Fabricated wall structure with leveling function

By adjusting the mechanism and designing the decorative panels, the problem of alignment difficulties after damage to prefabricated walls was solved, achieving stable installation and precise leveling of the walls, and reducing adjustment costs and construction impact.

CN224119750UActive Publication Date: 2026-04-14SHANGHAI LANTIAN BUILDING DECORATION ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Prefabricated walls are difficult to align after being damaged, leading to difficulties in adjustment, which consumes a lot of manpower, material resources and time, and may affect the surrounding area.

Method used

An adjustment mechanism is adopted, including threaded mounting posts, fixing rings, limit blocks, and connecting components. The threaded connection and limit structure enable precise adjustment of the wall position. Combined with the stable installation design of the decorative panel, the adjustment process is simplified.

Benefits of technology

It enables stable installation and precise leveling of prefabricated walls, reducing adjustment difficulty and cost, and minimizing the impact on construction in the surrounding area.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fabricated wall body structure with a leveling function, and relates to the technical field of fabricated wall bodies, the fabricated wall body structure comprises an adjusting mechanism, the adjusting mechanism comprises a first fixing block used for being connected with a wall body, and the first fixing block is in threaded connection with a threaded mounting column; the end of the threaded mounting column is fixedly connected with a fixing ring used for being rotationally connected with other accessories, the end of the first fixing block is fixedly connected with a cross-shaped limiting block, the cross-shaped limiting block is slidably connected with a mounting plate, one side of the mounting plate is in threaded connection with a threaded adjusting column, and a first limiting column movably penetrates through the side, away from the threaded adjusting column, of the mounting plate. By means of threaded connection of the threaded adjusting column and the mounting plate, rotation energy is converted into axial movement, the first limiting column guarantees stable movement of the mounting plate, the end connecting assemblies cooperate with the fixing ring, and the fixing ring is fixed to the end of the threaded adjusting column. And fine adjustment of the position of the fabricated wall is achieved.
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Description

Technical Field

[0001] This application relates to the field of prefabricated wall technology, and in particular to a prefabricated wall structure with leveling function. Background Technology

[0002] Prefabricated walls are wall systems that transport prefabricated wall components from the factory to the construction site for assembly and installation. They adopt industrialized production methods, transforming traditional on-site wet work into factory prefabrication and on-site assembly, which greatly improves construction efficiency and quality. With the continuous advancement of building industrialization and people's increasing requirements for building quality and environmental protection, prefabricated walls, as a green and efficient building wall material, have broad development prospects.

[0003] After the installation of prefabricated walls in shopping malls, the walls are easily damaged due to factors such as goods handling, renovation and customer activities during daily operations. Once damaged, the walls are likely to encounter the tricky problem of being difficult to align. Prefabricated walls rely on the structural characteristics of precise splicing to achieve stable installation. The alignment deviation after damage will cause the components to be misaligned. This not only requires professionals to use a variety of precision tools to repeatedly calibrate during the adjustment process, which consumes a lot of manpower, material resources and time costs, but may also restrict the surrounding area due to the construction process. Therefore, this solution proposes a prefabricated wall structure with leveling function. Utility Model Content

[0004] To address the problem of difficulty in adjusting prefabricated walls after damage, this application provides a prefabricated wall structure with a leveling function.

[0005] This application provides a prefabricated wall structure with leveling function, which adopts the following technical solution:

[0006] A prefabricated wall structure with leveling function includes an adjustment mechanism. The adjustment mechanism includes a first fixing block for connection with the wall. The first fixing block is threadedly connected to a threaded mounting post. The end of the threaded mounting post is fixedly connected to a fixing ring for rotatable connection with other accessories. The end of the first fixing block is fixedly connected to a cross-shaped limiting block. The cross-shaped limiting block is slidably connected to an installation plate. One side of the installation plate is threadedly connected to a threaded adjusting post. The first limiting post is movably passed through the side of the installation plate away from the threaded adjusting post. The ends of the first limiting post and the threaded adjusting post are provided with connecting components that are rotatably connected to the fixing ring.

