Enhanced wood grain-like plain concrete hanging plate one-time installation forming construction process
By incorporating transmission and rotating components on the main body of the hanging panel, combined with pneumatic components and ultra-high performance concrete, the tearing problem caused by concentrated suspension force during the installation of heavy-duty hanging panels is solved, achieving a stable and rapid installation effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHINA CONSTR FOURTH ENG DIV CORP LTD
- Filing Date
- 2026-04-08
- Publication Date
- 2026-06-02
AI Technical Summary
In existing technologies, heavy-duty mounting plates are prone to tearing during installation due to concentrated suspension forces, and the installation is difficult. Conventional mounting brackets cannot achieve multi-directional flexible adjustment, resulting in unstable installation and long installation time.
The construction process of one-time installation of reinforced wood grain fair-faced concrete panels is adopted. By setting transmission and rotating components on the panel body, the adjustment shaft is driven by the rotating shaft for multi-directional adjustment, and the suspension force is distributed by the air pressure component. At the same time, ultra-high performance concrete and stainless steel sleeves are used to enhance the strength of the panel.
It enables stable installation of heavy-duty mounting plates, reduces the risk of tearing caused by concentrated suspension force, improves installation efficiency and stability, and ensures the strength and durability of the mounting plates.
Smart Images

Figure CN122129131A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building cladding technology, specifically to a construction process for one-time installation of reinforced wood-grain fair-faced concrete cladding panels. Background Technology
[0002] With the development of the times, building designs are becoming increasingly diversified. To meet aesthetic and functional needs, more and more different curtain wall styles are being used in buildings. Currently, commonly used curtain wall materials include glass and stone. Curtain wall structures typically consist of panels and a support system, and are integrated with the main structure through connecting components.
[0003] As a commonly used curtain wall support system, the keel structure is often first connected and fixed to the main structure, and then the hanging panels are installed on the keel piece by piece. This method has high requirements for the material properties of the keel and the installation process of the hanging panels.
[0004] Furthermore, conventional hangers are suitable for lightweight cladding panels, but not for unconventional, large-sized, or heavy-duty stone cladding panels weighing tons. This can easily lead to stress concentration at the hanging points, increasing the risk of tearing in heavy-duty cladding panels. Moreover, conventional hangers cannot provide multi-directional flexible adjustment of the cladding panels. During installation, the panels are repeatedly adjusted and corrected when mounted on columns or walls due to varying panel positions. Additionally, due to the size of the panels themselves, their position on the wall is unstable when pre-applied, requiring multiple adjustments. This process is time-consuming and difficult, and the concentrated, one-dimensional suspension force can easily cause tensile damage to the panel surface. Therefore, we propose a one-time installation process for reinforced wood-grain-look fair-faced concrete cladding panels. Summary of the Invention
[0005] The purpose of this invention is to provide a one-time installation and molding process for enhanced wood grain-look fair-faced concrete panels, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a one-time installation and molding process for reinforced wood-grain-look fair-faced concrete panels, comprising: S1: Prefabricated substrate; S2: Integrated reinforcement; S3: Waterproof and thermal insulation layer construction; S4: Install and adjust the equipment's on-site positioning; S5: Nodes are fixed; The installation and adjustment equipment used in S4 includes a wall-embedded base block and a hanging plate body. The hanging plate body is right-angled and has mounting holes. A rotating shaft is installed at the mounting holes. Transmission components are provided on two sides of the hanging plate body and are connected to the rotating shaft. A rotating component is rotatably connected to the outside of the transmission component, and an adjustment shaft is installed on the rotating component. The adjustment shaft has three sets of mounting slots facing different directions, and an adjustment block is provided at each mounting slot. The adjustment block is connected to the wall-embedded base block through a multi-angle connector. A pneumatic groove is provided at the bottom of the mounting hole. A pneumatic component is installed at the bottom of the rotating shaft, and when the rotating shaft rotates, it drives the pneumatic component to expel gas.
[0007] Preferably, the mounting plate body includes two right-angled mounting plate surfaces, and the mounting plate surfaces are filled with reinforcing steel bars. A keel frame is installed on the back of the mounting plate surfaces. The mounting holes are threaded holes. The lower part of the rotating shaft is provided with a threaded section, and the threaded section is threadedly connected to the threaded hole. The upper part of the rotating shaft is provided with a cross groove, and a double-layer rotating disc is fitted on the outside of the rotating shaft. The upper and lower parts of the rotating shaft are rotatably connected, and the transmission component is connected to the double-layer rotating disc.
