Adjustable large-span roof decoration aluminum plate skeleton and construction method
By designing an adjustable large-span roof decorative aluminum panel frame, and utilizing bolt fixing and monitoring mechanisms, the problems of error adjustment and welding in traditional installation are solved, enabling precise adjustment and rapid removal of harmful gases, thus improving installation quality and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHINA FIRST METALLURGICAL GROUP
- Filing Date
- 2023-11-02
- Publication Date
- 2026-06-02
AI Technical Summary
In the traditional installation process of large-span roof decorative aluminum panels, the error adjustment and installation accuracy are low, and secondary fine-tuning is not possible. In addition, the welding and fixing process generates harmful gases and waste residues, which affect the health of the operators.
An adjustable, large-span roof decorative aluminum panel frame is adopted, including a first decorative panel frame, a second decorative panel frame, and a third decorative panel frame, which are fixed together by bolts. Combined with a monitoring mechanism and an exhaust workstation, it can achieve precise adjustment of the decorative panels and rapid removal of harmful gases.
It enables precise installation of large-span roof decorative aluminum panels, improves installation accuracy and efficiency, reduces the use of welding processes, and reduces the impact on the health of construction workers.
Smart Images

Figure CN117605229B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of roof decoration technology, and more specifically, to an adjustable large-span roof decoration aluminum panel frame and its construction method. Background Technology
[0002] Large-span roofing aluminum panels are a lightweight, aesthetically pleasing, and durable building material widely used in industrial and civil warehouses, special buildings, roofs and walls of large-span steel structure houses, as well as interior and exterior wall decoration. They are characterized by their light weight, high strength, rich colors, convenient and quick construction, earthquake resistance, fire resistance, rain resistance, and long service life, and are now widely adopted. With social development and increasing demands for architectural aesthetics and urban planning, the pursuit of structural safety, aesthetics, and functional diversity in buildings has led to increasingly higher requirements for building facades, making large-span roofing aluminum panels the preferred choice for installation.
[0003] The installation of large-span roof decorative aluminum panels requires high precision in error adjustment, installation accuracy, and flatness. Traditional methods for testing the flatness of decorative aluminum panels involve using a bubble level, relying on the movement of bubbles to determine if the panel's flatness meets requirements. This method is not only inaccurate but also time-consuming and labor-intensive, offering no guidance for subsequent panel adjustments. Furthermore, traditional decorative aluminum panel frames are typically welded and fixed in one piece, making secondary fine-tuning impossible after welding. This hinders precise control of the entire large-span roof decorative aluminum panel frame. Additionally, the harmful gases and waste generated during the welding process can negatively impact the health of the workers. Summary of the Invention
[0004] The purpose of this invention is to provide an adjustable large-span roof decorative aluminum panel frame to solve the above-mentioned problems.
[0005] To achieve the above objectives, the present invention provides an adjustable large-span roof decorative aluminum panel frame, comprising: a concrete structure; a first decorative panel frame whose top is integrally connected to the concrete structure and used for length adjustment; a decorative panel connector installed at the end of the first decorative panel frame and used to form a transition connection; a first fixing component and a second fixing component installed on the right side of the concrete structure and arranged vertically; three sets of decorative panels respectively installed on the decorative panel connector, the first fixing component, and the second fixing component; a second decorative panel frame connected to the right side of the concrete structure; a third decorative panel frame vertically connected to the end of the second decorative panel frame and connected to the second fixing component; a synchronous shielding group set on the third decorative panel frame and the decorative panels; a blower station set on the concrete structure and used for rapid dispersal of harmful gases and waste residue; and a monitoring mechanism set on the first decorative panel frame, the second decorative panel frame, and the third decorative panel frame and used for real-time feedback of pressure and displacement changes.
[0006] The top of the first decorative panel frame is fitted with a panel for increasing the surface area, and several first bolts are spirally passed through the four corners of the panel and embedded in the concrete structure.
[0007] The second decorative panel frame is equipped with a plurality of first steel tubes, and the plurality of first steel tubes are integrally connected to the concrete structure.
