Autoclaved aerated concrete wall panel

By introducing reinforcing mesh and frame structure into the autoclaved aerated concrete wall panel, combined with installation components and rotating column fixing clips, the problem of cracking caused by pipe clamp impact was solved, achieving a stable and impact-resistant installation effect.

CN120776795BActive Publication Date: 2025-11-21BINZHOU HENGDEYUAN ENVIRONMENTAL PROTECTION NEW TECH CO LTD
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Patent Information

Application Number
CN202511292041.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2025-11-21
Estimated Expiration
2045-09-11

AI Technical Summary

Technical Problem

Autoclaved aerated concrete wall panels are prone to cracking or damage when the pipe clamps are inserted due to impact, which affects their performance.

Method used

The main body of the concrete wall panel adopts a reinforced mesh and frame structure, combined with installation components and rotating column fixing clips, to avoid hammering insertion and achieve installation by fixing with bolts.

Benefits of technology

This avoids cracking or damage to the wall panels caused by impacts during installation, improving installation stability and impact resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an autoclaved aerated concrete wallboard and relates to the technical field of concrete wallboards, which comprises a reinforced net fixedly connected inside a concrete wallboard main body, wherein the reinforced net is in a grid shape, a frame is fixedly connected around the reinforced net, the frame is fixed inside the concrete wallboard main body, a mounting assembly is provided with a plurality of groups and is fixedly connected to the upper and lower ends of the frame respectively, the mounting assembly is fixedly connected to the inside of the concrete wallboard main body, a rotating column is rotatably connected to the inner wall of the mounting assembly, a fixed clamp is fixedly connected to one end of the rotating column away from the mounting assembly, and fixed holes are formed in the two ends of the fixed clamp. The concrete wallboard main body is provided with the mounting assembly and the fixed clamp, workers directly stand up the concrete wallboard main body, then the workers use tools to drive bolts through the fixed holes into the ground and beams, thereby achieving the effect of installing the concrete wallboard main body and avoiding the operation of workers knocking the concrete wallboard main body.
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Description

Technical Field

[0001] This invention relates to the field of concrete wall panel technology, and specifically to an autoclaved aerated concrete wall panel. Background Technology

[0002] Concrete wall panels are precast or cast-in-place wall components made by mixing cement as the main binder with aggregates such as sand and gravel, adding water, and then pouring, molding, and curing. They are widely used in the wall structures of buildings and are common enclosure or load-bearing components in modern buildings.

[0003] In the existing technology, autoclaved aerated concrete (AAC) wall panels have the characteristics of low density, light weight and high water absorption compared with conventional concrete wall panels. During the installation of AAC wall panels, workers first hammer the pipe clamps into the upper and lower ends of the AAC wall panel, then stand the AAC wall panel upright, use wedges to temporarily support the ends, and use bolts to fix the pipe clamps to the ground and beams, thereby realizing the installation of AAC wall panels.

[0004] However, autoclaved aerated concrete (AAC) wall panels have low density, high brittleness, and weak impact resistance. When workers insert pipe clamps into AAC wall panels by hammering, the AAC wall panels are prone to cracking or damage due to the impact, thus affecting the performance of the AAC wall panels. Summary of the Invention

[0005] The purpose of this invention is to provide an autoclaved aerated concrete (AAC) wall panel to solve the technical problem in the prior art where the AAC wall panel is easily cracked or damaged when the pipe clamp is inserted into it by tapping.

[0006] The technical problem to be solved by this invention can be achieved through the following technical solution:

[0007] An autoclaved aerated concrete wall panel, comprising:

[0008] A concrete wall panel body, wherein a reinforcing mesh is fixedly connected inside the concrete wall panel body, the reinforcing mesh is in the shape of a grid, and a frame is fixedly connected around the reinforcing mesh, the frame being fixed inside the concrete wall panel body;

[0009] The mounting components are provided in several groups and are fixedly connected to the upper and lower ends of the frame respectively. The mounting components are fixedly connected to the interior of the concrete wall panel body.