[0008] Preferably, the transmission component includes a transmission roller installed on the top side of the hanging plate body, and a single-layer rotating disk is installed on the transmission roller, and the double-layer rotating disk and the single-layer rotating disk are driven by a belt.
[0009] Preferably, the rotating component includes a transmission wheel mounted on the top of the transmission roller, a driven wheel meshing with the transmission wheel, a mounting base mounted on the keel frame, and a rotating sleeve rotatably connected to the mounting base, the driven wheel being sleeved on the rotating sleeve, and the adjusting shaft passing through the rotating sleeve.
[0010] Preferably, the upper part of the rotating sleeve is provided with a cross-shaped engaging groove, and the outside of the adjusting shaft is provided with a cross-shaped engaging block that cooperates with the cross-shaped engaging groove. A rotating ball is installed on the top of the adjusting shaft.
[0011] Preferably, the mounting grooves on the adjusting shaft have different heights, and the adjusting block and the mounting groove have a 180° angle.
[0012] Preferably, the adjustment block includes a mounting plate connected to the keel frame, a connecting plate mounted on the mounting plate, and an elastic compression section on the connecting plate. A raised arc-shaped block is connected between the two connecting plates, and the raised arc-shaped block cooperates with the mounting groove. A mounting column is connected to the outside of the raised arc-shaped block, and the mounting column is connected to a multi-angle connector.
[0013] Preferably, the wall pre-embedded base block includes a horn-shaped bracket connected to the wall, the multi-angle connector includes an adjustment seat connected to the horn-shaped bracket, an adjustment plate is installed on the mounting column, the adjustment plate has an adjustment groove, the adjustment plates are distributed between the adjustment seats, an adjustment rod is installed on the adjustment seat, and the two ends of the adjustment rod are connected to adjustment nuts, the adjustment rod slides through the adjustment groove, and the front end of the adjustment plate is an arc surface; The bull horn-shaped brackets are distributed along the wall from top to bottom, with their openings facing the keel frame, the right side of the adjustment axis, and the left side of the adjustment axis, respectively.
[0014] Preferably, the keel frame is provided with multiple cross frames, and the cross frames are hollow. Multiple air ports are opened on the cross frames. The pneumatic component includes a bladder installed at the end of the cross frame. A connecting rod is installed at the bottom of the rotating shaft, and multiple extrusion bodies are provided on the connecting rod. An extrusion slope is provided on the outside of the extrusion body. Multiple extrusion grooves are opened on the pneumatic groove. Gas storage is provided at the extrusion groove, and the gas storage is connected to the bladder. A compressed air pipe is installed at one end of the gas storage, and the compressed air pipe (96) passes through the extrusion groove and contacts the extrusion slope.
[0015] Preferably, the specific steps of the construction process are as follows: S1: Substrate prefabrication: Ultra-high performance concrete is poured into the mold of the pre-set wood grain template, and the wood grain texture is enhanced by the grouting process after curing. S2: Integrated reinforcement: Stainless steel sleeves are pre-embedded before the concrete sets and the back keel is prefabricated and fixed to the back of the hanging plate with high-strength bolts. S3: Waterproof and thermal insulation layer construction: After cleaning the wall surface, brush on the waterproof coating evenly, cut the insulation board and lay it firmly, then lay the waterproof and breathable membrane on the insulation layer and fix it with adhesive to ensure that the edges are sealed firmly. S4: On-site installation and positioning: Hoist the mounting plate from top to bottom, layer by layer, to the preset bracket support area; the keel frame sits on the bracket; rotate the shaft to drive the adjustment shaft to rotate, so that the installation slot and the adjustment block are engaged, realizing three-way adjustment in the up, down, left, right and front and back directions, while the pneumatic component blows air to clean the dust; after adjustment, lock the multi-angle connector and install it on the wall. S5: Node fixing: Tighten high-strength bolts to lock the unit, and fix the roof cover plate through the gap by inserting stainless steel bolts.
