A green fabricated wall for interior design
By designing a green prefabricated wall with an integrated automatic irrigation system, the problems of time-consuming and labor-intensive installation and insufficient aesthetics of indoor green walls have been solved, achieving rapid installation and automated irrigation.
Patent Information
- Application Number
- CN202310731843.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-19
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2043-06-19
AI Technical Summary
The installation process of existing indoor green walls is time-consuming and labor-intensive, affects aesthetics, and requires regular manual watering, lacking an automated irrigation system.
Design a green prefabricated wall system that includes a base, column mechanism, frame wall panels, and water supply mechanism. It enables rapid installation through snap-fit connections and integrates an automatic irrigation system. The water supply mechanism controls the quantitative water supply through a solenoid valve.
It improves the installation efficiency and aesthetics of green walls, enables automated watering, and reduces the need for manual maintenance.
Smart Images

Figure CN116771009B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of architectural decoration wall, and particularly relates to a green assembly type wall for indoor design. BACKGROUND
[0002] Architectural decoration is also called indoor decoration, which is a comprehensive art of organizing and shaping an indoor environment with beauty, comfort and convenience to meet people's social activities and living needs, and is a branch of environmental art. Indoor decoration is also called interior design, which integrates modern science and technology and culture and art, and is closely related to architectural design, geography, decorative art, human engineering, psychology, aesthetics and science and technology materials. According to the research scope and object, indoor decoration can be divided into family indoor decoration, hotel indoor decoration, shop indoor decoration, public facility indoor decoration such as shopping mall, entertainment cinema and the like. Indoor decoration is attached to architectural entities, such as space modeling, greening, decoration, murals, lighting and artistic treatment of various building facilities, which are collectively referred to as indoor decoration.
[0003] The assembly type wall can be set according to the size of the building, and the integrated functional wallboard on the inside and outside is produced in large scale in the factory, transported to the building construction site, and fixed and installed on the floor slab, which is fast and simple, has the advantages of improving construction efficiency, improving product quality and accelerating the overall construction progress.
[0004] At present, indoor greening walls are becoming more and more popular, and the screen wall with green plants plays a good decorative role in large scenes. However, for planting green plants on the screen wall, fixed frames are installed on the front and back sides of the wall, and then potted green plants are placed on the fixed frames. However, not all scenes have screen walls, and before installing the fixed frame, a groove needs to be opened in the wall, and then a fixing hole is opened in the screen wall. The fixed frame is installed and protrudes from the wall, which affects the overall appearance of the wall, is time-consuming and laborious, is not conducive to worker installation, and the green plants on the wall also need to be regularly watered by maintenance workers. If the structure of the assembly type wall, the green screen wall and the automatic irrigation system are combined, the appearance of the screen wall can be greatly improved, and the assembly of workers is also facilitated.
[0005] Therefore, it is necessary to provide a green assembly type wall for indoor design to improve the overall appearance of the green wall, integrate the automatic irrigation system and simplify the installation of the green screen wall. SUMMARY
[0006] In order to solve the above problems, the present application provides a kind of green assembly type wall for interior design to improve the overall aesthetic of green wall, while integrating the system of automatic irrigation, also simplify the installation engineering of green screen wall.
[0007] The present application is realized by the following technical solutions:
[0008] The present application provides a kind of green assembly type wall for interior design, including base, column mechanism, two frame body wallboards, water supply mechanism, four green plant planting walls, the base is fixed on the ground, the bottom end of the column mechanism is fixedly connected to the middle part of the base, two frame body wallboards are symmetrically arranged, the bottom of two frame body wallboards is slidably connected with the base, one side of two frame body wallboards is respectively inserted into the left and right sides of the column mechanism and forms the fixed connection of buckling type, two green plant planting walls are symmetrically arranged and respectively detachably connected to the front and back of one frame body wallboard, another two green plant planting walls are symmetrically arranged and respectively detachably connected to the front and back of another frame body wallboard, the middle part of the water supply mechanism is inserted and fixedly connected to the center of the column mechanism, the bottom of the water supply mechanism penetrates the base and extends outwardly and is fixedly connected with external water pipe and forms conduction, two sides of the water supply mechanism respectively extend into two frame body wallboards and extend into the green plant planting wall.
[0009] Further, the column mechanism includes support beam, two knob buckling mechanisms, the bottom of the support beam is fixedly connected with the center of the base, two knob buckling mechanisms are symmetrically arranged and respectively fixedly connected to the inside of the support beam, the left and right sides of the support beam are each provided with insertion slot, one side of two knob buckling mechanisms respectively extends into the insertion slot, one side of the frame body wallboard is accommodated in the insertion slot and forms the fixed connection of buckling type with one side of the knob buckling mechanism, the middle part of the support beam is provided with accommodation slot, the middle part of the water supply mechanism is accommodated in the accommodation slot, two sides of the water supply mechanism respectively extend outwardly from two insertion slots horizontally.
[0010] Further, the knob buckling mechanism comprises a fixed frame, two transmission rods, two buckling rods, a knob transmission piece, a fixed plate, the fixed frame is fixedly connected to the inside of the support beam, two transmission rods are arranged longitudinally in sequence, one end of two transmission rods is rotationally connected to the bottom of the fixed frame respectively, two buckling rods correspond to two transmission rods respectively, the transmission rod penetrates the buckling rod and forms a screw rod transmission connection with the buckling rod, one side of two buckling rods is in longitudinal sliding connection with the fixed frame and penetrates the support beam and extends into the inserting slot, one end of the knob transmission piece is rotationally connected to the top of the fixed frame and is located between two transmission rods, the other end of two transmission rods is provided with a first transmission gear, the middle part of the knob transmission piece is provided with a second transmission gear, the two sides of the second transmission gear are meshed and connected with two first transmission gears respectively, the fixed plate is transversely fixedly connected to the top of the fixed frame, the other end of two transmission rods is in rotational connection with the fixed plate, the other end of the knob transmission piece is inserted into the center of the fixed plate and is in rotational connection with the fixed plate, the knob transmission piece can drive two transmission rods to rotate in the same direction to drive two buckling rods to slide downward at the same time to buckle one side of the frame wall plate.
[0011] Further, one side of the buckling rod is provided with a plurality of lock catch portions for buckling one side of the frame wall plate, a plurality of lock catch portions are arranged in sequence along the axial direction of the buckling rod, a plurality of avoiding grooves same in number with the lock catch portions are arranged on the support beam, the avoiding grooves are communicated with the inserting slot, the lock catch portion penetrates the avoiding groove and extends into the inserting slot, one side of the frame wall plate is provided with a plurality of lock-in grooves same in number with the lock catch portions, one side of the lock catch portion is accommodated in the lock-in groove and abuts against the inner wall of the lock-in groove, the lock catch portion comprises a connecting block and an inserting piece, one end of the connecting block is fixedly connected to one side of the buckling rod, the top side of the inserting piece is fixedly connected with the other end of the connecting block, the bottom of the inserting piece is J-shaped structure and extends vertically downward and abuts against the inner wall of the lock-in groove.