[0010] A rotating column is rotatably connected to the inner wall of the mounting assembly. A fixing clip is fixedly connected to the end of the rotating column away from the mounting assembly, and fixing holes are respectively opened at both ends of the fixing clip.

[0011] As a further embodiment of the present invention: the installation assembly includes: a mounting base and an installation tube. The mounting base is cubic in shape, and the bottom end of the mounting base is fixedly connected to the installation tube. The mounting base is fixedly connected to the interior of the concrete wall panel body. A rotating groove is formed inside the mounting base along the centerline. The inner cavity of the installation tube communicates with the inner cavity of the rotating groove. The installation tube is fixedly connected to the interior of the concrete wall panel body. The inner wall of the installation tube is rotatably connected to the rotating column. The diameter of the installation tube is smaller than the inner diameter of the rotating groove.

[0012] As a further embodiment of the present invention: a rotating plate is fixedly connected to the top of the rotating column, the rotating plate is rotatably connected to the inner wall of the rotating groove, and is also engaged with the inner wall of the rotating groove.

[0013] As a further embodiment of the present invention: a protective plate is fixedly connected to the bottom end of the installation pipe, and two sets of the protective plates are provided, which are respectively fixedly connected to the upper and lower ends of the concrete wall panel body, and the rotating column penetrates through the protective plate.

[0014] As a further aspect of the present invention, protective corners with a circular arc cross-section are respectively provided at both ends of the protective plate.

[0015] As a further aspect of the present invention: the protective plate has a wavy cross-section at one end near the main body of the concrete wall panel.

[0016] As a further aspect of the present invention: the concrete wall panel body has several connecting grooves that penetrate the protective plate at equal intervals along the width direction on its side end, and several connecting pieces are fixedly connected at equal intervals along the width direction at the end of the concrete wall panel body away from the connecting grooves. The cross-sections of the connecting grooves and the connecting pieces are both semi-circular, and the inner diameter of the connecting grooves is larger than the diameter of the connecting pieces.

[0017] As a further embodiment of the present invention: the reinforcing mesh is provided with a clamping plate on both sides, and there are two sets of clamping plates, which are fixedly connected to both ends of the frame respectively. The cross-section of the clamping plate is U-shaped and is fixedly connected to the interior of the concrete wall panel.

[0018] As a further embodiment of the present invention: a support base is fixedly connected to the bottom end of the frame, and two sets of support bases are provided and symmetrically arranged along the axial section of the frame. A threaded hole is opened inside the support base along the center line. The support base is fixedly connected to the bottom of the concrete wall panel body. A support rod is threadedly connected to the inner wall of the threaded hole. A filling groove is opened at the bottom of the concrete wall panel body. The support base penetrates through the bottom of the concrete wall panel body to the inner cavity of the filling groove. The horizontal height of the bottom end of the support base is higher than the horizontal height of the bottom end of the concrete wall panel body.

[0019] As a further aspect of the present invention: the support base has connection ports on both sides of its bottom, and the connection ports are respectively connected to the filling groove and the inner cavity of the threaded hole.

[0020] The beneficial effects of this invention are:

[0021] 1. By using installation components and fixing clips, the concrete wall panel body eliminates the need for workers to insert pipe clamps into the concrete wall panel body by hammering. Workers simply stand the concrete wall panel body upright, align the fixing clips with the ground and beams respectively, and then use tools to drive bolts through the fixing holes into the ground and beams respectively. The bolts, by securing the fixing clips, achieve the effect of installing the concrete wall panel body, thus avoiding the need for workers to hammer the concrete wall panel body.

[0022] 2. The fixing clips, through the installation of components, frames, and reinforcing mesh, can further secure the main body of the concrete wall panel, preventing damage to the main body of the concrete wall panel when the fixing clips only secure it. Attached Figure Description

[0023] The invention will now be further described with reference to the accompanying drawings.