[0016] Compared with the prior art, the beneficial effects of the present invention are: This invention provides a transmission and rotation component at the top of the mounting plate body. When the rotating shaft is rotated, the adjustment shafts on the two mounting plate panels are simultaneously rotated, thereby aligning the mounting grooves on the adjustment shafts with the adjustment blocks. This facilitates the quick connection of the adjustment blocks with the multi-angle connectors from different positions and helps to distribute the suspension force between the mounting plate body and the pre-embedded base block in the wall in multiple directions. This prevents the mounting plate body from being damaged due to concentrated suspension force. At the same time, the multi-directional installation and adjustment helps to ensure the stability of the pre-installed mounting plate body. This invention also uses a connecting rod to release the compression of the compressed air pipe by the extrusion body and the extrusion slope, thereby forcing the gas inside the gas storage into the cavity of the cross frame and spraying it out along the air port. This allows for multi-angle adjustment of the installation position to disperse the tension on the mounting plate body. At the same time, gas can be blown out at the installation adjustment position during the adjustment process to clean dust and other debris at the installation adjustment position, reducing the amount of dust and other debris mixed in the installation position, thereby maintaining the overall installation stability of the mounting plate body. This invention uses ultra-high performance concrete as the base material for the hanging panel, combined with a special wood grain molding and grouting process, to ensure that the heavy-duty hanging panel, weighing tons, has excellent strength and durability while exhibiting a wood grain texture on the surface. Furthermore, the interior is filled with stainless steel sleeves, which enhances the overall strength of the hanging panel. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the rear structure of the present invention; Figure 3 This is a schematic diagram of the structure after the wall has been removed in this invention; Figure 4 This is a schematic diagram of the keel frame structure of the present invention; Figure 5 This is a schematic diagram of the structure of the mounting plate body of the present invention; Figure 6 This is a schematic diagram of the structure of the transmission component and the pneumatic component of the present invention; Figure 7 This is a schematic diagram of the structure at the adjusting shaft and rotating component of the present invention; Figure 8 for Figure 3 Enlarged structural diagram of region A in the middle; Figure 9 for Figure 4 Enlarged structural diagram of region B in the middle; Figure 10 This is a schematic diagram of the stress analysis at the panel of the hanging plate.
[0018] In the diagram: 1-Wall embedded base block; 2-Hanging plate body; 3-Rotating shaft; 4-Transmission component; 5-Rotating component; 6-Adjusting shaft; 7-Adjusting block; 8-Multi-angle connector; 9-Pneumatic component; 11-Horn bracket; 21-Mounting hole; 22-Hanging plate surface; 23-Reinforcing steel bar; 24-Keeper frame; 25-Pneumatic groove; 26-Horizontal frame; 27-Air inlet; 28-Extrusion groove; 31-Threaded section; 32-Cross groove; 33-Double-layer rotating disc; 41-Transmission roller; 42-Single-layer rotating disc; 43-Belt; 51-Transmission wheel; 5 2-Driven wheel; 53-Mounting base; 54-Rotating sleeve; 55-Cross engaging groove; 61-Mounting groove; 62-Cross engaging block; 63-Rotating ball; 71-Mounting piece; 72-Connecting piece; 73-Elastic compression section; 74-Protruding arc block; 75-Mounting column; 81-Adjusting base; 82-Adjusting plate; 83-Adjusting groove; 84-Adjusting rod; 85-Adjusting nut; 91-Bag body; 92-Connecting rod; 93-Extrusion body; 94-Extrusion slope; 95-Gas storage; 96-Compressed air pipe; 10. Waterproof and heat-insulating layer. Detailed Implementation
[0019] 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.
[0020] Please see Figure 1-10 This invention provides a technical solution: a one-time installation and molding process for reinforced wood grain fair-faced concrete panels, comprising: S1: Substrate prefabrication: Ultra-high performance concrete is poured into the mold of the pre-set wood grain template, and the wood grain texture is enhanced by the grouting process after curing. Using ultra-high performance concrete as the base material, compared with conventional fair-faced concrete, it fully ensures that the heavy-duty hanging panels weighing tons have superior strength and durability. Combined with special wood grain molding and slurry application process, the surface of the panel presents a wood grain texture. S2: Integrated reinforcement: Stainless steel sleeves are pre-embedded before the concrete sets and the back keel is prefabricated and fixed to the back of the hanging plate with high-strength bolts. Specifically, during the casting process, stainless steel sleeves are pre-embedded inside the hanging plate, and the keel is fixed to the back of the hanging plate in advance with high-strength bolts. This enhances the structural stability of the heavy hanging plate and reduces the risk of concrete tearing during the hanging process.