[0012] Further, the water supply mechanism comprises a support frame, a controller, a water supply pipeline, a first electromagnetic valve, a plurality of second electromagnetic valves, two shunt parts, the support frame is fixedly inserted in the inner center of the column mechanism, the water supply pipeline is fixedly connected to the inner center of the support frame and is parallel to the support frame, the first electromagnetic valve is fixedly connected to one side of the bottom of the support frame and controls the conduction or closing of the water supply pipeline, two shunt parts are fixedly connected to the left and right sides of the support frame respectively and are in conduction with the water supply pipeline, one end of each of the two shunt parts extends into the two wallboards of the frame body respectively, a plurality of second electromagnetic valves are sequentially arranged and fixedly connected to the back of the support frame and segmentally control the conduction or closing of the water supply pipeline and the two shunt parts, the plurality of second electromagnetic valves and the two shunt parts are located in the upper half of the water supply pipeline, and the controller is fixedly connected to the other side of the bottom of the support frame and is electrically connected with the first electromagnetic valve and the plurality of second electromagnetic valves respectively.
[0013] Further, the shunt part comprises a plurality of shunt pipe assemblies, the plurality of shunt pipe assemblies are sequentially arranged transversely along the direction of the water supply pipeline, one side of the support frame is provided with a plurality of connecting parts which are the same in number as the shunt pipe assemblies and are sequentially arranged, the plurality of shunt pipe assemblies correspond to the plurality of connecting parts one by one, one end of the shunt pipe assembly is fixedly connected with the connecting part and is in conduction with the water supply pipeline, one second electromagnetic valve is arranged between two shunt pipe assemblies, the second electromagnetic valve is used to control the conduction or closing of the two shunt pipe assemblies symmetrically arranged above and the water supply pipeline, the other end of the shunt pipe assembly extends into the wallboard of the frame body and is fixedly supported on the inner wall of the wallboard of the frame body, and the front and back sides of the shunt pipe assembly extend into the two green plant planting walls.
[0014] Further, the shunt pipe assembly comprises an adapter, a dispersed water supply pipeline and an end support, the connecting part comprises two fixed bosses, an insertion slot and a plug-in pipe, the two fixed bosses are respectively located on the two sides of the insertion slot, the plug-in pipe is located in the insertion slot, one end of the plug-in pipe is connected with the water supply pipeline and is in conduction, one end of the adapter is inserted into the insertion slot and is in sealed connection with the other end of the plug-in pipe and is in conduction, two connecting plates are symmetrically arranged on the adapter, the two connecting plates are fixedly connected with the two fixed bosses respectively, the other end of the adapter is fixedly connected with one end of the dispersed water supply pipeline and is in conduction, the end support is fixedly connected with the other end of the dispersed water supply pipeline, and the two sides of the end support are supported on the inner wall of the wallboard of the frame body.
[0015] Further, the green plant planting wall comprises a light wall, a plurality of green plant planting boxes and an integrated fish tank, the back of the light wall is fixedly connected with one side of the frame wall plate in a locking mode, the light wall is provided with placing grooves in a number same as that of the green plant planting boxes, the plurality of placing grooves are arranged in a longitudinal and transverse direction, the plurality of green plant planting boxes are one-to-one corresponding to the plurality of placing grooves, the green plant planting box is fixedly connected with the light wall in a magnetic mode, one end of the green plant planting box is accommodated in the placing groove, the two sides of the water supply mechanism extend into the placing groove from the two frame wall plates and are directed to the green plant planting box, the light wall is provided with water flow guide parts, the water flow guide parts are communicated with the plurality of placing grooves, and the integrated fish tank is fixedly arranged at the bottom of the light wall.
[0016] Further, the water flow guide part comprises a plurality of water guide grooves and a converging channel, the converging channel is vertically arranged and communicated with one end of the plurality of water guide grooves, the number of the water guide grooves is same as that of the longitudinal arrangement of the placing grooves, the extension direction of the water guide groove is same as that of the plurality of transversely arranged placing grooves, one water guide groove is communicated with the plurality of transversely arranged placing grooves, and the bottom of the converging channel is directed to the upper surface of the integrated fish tank.
[0017] Further, the light wall is provided with a plurality of rotary knob locking parts, the plurality of rotary knob locking parts are arranged in a scattered mode, the two sides of the frame wall plate are provided with plug-in locking grooves in a scattered mode, the plurality of plug-in locking grooves are horizontally arranged, the plurality of rotary knob locking parts are one-to-one corresponding to the plurality of plug-in locking grooves, the rotary knob locking part comprises a rotating groove and a rotary knob locking piece, the rotating groove is in a cylindrical structure, the rotary knob locking piece penetrates through the rotating groove and is rotationally connected with the groove wall of the rotating groove, one end of the rotary knob locking piece is provided with a T-shaped locking joint, the T-shaped locking joint protrudes from the back of the light wall, the T-shaped locking joint penetrates through the plug-in locking groove and extends into the frame wall plate, after the T-shaped locking joint is completely inserted into the plug-in locking groove, the rotary knob locking piece is rotated by 90 degrees to drive the T-shaped locking joint to rotate to a vertical state, so that the back of the light wall is fixedly connected with one side of the frame wall plate in a locking mode.
