An indoor wall that is convenient for combination
By adopting a combined structure of guide rail frame, slider, hook block, spring, magnetic suction mechanism and limiting mechanism on the wall panel, the problems of slow installation speed and complex maintenance of traditional prefabricated walls are solved, and the rapid combination and convenient maintenance of wall panels are achieved.
Patent Information
- Application Number
- CN202411102496.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2044-08-12
AI Technical Summary
Traditional prefabricated walls require a lot of time to tighten bolts during installation, resulting in a reduced installation speed. When the wall panel is damaged, all subsequently installed plates need to be removed for repair, which increases the maintenance cost and complexity.
The combined structure including a guide rail frame, slider, hook block, spring, magnetic suction mechanism and limiting mechanism is adopted. Through the cooperation of the slider and the card block, the wall panel is quickly fixed and unfixed, simplifying the installation and maintenance process.
It improves the installation speed of wall panels, facilitates the separate disassembly and replacement of wall panels, and reduces maintenance costs and complexity.
Smart Images

Figure CN118979574B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building walls, and particularly to an interior wall that is convenient to assemble. Background Art
[0002] With the continuous development of the construction industry and the increasing requirements for environmental protection and energy conservation, prefabricated buildings have gradually gained market favor due to their advantages such as rapid construction and resource conservation; in prefabricated buildings, walls are one of the important components, and the convenience and stability of their installation directly affect the quality and service life of the entire building.
[0003] Currently, the common prefabricated walls on the market are mainly installed by assembling prefabricated components on-site. These prefabricated components usually include, but are not limited to, various types of wall panels; in the installation process of traditional prefabricated walls, adjacent two wall panels are fixed by connecting them with side bolts. Specifically, after the two wall panels are butted, bolts need to be used from the side to fix them together to ensure the overall stability and structural strength of the wall; however, when the above traditional connection method is used, since the connection between each wall panel requires multiple bolts, it means that a large amount of time is required to tighten the bolts during the installation process, reducing the overall installation speed; and when the above traditional connection method is used, if a certain wall panel is damaged and needs to be replaced, all the subsequently installed wall panels must be disassembled first to access the damaged part, which not only increases the maintenance cost but also makes the maintenance process complicated and cumbersome. Summary of the Invention
[0004] In view of this, the present invention provides an interior wall that is convenient to assemble, which can solve the disadvantages that in the installation process of traditional prefabricated walls, due to the need to spend a large amount of time tightening bolts, the overall installation speed is reduced, and after the prefabricated walls are installed, it is not convenient to repair the damaged wall panels subsequently.
[0005] The technical implementation solution of the present invention is: an interior wall that is convenient to assemble, including wall panels, and further including guide rail frame I, guide rail frame II, slider, hook block, spring I, guide rail frame III, block, spring II, magnetic attraction mechanism and limiting mechanism. Guide rail frame I is arranged inside the wall panel, guide rail frame II is arranged inside the wall panel, the slider is slidably arranged between guide rail frame I and guide rail frame II, the hook block is connected to the slider, both ends of spring I are respectively connected to the slider and the wall panel, guide rail frame III is arranged inside the wall panel, the block is slidably arranged on guide rail frame III, both ends of spring II are respectively connected to guide rail frame III and the block, the magnetic attraction mechanism is used to drive the slider and the block to move, and the limiting mechanism is used to limit the slider.
[0006] Optionally, the magnetic attraction mechanism includes iron plate I and iron plate II. Iron plate I is symmetrically arranged on the slider, and iron plate II is symmetrically arranged on the block.
[0007] Optionally, the limiting mechanism includes a connecting plate, a hook plate, an iron plate III and an elastic rope. A connecting plate is arranged inside the wall panel. Hook plates are symmetrically and rotatably arranged on both sides of the connecting plate. The hook plates are used to hook the sliding blocks for limiting. The iron plate III is installed on the hook plates. The two ends of the elastic rope are respectively connected to the hook plates on both sides.