[0021] Furthermore, before the installation of the panels, BIM is used to create an overall model of the building's exterior wall, dividing the curtain wall into independent installation units and determining the hoisting sequence, and then prefabricating them in the factory according to the panel division.
[0022] S3: Waterproof and thermal insulation layer construction: After cleaning the wall surface, brush on the waterproof coating evenly, cut the insulation board and lay it firmly, then lay the waterproof and breathable membrane on the insulation layer and fix it with adhesive to ensure that the edges are sealed firmly. Specifically, the waterproof and thermal insulation layer 10 is installed close to the wall pre-embedded base block 1. That is, the waterproof coating, thermal insulation board and waterproof breathable membrane are laid sequentially on the wall surface, and the joints are sealed around the pre-embedded base block 1 to ensure that the thermal insulation layer is continuous and without voids, and the wall pre-embedded base block 1 is connected to the hanging panel body 2 after passing through the waterproof and thermal insulation layer 10.
[0023] S4: On-site positioning of equipment installation and adjustment: Hoist the mounting plates from top to bottom, layer by layer, to the preset bracket support area; the keel frame 24 sits on the horn bracket 11; rotate the rotating shaft 3 to drive the adjustment shaft 6 to rotate, so that the installation groove 61 engages with the adjustment block 7, realizing three-way adjustment in the up, down, left, right, and front and back directions, while the pneumatic component 9 blows air to clean the dust; after adjustment, lock the multi-angle connector 8 to install at the wall; install each layer in the order of "inner corner first, then outer corner; reference plate first, then adjacent plate"; S5: Node fixing: Tighten high-strength bolts to lock the unit, and fix the roof cover plate through the gap by inserting stainless steel bolts.
[0024] The mounting plate body 2 is right-angled and has mounting holes 21. A rotating shaft 3 is installed at the mounting holes 21. Transmission components 4 are provided on two sides of the mounting plate body 2 and are connected to the rotating shaft 3. A rotating component 5 is rotatably connected to the outer side of the transmission component 4 and an adjusting shaft 6 is installed on the rotating component 5. The adjusting shaft 6 has three sets of mounting grooves 61 facing different directions, and an adjusting block 7 is provided at each mounting groove 61. The adjusting block 7 is connected to the wall pre-embedded base block 1 through a multi-angle connector 8. A pneumatic groove 25 is provided at the lower part of the mounting hole 21. A pneumatic component 9 is installed at the bottom of the rotating shaft 3, and when the rotating shaft 3 rotates, it drives the pneumatic component 9 to expel gas.
[0025] The hanging plate body 2 includes two right-angled hanging plate surfaces 22, and the hanging plate surfaces 22 are filled with reinforcing steel bars 23. A keel frame 24 is installed on the back of the hanging plate surfaces 22. The mounting hole 21 is a threaded hole. The lower part of the rotating shaft 3 is provided with a threaded section 31, and the threaded section 31 is threadedly connected to the threaded hole. The upper part of the rotating shaft 3 is provided with a cross groove 32, and a double-layer rotating disk 33 is sleeved on the outside of the rotating shaft 3. The upper and lower parts of the rotating shaft 3 are rotatably connected. The transmission component 4 is connected to the double-layer rotating disk 33.
[0026] The transmission component 4 includes a transmission roller 41 installed on the top side of the hanging plate body 2, and a single-layer rotating disk 42 is installed on the transmission roller 41. The double-layer rotating disk 33 and the single-layer rotating disk 42 are driven by a belt 43.
[0027] The rotating component 5 includes a transmission wheel 51 mounted on the top of the transmission roller 41. A driven wheel 52 is externally engaged with the transmission wheel 51. A mounting base 53 is mounted on the keel frame 24, and a rotating sleeve 54 is rotatably connected to the mounting base 53. The driven wheel 52 is sleeved on the rotating sleeve 54, and the adjusting shaft 6 passes through the rotating sleeve 54.
[0028] The upper part of the rotating sleeve 54 is provided with a cross-shaped engaging groove 55, and the outside of the adjusting shaft 6 is provided with a cross-shaped engaging block 62 that cooperates with the cross-shaped engaging groove 55. The top of the adjusting shaft 6 is equipped with a rotating ball 63. By setting the rotating ball 63, it is convenient to install the adjusting shaft 6 inside the rotating sleeve 54. The adjusting shaft 6 can be inserted into the rotating sleeve 54 or removed from the rotating sleeve 54 by holding the rotating ball 63.