[0007] By adopting the above technical solution, an adjustable connection structure is provided for prefabricated walls when positional deviations occur, enabling precise adjustment of the wall position, solving the problem of difficult wall alignment, ensuring the stability of prefabricated wall installation, and reducing the difficulty and cost of adjustment caused by wall alignment problems.

[0008] Preferably, a hexagonal screw hole is provided in the center of the fixed ring, a first limiting circular groove is provided inside the fixed ring, and an arc-shaped groove is provided on the outer side of the fixed ring.

[0009] By adopting the above technical solution, the hexagonal screw hole on the fixing ring can be used to connect with corresponding hexagonal components such as hexagonal bolts to achieve fixed installation with other components to meet different assembly requirements. The arc groove on the outer side can be used to fit with components of specific shapes or provide a certain amount of space for movement, which facilitates installation, rotation and other operations, enhances the flexibility and adaptability of the fixing ring in the entire adjustment mechanism, and helps the adjustment mechanism to better perform its function of adjusting the position of the wall.

[0010] Preferably, the connecting assembly includes a rotating block that is fixedly connected to the ends of the first limiting post and the threaded adjusting post. The rotating block has a rectangular groove inside, and limiting rods symmetrically and movably pass through the rectangular groove. The ends of the two limiting rods are fixedly connected to arc-shaped blocks that are movably sleeved with the rotating block. The inner sides of the two arc-shaped blocks have circular grooves that are sleeved with the ends of the limiting rods. The outer circumferential surface of the limiting rods is sleeved with a first compression spring whose two ends respectively abut against the arc-shaped block and the rotating block.

[0011] By adopting the above technical solution, the arc-shaped block can be retracted into the rectangular groove inside the connecting component, thereby facilitating subsequent assembly.

[0012] Preferably, the rotating block and the arc-shaped block are combined to form a disk, and both the rotating block and the arc-shaped block are rotatably connected to the first limiting circular groove.

[0013] By adopting the above technical solution, the rectangular groove and the first compression spring are combined to form a disk and are rotatably connected to the first limiting circular groove. This structural design gives the connecting component a certain degree of rotational flexibility.

[0014] Preferably, one end of the adjustment mechanism is provided with a prefabricated wall body, the prefabricated wall body includes a first fixing plate installed on the mounting plate, vertical plates are symmetrically fixedly connected to the back of the first fixing plate, and locking blocks that engage with the mounting plate are symmetrically fixedly connected to the outer side of the vertical plates. Circular holes are provided on one side of the locking blocks on the back of the first fixing plate, and the circular holes are at the same horizontal position as the end of the first fixing block.

[0015] By adopting the above technical solution, a stable connection between the adjustment mechanism and the main body of the prefabricated wall is achieved, enabling the adjustment mechanism to accurately adjust the position of the main body of the prefabricated wall, ensuring that the wall remains stable and easy to adjust and align during installation and subsequent use.

[0016] Preferably, the front side of the first fixing plate is provided with rectangular grooves at equal intervals, and a decorative panel body is provided in the rectangular groove. The decorative panel body includes a decorative panel installed in the rectangular groove, and the diameter of the decorative panel is the same as the size of the rectangular groove.

[0017] By adopting the above technical solution, rectangular grooves are equidistantly opened on the front of the first fixing plate and a decorative panel body is set thereon. The diameter of the decorative panel is adapted to the size of the rectangular grooves. Its function is to facilitate the installation of the decorative panel on the first fixing plate of the prefabricated wall body, so as to decorate the wall and enhance the aesthetics of the prefabricated wall.

[0018] Preferably, a second fixing block is symmetrically fixedly connected to the back of the decorative panel, and a second limiting post is fixedly inserted through the second fixing block.