[0024] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 This is a top view of the overall structure of the present invention;

[0026] Figure 3 For the present invention Figure 2 Overall structural AA section view;

[0027] Figure 4 For the present invention Figure 2 Overall structural BB section view;

[0028] Figure 5 For the present invention Figure 3 Enlarged schematic diagram of the structure at point C;

[0029] Figure 6 For the present invention Figure 4 Enlarged schematic diagram of the structure at point D;

[0030] Figure 7 This is a schematic diagram of the reinforcing mesh structure of the present invention;

[0031] Figure 8 For the present invention Figure 7 Enlarged schematic diagram of the structure at point E;

[0032] Figure 9 This is a schematic diagram of the support structure of the present invention;

[0033] Figure 10 This is a schematic diagram of the protective plate structure of the present invention;

[0034] Figure 11 This is a schematic diagram of the fixing card structure of the present invention.

[0035] In the diagram: 1. Concrete wall panel main body; 2. Protective plate; 3. Fixing clip; 4. Fixing hole; 5. Filling groove; 6. Connector; 7. Connecting groove; 8. Frame; 9. Reinforcing mesh; 10. Support base; 11. Mounting base; 12. Rotating groove; 13. Rotating plate; 14. Rotating column; 15. Support rod; 16. Threaded hole; 17. Connection port; 18. Clamping plate; 19. Mounting pipe; 20. Protective corner. Detailed Implementation

[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0037] like Figures 1-11 As shown, an autoclaved aerated concrete (AAC) wall panel includes: a concrete wall panel body 1, an installation assembly, and a rotating column 14. A reinforcing mesh 9 is fixedly connected inside the concrete wall panel body 1. The reinforcing mesh 9 is in a grid shape, and a frame 8 is fixedly connected around the reinforcing mesh 9. The frame 8 is fixed inside the concrete wall panel body 1. Several sets of installation assemblies are provided and fixedly connected to the upper and lower ends of the frame 8, respectively. The installation assembly is fixedly connected to the interior of the concrete wall panel body 1. The rotating column 14 is rotatably connected to the inner wall of the installation assembly. A fixing clip 3 is fixedly connected to the end of the rotating column 14 away from the installation assembly. The fixing clip 3 has two ends respectively... The concrete wall panel 1 is provided with fixing holes 4. When the concrete wall panel 1 is being installed, the workers do not need to insert the pipe clamps into the concrete wall panel 1 by hammering. The workers can directly stand the concrete wall panel 1 upright and align the fixing clips 3 with the ground and beam respectively. Then, the workers use tools to drive the bolts through the fixing holes 4 into the ground and beam respectively. The bolts are fixed to the fixing clips 3, thereby achieving the effect of installing the concrete wall panel 1. This avoids the workers from hammering the concrete wall panel 1, thus preventing the concrete wall panel 1 from cracking or being damaged due to hammering.

[0038] Compared to existing technologies where pipe clamps are inserted into the concrete wall panel body 1, in this new technology, the installation components are fixed inside the concrete wall panel body 1 during prefabrication. Specifically, the fixing clips 3 are pre-installed within the installation components via rotating columns 14, and the installation components are simultaneously fixed to the frame 8. When the building experiences vibration, the fixing clips 3, through the bolts, transmit the fixing force to the frame 8 via the rotating columns 14 and the inner wall of the installation components. The frame 8 then transfers the fixing force to the reinforcing mesh 9. Compared to the single-purpose pipe clamp fixing of the concrete wall panel body 1, the fixing clips 3, through the installation components, frame 8, and reinforcing mesh 9, further secure the concrete wall panel body 1, preventing damage to the concrete wall panel body 1 during fixing.

