A refined installation method for a super high-hanging composite aluminum plate wall structure
By adopting a refined installation method in the wall dry-hanging construction, and using three-dimensional scanning and BIM modeling technology, the installation positions of composite aluminum plates and hook parts are accurately positioned, and the problems of low installation accuracy and low efficiency caused by large manual operation errors are solved, and efficient and stable installation of composite aluminum plates wall structure is achieved.
Patent Information
- Application Number
- CN202411770717.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2044-12-04
AI Technical Summary
During the wall dry-hanging construction, manual operation errors are large, resulting in low panel installation accuracy, low installation efficiency and unstable installation quality. Especially when installing ultra-high, ultra-long or ultra-wide composite aluminum plates, the error can easily lead to panel deviation and inability to securely attach, and multiple inspections and rework are required.
A refined installation method for ultra-high dry-hanging composite aluminum plate wall structure is adopted. By setting a base keel on the wall surface and setting hook parts and connection angle codes on the vertical keel, three-dimensional scanning and BIM modeling are used for full station to accurately locate the installation position of composite aluminum plates and hook parts to reduce manual measurement and installation errors.
This method reduces the number of transverse keels and preliminary measurement work, simplifies the installation process of base keels, improves the installation accuracy and efficiency of composite aluminum plates, reduces the possibility of rework, and ensures the stability of construction quality and the improvement of construction efficiency.
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Figure CN119593556B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of wall decorative panel construction, and particularly to a refined installation method for a super-high dry-hanging composite aluminum plate wall structure. Background Art
[0002] Wall decorative panels, as building decoration materials, are mainly used to decorate interior spaces. Currently, there are three construction methods for wall decorative panels in building decoration: wet pasting method, hanging pasting method, and dry-hanging method. Wall dry-hanging is currently the mainstream wall decoration method in the market. Especially in large venues or large exhibition halls, it is often necessary to install panels that are extremely long, wide, or high. The dry-hanging method is widely used due to its convenient construction, strong stability, and high safety.
[0003] Due to considerations of design, construction, and safety in large public spaces, decorative panels are mostly made of lightweight metal plates such as composite aluminum plates. When installing such panels, generally, a keel framework is first installed on the wall base layer, and then the panel is hung on the keel framework. The panel is fixed by using special hanging parts to hang on the horizontal keel. Although this method is convenient, it is necessary to lay out lines and mark to determine the spacing of the horizontal keels, and determine the installation positions of the hanging parts on the panel according to the spacing of the horizontal keels. In this process, a large amount of manual measurement work is required, and it is very easy to produce errors in the actual operation of workers, which may cause problems such as the deviation of panel installation and the inability to firmly hang the panel. It is necessary to check multiple times and even rework and reinstall. Especially for over-sized and closely joined panels, the impact is greater and it is more difficult to adjust during installation, resulting in unstable construction quality and low construction efficiency during the panel installation process.
[0004] Therefore, it is urgent to design a construction method to solve the above problems. Summary of the Invention
[0005] The present invention provides a refined installation method for a super-high dry-hanging composite aluminum plate wall structure, which is used to solve the technical problems such as large manual operation errors, low panel installation accuracy, low installation efficiency, and unstable installation quality during the wall dry-hanging construction process.
[0006] To achieve the above object, the present invention adopts the following technical solutions:
[0007] The present invention provides a refined installation method for a super-high dry-hanging composite aluminum plate wall structure, and the super-high dry-hanging composite aluminum plate wall structure includes a wall body, a base keel, and a composite aluminum plate;
[0008] A base keel is arranged on the surface of the wall body, and a composite aluminum plate is arranged on the side of the base keel away from the wall body;
[0009] The composite aluminum plate is a rectangular plate. The long direction of the composite aluminum plate is arranged vertically along the wall. The long sides of multiple composite aluminum plates are adjacent and are arranged horizontally and joined together on the base keel. The length of a single composite aluminum plate exceeds 6 meters.
[0010] The base keel includes horizontal keels and vertical keels. The horizontal keels and vertical keels are arranged alternately. Hanging parts are arranged at intervals along the long direction of the vertical keels.
[0011] The hanging part is a U-shaped plate. The opening of the hanging part faces the vertical keel. The two side plates are respectively lapped on both side faces of the vertical keel. There is a spacing between the bottom plate of the hanging part and the front face of the vertical keel. At least three horizontal strip-shaped holes are provided on the side plates of the hanging part. The three strip-shaped holes are arranged at intervals and are parallel to each other. First self-tapping screws are arranged in the strip-shaped holes for connecting the hanging part and the vertical keel.