[0019] By adopting the above technical solution, a second fixing block is symmetrically arranged on the back of the decorative panel and passes through the second limiting post. Its function is to enhance the connection stability between the decorative panel and the rectangular groove on the first fixing plate.

[0020] Preferably, a third fixing block is symmetrically fixedly connected to the back of the decorative panel, and a second fixing plate is symmetrically fixedly connected to the back of the two third fixing blocks. A connecting plate is movably passed through the second fixing plate. An extrusion block is fixedly connected to one end of the two connecting plates and slidably connected to the decorative panel on one side. The outer sides of the two extrusion blocks are engaged with the rectangular groove on the front of the decorative panel. The outer sides of the two extrusion blocks are symmetrically provided with second limiting circular grooves that are inserted into the second limiting post. A second compression spring is sleeved on the outer circumferential surface of the second limiting post, with its two ends respectively abutting against the second fixing block and the extrusion block.

[0021] By adopting the above technical solution, the decorative panel can be stably installed and positioned through the connection and cooperation of components such as the third fixing block, the second fixing plate, the connecting plate and the pressing block. The pressing block engages with the rectangular groove on the front of the decorative panel to ensure the stability of the decorative panel in the installation position and prevent it from shifting.

[0022] In summary, this application includes at least one of the following beneficial technical effects:

[0023] 1. The threaded connection between the threaded adjusting column and the mounting plate converts rotational energy into axial movement. The first limiting column ensures smooth movement of the mounting plate. The end connecting component and the fixing ring work together to achieve fine-tuning of the position of the prefabricated wall. The first fixing plate of the prefabricated wall body engages with the mounting plate through the vertical plate and the locking block to ensure that the wall body can be driven when the mounting plate moves. When the wall is damaged or misaligned due to various activities in the mall, the wall position can be accurately adjusted by simply passing a tool through the circular hole on the first fixing plate to rotate the threaded adjusting column, which greatly reduces manpower, material resources and time costs.

[0024] 2. The decorative panel is embedded into the rectangular groove of the first fixing plate and initially positioned using the second limiting post and the second limiting circular groove. Then, the second compression spring pushes the extrusion block to engage in the rectangular groove, achieving a stable installation. When the wall needs to be adjusted, the main body of the decorative panel can be removed first, making the operation convenient. This structural design minimizes the restrictions on the surrounding area of ​​the shopping mall during the adjustment of the damaged wall, effectively reducing the negative impact of construction on the daily operation of the shopping mall. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of this application document;

[0026] Figure 2 This is a schematic diagram of the regulating mechanism in this application.

[0027] Figure 3 This is a partial structural diagram of the regulating mechanism in this application.

[0028] Figure 4 This is a cross-sectional structural diagram of the rotating block in this application.

[0029] Figure 5 This is a schematic diagram of the main structure of the decorative panel in this application.

[0030] Figure 6 This is a schematic diagram of the prefabricated wall structure in this application.

[0031] Figure 7 This is a schematic diagram of the main structure of the decorative panel in this application.

[0032] Reference numerals: 1. Adjustment mechanism; 101. First fixing block; 102. Threaded mounting post; 103. Fixing ring; 104. Hexagonal screw hole; 105. First limiting circular groove; 106. Arc groove; 107. Cross limiting block; 108. Mounting plate; 109. First limiting post; 110. Threaded adjusting post;

[0033] 111. Connecting assembly; 1110. Rotating block; 1111. Rectangular groove; 1112. Limiting rod; 1113. Arc-shaped block; 1114. First compression spring; 1115. Circular groove;

[0034] 2. Prefabricated wall structure; 201. First fixing plate; 202. Vertical plate; 203. Clamping block; 204. Circular hole;

[0035] 3. Decorative panel body; 301. Decorative panel; 302. Second fixing block; 303. Second limiting post; 304. Second compression spring; 305. Third fixing block; 306. Second fixing plate; 307. Connecting plate; 308. Extrusion block; 309. Second limiting groove. Detailed Implementation

[0036] The following is in conjunction with the appendix Figures 1-7 This application will be described in further detail.