[0018] The beneficial effects of the present application are as follows:
[0019] The application adopts a base as the main bottom support structure, adopts a column mechanism as the structure of the upright support, two frame wallboards are respectively fixed on the two sides of the column mechanism, four green planting walls are respectively hung on the two frame wallboards for fixation, a water supply mechanism is installed in the column mechanism and quantitatively irrigates the green plants on the four green planting walls; before assembly, a water pipe groove is dug on the ground, during assembly, the base is placed in a state perpendicular to the water pipe groove, then is fixed on the ground through expansion screws, then the bottom of the column mechanism is bolted on the center of the base, after installation, the base and the column mechanism form an inverted T-shaped frame structure, then the water supply mechanism is installed in the column mechanism, the bottom of the water supply mechanism is connected with the external water pipe through the water pipe groove, then the two sides of the water supply mechanism extend outward, at this time, the two sides of the water supply mechanism are parallel to the two ends of the base, then the two frame wallboards are inserted from the two ends of the base, during insertion, the bottom of the frame wallboard is in sliding connection with the base, so that the insertion process is relatively easy, after the side of the frame wallboard is connected with the column mechanism, the worker operates the column mechanism to form a snap-fit type fixed connection between the two frame wallboards and the column mechanism, at this time, the frame wallboard is stably installed, the two sides of the water supply mechanism extend into the two frame wallboards, then the four green planting walls are hung and installed on the two frame wallboards, so that the front and back surfaces of each frame wallboard are fixed with green planting walls, after the four green planting walls are hung, the water supply mechanism can supply water to the four green planting walls, the four green planting walls are connected with the surface of the column mechanism, without extra protruding parts, the overall appearance is improved; in summary, the green assembly type wall for indoor design improves the efficiency of the green wall installation project through assembly, in the assembly process, an automatic irrigation system is integrated, which improves the appearance of the whole wall structure and automatically irrigates the green plants. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is an exploded view of the green assembly type wall for indoor design of the application;
[0021] Figure 2 is a whole schematic view of the green assembly type wall for indoor design of the application;
[0022] Figure 3 is a schematic view of the base of the green assembly type wall for indoor design of the application;
[0023] Figure 4 is a partial exploded view of the water supply mechanism of the green assembly type wall for indoor design of the application;
[0024] Figure 5 is Figure 4Partial enlarged view of the mark A;
[0025] Figure 6 Another angle partial view of the water supply mechanism of the green fabricated wall for interior design of the present application;
[0026] Figure 7 The adapter of the green fabricated wall for interior design of the present application;
[0027] Figure 8 The end support adapter of the green fabricated wall for interior design of the present application;
[0028] Figure 9 The column mechanism of the green fabricated wall for interior design of the present application;
[0029] Figure 10 The column mechanism of the green fabricated wall for interior design of the present application;
[0030] Figure 11 The fastening rod of the green fabricated wall for interior design of the present application;
[0031] Figure 12 The knob transmission of the green fabricated wall for interior design of the present application;
[0032] Figure 13 The frame wallboard of the green fabricated wall for interior design of the present application;
[0033] Figure 14 The green plant planting wall of the green fabricated wall for interior design of the present application;
[0034] Figure 15 The Figure 14 Partial enlarged view of the mark B;
[0035] Figure 16 Another angle view of the green plant planting wall of the green fabricated wall for interior design of the present application;
[0036] Figure 17 The lightweight wall of the green fabricated wall for interior design of the present application;
[0037] Figure 18 The knob locking of the green fabricated wall for interior design of the present application;
[0038] Figure 19 The green plant planting box of the green fabricated wall for interior design of the present application.
[0039] The reference signs are as follows:
[0040] Base 1, long strip locking plate 11, first mounting hole 111, slide 112, through hole 12, frame type connecting structure 13, longitudinal fixing plate 131, transverse fixing plate 132;
[0041] Column mechanism 2, support beam 21, insertion slot 211, accommodation slot 212, avoidance slot 213, through slot 214, knob buckling mechanism 22, fixing frame 221, transmission rod 222, first transmission gear 2221, buckling rod 223, lock catch 2231, connecting block 22311, insertion piece 22312, knob transmission piece 224, second transmission gear 2241, knob slot 2242, fixing plate 225;
[0042] Frame body wallboard 3, locking slot 31, plug-in locking slot 32;
[0043] Water supply mechanism 4, support frame 41, connecting part 411, fixing boss 4111, insertion slot 4112, plug-in pipe 4113, controller 42, water supply pipeline 43, first electromagnetic valve 44, second electromagnetic valve 45, flow dividing part 46, flow dividing pipe assembly 461, adapter 4611, connecting plate 46111, dispersed water supply pipeline 4612, irrigation pipe 46121, end support connecting piece 4613;
[0044] Green plant planting wall 5, light wall 51, placing slot 511, water flow conducting part 512, water guide groove 5121, converging channel 5122, knob locking part 513, rotating groove 5131, knob locking piece 5132, T-shaped locking joint 51321, green plant planting box 52, first magnet strip 521, planting cavity 522, water flow groove 523, integrated fish tank 53, electric control valve 531, oxygen supply device 532, second magnet strip 54. DETAILED DESCRIPTION
[0045] In order to more clearly and completely illustrate the technical scheme of the present application, the present application will be further described below with reference to the drawings.
[0046] Please refer to Figures 1-3The application provides a green assembled wall for indoor design, which comprises a base 1, a stand column mechanism 2, two frame wall plates 3, a water supply mechanism 4 and four green plant planting walls 5. The base 1 is fixed on the ground and is made of carbon structural steel. Two long locking plates 11 are symmetrically arranged on the base 1, and a plurality of first mounting holes 111 are arranged on the long locking plates 11 in sequence. Expansion screws or steel bars are inserted and fixed into the ground through the first mounting holes 111, so that the two long locking plates 11 are stably fixed and connected with the ground. The bottom end of the stand column mechanism 2 is fixed and connected with the middle part of the base 1 through bolts or other connecting pieces. The frame wall plates 3 are made of aluminum alloy material, are light in weight and large in bearing capacity, and are symmetrically arranged. The bottom of each frame wall plate 3 is in contact and slidingly connected with the base 1. A slide 112 is arranged on the long locking plate 11. When the frame wall plate 3 is assembled, the bottom of the frame wall plate 3 is slidingly connected with the slide 112, so that the workers can conveniently install the frame wall plate 3. The stand column mechanism 2 serves as the main supporting structure of the two frame wall plates 3. One side of each frame wall plate 3 is inserted into the left and right sides of the stand column mechanism 2 and is fixed and connected in a buckling mode. After the frame wall plate 3 is fixed with the stand column mechanism 2, the slide 112 is used for limiting the movement of the bottom of the frame wall plate 3, so that the frame wall plate 3 cannot rotate left and right with the connecting part of the stand column mechanism 2 as the rotating shaft. At this time, the bottom and one side of the frame wall plate 3 are fixed, and the frame wall plate 3 is stably installed. Two green plant planting walls 5 are symmetrically arranged and detachably connected to the front and back surfaces of one frame wall plate 3. Another two green plant planting walls 5 are symmetrically arranged and detachably connected to the front and back surfaces of the other frame wall plate 3. One frame wall plate 3 is used for providing a hanging fixed supporting structure for the two green plant planting walls 5. The middle part of the water supply mechanism 4 is inserted and fixedly connected to the center of the stand column mechanism 2. The bottom of the water supply mechanism 4 penetrates through the base 1 and is fixedly connected with an external water pipe and forms a conduction. A through hole 12 is arranged in the center of the base 1. After the water supply mechanism 4 is installed in the center of the stand column mechanism 2, the connecting pipe at the bottom of the water supply mechanism 4 penetrates out of the through hole 12 and is connected with the external water pipe in the water pipe groove. The two sides of the water supply mechanism 4 extend into the two frame wall plates 3 and protrude into the green plant planting walls 5.