[0008] Furthermore, the decorative panel includes a decorative aluminum plate base layer for strengthening installation and preventing falling, and a decorative aluminum plate surface layer installed on the decorative aluminum plate base layer;
[0009] The first fixing component includes a first aluminum alloy beam mounted on the top right side of the concrete structure to provide a positioning mounting base, and a patch mounted on the first aluminum alloy beam to fill gaps.
[0010] The decorative aluminum plate base is installed on the first aluminum alloy crossbeam and closely attached to the patch block;
[0011] The second fixing component includes two second aluminum alloy beams mirror-mounted and attached to each other on the right side of the concrete structure, a plurality of second bolts spirally mounted on the two second aluminum alloy beams, a second steel tube obliquely hinged to the second aluminum alloy beam located on the lower layer, and a third steel tube installed at the end of the second steel tube and used to create a vertical surface.
[0012] The decorative aluminum plate base is installed on the second steel tube;
[0013] The end of the third decorative panel frame is connected to the third steel tube.
[0014] Furthermore, the first decorative panel frame includes an upper connecting end on which the panel is mounted, an electric jack installed in the upper connecting end for downward pushing, a force transmission rod connected to the output end of the electric jack, a lower connecting end connected to the force transmission rod, and a button installed on the lower connecting end and electrically connected to the electric jack for convenient starting and stopping of the electric jack.
[0015] Furthermore, the decorative panel connector includes a square plate installed at the lower connecting end, a connecting post installed on the decorative aluminum panel base, a threaded post that is spirally connected at both ends to the square plate and the connecting post and is used to achieve quick assembly and disassembly, and two transmission rods installed on both sides of the connecting post and connected to both ends of the decorative aluminum panel base.
[0016] Furthermore, the synchronous shielding assembly includes a tail abutment block installed at the upper connecting end of the third decorative panel frame, a main baffle connected to the tail abutment block, a corner block connected to the end of the decorative aluminum plate base layer and the decorative aluminum plate surface layer and at the same horizontal height as the main baffle, grooves formed on the main baffle and the corner block, and a secondary baffle fitted in the groove.
[0017] Furthermore, the exhaust workstation includes two vacuum suction cups coaxially arranged on the concrete structure, a support work plate mounted on the two vacuum suction cups, a storage tank mounted on the support work plate for temporarily storing gas, an air pump mounted on the support work plate and connected to the storage tank for compressing air and pumping it outward, two gooseneck pipes connected to the storage tank for supplying air outward, air inlets mounted outward in an outward-expanding shape at the ends of the two gooseneck pipes for expanding the gas in four directions, and two gripping rods mounted on both sides of the support work plate.
[0018] Furthermore, the first decorative panel frame also includes a hollow rectangular plate installed at the opening of the upper connecting end, an annular piece installed on the force transmission rod, and a plurality of elliptical pieces circumferentially installed on the annular piece and used to abut against the hollow rectangular plate.
[0019] Furthermore, the first decorative panel frame also includes a plurality of elliptical holes circumferentially opened along the upper connecting end;
[0020] The blowdown station also includes two sealing rings installed at the connection points between the two gooseneck pipes and the storage tank.
[0021] Furthermore, the monitoring mechanism includes a plurality of sensors respectively installed on the first trim panel frame, the second trim panel frame and the third trim panel frame, and an external motion control device.
[0022] According to a second aspect of the present invention, a method for constructing an adjustable large-span roof decorative aluminum panel frame is provided:
[0023] S1: First, press the panel firmly onto the concrete structure and install several first bolts to fix the first decorative panel frame. Then, install the decorative panel connectors onto the first decorative panel frame. Next, fix the second decorative panel frame to the appropriate position through several first steel tubes. Then, complete the connection between the third decorative panel frame and the second decorative panel frame and the second fixing component, as well as the debugging and installation of the synchronous shielding group.
[0024] S2: Install the three sets of decorative panels onto the decorative panel connector, the first fixing component, and the second fixing component in sequence to complete the initial installation of the large-span decorative aluminum panel;
[0025] S3: By manipulating the first decorative panel frame, the second decorative panel frame, and the third decorative panel frame respectively to adjust the height position and angle of the corresponding decorative panels, the rough connection of the large-span decorative aluminum panels is completed.