[0012] Connecting angle codes are arranged on both sides of the back of the composite aluminum plate. The connecting angle codes are arranged at intervals along the long direction on the back of the composite aluminum plate. The distribution spacing is equal to the distribution spacing of the hanging parts for cooperating with the hanging parts. The connecting angle code is L-shaped. The internal angle of the connecting angle code faces the inner side of the plate surface of the composite aluminum plate. The horizontal part of the connecting angle code is connected to the composite aluminum plate through second self-tapping screws. The vertical part of the connecting angle code is parallel to the plate edge of the composite aluminum plate. Vertical grooves are provided at both the upper end and the lower end of the vertical part for clamping the bottom plate of the hanging part.
[0013] The installation method includes the following steps:
[0014] Step 1, preliminary preparation: Use a total station for three-dimensional scanning at the construction site to scan the situation of the wall to ensure the installation conditions of the base keel.
[0015] Step 2, install the base keel: Install the vertical keels on the wall surface according to the design drawings, and weld the horizontal keels at intervals on the vertical keels.
[0016] Step 3, scanning and modeling: After installing the base keel, use a total station for three-dimensional scanning again to scan the wall surface and the base keel to determine the installation position of the base keel on the wall surface. According to the scanning results, perform BIM modeling on the base keel and the composite aluminum plate simultaneously.
[0017] Step 4, model rehearsal: Model the hanging parts on the model, and then split the model. First, determine the installation position of the connecting angle codes on the composite aluminum plate, that is, determine the punching positions of the composite aluminum plate. Then determine the installation position of the hanging parts on the vertical keels, extract the installation positioning, and at the same time provide the coordinate points of the hanging parts on the vertical keels.
[0018] Step 5, send to the factory for processing: Package and send the parameters of the composite aluminum plate, the punching positions of the composite aluminum plate, the parameters of the hanging parts, and the parameters of the connecting angle codes to the manufacturer. The manufacturer processes and manufactures the composite aluminum plate, the hanging parts, and the connecting angle codes uniformly according to this.
[0019] Step 6, install the hanging parts: According to the coordinate points of the hanging parts obtained in Step 4, mark the points on the vertical keel. After the hanging parts arrive at the site, install the hanging parts on-site according to the marked points.
[0020] Step 7, install the composite aluminum plate: After the composite aluminum plate arrives at the site, inspect the processing quality of the composite aluminum plate and the connecting angle codes. Install the connecting angle codes on the composite aluminum plate, and then directly hang the connecting angle codes of the composite aluminum plate on the hanging parts of the vertical keel, that is, complete the installation of the composite aluminum plate. Finally, inspect the installed composite aluminum plate.
[0021] Preferably, fixing holes for reinforcement are provided at the corners of the side plates of the hanging parts.
[0022] Preferably, a gasket is provided between the connecting angle code and the hanging part. The gasket fits the contact surfaces of the connecting angle code and the hanging part to increase the friction force.
[0023] Preferably, the gasket is made of plastic or rubber.
[0024] Preferably, wall embedded plates are provided on the wall surface, and floor embedded plates are provided at the internal corners of the floor and the wall. Both the wall embedded plates and the floor embedded plates are used to fix the vertical keel.
[0025] Preferably, in Step 2, the vertical keel is fixed to the wall by welding the vertical keel to the wall embedded plate, and the vertical keel is fixed to the floor by welding the vertical keel to the floor embedded plate.
[0026] Preferably, after installing the basic keel, apply two coats of anti-rust paint on the surfaces of the vertical keel and the horizontal keel. After cleaning the welding slag at the weld, apply anti-rust paint again.
[0027] Preferably, before installing the basic keel, carry out the basic layout work: Hang a vertical line from top to bottom, and project the points on the ground or fixed points; When finding the verticality, the gap between the back of the board and the wall is 50 - 60 mm. According to the size of the board and the width of the gap on the wall, pop out horizontal and vertical grid ink lines.
[0028] Preferably, in Step 7, during the installation of the composite aluminum plate, hang double-sided vertical and horizontal control lines for auxiliary construction to ensure that the joints of the composite aluminum plate are straight.