[0047] In this embodiment, before assembly, a water pipe groove is dug on the ground. During assembly, the base 1 is placed in a state perpendicular to the water pipe groove, and then the base 1 is fixed to the ground by expansion screws. Then the bottom of the column mechanism 2 is bolted to the center of the base 1. After installation, the base 1 and the column mechanism 2 form an inverted T-shaped frame structure. Then the water supply mechanism 4 is installed in the column mechanism 2, and the bottom of the water supply mechanism 4 is connected to the external water pipe through the water pipe groove. After the water pipe connection is completed, the water pipe groove needs to be filled with concrete. Then the two sides of the water supply mechanism 4 extend outward. At this time, the two sides of the water supply mechanism 4 are parallel to the two ends of the base 1. Then the two shelf wallboards 3 are inserted horizontally from the two ends of the base 1. During insertion, the bottom of the shelf wallboard 3 forms a sliding connection with the slide 112 of the base 1, so that the shelf wallboard 3 has a certain direction during insertion, making the insertion process easier. After the side of the shelf wallboard 3 is connected with the column mechanism 2, the worker operates the column mechanism 2 to form a snap-fit fixed connection between the two shelf wallboards 3 and the column mechanism 2. At this time, the shelf wallboard 3 is stably installed, and the two shelf wallboards 3 both have bearing capacity and can be used as bearing walls of the green plant planting wall 5. During the insertion of the shelf wallboard 3, the two sides of the water supply mechanism 4 extend into the interior of the two shelf wallboards 3, and the structures on the two sides of the water supply mechanism 4 extend to the front and back of the shelf wallboard 3. Then four green plant planting walls 5 are hung and installed on the two shelf wallboards 3, respectively, so that the front and back of each shelf wallboard 3 is fixed with a green plant planting wall 5. After the four green plant planting walls 5 are hung, they are connected with the surface of the column mechanism 2, without excess protruding parts, improving the overall aesthetic appearance. The structures on the two sides of the water supply mechanism 4 can supply water to the interior of the green plant planting wall 5, and workers do not need to water the plants on the four green plant planting walls 5 one by one during irrigation.
[0048] In summary, the green assembled wall for indoor design improves the efficiency of green wall installation engineering through assembly. During assembly, an automatic irrigation system is integrated, which improves the aesthetic appearance of the entire wall structure and automatically irrigates the green plants.
[0049] Please refer to Figure 9In the embodiment, the column mechanism 2 comprises a support beam 21 and two knob buckle mechanisms 22. The support beam 21 is a beam-shaped component formed by bending and welding a steel plate. The bottom of the support beam 21 is fixedly connected to the center of the base 1. The center of the base 1 is provided with a frame-shaped connecting structure 13. The support beam 21 is fixedly connected to the frame-shaped connecting structure 13 through external bolts. The frame-shaped connecting structure 13 comprises two longitudinal fixed plates 131 and two transverse fixed plates 132. The two longitudinal fixed plates 131 are symmetrically arranged. The two transverse fixed plates 132 are symmetrically arranged. The two longitudinal fixed plates 131 and the two transverse fixed plates 132 form a square frame. The longitudinal fixed plate 131 is provided with a plurality of second mounting holes. The left and right side surfaces of the bottom of the support beam 21 are each provided with a same number of first connecting threaded holes as the second mounting holes. The external bolts are inserted into the second mounting holes and screwed into the first connecting threaded holes, so as to fasten the left and right side surfaces of the support beam 21 to the longitudinal fixed plate 131. The transverse fixed plate 132 is provided with a plurality of third mounting holes. The front and rear side surfaces of the bottom of the support beam 21 are each provided with a same number of second connecting threaded holes as the third mounting holes. The external bolts are inserted into the third mounting holes and screwed into the second connecting threaded holes, so as to fasten the front and rear side surfaces of the support beam 21 to the transverse fixed plate 132. The two knob buckle mechanisms 22 are symmetrically arranged and fixedly connected to the inside of the support beam 21. The knob buckle mechanism 22 is used for buckling the shelf wall plate 3 connected to the support beam 21, so that the shelf wall plate 3 is fixed to the side surface of the support beam 21. The left and right sides of the support beam 21 are each provided with an insertion slot 211. One side of each of the two knob buckle mechanisms 22 extends into the insertion slot 211. One side of the shelf wall plate 3 is accommodated in the insertion slot 211 and fixedly connected to one side of the knob buckle mechanism 22 in a buckling manner. The middle part of the support beam 21 is provided with an accommodation slot 212. The middle part of the water supply mechanism 4 is accommodated in the accommodation slot 212. The two sides of the water supply mechanism 4 extend outward from the two insertion slots 211 in a transverse direction.Both sides of the support beam 21 are provided with a plurality of sequentially arranged through grooves 214 in communication with the accommodation grooves 212, both sides of the water supply mechanism 4 extend outside through the through grooves 214, when installing the water supply mechanism 4, first install the main part of the water supply mechanism 4 into the accommodation groove 212, then fixed through the side screws, then assemble the two side parts of the water supply mechanism 4 outside the support frame 41, the two side parts of the water supply mechanism 4 are connected with the water supply mechanism 4 through the through grooves 214, after the two side parts of the water supply mechanism 4 are assembled, the assembly of the frame wallboard 3 can be carried out, when the frame wallboard 3 is assembled, the bottom of the frame wallboard 3 is connected with the slide 112 to form a sliding connection, then push the frame wallboard 3 towards the direction of the support beam 21, after one side of the frame wallboard 3 is accommodated in the insertion groove 211 and connected with the bottom wall of the insertion groove 211, the worker rotates the knob of the knob closing mechanism 22 from the top of the support beam 21 in the forward direction, so that the knob closing mechanism 22 fixes and connects one side of the frame wallboard 3 in a buckling manner, when the frame wallboard 3 needs to be removed, the knob of the knob closing mechanism 22 is rotated in the reverse direction until the frame wallboard 3 is loosened.