[0008] Optionally, the limiting mechanism further includes a rotating rod, a gear set and a pulley assembly. Rotating rods are symmetrically and rotatably arranged on the connecting plate. The gear set is installed between the rotating rods and is used for driving between the rotating rods. The pulley assembly is installed between the rotating rod and the hook plate and is used for driving between the rotating rod and the hook plate.
[0009] Optionally, it further includes an anti-rust mechanism. The anti-rust mechanism includes a liquid storage frame, a corrugated pipe and a pipeline. The liquid storage frame is installed inside the wall panel. The two ends of the corrugated pipe are respectively connected to the sliding block and the wall panel. The spring I is located inside the corrugated pipe. A sealed space is formed among the guide rail frame III, the clamping block and the wall panel. A pipeline is communicated between the liquid storage frame, the corrugated pipe and the sealed space.
[0010] Optionally, the anti-rust mechanism further includes a movable plate which is slidably arranged inside the liquid storage frame.
[0011] Optionally, it further includes a flush mechanism. The flush mechanism includes a connecting frame, a positioning block, a spring III and a connecting block. The connecting frame is installed inside the wall panel. The positioning block is slidably arranged inside the connecting frame. The two ends of the spring III are respectively connected to the connecting frame and the positioning block. The connecting block is installed inside the wall panel, and a clamping groove is formed on the connecting block.
[0012] Optionally, it further includes a reinforcement mechanism. The reinforcement mechanism includes a fixed frame, a sliding block and a docking frame. The fixed frame is installed inside the wall panel. The sliding block is slidably arranged on the fixed frame. The sliding block is connected to the sliding block, and the docking frame is installed inside the wall panel.
[0013] The beneficial effects of the present invention are as follows: 1. Through the cooperation of the sliding block, the hook block, the spring I, the clamping block, the spring II, the magnetic attraction mechanism and the limiting mechanism, the present invention can use the clamping block in the upper wall panel to clamp the hook block in the lower wall panel, so as to fix the two wall panels. In this way, it is convenient for people to quickly complete the combination of the two wall panels, thereby improving the overall installation speed. And when it is necessary to replace a damaged wall panel later, a specified wall panel can be removed and replaced separately, so as to facilitate people to repair and replace the damaged wall panel.
[0014] 2. By setting the anti-rust mechanism, the present invention can soak the spring I and the spring II in the corrugated pipe and the sealed space with the anti-rust liquid, so as to prevent rust of the spring I and the spring II, and further extend the service life of the spring I and the spring II.
[0015] 3. By providing a reinforcement mechanism, after the two wall panels are fixed using the clamping blocks and the hook blocks, the sliding block can be inserted into the docking frame, thereby reinforcing the two wall panels, further improving the stability of the combination of the two wall panels. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a three-dimensional structural schematic diagram of the present invention.
[0017] Figure 2 is a cross-sectional view of the wall panel of the present invention.
[0018] Figure 3 is a three-dimensional structural schematic diagram of the slider, hook block and spring I of the present invention.
[0019] Figure 4 is a three-dimensional structural schematic diagram of the guide rail frame III, clamping block and spring II of the present invention.
[0020] Figure 5 is a three-dimensional structural schematic diagram of the limiting mechanism of the present invention.
[0021] Figure 6 For the present invention Figure 5 is an enlarged view at A in
[0022] Figure 7 is a three-dimensional structural schematic diagram of the elastic rope, rotating rod and gear set of the present invention.
[0023] Figure 8 is a three-dimensional structural schematic diagram of the rust prevention mechanism of the present invention.
[0024] Figure 9 is a cross-sectional view of the rust prevention mechanism of the present invention.
[0025] Figure 10 is a three-dimensional structural schematic diagram of the flush mechanism and the reinforcement mechanism of the present invention.