[0029] Preferably, after installing the composite aluminum plate, carry out the calibration work for the shape error: By changing the hanging position of the connecting angle code and the hanging part, move the composite aluminum plate horizontally to adjust the width of the joints between the plates; By adjusting the distance between the bottom plate of the hanging part and the vertical keel, change the distance between the composite aluminum plate and the basic keel, thereby adjusting the inclination of the composite aluminum plate.
[0030] The beneficial effects of the present invention are reflected in:
[0031] 1) The present invention provides a refined installation method for a super high dry-hanging composite aluminum plate wall structure. Instead of hanging the composite aluminum plate on the horizontal keel, it is connected through a connecting angle code on the composite aluminum plate by setting a hanging piece on the vertical keel, reducing the number of horizontal keels and the preliminary measurement work, and simplifying the installation process of the base keel framework; after the installation of the base keel is completed, the wall surface and the base keel are scanned and modeled, and then the composite aluminum plate, the hanging piece and the connecting angle code are modeled in the model. The pre-play of the hanging of the composite aluminum plate is carried out in the model to determine the installation position of the hanging piece on the vertical keel and the installation position of the connecting angle code on the composite aluminum plate, and the processing position information of the connecting angle code and the composite aluminum plate is sent to the manufacturer. The manufacturer directly processes the composite aluminum plate with the connecting angle code installed. According to the coordinates of the hanging piece in the vertical keel model, the vertical keel is marked with a line and then the hanging piece is installed, saving a large number of steps of manual measurement and installation, reducing the installation error. After the composite aluminum plate arrives at the site, it is directly hung on the hanging piece, and the installation construction is convenient and fast, and there is no need for repeated adjustment and rework, with high efficiency and stable construction quality;
[0032] 2) The present invention provides a refined installation method for a super high dry-hanging composite aluminum plate wall structure. Since the size of the composite aluminum plate is super high and multiple pieces are closely arranged horizontally, the super high composite aluminum plate and the small plate gap make it difficult to adjust if there is a position deviation during installation. By installing the composite aluminum plate on the hanging piece through the connecting angle code, if there is a deviation after installation, the plate spacing can be adjusted by horizontally moving the composite aluminum plate, and the distance between the hanging piece and the vertical keel can also be realized through the slotted hole on the hanging piece to adjust the distance between the composite aluminum plate and the base keel, with strong flexibility.
[0033] Other features and advantages of the present invention will be described in the subsequent specification, and will be partially obvious from the specification, or will be understood by implementing the present invention; the main purpose and other advantages of the present invention can be achieved and obtained through the solutions specifically pointed out in the specification. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 is a side view of the super high dry-hanging composite aluminum plate wall structure of the present invention.
[0035] Figure 2 is Figure 1 a partial enlarged view of
[0036] Figure 3 is a hanging schematic diagram of the hanging piece and the connecting angle code of the present invention.
[0037] Reference numerals: 1 - wall body, 2 - basic keel, 21 - vertical keel, 22 - horizontal keel, 3 - composite aluminum plate, 4 - hanging piece, 41 - strip hole, 42 - fixing hole, 5 - first self-tapping screw, 6 - connecting angle code, 61 - vertical groove, 7 - second self-tapping screw, 8 - gasket. Detailed implementation manners
[0038] The technical solutions of the present invention will be described in detail below through embodiments. The following embodiments are merely exemplary and can only be used to explain and illustrate the technical solutions of the present invention, rather than being construed as a limitation to the technical solutions of the present invention.
[0039] In this embodiment, taking the wall decoration construction project of a certain exhibition hall as an example, the corridor walls of the exhibition hall are decorated by the process of horizontally splicing ultra-high composite aluminum plates 3. During the dry hanging process of the ultra-high composite aluminum plates 3, it is easy to have installation difficulties and problems. Based on this, this embodiment adopts the reverse modeling construction process to realize the dry hanging construction of the ultra-high composite aluminum plates 3, including the following installation steps: scanning and reviewing the basic wall body 1 → constructing the keel of the wall body 1 → three-dimensional scanning of the keel → reverse modeling → model refinement → placing an order for materials → installing the hanging pieces on site → installing the plates on site → acceptance.