[0050] Please refer to Figure 9 、 Figure 10 、 Figure 12In the embodiment, the knob buckling mechanism 22 comprises a fixed frame 221, two transmission rods 222, two buckling rods 223, a knob transmission piece 224, and a fixed plate 225. The fixed frame 221 is fixedly connected to the inside of the support beam 21. The two transmission rods 222 are arranged longitudinally in sequence. Both of the transmission rods 222 are screw rod type transmission rods. One end of each of the two transmission rods 222 is rotationally connected to the bottom of the fixed frame 221 through a bearing. The two buckling rods 223 correspond to the two transmission rods 222 in a one-to-one manner. The adoption of the two buckling rods 223 increases the buckling fixing force on the frame wall plate 3 and improves the stability of the frame wall plate 3 after being fixed. Threaded holes matched with the screws on the transmission rods 222 are arranged in the two buckling rods 223. The transmission rods 222 penetrate the buckling rods 223 and form screw rod transmission connections with the buckling rods 223. One side of each of the two buckling rods 223 forms a longitudinal sliding connection with the fixed frame 221, penetrates the support beam 21, and extends into the insertion slot 211. One end of the knob transmission piece 224 is rotationally connected to the top of the fixed frame 221 between the two transmission rods 222 through a bearing. The other end of each of the two transmission rods 222 is provided with a first transmission gear 2221 coaxial with the transmission rod 222. A second transmission gear 2241 is arranged in the middle of the knob transmission piece 224. The two sides of the second transmission gear 2241 are respectively in meshing connection with the two first transmission gears 2221. The fixed plate 225 is transversely fixedly connected to the top of the fixed frame 221 by bolts. The other end of each of the two transmission rods 222 forms a rotational connection with the fixed plate 225 through a bearing. The other end of the knob transmission piece 224 is inserted into the center of the fixed plate 225 and forms a rotational connection with the fixed plate 225. The other end of the knob transmission piece 224 is provided with a knob slot 2242 in a regular hexagonal structure. The knob slot 2242 is used to provide a structure for external tools to insert and move the knob transmission piece 224. When the frame wall plate 3 is buckled and fixed, the worker inserts an external tool into the knob slot 2242 and then rotates the knob transmission piece 224 in a forward direction. The second transmission gear 2241 on the knob transmission piece 224 rotates and transmits power to the two first transmission gears 2221 to make them rotate in the same direction at the same time. The simultaneous forward rotation of the two first transmission gears 2221 drives the two transmission rods 222 to rotate in the same direction at the same time, so as to drive the two buckling rods 223 to slide downward at the same time. The downward sliding of the two buckling rods 223 inserts them into the frame wall plate 3 to buckle one side of the frame wall plate 3. When the frame wall plate 3 needs to be disassembled, the knob transmission piece 224 is rotated in a reverse direction, so that the two transmission rods 222 rotate in the same direction in a reverse direction at the same time, so as to simultaneously lift the two buckling rods 223 upward. The frame wall plate 3 is gradually loosened.
[0051] Please refer to Figures 9-11 , Figure 13In the embodiment, one side of the buckling rod 223 is provided with a plurality of locking portions 2231 for buckling with one side of the frame wall plate 3, the plurality of locking portions 2231 are sequentially arranged along the axial direction of the buckling rod 223, the support beam 21 is provided with a plurality of avoiding grooves 213 which are the same in number as the locking portions 2231, the avoiding grooves 213 are communicated with the inserting grooves 211, the locking portions 2231 penetrate through the avoiding grooves 213 and extend into the inserting grooves 211, one side of the frame wall plate 3 is provided with a plurality of locking grooves 31 which are the same in number as the locking portions 2231, when the frame wall plate 3 is buckled and fixed, the buckling rod 223 moves downward, so that the plurality of locking portions 2231 also move downward, in the process of moving downward of the locking portions 2231, the locking portions 2231 are gradually accommodated into the locking grooves 31, after the buckling and fixed connection is completed, one side of the locking portions 2231 is accommodated in the locking grooves 31 and abuts against the inner wall of the locking grooves 31, the locking portions 2231 include a connecting block 22311 and an inserting piece 22312, one end of the connecting block 22311 is fixedly connected to one side of the buckling rod 223 by a bolt, when the factory assembly is performed, the buckling rod 223 needs to be first connected with the transmission rod 222 in the form of a screw rod, due to the limited space in the fixed frame 221, the connecting block 22311 needs to be installed from the inserting groove 211 of the support frame 41 only after the transmission rod 222 is installed, when the connecting block 22311 is installed, the connecting block 22311 penetrates through the avoiding groove 213 and is fixedly connected to one side of the buckling rod 223 by a bolt, the other end of the connecting block 22311 is fixedly connected to one side of the top of the inserting piece 22312 by a bolt, after the connecting block 22311 is installed, the inserting piece 22312 is continuously installed, in the process of buckling and fixed connection of the frame wall plate 3, the inserting piece 22312 gradually moves downward and is inserted into the locking grooves 31, the bottom of the inserting piece 22312 is a J-shaped structure and vertically extends downward, after the buckling and fixed connection is completed, the bottom of the inserting piece 22312 abuts against the inner wall of the locking grooves 31, due to the structural advantages, the J-shaped structure of the bottom of the inserting piece 22312 has a certain elasticity, the purpose is to increase the abutting force when abutting against the inner wall of the locking grooves 31, so as to prevent accidental loosening.
[0052] Please refer to Figure 4 , Figure 6In the embodiment, the water supply mechanism 4 comprises a support frame 41, a controller 42, a water supply pipeline 43, a first electromagnetic valve 44, a plurality of second electromagnetic valves 45, two shunt parts 46, the support frame 41 is fixedly inserted in the inner center of the stand mechanism 2, i.e. in the accommodation groove 212, the top of the support frame 41 is provided with a lifting ring, when assembling, the support frame 41 can be lifted by an external suspension mechanism and then inserted into the accommodation groove 212, the water supply pipeline 43 is fixedly connected to the inner center of the support frame 41 and parallel to the support frame 41, i.e. the water supply pipeline 43 is in a vertical state, the first electromagnetic valve 44 serves as a main on-off valve, the first electromagnetic valve 44 is fixedly connected to one side of the bottom of the support frame 41 and controls the conduction or closing of the water supply pipeline 43, the opening of the first electromagnetic valve 44 allows the water supply pipeline 43 to enter tap water, the two shunt parts 46 are fixedly connected to the left and right sides of the support frame 41 and in conduction with the water supply pipeline 43, one end of each of the two shunt parts 46 extends into the two frame wallboards 3, the shunt parts 46 are used for supplying water to the green plant growing wall 5 to irrigate the green plants, the plurality of second electromagnetic valves 45 serve as second-stage on-off valves, the plurality of second electromagnetic valves 45 are sequentially arranged and fixedly connected to the back of the support frame 41 and segmentally control the conduction or closing of the water supply pipeline 43 and the two shunt parts 46, i.e. not all of the second electromagnetic valves 45 can be opened, the number and position of the opened second electromagnetic valves 45 can be set according to the needs of the manager, the plurality of second electromagnetic valves 45 and the two shunt parts 46 are located in the upper half of the water supply pipeline 43, the controller 42 is fixedly connected to the other side of the bottom of the support frame 41 and electrically connected to the first electromagnetic valve 44 and the plurality of second electromagnetic valves 45 through internal conductive wires, the controller 42 is electrically connected to an external power source through the conductive wires for overall power supply, the controller 42 is provided with a wireless transmission module, a driving module and a main control module, the wireless transmission module and the driving module are electrically connected to the main control module, the main control module is used for receiving instructions from the wireless transmission module and issuing corresponding operation instructions to the driving module, the driving module is used for electrically connecting to the first electromagnetic valve 44 and the plurality of second electromagnetic valves 45, the wireless transmission module is used for connecting to the manager's mobile phone, the manager can control the opening and closing of the first electromagnetic valve 44 and the plurality of second electromagnetic valves 45 through the mobile phone APP and can set the timing opening or closing of the first electromagnetic valve 44 or the plurality of second electromagnetic valves 45 on the mobile phone APP to allow the shunt parts 46 to irrigate the green plants on the green plant growing wall 5.