[0026] Figure 11 is a cross-sectional view of the flush mechanism and the reinforcement mechanism of the present invention.
[0027] Reference numerals in the drawings: 1: wall panel, 2: guide rail frame I, 3: guide rail frame II, 4: slider, 5: hook block, 6: spring I, 8: guide rail frame III, 9: clamping block, 10: spring II, 11: iron plate I, 12: iron plate II, 13: connecting plate, 14: hook plate, 15: iron plate III, 16: elastic rope, 17: rotating rod, 18: gear set, 19: pulley assembly, 20: liquid storage frame, 21: corrugated pipe, 23: closed space, 24: pipeline, 25: movable plate, 26: connecting frame, 27: positioning block, 28: spring III, 29: connecting block, 2901: card slot, 30: fixed frame, 31: sliding block, 32: docking frame. DETAILED DESCRIPTION OF THE INVENTION
[0028] The present invention will be further described below in conjunction with specific embodiments. The schematic embodiments and descriptions of the present invention are used to explain the present invention, but do not limit the present invention.
[0029] Embodiment: An indoor wall that is convenient for combination. Refer to Figures 1 - 7 As shown in the figure, it includes a wall panel 1; it also includes a guide rail frame I 2, a guide rail frame II 3, a slider 4, a hook block 5, a spring I 6, a guide rail frame III 8, a clamping block 9, a spring II 10, a magnetic attraction mechanism and a limiting mechanism; both the upper and lower sides of the left part inside the wall panel 1 are connected with a guide rail frame I 2; both the upper and lower sides of the left part inside the wall panel 1 are connected with a guide rail frame II 3; a slider 4 is slidably installed between the upper guide rail frame I 2 and the upper guide rail frame II 3, and a slider 4 is also slidably installed between the lower guide rail frame I 2 and the lower guide rail frame II 3; a hook block 5 is connected to the left side of the slider 4, and an inclined surface is provided on the upper part of the left side of the hook block 5; both ends of the spring I 6 are respectively connected to the right side of the slider 4 and the inside of the wall panel 1; both the upper and lower sides of the right part inside the wall panel 1 are connected with a guide rail frame III 8; a clamping block 9 is slidably arranged on the guide rail frame III 8; both ends of the spring II 10 are respectively connected to the inner top of the guide rail frame III 8 and the top of the clamping block 9; the magnetic attraction mechanism is used to drive the slider 4 and the clamping block 9 to move; the limiting mechanism is used to limit the slider 4.
[0030] Refer to Figure 3 and Figure 4 As shown in the figure, the magnetic attraction mechanism includes an iron plate I 11 and an iron plate II 12; two iron plates I 11 are symmetrically connected to the front and back of the slider 4; two iron plates II 12 are symmetrically connected to the front and back of the clamping block 9.
[0031] Refer to Figures 5 - 7 As shown in the figure, the limiting mechanism includes a connecting plate 13, a hook plate 14, an iron plate III 15, an elastic rope 16, a rotating rod 17, a gear set 18 and a pulley assembly 19; both the upper and lower sides of the left part inside the wall panel 1 are connected with a connecting plate 13; the hook plates 14 are symmetrically rotatably arranged on the connecting plate 13, and the hook plates 14 hook the slider 4 for limiting; the iron plate III 15 is installed on the hook plate 14; an elastic rope 16 is connected between the two hook plates 14 on the connecting plate 13; two rotating rods 17 are rotatably arranged on the connecting plate 13, and the two rotating rods 17 on the connecting plate 13 are symmetrically distributed front and back; the gear set 18 is composed of two full gears, and the two full gears are respectively installed on the two rotating rods 17 on the connecting plate 13, and the two full gears are meshed; the pulley assembly 19 includes a pulley and a flat belt, pulleys are respectively connected to the front rotating rod 17 and the front hook plate 14, a flat belt is wound between the front pulleys, pulleys are also respectively connected to the rear rotating rod 17 and the rear hook plate 14, and a flat belt is also wound between the rear pulleys.