[0026] S4: Activate several sensors and observe the pressure and displacement changes of the first, second, and third trim panel frames through the motion control device. Utilize the prompts from the motion control device and the actual installation conditions on site to control the first, second, and third trim panel frames to change their lengths again, finely adjusting the position of each decorative panel until each decorative panel is precisely aligned with its corresponding trim panel frame to complete the installation.
[0027] Compared with the prior art, the present invention has the following beneficial effects:
[0028] 1. This adjustable large-span roof decorative aluminum panel frame, by setting up a first, second, and third decorative panel frame with identical structure and consistent effect, allows each frame to change its length independently. This ensures that the position of the corresponding decorative panels can be adjusted, and after the initial installation, the large-span roof decorative aluminum panel can be finely adjusted a second time. This solves the drawback of traditional installation methods that cannot make secondary adjustments to the entire large-span roof decorative aluminum panel, ensuring precise control of the installation of the large-span roof decorative aluminum panel, effectively solving the deviation problem that exists during the installation of large-span roof decorative aluminum panels, ensuring installation accuracy and quality.
[0029] 2. During the installation of this adjustable large-span roof decorative aluminum panel frame and decorative panels, the on-site installation personnel only need to roughly install the decorative panels to the corresponding positions and connect and fix them in a simple manner. Subsequent adjustments and fine connections can be automatically completed by the first decorative panel frame, the second decorative panel frame, and the third decorative panel frame. The operation is simple and does not require a large number of personnel to perform auxiliary work or other complex processes. This effectively improves the installation accuracy while greatly improving the installation efficiency and construction safety performance.
[0030] 3. The adjustable large-span roof decorative aluminum panel frame and decorative panel use a large number of bolts to fix the connection during the installation process, which greatly reduces the use of welding process. At the same time, the exhaust blowing station can accurately blow air at the welding area during welding, thereby quickly blowing away the harmful gases and waste generated during welding from the construction workers, thus effectively reducing the impact of welding harmful gases and waste on the health of the construction workers. Attached Figure Description
[0031] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0032] Figure 1 A perspective view of the present invention is shown;
[0033] Figure 2 A front view of the invention is shown;
[0034] Figure 3 A right view of the invention is shown;
[0035] Figure 4 A partial front view of the present invention is shown;
[0036] Figure 5 The present invention is shown. Figure 1 Enlarged view of point A;
[0037] Figure 6 The present invention is shown. Figure 2 Enlarged view of point B;
[0038] Figure 7 The present invention is shown. Figure 4 Enlarged view of point C;
[0039] Figure 8 The present invention is shown. Figure 4 Enlarged view of point D;
[0040] Figure 9 A schematic diagram of the motion control device of the present invention is shown.
[0041] In the figure, the same reference numerals represent the same structural element, wherein:
[0042] 1. Concrete structure; 2. First decorative panel frame; 21. Upper connecting end; 22. Electric jack; 23. Force transmission rod; 24. Lower connecting end; 25. Button; 26. Hollow rectangular plate; 27. Annular piece; 28. Elliptical piece; 29. Elliptical hole; 3. Decorative panel connector; 31. Square plate; 32. Connecting pile; 33. Threaded column; 34. Transmission rod; 4. First fixing component; 41. First aluminum alloy crossbeam; 42. Patch; 5. Second fixing component; 51. Second aluminum alloy crossbeam; 52. Second bolt; 53. Second steel tube; 54. Third steel tube; 6. Decorative panel; 61 62. Decorative aluminum panel base layer; 7. Second decorative panel frame; 8. Third decorative panel frame; 9. Synchronous shielding assembly; 91. Tail abutment block; 92. Main baffle; 93. Corner block; 94. Groove; 95. Secondary baffle; 10. Exhaust and blow-out workstation; 101. Vacuum suction cup; 102. Bearing work plate; 103. Storage tank; 104. Air pump; 105. Gooseneck tube; 106. Air port; 107. Holding rod; 108. Sealing ring; 11. Monitoring mechanism; 111. Sensor; 112. Motion control device; 12. Panel; 13. First bolt; 14. First steel tube. Detailed Implementation
[0043] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.