[0037] The device's "up, down, left, right" perspectives are... Figure 1 The orientation of the attached diagram is the reference.

[0038] This application discloses a prefabricated wall structure with leveling function.

[0039] Reference Figure 1 , Figure 3 , Figure 4 As shown, a prefabricated wall structure with leveling function includes an adjustment mechanism 1. The adjustment mechanism 1 includes a first fixing block 101 that is trapezoidal in shape. One side of the first fixing block 101 is attached to the wall surface. Threaded holes are provided on both sides of the first fixing block 101. Threaded mounting posts 102 for fixed connection with the wall are threadedly connected to the threaded holes. A fixing ring 103 with an internal groove is fixedly connected to one end of the threaded mounting post 102 that is close to the wall. The fixing ring 103 is used for rotatable connection with other accessories. A cross-shaped limiting block 107 is fixedly connected to the end of the first fixing block 101 away from the wall. The limiting block 107 is slidably connected in a cross groove inside the mounting plate 108. A threaded connection hole is provided on one side of the mounting plate 108, and a slot is provided in the middle of the mounting plate 108. A threaded adjusting post 110 for adjusting the position of the mounting plate 108 is threadedly connected to the threaded connection hole. A round hole is provided on the side of the mounting plate 108 away from the threaded adjusting post 110. A first limiting post 109 for limiting is movably inserted through the round hole. Both the first limiting post 109 and the threaded adjusting post 110 are provided with retractable connecting components 111 at their ends. The connecting components 111 are rotatably connected to the groove in the fixing ring 103.

[0040] The adjusting mechanism 1 is connected and fixed to the wall by the threaded hole on the first fixing block 101 and the threaded mounting column 102. The fixing ring 103 at the end of the threaded mounting column 102 is rotatably connected to other accessories. The cross limit block 107 at the end of the first fixing block 101 slides with the cross groove in the mounting plate 108, so that the mounting plate 108 can move in a certain direction. When the threaded adjusting column 110 is rotated, since it is threadedly connected to the mounting plate 108, the rotation of the threaded adjusting column 110 is converted into axial movement. At the same time, the first limit column 109 moves in the round hole to ensure the stability of the movement of the mounting plate 108. The connecting component 111 at the end of the threaded adjusting column 110 and the first limit column 109 is rotatably connected to the fixing ring 103. When the threaded adjusting column 110 moves, it drives the connecting component 111 and the fixing ring 103, thereby realizing the fine adjustment of the position of the prefabricated wall to achieve the purpose of leveling.

[0041] Reference Figure 2 , Figure 3 , Figure 4 As shown, a hexagonal screw hole 104 is provided at the center of the end of the fixing ring 103 away from the wall. A first limiting circular groove 105 is provided inside the fixing ring 103. An arc-shaped groove 106 communicating with the first limiting circular groove 105 is provided on the outer surface of the fixing ring 103. The connecting assembly 111 includes a rotating block 1110 rotatably connected to the first limiting circular groove 105. The diameter of the rotating block 1110 is the same as that of the first limiting circular groove 105. The rotating block 1110 is fixedly connected to the end of the first limiting post 109 and the threaded adjusting post 110. Rectangular grooves 1111 are symmetrically provided inside the rotating block 1110. Circular holes communicating with the two rectangular grooves 1111 are symmetrically provided on the rotating block 1110. The circular holes are movable. A limiting rod 1112 passes through the two limiting rods 1112. The ends of the two limiting rods 1112 are fixedly connected to an arc-shaped block 1113 that is movably sleeved with the rotating block 1110. The arc-shaped block 1113 is rotatably connected in the first limiting circular groove 105. A first compression spring 1114 is sleeved on the outer circumferential surface of the limiting rod 1112. One end of the first compression spring 1114 abuts against the arc-shaped block 1113, and the other end of the first compression spring 1114 abuts against the rotating block 1110. A circular groove 1115 is opened on the inner side of the two arc-shaped blocks 1113. The circular groove 1115 is inserted into the end of the limiting rod 1112. The rotating block 1110 and the arc-shaped block 1113 are combined to form a cylinder, which is rotatably connected in the first limiting circular groove 105.