[0032] In the initial state, since the hook plate 14 hooks the slider 4, the spring I 6 is in a compressed state;
[0033] During use, place the first wall panel 1 at the designated position. Then, place the next wall panel 1 on the right side of the previous wall panel 1, and then push the next wall panel 1 to move leftward until it is close to the previous wall panel 1. After the two wall panels 1 come into contact, hold a magnet close to the iron plate III 15 inside the next wall panel 1 (either the iron plate III 15 near the front or the rear is okay). Until the magnet uses magnetic force to attract the corresponding iron plate III 15 to rotate, thereby driving the corresponding hook plate 14 to rotate. Furthermore, drive the hook plate 14 and the iron plate III 15 on the other side to rotate through the pulley assembly 19, the gear set 18, and the rotating rod 17, so that the hook plates 14 on the front and rear sides gradually release the slider 4, and the elastic rope 16 deforms. After the hook plate 14 completely releases the slider 4, the spring I 6 returns to its original state. The spring I 6 drives the slider 4 and the hook block 5 to move leftward. When the hook block 5 inside the next wall panel 1 moves leftward to contact the catch 9 inside the previous wall panel 1, the hook block 5 inside the next wall panel 1 will squeeze the catch 9 inside the previous wall panel 1 to move upward, and the spring II 10 on the previous wall panel 1 is compressed. When the hook block 5 inside the next wall panel 1 moves leftward to cross over the catch 9 inside the previous wall panel 1, the spring II 10 inside the previous wall panel 1 returns to its original state. The spring II 10 inside the previous wall panel 1 drives the catch 9 to move downward to reset, so that the catch 9 inside the previous wall panel 1 catches the hook block 5 inside the next wall panel 1, thereby fixing the two wall panels 1. Then, move the magnet away by hand. When the iron plate III 15 inside the next wall panel 1 is released from the magnetic adsorption of the magnet, the elastic rope 16 returns to its original state. The elastic rope 16 will drive the hook plates 14 and the iron plate III 15 on the front and rear sides to reverse and reset. In this way, the combination of the two wall panels 1 can be completed. After that, repeat the above operation to complete the combination of all the wall panels 1;
[0034] When one of the wall panels 1 in the combination is damaged and needs to be replaced, the damaged wall panel 1 can be found, and then the wall panels 1 on the left and right sides of the damaged wall panel 1 are confirmed. Then, hold a magnet close to the wall panel 1 on the left side of the damaged wall panel 1 until the magnet approaches the iron plate II 12 in the left wall panel 1. Then, use the magnetic force of the magnet to drive the iron plate II 12 and the clamping block 9 in the left wall panel 1 to move upward. The spring II 10 in the left wall panel 1 is compressed, so that the clamping block 9 in the left wall panel 1 releases the hook block 5 in the damaged wall panel 1. After that, hold another magnet close to the iron plate I 11 in the damaged wall panel 1, and then use the magnetic force of the magnet to drive the iron plate I 11 in the damaged wall panel 1 to move to the right to reset, thereby driving the slider 4 and the hook block 5 in the damaged wall panel 1 to move to the right to reset. The spring I 6 in the damaged wall panel 1 is compressed. When the slider 4 in the damaged wall panel 1 contacts the hook plate 14, the slider 4 in the damaged wall panel 1 will squeeze the hook plate 14 to rotate, and the elastic rope 16 deforms. When the slider 4 in the damaged wall panel 1 passes over the hook plate 14, the elastic rope 16 returns to its original state, and the elastic rope 16 drives the hook plate 14 in the damaged wall panel 1 to reverse and reset, so that the hook plate 14 in the damaged wall panel 1 catches the slider 4. Then, hold the two magnets and move them away. When the iron plate II 12 in the left wall panel 1 is released from the magnetic adsorption of the magnet, the spring II 10 in the left wall panel 1 returns to its original state, and the spring II 10 in the left wall panel 1 drives the iron plate II 12 and the clamping block 9 to move downward to reset. In this way, the left wall panel 1 can be released from the fixed connection with the damaged wall panel 1. Then, repeat the above operation to release the fixed connection between the damaged wall panel 1 and the right wall panel 1. After the damaged wall panel 1 is released from the fixed connection with the wall panels 1 on the left and right sides, the damaged wall panel 1 is taken out from between the wall panels 1 on the left and right sides, and then a new wall panel 1 is put back between the wall panels 1 on the left and right sides, and the combination operation of the two wall panels 1 is repeated, so that the new wall panel 1 can be fixed to the wall panels 1 on the left and right sides again. In this way, it is convenient for people to replace the damaged wall panel 1.