[0044] Please see Figure 1 , Figure 1 A perspective view of the present invention is shown; please refer to [link / reference]. Figure 2 , Figure 2 A front view of the invention is shown; please refer to [link / reference]. Figure 3 , Figure 3 A right view of the invention is shown; please refer to [link / reference]. Figure 4 , Figure 4 A partial front view of the invention is shown; please refer to... Figure 5 , Figure 5 The present invention is shown. Figure 1 Please refer to the enlarged view at point A; Figure 6 , Figure 6 The present invention is shown. Figure 2 Please refer to the enlarged view at point B; Figure 7 , Figure 7 The present invention is shown. Figure 4 Enlarged view at point C; please refer to [link / reference]. Figure 8 , Figure 8 The present invention is shown. Figure 4 Enlarged view of point D; please refer to [link / reference]. Figure 9 , Figure 9 A schematic diagram of the motion control device of the present invention is shown; as follows: Figure 1-9As shown, an adjustable large-span roof decorative aluminum panel frame includes: a concrete structure 1; a first decorative panel frame 2 integrated with the top of the concrete structure 1 for length adjustment; a decorative panel connector 3 installed at the end of the first decorative panel frame 2 for transition connection; a first fixing component 4 and a second fixing component 5 installed on the right side of the concrete structure 1 and arranged vertically; three sets of decorative panels 6 respectively installed on the decorative panel connector 3, the first fixing component 4, and the second fixing component 5; a second decorative panel frame 7 connected to the right side of the concrete structure 1; a third decorative panel frame 8 vertically connected to the end of the second decorative panel frame 7 and connected to the second fixing component 5; a synchronous shielding group 9 set on the third decorative panel frame 8 and the decorative panels 6; an exhaust workstation 10 set on the concrete structure 1 for rapid dissipation of harmful gases and waste residue; and a monitoring mechanism 11 set on the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8 for real-time feedback of pressure and displacement changes.
[0045] The top of the first decorative panel frame 2 is equipped with a panel 12 for increasing the surface area. Several first bolts 13 are spirally passed through the four corners of the panel 12 and embedded in the concrete structure 1. The use of more bolts to achieve connection and fixation reduces the use of welding processes, speeds up the installation and construction, and reduces harmful gases and waste caused by welding.
[0046] The second decorative panel frame 7 is equipped with several first steel tubes 14, all of which are integrally connected to the concrete structure 1. These steel tubes, also known as square steel, are widely used in the construction industry. Square steel is strong, lightweight, and corrosion-resistant, effectively improving the stability and safety of buildings. This adjustable large-span roof decorative aluminum panel frame, by setting up first decorative panel frames 2, second decorative panel frames 7, and third decorative panel frames 8 with identical structures and consistent effects, allows for individual length adjustments, ensuring the position of the corresponding decorative panels 6 can be adjusted. This enables secondary fine-tuning of the large-span roof decorative aluminum panel after initial installation, overcoming the drawback of traditional installation methods that cannot perform secondary adjustments to the entire large-span roof decorative aluminum panel. It ensures precise control of the installation of the large-span roof decorative aluminum panel, effectively solving the deviation problem during installation, ensuring installation accuracy and quality. During the installation of the adjustable large-span roof decorative aluminum panel frame and decorative panel 6, on-site installation personnel only need to roughly install the decorative panel 6 to the corresponding position and connect and fix it in a simple manner. Subsequent adjustments and fine connections can be automatically completed by the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8. The operation is simple and does not require a large number of personnel to perform auxiliary work or other complex processes. This effectively improves the installation accuracy, greatly improves the installation efficiency and construction safety. During the installation of the adjustable large-span roof decorative aluminum panel frame and decorative panel 6, a large number of bolts are used to fix the connection, which greatly reduces the use of welding. At the same time, the exhaust workstation 10 can accurately blow air at the welding area during welding, thereby quickly blowing away the harmful gases and waste generated during welding from the construction personnel, thus effectively reducing the impact of welding harmful gases and waste on the health of the construction personnel.