[0029] The mounting grooves 61 on the adjusting shaft 6 have different heights, and the adjusting block 7 is at a 180° angle to the mounting groove 61. By designing the adjusting block 7 and the mounting groove 61 to be at a 180° angle, it is advantageous that after the adjusting shaft 6 is rotated 180°, the adjusting block 7 will be just stuck in the mounting groove 61.
[0030] The adjustment block 7 includes a mounting plate 71 connected to the keel frame 24. A connecting plate 72 is mounted on the mounting plate 71, and the connecting plate 72 is provided with an elastic compression section 73. A raised arc-shaped block 74 is connected between the two connecting plates 72, and the raised arc-shaped block 74 cooperates with the mounting groove 61. The outside of the raised arc-shaped block 74 is connected to a mounting post 75, and the mounting post 75 is connected to the multi-angle connector 8.
[0031] The multi-angle connector 8 includes an adjustment seat 81 connected to the horn-shaped bracket 11, an adjustment plate 82 installed on the mounting column 75, an adjustment groove 83 opened on the adjustment plate 82, the adjustment plates 82 are distributed between the adjustment seats 81, an adjustment rod 84 is installed on the adjustment seat 81, and an adjustment nut 85 is connected to both ends of the adjustment rod 84, the adjustment rod 84 slides through the adjustment groove 83.
[0032] The bull horn-shaped brackets 11 are distributed along the wall from top to bottom, with their openings facing the keel frame 24, the right side of the adjustment shaft 6, and the left side of the adjustment shaft 6, respectively. By setting the bull horn-shaped brackets 11 at different heights and with different opening directions, it is beneficial to disperse the tension generated when the hanging panel body 2 is suspended in different directions on the hanging panel, thereby balancing the suspension tension and the weight of the hanging panel body 2 itself, and reducing the possibility of the hanging panel body 2 cracking due to unidirectional force.
[0033] The front end of the adjustment plate 82 is an arc surface. By designing the front end of the adjustment plate 82 as an arc surface, it is convenient for the adjustment plate 82 to be inserted into the adjustment seat 81, thereby improving the installation and adjustment of the mounting plate body 2.
[0034] The keel frame 24 is provided with multiple crossbeams 26, and the crossbeams 26 are hollow. Multiple air ports 27 are opened on the crossbeams 26. The pneumatic component 9 includes a bladder 91 installed at the end of the crossbeam 26. A connecting rod 92 is installed at the bottom of the rotating shaft 3, and multiple extrusion bodies 93 are provided on the connecting rod 92. An extrusion slope 94 is provided on the outside of the extrusion body 93. Multiple extrusion grooves 28 are opened on the pneumatic groove 25. A gas storage 95 is provided at the extrusion groove 28, and the gas storage 95 is connected to the bladder 91. A compressed air pipe 96 is installed at one end of the gas storage 95, and the compressed air pipe 96 passes through the extrusion groove 28 and contacts the extrusion slope 94.
[0035] In practical use: Based on the hanging point positions of the hanging panels determined by the curtain wall detailed design, install the horn-shaped bracket 11 at the wall position, and install the keel frame 24 at the back position of the hanging panel surface 22. At this time, according to the position of the horn-shaped bracket 11, fix the mounting piece 71 on the adjusting block 7 to the keel frame 24 by welding or bolting. At the same time, install the threaded section 31 at the threaded hole of the mounting hole 21. After installing the transmission roller 41 at the side position of the hanging panel surface 22, pass the adjusting shaft 6 through the cavity inside the rotating sleeve 54 until the cross-shaped locking block 62 and the cross-shaped locking groove 55 cooperate with each other, forming a complete whole with the adjusting shaft 6 and the rotating sleeve 54. At the same time, the opening direction of the three mounting grooves 61 at different heights on the adjusting shaft 6 is sequential from top to bottom. The opening faces inwards towards the mounting plate surface 22, towards the right side of the adjusting shaft 6, and towards the left side of the adjusting shaft 6. The shaft 3 can be manually rotated, or the drive device can be mounted on top of the shaft 3. The cross groove 32 on the top of the shaft 3 is used to connect with the drive shaft of the drive device (for example, by using a motor to drive a cross output shaft mounted on top of the shaft 3). Because the upper and lower parts of the shaft 3 are rotatably connected, when the upper part of the shaft 3 begins to rotate, the double-layer rotating disc 33, under the action of the belt, drives the single-layer rotating disc 42, thereby driving the transmission wheel 51 to drive the driven wheel to rotate, thus causing the adjusting shaft 6 to start rotating. When the mounting groove 61 of the adjusting shaft 6 rotates to the position of the protruding arc-shaped block 74, it just engages at the mounting groove position, causing the elastic compression section 73 with extensibility to contract and adjust. This achieves the desired adjustment. Figure 9The three forces supporting the mounting plate surface 22 in different directions reduce the risk of damage caused by concentrated stress. When the rotating shaft 3 rotates, it drives the adjustment shafts 6 on both sides to rotate, facilitating installation from multiple angles. At the same time, because the bottom of the rotating shaft 3 is connected by the connecting rod 92, the extrusion body 93 and the extrusion slope 94 release the extrusion compressed air pipe 96, thereby forcing the gas inside the gas storage 95 into the cavity of the cross frame 26 and spraying it out along the air port. In this way, the installation position can be adjusted at multiple angles to disperse the tension on the mounting plate body 2. At the same time, gas can be blown out at the installation adjustment position during the adjustment process to clean dust and other debris at the installation adjustment position, reducing the amount of dust and other debris mixed in the installation position, thereby maintaining the overall installation stability of the mounting plate body 2.