[0035] See Figures 8 - 9 As shown, it further includes an anti-rust mechanism. The anti-rust mechanism includes a liquid storage frame 20, a corrugated pipe 21, a pipeline 24 and a movable plate 25; both the upper and lower sides of the left part inside the wall panel 1 are connected with the liquid storage frame 20. There is an air hole in the middle of the top of the liquid storage frame 20. By setting the air hole, the anti-rust liquid in the liquid storage frame 20 can be pumped out; both ends of the corrugated pipe 21 are respectively connected to the right end of the slider 4 and the left part inside the wall panel 1, and the spring I 6 is located inside the corrugated pipe 21; a closed space 23 is formed among the inner side of the guide rail frame III 8, the top of the clamping block 9 and the inner side of the wall panel 1, and the spring II 10 is located inside the closed space 23; a pipeline 24 is communicated among the liquid storage frame 20, the corrugated pipe 21 and the closed space 23; the movable plate 25 is slidably arranged inside the liquid storage frame 20.
[0036] In the initial state, the liquid storage frame 20 (below the movable plate 25), the bellows 21, the closed space 23 and the pipeline 24 are all filled with antirust liquid (the antirust liquid filled inside can be increased during production and will not be replaced subsequently); by soaking the springs I 6 and springs II 10 in the bellows 21 and the closed space 23 with the antirust liquid, the springs I 6 and springs II 10 can be protected against rust; when the slider 4 moves, the slider 4 will drive the bellows 21 to expand and contract. When the bellows 21 extends, affected by air pressure, the antirust liquid inside the liquid storage frame 20 will be replenished into the bellows 21 through the pipeline 24. When the bellows 21 contracts, the antirust liquid inside the bellows 21 will flow back into the liquid storage frame 20 for storage; when the latch 9 moves, the space of the closed space 23 will also increase or decrease. When the space of the closed space 23 increases, affected by air pressure, the antirust liquid inside the liquid storage frame 20 will be replenished into the closed space 23 through the pipeline 24. When the space of the closed space 23 decreases, the antirust liquid inside the closed space 23 will flow back into the liquid storage frame 20 for storage; by arranging the movable plate 25, the antirust liquid inside the liquid storage frame 20 can be blocked by the movable plate 25 to prevent the antirust liquid from flowing out of the air holes of the liquid storage frame 20 when the flat wall plate 1 is transported.
[0037] See Figure 10 and Figure 11 As shown, it further includes a flush mechanism. The flush mechanism includes a connecting frame 26, a positioning block 27, a spring III 28 and a connecting block 29; the connecting frame 26 is installed on the left inner side of the wall plate 1; the positioning block 27 is slidably arranged in the connecting frame 26, and the left side surface of the positioning block 27 is an isosceles triangular surface; the two ends of the spring III 28 are respectively connected to the connecting frame 26 and the positioning block 27; the connecting block 29 is installed on the right inner side of the wall plate 1; a clamping groove 2901 is opened on the right side of the connecting block 29.