[0039] During the conveying of the concrete wall panel body 1, the length direction of the fixing clip 3 is parallel to the length direction of the bottom end of the concrete wall panel body 1. At this time, the fixing clip 3 will not protrude from the bottom end of the concrete wall panel body 1. Therefore, when a large number of concrete wall panel bodies 1 are stacked and conveyed, the fixing clip 3 will not be damaged by pressure. When the concrete wall panel body 1 is installed, the bottom of the concrete wall panel body 1 is temporarily supported by wedges. The worker controls the fixing clip 3 to rotate. The fixing clip 3, along with the rotating column 14, rotates along the inner wall of the installation component. When the fixing clip 3 protrudes from the bottom end of the concrete wall panel body 1, the fixing hole 4 of the fixing clip 3 is aligned with the ground. Then, the worker removes the wedge from the bottom of the concrete wall panel body 1. After the fixing clips 3 at the bottom of the concrete wall panel body 1 are fixed, the worker rotates the fixing clips 3 at the top of the concrete wall panel body 1, aligns the fixing holes 4 of the fixing clips 3 with the beam, and then fixes them. This achieves the effect of fixing the concrete wall panel body 1. Compared with the existing technology where pipe clamps are directly inserted into the concrete wall panel body 1 for installation, the worker needs to be careful that the pipe clamps bend when the concrete wall panel body 1 is erected and the pipe clamps can only be fixed on one side of the bottom of the concrete wall panel body 1. However, the fixing clips 3 have fixing holes 4 at both ends, which can ensure that both ends of the fixing clips 3 can be bolted, thus ensuring the stability of the fixing clips 3 in fixing the concrete wall panel body 1.

[0040] When the concrete wall panel body 1 is prefabricated, the frame 8 and reinforcing mesh 9 are placed in the middle of the mold first, and then the concrete wall panel body 1 is prefabricated. The reinforcing mesh 9 provides the concrete wall panel body 1 with compressive strength, further reducing the brittleness of the concrete wall panel body 1. At the same time, the mesh shape of the reinforcing mesh 9 can provide the concrete wall panel body 1 with tensile strength. When the concrete wall panel body 1 is affected by thermal expansion and contraction, the reinforcing mesh 9 can prevent the concrete wall panel body 1 from being damaged due to deformation.

[0041] In some specific embodiments, the mounting components include: a mounting base 11 and a mounting tube 19. The mounting base 11 is cubic in shape, and its bottom end is fixedly connected to the mounting tube 19. The mounting base 11 is fixedly connected to the interior of the concrete wall panel body 1. A rotating groove 12 is formed inside the mounting base 11 along its centerline. The inner cavity of the mounting tube 19 communicates with the inner cavity of the rotating groove 12. The mounting tube 19 is fixedly connected to the interior of the concrete wall panel body 1, and its inner wall is rotatably connected to a rotating column 14. The diameter of the mounting tube 19 is smaller than the inner diameter of the rotating groove 12. When the concrete wall panel body 1 is prefabricated, the mounting tube 19 is installed... The mounting base 11 is welded to the frame 8 for fixation. Then, the concrete wall panel body 1 is prefabricated, thereby embedding the mounting base 11 and the mounting pipe 19 inside the concrete wall panel body 1 for fixation. The shape of the mounting base 11 can better support the concrete wall panel body 1. When the frame 8 deforms, the mounting base 11 can support the inner wall of the concrete wall panel body 1, thereby preventing the mounting base 11 from rotating or shifting, thus providing stable support for the mounting pipe 19. The load is then transferred to the fixing clip 3 through the inner wall of the mounting pipe 19 against the rotating column 14.

[0042] In some specific embodiments, a rotating plate 13 is fixedly connected to the top of the rotating column 14. The rotating plate 13 is rotatably connected to the inner wall of the rotating groove 12 and is also engaged with the inner wall of the rotating groove 12. When the fixing clip 3 rotates, the fixing clip 3 carries the rotating column 14 to rotate along the inner wall of the mounting tube 19, and the rotating column 14 carries the rotating plate 13 to rotate along the inner wall of the rotating groove 12. The rotating plate 13 and the inner wall of the rotating groove 12 provide a limiting support for the rotating column 14, thereby transferring the limiting support function of the rotating column 14 to the fixing clip 3, preventing the fixing clip 3 from detaching from the mounting assembly.