[0040] Referring to Figures 1-3 , this embodiment provides a refined installation method for a wall structure of ultra-high dry-hanging composite aluminum plates. The wall structure of ultra-high dry-hanging composite aluminum plates includes a wall body 1, a basic keel 2, and a composite aluminum plate 3. The basic keel 2 is arranged on the surface of the wall body 1, and the composite aluminum plate 3 is arranged on the side of the basic keel 2 away from the wall body 1. The composite aluminum plate 3 is a rectangular plate, and the long side of the composite aluminum plate 3 is arranged vertically along the wall body 1. The long sides of multiple composite aluminum plates 3 are adjacent and are arranged horizontally and spliced on the basic keel 2. The length of a single composite aluminum plate 3 exceeds 6 meters. The basic keel 2 includes a horizontal keel 22 and a vertical keel 21, and the horizontal keel 22 and the vertical keel 21 are arranged alternately. Wall embedded plates are arranged on the wall surface, and floor embedded plates are arranged at the internal angle between the floor and the wall body 1. Both the wall embedded plates and the floor embedded plates are used to fix the vertical keel 21, and hanging pieces 4 are arranged at intervals along the length direction of the vertical keel 21.
[0041] The hanging piece 4 is a U-shaped plate. The opening of the hanging piece 4 faces the vertical keel 21, and the two side plates are respectively lapped on the two side surfaces of the vertical keel 21. There is a distance between the bottom plate of the hanging piece 4 and the front surface of the vertical keel 21. At least three horizontal strip holes 41 are arranged on the side plate of the hanging piece 4. The three strip holes 41 are arranged at intervals and are parallel to each other. First self-tapping screws 5 are arranged in the strip holes 41 for connecting the hanging piece 4 and the vertical keel 21. Fixing holes 42 for reinforcement are arranged at the corners of the side plate of the hanging piece 4.
[0042] On both sides of the back of the composite aluminum plate 3, connecting corner codes 6 are provided. The connecting corner codes 6 are distributed at intervals along the long direction on the back of the composite aluminum plate 3, and the distribution spacing is equal to that of the hanging parts 4 for cooperating with the hanging parts 4. The connecting corner code 6 is L-shaped, and the internal angle of the connecting corner code 6 faces the inner side of the plate surface of the composite aluminum plate 3. The horizontal part of the connecting corner code 6 is connected to the composite aluminum plate 3 through the second self-tapping screw 7. The vertical part of the connecting corner code 6 is parallel to the plate edge of the composite aluminum plate 3, and vertical grooves 61 are provided at both the upper end and the lower end of the vertical part for clamping the bottom plate of the hanging part 4. A gasket 8 is provided between the connecting corner code 6 and the hanging part 4. The gasket 8 is made of plastic or rubber material and fits the contact surfaces of the connecting corner code 6 and the hanging part 4 for buffering and increasing friction;
[0043] The installation method includes the following steps:
[0044] Step 1, preliminary preparation: Use a total station to perform three-dimensional scanning at the construction site to scan the situation of the wall 1 and ensure the installation conditions of the basic keel 2. Then carry out the basic line setting work: Hang a vertical line from top to bottom and project the point on the ground or a fixed point. When finding the verticality, the gap between the back of the board and the wall surface is 50 - 60 mm. According to the size of the board and the width of the gap on the wall surface, draw horizontal and vertical grid ink lines;
[0045] Step 2, install the basic keel 2: According to the design drawing, install the vertical keel 21 on the surface of the wall 1, weld the vertical keel 21 to the wall embedded plate to fix the vertical keel 21 to the wall, weld the vertical keel 21 to the ground embedded plate to fix the vertical keel 21 to the ground, and weld the horizontal keel 22 at intervals on the vertical keel 21. After installing the basic keel 2, apply two coats of anti-rust paint on the surfaces of the vertical keel 21 and the horizontal keel 22, and apply anti-rust paint again after cleaning the welding slag at the weld;
[0046] Step 3, scanning and modeling: After installing the basic keel 2, use a total station to perform three-dimensional scanning again to scan the wall surface of the wall 1 and the basic keel 2 to determine the installation position of the basic keel 2 on the wall surface. According to the scanning results, perform BIM modeling on the basic keel 2 and the composite aluminum plate 3 at the same time;
[0047] Step 4, model rehearsal: Model the hanging part 4 on the model, and then split the model. First, determine the installation position of the connecting corner code 6 on the composite aluminum plate 3, that is, determine the punching position of the composite aluminum plate 3. Then determine the installation position of the hanging part 4 on the vertical keel 21, extract the installation positioning, and at the same time provide the coordinate points of the hanging part 4 on the vertical keel 21;
[0048] Step 5, send to the factory for processing: Package and send the parameters of the composite aluminum plate 3, the punching position of the composite aluminum plate 3, the parameters of the hanging part 4, and the parameters of the connecting corner code 6 to the manufacturer, and the manufacturer will carry out unified processing and production of the composite aluminum plate 3, the hanging part 4, and the connecting corner code 6 accordingly;
[0049] Step 6, install the hanging part 4: According to the coordinate points of the hanging part 4 obtained in Step 4, mark the points on the vertical keel 21. After the hanging part 4 arrives at the site, install the hanging part 4 on-site according to the marked points.