[0047] Optionally, the decorative panel 6 includes a decorative aluminum plate base layer 61 for strengthening installation and preventing falling, and a decorative aluminum plate surface layer 62 covering the decorative aluminum plate base layer 61.
[0048] The first fixing component 4 includes a first aluminum alloy beam 41 installed on the top right side of the concrete structure 1 and used to provide a positioning and installation base, and a patch 42 installed on the first aluminum alloy beam 41 and used to fill the gaps, providing a reliable and stable installation base for the installation of the decorative panel 6 here.
[0049] The decorative aluminum plate base 61 is installed on the first aluminum alloy beam 41 and closely attached to the patch 42;
[0050] The second fixing component 5 includes two second aluminum alloy beams 51 mirror-mounted and attached to the right side of the concrete structure 1, a plurality of second bolts 52 spirally mounted on the two second aluminum alloy beams 51, a second steel tube 53 obliquely hinged to the second aluminum alloy beam 51 located on the lower layer, and a third steel tube 54 installed at the end of the second steel tube 53 and used to create a vertical surface, ensuring that the angle and position of the decorative panel 6 can be adjusted under the action of the second steel tube 53 after the decorative panel 6 is installed on the second steel tube 53;
[0051] The decorative aluminum plate base 61 is installed on the second steel tube 53;
[0052] The end of the third decorative panel frame 8 is connected to the third steel tube 54.
[0053] Optionally, the first decorative panel frame 2 includes an upper connecting end 21 on which the panel 12 is installed, an electric jack 22 installed in the upper connecting end 21 for downward lifting, a force transmission rod 23 connected to the output end of the electric jack 22, a lower connecting end 24 connected to the force transmission rod 23, and a button 25 installed on the lower connecting end 24 and electrically connected to the electric jack 22 for convenient start and stop of the electric jack 22. The electric jack 22 is an existing heavy lifting tool, ensuring that after driving the electric jack 22, the force transmission rod 23 can be pressed downward from the upper connecting end 21 and then pulled upward, thereby passing through a series of... After transmission, the decorative panel 6 is lifted or lowered. The structure of the second decorative panel frame 7 and the third decorative panel frame 8 is the same as that of the first decorative panel frame 2. After driving the third decorative panel frame 8, the decorative panel 6 installed on the second steel tube 53 can be pushed to rotate at the hinge point between the second steel tube 53 and the second aluminum alloy crossbeam 51. After driving the second decorative panel frame 7, the third decorative panel frame 8 can be lifted or lowered, thus achieving the adjustment of the angle of the decorative panel 6. This ensures that the first decorative panel frame 2, the second decorative panel frame 7 and the third decorative panel frame 8 can be controlled to complete the precise adjustment of the position of the corresponding decorative panel 6, thereby ensuring the accuracy and high quality of installation.
[0054] Optionally, the decorative panel connector 3 includes a square plate 31 installed at the end of the lower connecting end 24, a connecting post 32 installed on the decorative aluminum plate base 61, a threaded post 33 that spirally connects the square plate 31 and the connecting post 32 at both ends for quick assembly and disassembly, and two transmission rods 34 installed on both sides of the connecting post 32 and connected to both ends of the decorative aluminum plate base 61. This ensures that the force transmitted from the electric jack 22 is distributed and transmitted to the decorative aluminum plate base 61, making it evenly stressed. This prevents the decorative panel 6 from tilting due to a single stress point when adjusting its position, thus affecting the installation accuracy. At the same time, the threaded post 33 connects the square plate 31 and the connecting post 32, enabling quick assembly and disassembly and ensuring the construction progress.