[0053] Please refer to Figure 4In the embodiment, the flow distribution part 46 comprises a plurality of flow distribution pipe assemblies 461 arranged in sequence in the direction of the water supply pipe 43, the support frame 41 is provided with a plurality of connecting parts 411 arranged in sequence on one side, the number of the connecting parts 411 is same as that of the flow distribution pipe assemblies 461, the flow distribution pipe assemblies 461 correspond to the connecting parts 411 one by one, one end of the flow distribution pipe assembly 461 is fixedly connected with the connecting part 411 and is in communication with the water supply pipe 43, one second electromagnetic valve 45 is arranged between two flow distribution pipe assemblies 461, the second electromagnetic valve 45 is used to control the communication or closing of the two flow distribution pipe assemblies 461 arranged symmetrically above the water supply pipe 43, the other end of the flow distribution pipe assembly 461 extends into the frame wall panel 3 and is supported and fixed to the inner wall of the frame wall panel 3, and the front and back sides of the flow distribution pipe assembly 461 extend into the two green plant planting walls 5; when the green plants are irrigated, the second electromagnetic valves 45 are all closed, and the first electromagnetic valve 44 is opened, then the water flow only flows into the flow distribution pipe assembly 461 at the lowermost position, that is, only the green plants at the lowermost position are irrigated, if the first electromagnetic valve 44 is opened and the second electromagnetic valve 45 at the lowermost position is also opened, then the water flow flows into the second flow distribution pipe assembly 461 from the second position below, the flow distribution pipe assembly 461 above has no water flow, and so on, the user can control the second electromagnetic valves 45 according to the green plants to be irrigated, so as to realize the segmented irrigation control from bottom to top.
[0054] Please refer to Figures 4-8In the embodiment, the shunt pipe assembly 461 comprises an adapter 4611, a distributed water supply pipe 4612, and an end support 4613. The connecting portion 411 comprises two fixed protrusions 4111, an insertion slot 4112, and an insertion pipe 4113. The two fixed protrusions 4111 are respectively located at two sides of the insertion slot 4112. The insertion pipe 4113 is located in the insertion slot 4112. The insertion pipe 4113 is a metal pipe. One end of the insertion pipe 4113 is connected with and conducts with the water supply pipe 43. One end of the adapter 4611 is inserted into the insertion slot 4112 and is sealingly connected with and conducts with the other end of the insertion pipe 4113. The one end of the adapter 4611 is made of rubber material and is provided with a flow guide hole in the middle. When the one end of the adapter 4611 is inserted into the insertion slot 4112, the outer wall of the insertion pipe 4113 is tightly connected with the hole wall of the flow guide hole. Two connecting plates 46111 are symmetrically arranged on the adapter 4611. The two connecting plates 46111 are respectively fixedly connected with the two fixed protrusions 4111 through bolts, so that the adapter 4611 is stably inserted into the insertion slot 4112. The other end of the adapter 4611 is fixedly connected with one end of the distributed water supply pipe 4612 in a threaded manner and conducts with the one end of the distributed water supply pipe 4612. The distributed water supply pipe 4612 is used for watering the green plants on the green plant planting wall 5. The end support 4613 is fixedly connected with the other end of the distributed water supply pipe 4612. The two sides of the end support 4613 are supported on the inner wall of the frame wall plate 3. The end support 4613 is used for providing a stable support structure for the distributed water supply pipe 4612, so that the distributed water supply pipe 4612 can be stably arranged horizontally in the frame wall plate 3. The two sides of the end support 4613 are respectively provided with hand-tightening threaded support rods 46131. The two hand-tightening threaded support rods 46131 can be adjusted in the outward supporting distance through knobs. Workers can stably support the end support 4613 on the inner wall of the frame wall plate 3 through the knobs of the two hand-tightening threaded support rods 46131, so as to ensure that the distributed water supply pipe 4612 does not shake and remains arranged horizontally when watering.
[0055] Please refer to Figure 14 、 Figure 15 、 Figure 19In the embodiment, the green plant planting wall 5 comprises a light wall 51 made of engineering plastic, a plurality of green plant planting boxes 52, and an integrated fish tank 53. The light wall 51 is light in weight and easy to carry. The back of the light wall 51 is fixedly connected to one side of the frame wall panel 3 in a locking manner. The light wall 51 is provided with placing grooves 511 in the same number as the green plant planting boxes 52. The plurality of placing grooves 511 are arranged in the longitudinal and transverse directions. The plurality of green plant planting boxes 52 are one-to-one corresponding to the plurality of placing grooves 511. The plurality of green plant planting boxes 52 are placed one by one in the placing grooves 511 after the light wall 51 is fixed. The green plant planting box 52 is magnetically fixed to the light wall 51. The bottom side of the green plant planting box 52 is provided with a first magnet strip 521. The lower edge of the placing groove 511 is provided with a second magnet strip 54. When the green plant planting box 52 is inserted into the placing groove 511, the first magnet strip 521 and the second magnet strip 54 are magnetically attracted. One end of the green plant planting box 52 is accommodated in the placing groove 511. The two sides of the water supply mechanism 4 extend from the two frame wall panels 3 into the placing grooves 511 and towards the green plant planting boxes 52. The two sides of the distributed water supply pipeline 4612 are symmetrically arranged with a plurality of irrigation pipes 46121. The plurality of irrigation pipes 46121 are in communication with the distributed water supply pipeline 4612. The plurality of irrigation pipes 46121 are one-to-one corresponding to the plurality of placing grooves 511. The water outlet end of the irrigation pipe 46121 extends into the placing groove 511 and towards the green plant planting box 52. During irrigation, the irrigation pipe 46121 discharges water towards the green plant planting box 52. The light wall 51 is provided with water flow communication portions 512. The water flow communication portions 512 are in communication with the plurality of placing grooves 511. The green plant planting box 52 is provided with a planting cavity 522 and a water flow groove 523. The water flow groove 523 is located at the bottom of the green plant planting box 52 and is in communication with the planting cavity 522. The integrated fish tank 53 is fixedly placed at the bottom of the light wall 51. The bottom of the water flow communication portion 512 extends to the top of the integrated fish tank 53. The green plant planting box 52 plants green plants by soilless culture. During irrigation, water flows into the planting cavity 522 to irrigate the green plants. Since the amount of water used for irrigation is not large, there is always infiltration. The excess water flows out of the water flow groove 523 into the water flow communication portion 512. The water flow communication portion 512 guides the water flow to the integrated fish tank 53. One side of the integrated fish tank 53 is provided with an electric control valve 531. The other side is provided with an oxygen supply device 532. The electric control valve 531 and the oxygen supply device 532 are connected to an external power source through conductive wires. When the water level of the integrated fish tank 53 is too high, the user can open the electric control valve 531 through the button on the electric control valve 531 to discharge the water in the integrated fish tank 53.