[0042] During the leveling process of the prefabricated wall, when the threaded adjusting column 110 is rotated, the rotating block 1110, which is fixedly connected to the end of the threaded adjusting column 110, tends to move accordingly. The rotating block 1110 is rotatably connected to the first limiting circular groove 105 and can rotate and move within a certain range. Since the limiting rod 1112 moves through the rectangular groove 1111 inside the rotating block 1110, and the end of the limiting rod 1112 is fixedly connected to the arc-shaped block 1113, which is in turn rotatably connected to the first limiting circular groove 105, the movement of the rotating block 1110 will drive the arc-shaped block 1113 to move. Block 1113 rotates and moves within the first limiting circular groove 105. The circular groove 1115 is inserted into the end of the limiting rod 1112, making the connection between the arc-shaped block 1113 and the limiting rod 1112 stable and ensuring effective force transmission. The first limiting circular groove 105 provides space for the rotation of the arc-shaped block 1113 to realize the assembly and functional expansion of the overall structure. Through the mutual cooperation between the rotating block 1110, the arc-shaped block 1113 and the fixed ring 103, the prefabricated wall can be precisely adjusted under the drive of the threaded adjusting column 110 to achieve the leveling effect.

[0043] Reference Figure 1 , Figure 6As shown, one end of the adjustment mechanism 1 is provided with an assembled wall body 2. The assembled wall body 2 includes a first fixing plate 201. A vertical plate 202 is symmetrically and vertically fixedly connected to the back of the first fixing plate 201. A right-angled locking block 203 is symmetrically fixedly connected to the outer side of the vertical plate 202. The locking block 203 is locked in the slot in the middle of the mounting plate 108. A circular hole 204 is opened on the back of the first fixing plate 201 for subsequent adjustment of the threaded adjustment column 110. The circular hole 204 is located on one side of the locking block 203, and the circular hole 204 is at the same horizontal position as the end of the first fixing block 101.

[0044] The first fixing plate 201, as part of the prefabricated wall body 2, is connected to the mounting plate 108 by a vertical plate 202 and a locking block 203 on the outside of the vertical plate 202, which are symmetrically and vertically fixed on the back. This locking connection allows the prefabricated wall body 2 to be stably installed on the mounting plate 108. When the prefabricated wall needs to be leveled, the threaded adjusting column 110 in the adjusting mechanism 1 is adjusted. Since the first fixing plate 201 is locked to the mounting plate 108, the movement of the mounting plate 108 can drive the first fixing plate 201 and the entire prefabricated wall body 2 to move, which helps to achieve precise leveling of the prefabricated wall and stable installation of the overall structure.

[0045] Reference Figure 1 , Figure 5 , Figure 7 As shown, rectangular grooves are equidistantly spaced on the front of the first fixing plate 201. A decorative panel body 3 is disposed within the rectangular groove. The decorative panel body 3 includes a decorative panel 301 installed in the rectangular groove and having the same dimensions as the rectangular groove. A second fixing block 302 with an arc-shaped end is symmetrically fixedly connected to the middle of the back of the decorative panel 301. A second limiting post 303 with a hemispherical end is fixedly passed through the second fixing block 302. A third fixing block 305 is symmetrically fixedly connected to the back of the decorative panel 301 on one side of the second fixing block 302. A second fixing plate 306 with a set of rectangular holes on its side is fixedly connected to the back of the two third fixing blocks 305. The second fixing plate 306 is movable at the rectangular holes. A connecting plate 307 runs through the two connecting plates 307. One end of each connecting plate 307 is fixedly connected to an extrusion block 308 that abuts against the main body 3 of the decorative panel. One side of the extrusion block 308 is slidably connected to the back of the decorative panel 301. The outer surfaces of the two extrusion blocks 308 are arc-shaped. The two extrusion blocks 308 are engaged in a rectangular groove on the front of the decorative panel 301. The outer surfaces of the two extrusion blocks 308 are symmetrically provided with second limiting grooves 309. The second limiting grooves 309 are inserted into the second limiting post 303. The outer circumferential surface of the second limiting post 303 is fitted with a second compression spring 304. One end of the second compression spring 304 abuts against the second fixing block 302, and the other end of the second compression spring 304 abuts against the extrusion block 308.