[0038] When the next wall panel 1 is pushed to move leftward and approach the previous wall panel 1, the positioning block 27 inside the next wall panel 1 will gradually approach the connecting block 29 of the previous wall panel 1. When the positioning block 27 inside the next wall panel 1 contacts the connecting block 29 of the previous wall panel 1, the connecting block 29 of the previous wall panel 1 will squeeze the isosceles triangular surface on the positioning block 27 inside the next wall panel 1, causing the positioning block 27 inside the next wall panel 1 to move forward or backward, thereby driving the next wall panel 1 to move and adjust its position so that the next wall panel 1 can be aligned with the previous wall panel 1. After the two wall panels 1 come into contact, the positioning block 27 inside the next wall panel 1 will snap into the card slot 2901 of the previous wall panel 1; afterwards, when the damaged wall panel 1 is taken out from between the left and right wall panels 1, the connecting block 29 inside the left wall panel 1 will squeeze the positioning block 27 inside the damaged wall panel 1 to move rightward, and the spring III 28 inside the damaged wall panel 1 will be compressed. At the same time, the connecting block 29 inside the damaged wall panel 1 will squeeze the positioning block 27 inside the right wall panel 1 to move rightward, and the spring III 28 inside the right wall panel 1 will be compressed. When the damaged wall panel 1 is taken out from between the left and right wall panels 1, the spring III 28 inside the damaged wall panel 1 will return to its original state, and the spring III 28 inside the damaged wall panel 1 will drive the positioning block 27 to move leftward and reset. The spring III 28 inside the right wall panel 1 will return to its original state, and the spring III 28 inside the right wall panel 1 will drive the positioning block 27 to move leftward and reset; afterwards, when the new wall panel 1 is placed back between the left and right wall panels 1 again, the connecting block 29 inside the left wall panel 1 will squeeze the positioning block 27 inside the new wall panel 1 to move rightward, and the spring III 28 inside the new wall panel 1 will be compressed. At the same time, the connecting block 29 inside the new wall panel 1 will squeeze the positioning block 27 inside the right wall panel 1 to move rightward, and the spring III 28 inside the right wall panel 1 will be compressed. When the new wall panel 1 is completely placed between the left and right wall panels 1, the spring III 28 inside the new wall panel 1 will return to its original state, and the spring III 28 inside the new wall panel 1 will drive the positioning block 27 to move leftward and reset, so that the positioning block 27 inside the new wall panel 1 snaps into the card slot 2901 inside the left wall panel 1. The spring III 28 inside the right wall panel 1 will return to its original state, and the spring III 28 inside the right wall panel 1 will drive the positioning block 27 to move leftward and reset, so that the positioning block 27 inside the right wall panel 1 snaps into the card slot 2901 inside the new wall panel 1.
[0039] See Figure 10 and Figure 11 As shown, it further includes a reinforcement mechanism. The reinforcement mechanism includes a fixed frame 30, a sliding block 31 and a docking frame 32; both the upper and lower sides of the left part inside the wall panel 1 are connected with the fixed frame 30; the sliding block 31 is slidably arranged inside the fixed frame 30, and the sliding block 31 is connected with the slider 4; both the upper and lower sides of the right part inside the wall panel 1 are connected with the docking frame 32.
[0040] When the slider 4 in the wall panel 1 moves to the left, the slider 4 in the wall panel 1 will drive the sliding block 31 to move to the left, so that the sliding block 31 in the wall panel 1 is engaged in the docking frame 32 in the left wall panel 1. In this way, the two wall panels 1 can be reinforced by engaging the sliding block 31 in the docking frame 32, thereby further improving the stability of the combination of the two wall panels 1; when the slider 4 in the wall panel 1 moves to the right, the slider 4 in the wall panel 1 will drive the sliding block 31 to move to the right, so that the sliding block 31 in the wall panel 1 disengages from the docking frame 32 in the left wall panel 1.
[0041] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention.