[0056] Please refer to Figure 14 、 Figure 15 、 Figure 17In the embodiment, the water flow conducting part 512 comprises a plurality of water guide grooves 5121 and a converging channel 5122 vertically arranged and respectively connected with one end of the plurality of water guide grooves 5121. The number of the water guide grooves 5121 is the same as the number of the longitudinally arranged placement grooves 511. The extension direction of the water guide grooves 5121 is the same as the direction of the plurality of transversely arranged placement grooves 511. One water guide groove 5121 is respectively connected with the plurality of transversely arranged placement grooves 511. The water guide grooves 5121 are used to guide the water flowing down from the green plant planting box 52 into the converging channel 5122. The bottom of the converging channel 5122 is directed to the upper surface of the integrated fish tank 53. After watering, the excess water flows into the water guide grooves 5121. The bottom wall of the water guide grooves 5121 is arranged as an inclined surface, which is inclined towards the converging channel 5122. The water guide grooves 5121 guide the water to flow into the converging channel 5122. The converging channel 5122 converges the water flow into the integrated fish tank 53.
[0057] Please refer to Figures 13-16 , Figure 18In the embodiment, the lightweight wall 51 is provided with a plurality of knob locking parts 513, the plurality of knob locking parts 513 are dispersedly arranged, the two sides of the frame wallboard 3 are dispersedly provided with a plurality of plug-in locking grooves 32, the plurality of plug-in locking grooves 32 are arranged horizontally, the plurality of knob locking parts 513 correspond to the plurality of plug-in locking grooves 32 one by one, the knob locking part 513 comprises a rotating groove 5131 and a knob locking piece 5132, the rotating groove 5131 is a cylindrical structure, the knob locking piece 5132 penetrates the rotating groove 5131 and is rotationally connected with the groove wall of the rotating groove 5131, one end of the knob locking piece 5132 is provided with a T-shaped locking joint 51321, the T-shaped locking joint 51321 protrudes from the back of the lightweight wall 51, the T-shaped locking joint 51321 penetrates the plug-in locking groove 32 and extends into the frame wallboard 3, the end of the knob locking piece 5132 away from the T-shaped locking joint 51321 is provided with a regular hexagonal breakage groove, the breakage groove is used for inserting an external tool, when the lightweight wall 51 is suspended and fixed, first, all the T-shaped locking joints 51321 are rotated to a horizontal state, then the lightweight wall 51 is lifted, so that the plurality of T-shaped locking joints 51321 are aligned with the corresponding plug-in locking grooves 32, then the lightweight wall 51 is moved towards the frame wallboard 3, at this time, the T-shaped locking joints 51321 are inserted into the plug-in locking grooves 32, after the T-shaped locking joints 51321 are completely inserted into the plug-in locking grooves 32, the worker inserts the external tool into the breakage groove, then rotates the knob locking piece 5132 by 90 degrees, so that the T-shaped locking joints 51321 are rotated to a vertical state, at this time, the T-shaped locking joints 51321 are perpendicular to the plug-in locking grooves 32 to form a locking, so that the back of the lightweight wall 51 and one side of the frame wallboard 3 are locked and fixedly connected, when the lightweight wall 51 needs to be disassembled, all the knob locking pieces 5132 are reversely rotated by 90 degrees, so that all the T-shaped locking joints 51321 return to the horizontal state.
[0058] Of course, the present application can have other various embodiments, based on the embodiment, other embodiments obtained by those skilled in the art without any creative labor belong to the scope protected by the present application.
Claims
1. A green prefabricated wall system for interior design, characterized in that, The system includes a base, a column mechanism, two frame wall panels, a water supply mechanism, and four green planting walls. The base is fixed to the ground. The bottom end of the column mechanism is fixedly connected to the middle of the base. The two frame wall panels are symmetrically arranged, and the bottom of each frame wall panel is slidably connected to the base. One side of each frame wall panel is inserted into the left and right sides of the column mechanism to form a snap-fit connection. Two green planting walls are symmetrically arranged and detachably connected to the front and back sides of one of the frame wall panels. The other two green planting walls are symmetrically arranged and detachably connected to the front and back sides of the other frame wall panel. The water supply mechanism is inserted into and fixedly connected to the middle of the column mechanism. The water supply mechanism extends outward from the base through its bottom and is fixedly connected to an external water pipe, forming a conductive path. Both sides of the water supply mechanism extend into the two frame wall panels and outward into the green planting wall. The column mechanism includes a support beam and two knob-locking mechanisms. The bottom of the support beam is fixedly connected to the center of the base. The two knob-locking mechanisms are symmetrically arranged and fixedly connected to the interior of the support beam. Insertion slots are provided on both the left and right sides of the support beam. One side of each of the two knob-locking mechanisms extends into one of the insertion slots. One side of each frame wall panel is received within one of the insertion slots and forms a snap-fit connection with one side of each knob-locking mechanism. A receiving groove is provided in the middle of the support beam. The water supply mechanism is housed in the receiving groove at its center, and its two sides extend laterally outward from the two insertion slots respectively. The knob engagement mechanism includes a fixed frame, two transmission rods, two engagement rods, a knob transmission component, and a fixed plate. The fixed frame is fixedly connected to the inside of the support beam. The two transmission rods are arranged longitudinally in sequence, with one end of each transmission rod rotatably connected to the bottom of the fixed frame. The two engagement rods correspond one-to-one with the two transmission rods. The transmission rods pass through the engagement rods and form a screw drive connection with the engagement rods. One side of each of the two engagement rods forms a longitudinal sliding connection with the fixed frame and passes through the support beam, extending into the insertion slot. The knob transmission component... One end of the knob transmission component is rotatably connected to the top of the fixed frame and located between the two transmission rods. The other end of each of the two transmission rods is provided with a first transmission gear. The middle of the knob transmission component is provided with a second transmission gear. The two sides of the second transmission gear are respectively meshed with the two first transmission gears. The fixed plate is horizontally fixedly connected to the top of the fixed frame. The other end of each of the two transmission rods is rotatably connected to the fixed plate. The other end of the knob transmission component is inserted into the center of the fixed plate and is rotatably connected to the fixed plate. When the knob is turned in the forward direction, the knob transmission component can simultaneously drive the two transmission rods to rotate in the same direction, so as to simultaneously drive the two fastening rods to slide downward, so as to fasten one side of the frame wall panel.