[0050] Step 7, install the composite aluminum plate 3: After the composite aluminum plate 3 arrives at the site, check and accept the processing quality of the composite aluminum plate 3 and the connecting angle code 6. Install the connecting angle code 6 on the composite aluminum plate 3, and then directly hang the connecting angle code 6 of the composite aluminum plate 3 with the hanging part 4 of the vertical keel 21, that is, complete the installation of the composite aluminum plate 3. During the installation process, hang double-sided vertical and horizontal control lines for auxiliary construction to ensure that the joints of the composite aluminum plate 3 are straight. Finally, check and accept the installed composite aluminum plate 3.
[0051] Furthermore, after the installation of the composite aluminum plate 3 is completed, carry out the adjustment work of the shape error: By changing the hanging position of the connecting angle code 6 and the hanging part 4, the composite aluminum plate 3 is horizontally moved to adjust the width of the joint between the plates; By adjusting the distance between the bottom plate of the hanging part 4 and the vertical keel 21, the distance between the composite aluminum plate 3 and the base keel 2 is changed to adjust the inclination of the composite aluminum plate 3.
[0052] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be thought of by those skilled in the art within the technical scope disclosed by the present invention should be covered within the protection scope of the present invention.
Claims
1. An ultra-high dry-hanging composite aluminum plate wall structure, characterized in that: It comprises a wall (1), a base frame (2), and a composite aluminum plate (3); A base frame (2) is arranged on the surface of the wall (1), and a composite aluminum plate (3) is arranged on a side of the base frame (2) away from the wall (1); The composite aluminum plate (3) is a rectangular plate, the length of the composite aluminum plate (3) is arranged along the vertical direction of the wall (1), the long sides of the plurality of composite aluminum plates (3) are adjacent and are horizontally spliced and arranged on the base keel (2), and the length of a single composite aluminum plate (3) exceeds 6 meters; The base keel (2) comprises a transverse keel (22) and a vertical keel (21), the transverse keel (22) and the vertical keel (21) are arranged in a staggered manner, and the vertical keel (21) is provided with hanging parts (4) distributed at intervals in the longitudinal direction; The hanging member (4) is a U-shaped plate, the opening of the hanging member (4) faces the vertical keel (21), the two side plates of the hanging member (4) are respectively overlapped on the two side surfaces of the vertical keel (21), the bottom plate of the hanging member (4) and the front surface of the vertical keel (21) are spaced apart, the side plate of the hanging member (4) is provided with at least three transverse strip holes (41), the three strip holes (41) are spaced apart and parallel to each other, and the first self-tapping screw (5) is provided in the strip hole (41) for connecting the hanging member (4) and the vertical keel (21); Connecting angle brackets (6) are arranged on both sides of the back of the composite aluminum plate (3). The connecting angle brackets (6) are spaced apart in the longitudinal direction of the back of the composite aluminum plate (3). The spacing between the connecting angle brackets (6) is equal to the spacing between the connecting angle brackets (4) and are used to match the connecting angle brackets (4). The connecting angle brackets (6) are L-shaped. The inner corner of the connecting angle brackets (6) faces the inner side of the plate surface of the composite aluminum plate (3). The horizontal part of the connecting angle brackets (6) is connected to the composite aluminum plate (3) through a second self-tapping screw (7). The vertical part of the connecting angle brackets (6) is parallel to the plate edge of the composite aluminum plate (3). The upper end and the lower end of the vertical part are both provided with vertical grooves (61) for clamping the bottom plate of the hanging part (4). A fixing hole (42) for reinforcement is provided at a corner of the side plate of the hanging member (4); A gasket (8) is provided between the connecting angle bracket (6) and the hanging member (4), and the gasket (8) fits the contact surface of the connecting angle bracket (6) and the hanging member (4) to increase friction; The gasket (8) is made of plastic or rubber; A wall embedded plate is provided on the wall surface, and a ground embedded plate is provided at the inner corner between the ground and the wall (1). Both the wall embedded plate and the ground embedded plate are used to fix the vertical keel (21).