Claims
1. An indoor wall that is easy to assemble, comprising a wall panel (1), characterized in that: The wall panel (1) further comprises a guide rail frame I (2), a guide rail frame II (3), a slider (4), a hook block (5), a spring I (6), a guide rail frame III (8), a clamp block (9), a spring II (10), a magnetic attraction mechanism and a limiting mechanism. The wall panel (1) is provided with a guide rail frame I (2), the wall panel (1) is provided with a guide rail frame II (3), the slider (4) is slidably arranged between the guide rail frame I (2) and the guide rail frame II (3), the hook block (5) is connected to the slider (4), and the two ends of the spring I (6) are respectively The wall plate (1) is connected to the slider (4) and the wall plate (1), a guide rail frame III (8) is arranged inside the wall plate (1), a clamping block (9) is slidably arranged on the guide rail frame III (8), two ends of a spring II (10) are respectively connected to the guide rail frame III (8) and the clamping block (9), a magnetic attraction mechanism is used to drive the slider (4) and the clamping block (9) to move, and a limiting mechanism is used to limit the slider (4); the magnetic attraction mechanism includes an iron plate I (11) and an iron plate II (12), and the slider (4) is symmetrically provided with an iron plate I (11) and an iron plate II (12). (11), an iron plate II (12) is symmetrically arranged on the clamping block (9); the limiting mechanism includes a connecting plate (13), a hook plate (14), an iron plate III (15) and an elastic rope (16), a connecting plate (13) is arranged in the wall plate (1), hook plates (14) are symmetrically arranged on both sides of the connecting plate (13), the hook plates (14) are used to hook the slider (4) for limiting, the iron plate III (15) is installed on the hook plate (14), and the two ends of the elastic rope (16) are respectively connected to the hook plates on both sides. (14); the limiting mechanism also includes a rotating rod (17), a gear set (18) and a pulley assembly (19), the connecting plate (13) is symmetrically provided with a rotating rod (17), the gear set (18) is installed between the rotating rods (17), the gear set (18) is used for transmission between the rotating rods (17), the pulley assembly (19) is installed between the rotating rod (17) and the hook plate (14), and the pulley assembly (19) is used for transmission between the rotating rod (17) and the hook plate (14).
2. The easily assembled indoor wall according to claim 1, characterized in that: The invention also comprises an anti-rust mechanism, which comprises a liquid storage frame (20), a bellows (21) and a pipe (24). The liquid storage frame (20) is installed in the wall plate (1). The two ends of the bellows (21) are respectively connected to the slider (4) and the wall plate (1). The spring I (6) is located inside the bellows (21). A closed space (23) is formed between the guide rail frame III (8), the clamping block (9) and the wall plate (1). A pipe (24) is connected between the liquid storage frame (20), the bellows (21) and the closed space (23).
3. The easily assembled indoor wall according to claim 2, characterized in that: The rust-proof mechanism also includes a movable plate (25), and the movable plate (25) is slidably arranged in the liquid storage frame (20).
4. The easily assembled indoor wall according to claim 3 is characterized in that: The invention also comprises a flush mechanism, which comprises a connecting frame (26), a positioning block (27), a spring III (28) and a connecting block (29). The connecting frame (26) is installed in the wall plate (1), the positioning block (27) is slidably arranged in the connecting frame (26), two ends of the spring III (28) are respectively connected to the connecting frame (26) and the positioning block (27), the connecting block (29) is installed in the wall plate (1), and a card slot (2901) is opened on the connecting block (29).
5. The easily assembled indoor wall according to claim 4, characterized in that: The invention also comprises a reinforcement mechanism, which comprises a fixed frame (30), a sliding block (31) and a docking frame (32); the fixed frame (30) is installed in the wall panel (1); the sliding block (31) is slidably arranged on the fixed frame (30); the sliding block (31) is connected to the sliding block (4); and the docking frame (32) is installed in the wall panel (1).
Citation Information
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