[0036] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0037] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A construction process for one-time installation of enhanced wood-grain-look fair-faced concrete cladding panels, characterized by: include: S1: Prefabricated substrate; S2: Integrated reinforcement; S3: Waterproof and thermal insulation layer construction; S4: Install and adjust the equipment's on-site positioning; S5: Nodes are fixed; The installation and adjustment equipment used in S4 includes a wall pre-embedded base block (1) and a hanging plate body (2). The hanging plate body (2) is right-angled and has an installation hole (21) on it. A rotating shaft (3) is installed at the installation hole (21). A transmission component (4) is provided on two sides of the hanging plate body (2). The transmission component (4) is connected to the rotating shaft (3). A rotating component (5) is rotatably connected to the outside of the transmission component (4). An adjustment shaft (6) is installed on the rotating component (5). The adjustment shaft (6) has three sets of installation slots (61) facing different directions. An adjustment block (7) is provided at each installation slot (61). The adjustment block (7) is connected to the wall pre-embedded base block (1) through a multi-angle connector (8). A pneumatic groove (25) is provided at the bottom of the installation hole (21). A pneumatic component (9) is installed at the bottom of the rotating shaft (3). When the rotating shaft (3) rotates, it drives the pneumatic component (9) to blow out gas.
2. The construction process for one-time installation of the enhanced wood grain-look fair-faced concrete cladding panel according to claim 1, characterized in that: The mounting plate body (2) includes two right-angled mounting plate surfaces (22), and the mounting plate surfaces (22) are filled with reinforcing steel bars (23). A keel frame (24) is installed on the back of the mounting plate surfaces (22). The mounting hole (21) is a threaded hole. The lower part of the rotating shaft (3) is provided with a threaded section (31), and the threaded section (31) is threadedly connected to the threaded hole. The upper part of the rotating shaft (3) is provided with a cross groove (32), and a double-layer rotating disc (33) is sleeved on the outside of the rotating shaft (3). The upper and lower parts of the rotating shaft (3) are rotatably connected, and the transmission component (4) is connected to the double-layer rotating disc (33).
3. The construction process for one-time installation and molding of the enhanced wood grain fair-faced concrete cladding panel according to claim 2, characterized in that: The transmission component (4) includes a transmission roller (41) installed on the top side of the hanging plate body (2), and a single-layer rotating disk (42) is installed on the transmission roller (41). The double-layer rotating disk (33) and the single-layer rotating disk (42) are driven by a belt (43).
4. The construction process for one-time installation of the enhanced wood grain-look fair-faced concrete cladding panel according to claim 3, characterized in that: The rotating component (5) includes a drive wheel (51) mounted on the top of the drive roller (41), a driven wheel (52) meshing with the outside of the drive wheel (51), a mounting seat (53) mounted on the keel frame (24), and a rotating sleeve (54) rotatably connected to the mounting seat (53). The driven wheel (52) is sleeved on the rotating sleeve (54), and the adjusting shaft (6) passes through the rotating sleeve (54).