[0043] In some specific implementations, a protective plate 2 is fixedly connected to the bottom end of the installation pipe 19. Two sets of protective plates 2 are provided and fixedly connected to the upper and lower ends of the concrete wall panel body 1, respectively. The rotating column 14 passes through the protective plate 2. In the prior art, when the concrete wall panel body 1 is erected, the bottom edge of the concrete wall panel body 1 will abut against the ground. Due to the high brittleness of the concrete wall panel body 1, the bottom edge of the concrete wall panel body 1 will experience wear. To ensure that the concrete wall panel body 1 does not experience wear during installation, the protective plate 2 fixed to the bottom end of the concrete wall panel body 1 has a protective function. When the bottom end of the concrete wall panel body 1 abuts against the ground and is flipped upright, the protective plate 2 at the bottom end of the concrete wall panel body 1 contacts the ground. The protective plate 2 can separate the concrete wall panel body 1 from the ground. Simultaneously, the concrete wall panel body 1 has an extremely high water absorption rate, and the protective plate 2 can prevent water from the ground from being absorbed by the concrete wall panel body 1, thereby affecting the service life of the concrete wall panel body 1.

[0044] Among them, the protective plate 2 is not only fixed to the bottom end of the concrete wall panel body 1, but also fixed to the bottom end of the installation pipe 19. The frame 8 connects the protective plate 2 together through the mounting seat 11 and the installation pipe 19, thereby ensuring that the protective plate 2 can be stably fixed to the bottom and top of the concrete wall panel body 1. When the fixing clip 3 is rotated, the fixing clip 3 can rotate along the surface of the protective plate 2.

[0045] In some specific implementations, protective corners 20 with arc-shaped cross sections are respectively provided at both ends of the protective plate 2. When one side of the protective plate 2 is against the ground, when the worker flips the concrete wall panel 1 upright, the bottom edge of the protective plate 2 will cause abrasions to the ground. At the same time, when the worker is carrying the concrete wall panel 1, the edge of the protective plate 2 will scratch the worker's hands. The protective corners 20 provided in the protective plate 2 can prevent the edge at both ends from causing scratches to the worker. At the same time, it is convenient for the protective plate 2 to be flipped along the ground. When the concrete wall panel 1 is installed, the sealing strip can be glued to both ends of the protective plate 2. The sealing strip can seal the gap between the protective plate 2 and the ground.

[0046] In some specific implementations, the protective plate 2 has a wavy cross-section at the end near the concrete wall panel body 1. The wavy shape at the end where the protective plate 2 contacts the concrete wall panel body 1 can increase the contact area between the concrete wall panel body 1 and the protective plate 2. At the same time, the concrete wall panel body 1 can provide lateral restraint for the protective plate 2.

[0047] In some specific implementation schemes, several connecting grooves 7 penetrating the protective plate 2 are equidistantly opened on the side end of the concrete wall panel 1 along the width direction. Several connectors 6 are fixedly connected at equal intervals along the width direction at the end of the concrete wall panel 1 away from the connecting grooves 7. The cross-sections of the connecting grooves 7 and the connectors 6 are both semi-circular, and the inner diameter of the connecting grooves 7 is larger than the diameter of the connectors 6. When multiple sets of concrete wall panel 1 are spliced ​​together for installation, mortar is often used to adhere the two sets of concrete wall panel 1 together. After long-term use, the mortar may detach from the concrete wall panel 1 due to thermal expansion and contraction, resulting in gaps between the two sets of concrete wall panel 1. The gaps lead to poor sound insulation of the concrete wall panel 1. When the second set of concrete wall panel 1 is installed... While working on one side of the first set of concrete wall panel body 1, mortar is ground onto the surface of the connector 6 of the second set of concrete wall panel body 1. At the same time, mortar is applied to the inner wall and side surface of the connecting groove 7 of the first set of concrete wall panel body 1. Then, the connector 6 of the second set of concrete wall panel body 1 is embedded into the connecting groove 7 of the first set of concrete wall panel body 1. The mortar fills the gap between the connector 6 and the connecting groove 7. At the same time, the mortar fills the gap between the two sets of concrete wall panel body 1. The connector 6 and the connecting groove 7 can hold the solidified mortar in place, preventing the mortar from detaching. Meanwhile, the connector 6 embedded in the connecting groove 7 can seal the gap between the two sets of concrete wall panel body 1, preventing the gap from causing poor sound insulation of the concrete wall panel body 1.

