guide frame (63) is fixedly connected to the upper end of the front side of the prefabricated wall (1), the drainage guide frame (63) is arranged at the upper end of the interior of the trough body (2), the input end of the drainage guide frame (63) is connected to the output end of the water pump (62), the input end of the water pump (62) is connected to the interior of the circulating water frame (61), the water guide slope (64) is fixedly installed at the upper end of the interior of the trough body (2), and the toggle plate (314) located at the rear side extends from the lower end of the water guide slope (64).

10. A green building energy-saving precast wall (1) according to claim 9, characterized in that: Thin water guide frames (65) are fixedly connected to the top slope surface of the water guide slope (64) in a linear arrangement at equal intervals, and the output end of the thin water guide frame (65) is arranged directly above the greening planting mechanism (3).

Citation Information

Patent Citations

  • Green building energy-saving prefabricated wall

    CN117052012A