2. The green prefabricated wall system for interior design according to claim 1, characterized in that, The fastening rod has multiple locking parts on one side for fastening with one side of the frame wall panel. The multiple locking parts are arranged sequentially along the axial direction of the fastening rod. The support beam has multiple clearance grooves with the same number of locking parts. The clearance grooves are connected to the insertion grooves. The locking parts pass through the clearance grooves and extend into the insertion grooves. One side of the frame wall panel has locking grooves with the same number of locking parts. One side of the locking part is received in the locking groove and abuts against the inner wall of the locking groove. The locking part includes a connecting block and an insert. One end of the connecting block is fixedly connected to one side of the fastening rod. The top side of the insert is fixedly connected to the other end of the connecting block. The bottom of the insert has a J-shaped structure and extends vertically downward and abuts against the inner wall of the locking groove.
3. The green prefabricated wall system for interior design according to claim 1, characterized in that, The water supply mechanism includes a support frame, a controller, a water supply pipe, a first solenoid valve, multiple second solenoid valves, and two diversion sections. The support frame is inserted and fixed inside the center of the column mechanism. The water supply pipe is fixedly connected to the center of the support frame and parallel to the support frame. The first solenoid valve is fixedly connected to one side of the bottom of the support frame and controls the opening or closing of the water supply pipe. The two diversion sections are fixedly connected to the left and right sides of the support frame and are connected to the water supply pipe. One end of each of the two diversion sections extends into the two frame wall panels. The multiple second solenoid valves are arranged in sequence and fixedly connected to the back of the support frame and provide segmented control over the opening or closing of the water supply pipe and the two diversion sections. The multiple second solenoid valves and the two diversion sections are all located in the upper half of the water supply pipe. The controller is fixedly connected to the other side of the bottom of the support frame and is electrically connected to the first solenoid valve and the multiple second solenoid valves respectively.
4. The green prefabricated wall system for interior design according to claim 3, characterized in that, The diversion section includes multiple diversion pipe assemblies, which are arranged horizontally in sequence along the direction of the water supply pipe. One side of the support frame has a connection part with the same number of diversion pipe assemblies arranged in sequence. Each of the multiple diversion pipe assemblies corresponds to one of the multiple connection parts. One end of each diversion pipe assembly is fixedly connected to the connection part and is connected to the water supply pipe. A second solenoid valve is disposed between two diversion pipe assemblies. The second solenoid valve is used to control the connection or disconnection between the two diversion pipe assemblies located symmetrically above and the water supply pipe. The other end of each diversion pipe assembly extends into the frame wall panel and is supported and fixed to the inner wall of the frame wall panel. Both the front and rear sides of each diversion pipe assembly extend into the two green planting walls.
5. The green prefabricated wall system for interior design according to claim 4, characterized in that, The diversion pipe assembly includes an adapter, a distributed water supply pipe, and an end support. The connecting part includes two fixed bosses, an insertion groove, and a plug pipe. The two fixed bosses are located on both sides of the insertion groove, and the plug pipe is located inside the insertion groove. One end of the plug pipe is connected to and in communication with the water supply pipe. One end of the adapter is inserted into the insertion groove and forms a sealed connection with and is in communication with the other end of the plug pipe. Two connecting plates are symmetrically provided on the adapter. The two connecting plates are fixedly connected to the two fixed bosses, and the other end of the adapter is fixedly connected to and in communication with one end of the distributed water supply pipe. The end support is fixedly connected to the other end of the distributed water supply pipe, and both sides of the end support are supported on the inner wall of the frame wall panel.
6. The green prefabricated wall system for interior design according to claim 1, characterized in that, The green planting wall includes a lightweight wall, multiple plant boxes, and an integrated fish tank. The back of the lightweight wall is locked to one side of the frame wall panel. The lightweight wall has the same number of placement slots as the plant boxes, and the multiple placement slots are arranged in an array along the longitudinal and transverse directions. Each plant box corresponds to one of the multiple placement slots. The plant boxes are magnetically fixed to the lightweight wall, and one end of each plant box is received in a placement slot. The two sides of the water supply mechanism extend from the two frame wall panels into the placement slots and face the plant boxes. The lightweight wall has a water flow guide, which is connected to the multiple placement slots. The integrated fish tank is fixedly placed at the bottom of the lightweight wall, and the bottom of the water flow guide extends to the top of the integrated fish tank.
7. The green prefabricated wall system for interior design according to claim 6, characterized in that, The water flow guiding part includes multiple water inlet channels and a converging channel. The converging channel is vertically arranged and connected to one end of each of the multiple water inlet channels. The number of water inlet channels is the same as the number of longitudinally arranged placement slots. The extension direction of the water inlet channels is the same as the direction of the multiple laterally arranged placement slots. One water inlet channel is connected to multiple laterally arranged placement slots. The bottom of the converging channel faces the upper surface of the integrated fish tank.
8. The green prefabricated wall system for interior design according to claim 6, characterized in that, The lightweight wall panel is provided with multiple knob locking parts, which are scattered. Insertion locking slots are distributed on both sides of the frame wall panel, and these slots are horizontally arranged. Each knob locking part corresponds to one of the insertion locking slots. Each knob locking part includes a rotating groove and a knob locking component. The rotating groove is cylindrical, and the knob locking component passes through the rotating groove and forms a rotatable connection with the groove wall. One end of the knob locking component has a T-shaped locking connector, which protrudes from the back of the lightweight wall panel. The T-shaped locking connector passes through the insertion locking groove and extends into the frame wall panel. After the T-shaped locking connector is fully inserted into the insertion locking groove, rotating the knob locking component 90 degrees causes the T-shaped locking connector to rotate to a vertical position, thus forming a locking connection between the back of the lightweight wall panel and one side of the frame wall panel.
Citation Information
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Building ecological green wall body structure and assembling and installing method thereof
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