[0048] The connector 6 can be supported by a flexible sound insulation material. When the mortar is affected by thermal expansion and contraction, the deformation of the mortar can resist the deformation of the connector 6, thereby ensuring that the mortar always connects the connector 6 and the connecting groove 7 together.

[0049] In some specific implementation schemes, the reinforcing mesh 9 is provided with two sets of clamping plates 18 on both sides, and each set is fixedly connected to both ends of the frame 8. The clamping plates 18 have a "U" shaped cross-section and are fixedly connected to the inside of the concrete wall panel body 1. When the two ends of the concrete wall panel body 1 are bent, the reinforcing mesh 9 will move the clamping plates 18 in order to better transfer the tensile properties to the concrete wall panel body 1. The clamping plates 18 will move the frame 8, and the frame 8 will deform the reinforcing mesh 9, thereby providing resistance to the bending of the two ends of the concrete wall panel body 1, and thus preventing the concrete wall panel body 1 from bending and causing damage.

[0050] In some specific implementations, a support seat 10 is fixedly connected to the bottom of the frame 8. Two sets of support seats 10 are provided and symmetrically arranged along the axial section of the frame 8. A threaded hole 16 is formed inside the support seat 10 along its centerline. The support seat 10 is fixedly connected to the bottom of the concrete wall panel body 1. A support rod 15 is threadedly connected to the inner wall of the threaded hole 16. A filling groove 5 is formed at the bottom of the concrete wall panel body 1. The support seat 10 penetrates the bottom of the concrete wall panel body 1 to the inner cavity of the filling groove 5. The horizontal height of the bottom of the support seat 10 is higher than the horizontal height of the bottom of the concrete wall panel body 1. When the concrete wall panel body 1 is flipped and erected, in the prior art, workers place wedges on both sides of the bottom of the concrete wall panel body 1 in advance to provide temporary support. When the wedges are removed from the bottom of the concrete wall panel body 1, they cause wear and impact to the bottom of the concrete wall panel body 1. This can lead to damage to the bottom of the concrete wall panel body 1. To avoid damage to the installation of the concrete wall panel body 1 caused by existing wedges, when the concrete wall panel body 1 is being rolled, the worker controls the support rod 15 to rotate. The support rod 15 rotates inside the threaded hole 16 and then moves vertically downwards. When the height of the bottom of the support rod 15 is lower than the height of the bottom of the fixing clip 3, the worker stops rotating the support rod 15. The support rod 15 provides support to the support seat 10 through the threaded connection with the inner wall of the threaded hole 16. When the concrete wall panel body 1 is rolled up, the support rod 15 abuts against the ground. The support rod 15 provides support to the support seat 10, which in turn transfers the support to the frame 8 and the concrete wall panel body 1, thus avoiding the use of wedges. The support provided by the support rod 15 provides space for the rotation of the fixing clip 3.

[0051] When the concrete wall panel body 1 is installed, the worker fills the cavity of the filling groove 5 with mortar, thereby fixing the mortar and the concrete wall panel body 1 into a whole, providing support for the subsequent decoration of the concrete wall panel body 1. The mortar and the surface of the support rod 15 are fixed together, thereby providing a fixing function for the support rod 15 and preventing the support rod 15 from rotating on its own.

[0052] In some specific implementations, the support base 10 has connection ports 17 on both sides of its bottom. The connection ports 17 are connected to the filling groove 5 and the inner cavity of the threaded hole 16, respectively. When the mortar fills the inner cavity of the filling groove 5, the mortar passes through the connection port 17 and enters the inner cavity of the threaded hole 16. The mortar fixes the inner wall of the threaded hole 16 and the surface of the support rod 15, thereby fixing the threaded hole 16 and the support rod 15 together, further ensuring the stability of the threaded connection between the support rod 15 and the threaded hole 16.

[0053] The foregoing has described several embodiments of the present invention in detail, but these embodiments are not limited thereto and should not be considered as limiting the scope of the invention. All equivalent variations and improvements made within the scope of the claims of this invention should still fall within the patent coverage of this invention.