5. The construction process for one-time installation of the enhanced wood grain-look fair-faced concrete cladding panel according to claim 4, characterized in that: The upper part of the rotating sleeve (54) is provided with a cross-shaped engagement groove (55), and the outside of the adjusting shaft (6) is provided with a cross-shaped engagement block (62) that cooperates with the cross-shaped engagement groove (55). A rotating ball (63) is installed on the top of the adjusting shaft (6).
6. The construction process for one-time installation and molding of the enhanced wood grain fair-faced concrete cladding panel according to claim 2, characterized in that: The mounting grooves (61) on the adjustment shaft (6) have different heights, and the adjustment block (7) and the mounting groove (61) are at a 180° angle.
7. The construction process for one-time installation and molding of the enhanced wood grain fair-faced concrete cladding panel according to claim 6, characterized in that: The adjustment block (7) includes an installation piece (71) connected to the keel frame (24), a connecting piece (72) is installed on the installation piece (71), and an elastic compression section (73) is provided on the connecting piece (72). A raised arc-shaped block (74) is connected between the two connecting pieces (72), and the raised arc-shaped block (74) cooperates with the installation groove (61). The raised arc-shaped block (74) is externally connected to an installation column (75), and the installation column (75) is connected to a multi-angle connector (8).
8. The construction process for one-time installation of the enhanced wood grain fair-faced concrete cladding panel according to claim 7, characterized in that: The wall pre-embedded base block (1) includes a bull-horn bracket (11) connected to the wall, the multi-angle connector (8) includes an adjustment seat (81) connected to the bull-horn bracket (11), an adjustment plate (82) is installed on the mounting column (75), an adjustment groove (83) is opened on the adjustment plate (82), the adjustment plate (82) is distributed between the adjustment seats (81), an adjustment rod (84) is installed on the adjustment seat (81), and an adjustment nut (85) is connected to both ends of the adjustment rod (84). The adjustment rod (84) slides through the adjustment groove (83), and the front end of the adjustment plate (82) is an arc surface. The bull horn bracket (11) is distributed along the wall from top to bottom, with its openings facing the keel frame (24), the right side of the adjustment axis (6), and the left side of the adjustment axis (6) in sequence.
9. The construction process for one-time installation and molding of the enhanced wood grain fair-faced concrete cladding panel according to claim 2, characterized in that: The keel frame (24) is provided with multiple cross frames (26), and the cross frames (26) are hollow. Multiple air ports (27) are opened on the cross frames (26). The pneumatic component (9) includes a bladder (91) installed at the end of the cross frame (26). A connecting rod (92) is installed at the bottom of the rotating shaft (3), and multiple extrusion bodies (93) are provided on the connecting rod (92). An extrusion slope (94) is provided on the outside of the extrusion body (93). Multiple extrusion grooves (28) are opened on the pneumatic groove (25). A gas storage (95) is provided at the extrusion groove (28), and the gas storage (95) is connected to the bladder (91). A compressed air pipe (96) is installed at one end of the gas storage (95), and the compressed air pipe (96) passes through the extrusion groove (28) and contacts the extrusion slope (94).
10. The construction process for one-time installation of reinforced wood grain fair-faced concrete panels according to any one of claims 1-9, characterized in that: The specific steps of the construction process are as follows: S1: Substrate prefabrication: Ultra-high performance concrete is poured into the mold of the pre-set wood grain template, and the wood grain texture is enhanced by the grouting process after curing. S2: Integrated reinforcement: Stainless steel sleeves are pre-embedded before the concrete sets and the back keel is prefabricated and fixed to the back of the hanging plate with high-strength bolts. S3: Waterproof and thermal insulation layer construction: After cleaning the wall surface, brush on the waterproof coating evenly, cut the insulation board and lay it firmly, then lay the waterproof and breathable membrane on the insulation layer and fix it with adhesive to ensure that the edges are sealed firmly. S4: On-site installation and positioning: Hoist the hanging plate from top to bottom, layer by layer, to the preset bracket support area; the keel frame (24) sits on the horn bracket (11); rotate the shaft (3) to drive the adjustment shaft (6) to rotate, so that the installation groove (61) and the adjustment block (7) are engaged, realizing three-way adjustment in the up, down, left, right and front and back, while the pneumatic component (9) blows air to clean the dust; after adjustment, lock the multi-angle connector (8) and install it on the wall; S5: Node fixing: Tighten high-strength bolts to lock the unit, and fix the roof cover plate through the gap by inserting stainless steel bolts.