[0046] When installing the decorative panel 301, taking advantage of its compatibility with the rectangular groove on the front of the first fixing plate 201, the decorative panel 301 is embedded into the rectangular groove. The second limiting post 303, which is fixedly inserted through the second fixing block 302 on the back of the decorative panel 301, is inserted into the second limiting circular groove 309, which plays a role in initial positioning and limiting. After the decorative panel 301 is installed in place, the second compression spring 304 is sleeved on the outer periphery of the second limiting post 303, with one end abutting against the second fixing block 302 and the other end abutting against the pressing block 308. Since the rectangular hole on the second fixing plate 306 is movably connected to the connecting plate 307, and one end of the connecting plate 307 is fixedly connected to the pressing block 308, the elastic force of the second compression spring 304 will push the pressing block 308 towards the decorative panel 301, so that the outer side of the pressing block 308 is tightly engaged in the rectangular groove on the front of the decorative panel 301, thereby forming additional compression and fixation on the decorative panel 301 and enhancing its installation stability.

[0047] The implementation principle of a prefabricated wall structure with leveling function in this application embodiment is as follows: The adjusting mechanism 1 is fixed to the wall by the first fixing block 101 and the threaded mounting column 102. The fixing ring 103 is rotatably connected to other accessories. The cross-shaped limiting block 107 and the cross-shaped sliding groove of the mounting plate 108 cooperate to allow the mounting plate 108 to move. Rotating the threaded adjusting column 110, which is threadedly connected to the mounting plate 108, achieves axial movement. The first limiting column 109 ensures the stable movement of the mounting plate 108. The connecting component 111 at the end of the threaded adjusting column 110 and the first limiting column 109 is rotatably connected to the fixing ring 103. Thus, when the threaded adjusting column 110 moves, it drives related components to achieve fine-tuning of the prefabricated wall structure for leveling. The prefabricated wall body... The first fixing plate 201 of the prefabricated wall 2 engages with the mounting plate 108 via the vertical plate 202 and the engaging block 203. The movement of the mounting plate 108 can drive the main body of the wall to move, thereby achieving the adjustment function. The decorative panel 301 is embedded in the rectangular groove of the first fixing plate 201. The second limiting post 303 and the second limiting circular groove 309 provide initial positioning. The second compression spring 304 pushes the pressing block 308 to engage in the rectangular groove of the decorative panel 301, enhancing the installation stability. When the prefabricated wall body 2 is assembled and damaged, the main body of the decorative panel 301 can be removed, and then a tool can be passed through the circular hole 204 to drive the threaded adjusting post 110 to rotate, thereby adjusting the position of the prefabricated wall body 2, thus achieving the function of convenient adjustment.

[0048] The above are merely optional embodiments of this disclosure and are not intended to limit this disclosure. Various modifications and variations can be made to this disclosure by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.