Claims

1. An autoclaved aerated concrete wall panel, characterized in that, include: The concrete wall panel body (1) has a reinforcing mesh (9) fixedly connected inside it. The reinforcing mesh (9) is in the shape of a grid. A frame (8) is fixedly connected around the reinforcing mesh (9). The frame (8) is fixed inside the concrete wall panel body (1). The installation components are provided in several groups and are fixedly connected to the upper and lower ends of the frame (8). The installation components are fixedly connected to the inside of the concrete wall panel body (1). A rotating column (14) is rotatably connected to the inner wall of the mounting component. A fixing clip (3) is fixedly connected to the end of the rotating column (14) away from the mounting component. Fixing holes (4) are respectively opened at both ends of the fixing clip (3). The mounting components include: a mounting base (11) and a mounting tube (19). The mounting base (11) is cubic in shape. The bottom end of the mounting base (11) is fixedly connected to the mounting tube (19). The mounting base (11) is fixedly connected to the interior of the concrete wall panel body (1). A rotating groove (12) is provided inside the mounting base (11) along the axis. The inner cavity of the mounting tube (19) is connected to the inner cavity of the rotating groove (12). The mounting tube (19) is fixedly connected to the interior of the concrete wall panel body (1). The inner wall of the mounting tube (19) is rotatably connected to the rotating column (14). The diameter of the mounting tube (19) is smaller than the inner diameter of the rotating groove (12). A rotating plate (13) is fixedly connected to the top of the rotating column (14). The rotating plate (13) is rotatably connected to the inner wall of the rotating groove (12) and is also engaged with the inner wall of the rotating groove (12).

2. The autoclaved aerated concrete wall panel according to claim 1, characterized in that, The bottom end of the installation pipe (19) is fixedly connected to a protective plate (2). The protective plate (2) is provided in two sets and is fixedly connected to the upper and lower ends of the concrete wall panel body (1) respectively. The rotating column (14) penetrates the protective plate (2).

3. The autoclaved aerated concrete wall panel according to claim 2, characterized in that, The protective plate (2) has protective corners (20) with a circular arc cross-section at both ends.

4. The autoclaved aerated concrete wall panel according to claim 2, characterized in that, The protective plate (2) has a wavy cross-section at one end near the main body of the concrete wall panel (1).

5. The autoclaved aerated concrete wall panel according to claim 2, characterized in that, The concrete wall panel body (1) has several connecting grooves (7) that penetrate the protective plate (2) at equal intervals along the width direction on the side end. The concrete wall panel body (1) has several connectors (6) that are fixedly connected at equal intervals along the width direction at the end away from the connecting grooves (7). The cross-sections of the connecting grooves (7) and the connectors (6) are both semi-circular, and the inner diameter of the connecting grooves (7) is larger than the diameter of the connectors (6).

6. The autoclaved aerated concrete wall panel according to claim 1, characterized in that, The reinforcing mesh (9) is provided with two sets of clamps (18) on both sides. The clamps (18) are fixedly connected to both ends of the frame (8). The cross-section of the clamps (18) is "U" shaped and is fixedly connected to the inside of the concrete wall panel (1).

7. The autoclaved aerated concrete wall panel according to claim 1, characterized in that, The bottom of the frame (8) is fixedly connected to a support base (10). There are two sets of support bases (10), which are symmetrically arranged along the axial section of the frame (8). The support base (10) has a threaded hole (16) along the center line inside. The support base (10) is fixedly connected to the bottom of the concrete wall panel body (1). The inner wall of the threaded hole (16) is threaded with a support rod (15). The bottom of the concrete wall panel body (1) has a filling groove (5). The support base (10) penetrates through the bottom of the concrete wall panel body (1) to the inner cavity of the filling groove (5). The horizontal height of the bottom of the support base (10) is higher than the horizontal height of the bottom of the concrete wall panel body (1).

8. The autoclaved aerated concrete wall panel according to claim 7, characterized in that, The support base (10) has connection ports (17) on both sides of its bottom, and the connection ports (17) are connected to the inner cavity of the filling groove (5) and the threaded hole (16), respectively.

Citation Information

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