2. A refined installation method for an ultra-high dry-hanging composite aluminum plate wall structure as claimed in claim 1, characterized in that: The steps include: Step 1: Preliminary preparation: Use a total station to perform three-dimensional scanning at the construction site to scan the condition of the wall (1) to ensure the installation conditions of the base keel (2); Step 2, installing the base keel (2): according to the design drawing, the vertical keel (21) is installed on the surface of the wall (1), and the horizontal keel (22) is welded on the vertical keel (21) at intervals; Step 3, scanning and modeling: after installing the base keel (2), use the total station to perform three-dimensional scanning again, scan the wall (1) and the base keel (2), and determine the installation position of the base keel (2) on the wall; according to the scanning results, perform BIM modeling on the base keel (2) and the composite aluminum plate (3) at the same time; Step 4, model preview: Model the hanging part (4) on the model, then split the model, first determine the installation position of the connecting angle code (6) on the composite aluminum plate (3), that is, determine the opening position of the composite aluminum plate (3); then determine the installation position of the hanging part (4) on the vertical keel (21), extract the installation position, and provide the coordinate point position of the hanging part (4) on the vertical keel (21); Step 5, sending to the factory for processing: the parameters of the composite aluminum plate (3), the opening position of the composite aluminum plate (3), the parameters of the hanging part (4) and the parameters of the connecting angle code (6) are packaged and sent to the manufacturer, and the manufacturer performs unified processing and production of the composite aluminum plate (3), the hanging part (4) and the connecting angle code (6) based on the parameters; Step 6, installing the hanging member (4): marking the position of the vertical keel (21) according to the coordinate position of the hanging member (4) obtained in step 4, and after the hanging member (4) arrives at the site, installing the hanging member (4) on site according to the marked position; Step 7, installing the composite aluminum plate (3): After the composite aluminum plate (3) arrives at the site, the processing quality of the composite aluminum plate (3) and the connecting angle bracket (6) is inspected, the connecting angle bracket (6) is installed on the composite aluminum plate (3), and then the connecting angle bracket (6) of the composite aluminum plate (3) is directly connected to the hanging piece (4) of the vertical keel (21), so that the installation of the composite aluminum plate (3) is completed. Finally, the installed composite aluminum plate (3) is inspected.
3. A refined installation method for an ultra-high dry-hanging composite aluminum plate wall structure as claimed in claim 2, characterized in that: In step 2, the vertical keel (21) is welded to the wall embedded plate to fix the vertical keel (21) to the wall, and the vertical keel (21) is welded to the ground embedded plate to fix the vertical keel (21) to the ground.
4. The refined installation method of the ultra-high dry-hanging composite aluminum plate wall structure according to claim 2 is characterized in that: After installing the base keel (2), two layers of anti-rust paint are applied to the surface of the vertical keel (21) and the horizontal keel (22), and the anti-rust paint is applied again after cleaning the welding slag at the welding seam.
5. The refined installation method of the ultra-high dry-hanging composite aluminum plate wall structure according to claim 2 is characterized in that: Before installing the base keel (2), the base is laid out: a vertical line is hung from top to bottom and projected on the ground or a fixed point; when finding the verticality, the gap between the back of the board and the wall is 50-60mm, and horizontal and vertical grid ink lines are popped out on the wall according to the size of the board and the width of the gap.
6. A refined installation method for an ultra-high dry-hanging composite aluminum plate wall structure as claimed in claim 5, characterized in that: In step seven, during the installation of the composite aluminum plate (3), double-sided vertical and horizontal control lines are hung to assist in the construction, so as to ensure that the joints of the composite aluminum plate (3) are straight.
7. The refined installation method of the ultra-high dry-hanging composite aluminum plate wall structure according to claim 2 is characterized in that: After the composite aluminum plate (3) is installed, the shape error is adjusted: by changing the connection position of the connecting angle code (6) and the hanging member (4), the composite aluminum plate (3) is moved horizontally, thereby adjusting the width of the joint between the plates; by adjusting the distance between the bottom plate of the hanging member (4) and the vertical keel (21), the distance between the composite aluminum plate (3) and the base keel (2) is changed, thereby adjusting the inclination of the composite aluminum plate (3).
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