Claims

1. A prefabricated wall structure with leveling function, characterized in that: The adjustment mechanism (1) includes a first fixing block (101) for connecting with the wall. The first fixing block (101) is threadedly connected to a threaded mounting post (102). The end of the threaded mounting post (102) is fixedly connected to a fixing ring (103) for rotating connection with other accessories. A cross-shaped limiting block (107) is fixedly connected to the end of the first fixing block (101). The cross-shaped limiting block (107) is slidably connected to a mounting plate (108). A threaded adjusting column (110) is threadedly connected to one side of the mounting plate (108). A first limiting column (109) is movably passed through the side of the mounting plate (108) away from the threaded adjusting column (110). Both the ends of the first limiting column (109) and the threaded adjusting column (110) are provided with connecting components (111) that are rotatably connected to the fixing ring (103).

2. The prefabricated wall structure with leveling function according to claim 1, characterized in that: The fixing ring (103) has a hexagonal screw hole (104) in the middle, a first limiting circular groove (105) in the middle, and an arc groove (106) on the outer side of the fixing ring (103).

3. A prefabricated wall structure with leveling function according to claim 1, characterized in that: The connecting assembly (111) includes a rotating block (1110) fixedly connected to the ends of the first limiting post (109) and the threaded adjusting post (110). The rotating block (1110) has a rectangular groove (1111) inside. Limiting rods (1112) symmetrically and movably pass through the rectangular groove (1111). The ends of the two limiting rods (1112) are fixedly connected to arc-shaped blocks (1113) that are movably sleeved with the rotating block (1110). The inner sides of the two arc-shaped blocks (1113) have circular grooves (1115) that are sleeved with the ends of the limiting rods (1112). The outer peripheral surface of the limiting rods (1112) is sleeved with a first compression spring (1114) whose two ends respectively abut against the arc-shaped blocks (1113) and the rotating block (1110).

4. A prefabricated wall structure with leveling function according to claim 3, characterized in that: The rotating block (1110) and the arc block (1113) are combined to form a disk, and both the rotating block (1110) and the arc block (1113) are rotatably connected to the first limiting circular groove (105).

5. A prefabricated wall structure with leveling function according to claim 1, characterized in that: One end of the adjustment mechanism (1) is provided with a prefabricated wall body (2). The prefabricated wall body (2) includes a first fixing plate (201) installed on the mounting plate (108). A vertical plate (202) is symmetrically fixedly connected to the back of the first fixing plate (201). A locking block (203) that engages with the mounting plate (108) is symmetrically fixedly connected to the outer side of the vertical plate (202). A circular hole (204) is provided on the back of the first fixing plate (201) on one side of the locking block (203). The circular hole (204) and the end of the first fixing block (101) are at the same horizontal position.

6. A prefabricated wall structure with leveling function according to claim 5, characterized in that: The first fixing plate (201) has rectangular grooves equidistantly arranged on its front side. A decorative panel body (3) is provided in the rectangular groove. The decorative panel body (3) includes a decorative panel (301) installed in the rectangular groove. The diameter of the decorative panel (301) is the same as the size of the rectangular groove.

7. A prefabricated wall structure with leveling function according to claim 6, characterized in that: The back of the decorative panel (301) is symmetrically fixedly connected with a second fixing block (302), and the second fixing block (302) is fixedly penetrated by a second limiting post (303).

8. A prefabricated wall structure with leveling function according to claim 6, characterized in that: The back of the decorative panel (301) is symmetrically fixedly connected to a third fixing block (305). The backs of the two third fixing blocks (305) are symmetrically fixedly connected to a second fixing plate (306). The second fixing plate (306) is movably connected to a connecting plate (307). One end of the two connecting plates (307) is fixedly connected to a pressing block (308) that is slidably connected to the decorative panel (301) on one side. The outer sides of the two pressing blocks (308) are engaged with the rectangular groove on the front of the decorative panel (301). The outer sides of the two pressing blocks (308) are symmetrically provided with second limiting circular grooves (309) that are inserted into the second limiting post (303). The outer peripheral surface of the second limiting post (303) is fitted with a second compression spring (304) whose two ends abut against the second fixing block (302) and the pressing block (308) respectively.