[0055] Optionally, the synchronous shielding assembly 9 includes a tail abutment block 91 installed at the end of the upper connecting end 21 in the third decorative panel frame 8, a main baffle 92 connected to the tail abutment block 91, a corner block 93 connected to the ends of the decorative aluminum plate base layer 61 and the decorative aluminum plate surface layer 62 and at the same horizontal height as the main baffle 92, a groove 94 formed on the main baffle 92 and the corner block 93, and a secondary baffle 95 fitted into the groove 94. When the third decorative panel frame 8 pushes the decorative panel 6 to adjust its position, that is, as the decorative aluminum plate base layer 61 and the decorative aluminum plate surface layer 62 move away from or closer to the main baffle 92, the secondary baffle 95 can follow its movement and move accordingly, that is, it is gradually pulled out of the groove 94 or gradually pushed into the groove 94, thereby ensuring that even if the decorative aluminum plate base layer 61 and the decorative aluminum plate surface layer 62 shift, the gap can be covered to prevent gaps from affecting the aesthetics of the construction.
[0056] Optionally, the exhaust workstation 10 includes two vacuum suction cups 101 coaxially arranged on the concrete structure 1, a support work plate 102 mounted on the two vacuum suction cups 101, the vacuum suction cups 101 being existing vacuum equipment actuators connected to external vacuum equipment via connecting pipes, a storage tank 103 mounted on the support work plate 102 for temporarily storing gas, an air pump 104 mounted on the support work plate 102 and connected to the storage tank 103 for compressing air and pumping it outwards, two gooseneck tubes 105 connected to the storage tank 103 for expelling air outwards, air inlets 106 mounted outwardly at the ends of the two gooseneck tubes 105 for expanding the gas in four directions, and two gripping rods 107 mounted on both sides of the support work plate 102. The gooseneck tubes 105 are existing metal parts that can be bent arbitrarily and oriented to determine their direction when needed. During welding, the two vacuum suction cups 101 are pressed onto the corresponding positions on the concrete structure 1 according to the welding location, ensuring that the gooseneck tube 105 can be pulled to the vicinity of the welding point. Then, the external vacuum equipment is started to begin suction, creating negative air pressure inside the suction cups of the two vacuum suction cups 101, thereby firmly adhering them to the concrete structure 1. At the same time, the air pump 104 is started to pump air, causing the two air ports 106 to blow air outwards, quickly blowing away the harmful gases and waste generated during welding to prevent construction personnel from inhaling them, thus effectively reducing the impact on the health of construction personnel. The two vacuum suction cups 101 can be quickly removed and fixed in another location, providing high flexibility and ensuring that they can adapt well to the construction schedule without hindering the construction speed. The two gooseneck tubes 105 and the two air ports 106 can blow air to different places, thus ensuring that welding can be performed at multiple points simultaneously, thereby improving construction efficiency.
[0057] Optionally, the first decorative panel frame 2 further includes a hollow rectangular plate 26 installed at the opening of the upper connecting end 21, an annular piece 27 installed on the force transmission rod 23, and a plurality of elliptical pieces 28 circumferentially installed on the annular piece 27 and used to abut against the hollow rectangular plate 26, to ensure that the movement of the force transmission rod 23 can be limited and prevent the annular piece 27 from rushing out of the upper connecting end 21, thereby preventing construction personnel from blindly operating the electric jack 22 to exceed the specified stroke, so as to prevent the output end of the electric jack 22 from being stuck, or causing the electric jack 22 to operate abnormally or cause an accident, and ensuring safe and stable operation.
[0058] Optionally, the first decorative panel frame 2 also includes a plurality of elliptical holes 29 circumferentially opened along the upper connecting end 21 to ensure that the amount of air entering the upper connecting end 21 is increased, thereby ensuring that the electric jack 22 can be effectively cooled, so as to prevent the electric jack 22 from failing to obtain a good heat dissipation environment during continuous operation or in hot weather.
[0059] The exhaust station 10 also includes two sealing rings 108 installed at the connection between the two gooseneck pipes 105 and the storage tank 103 to enhance the sealing performance and prevent gas from escaping, thereby ensuring the strength of the air force blown out by the two air ports 106 and ensuring the evacuation effect of the exhaust station 10 on harmful gases and waste residue.
[0060] Optionally, the monitoring mechanism 11 includes a plurality of sensors 111 respectively installed on the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8, and an external motion control device 112. This ensures that the pressure and displacement changes of the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8 can be accurately measured by the plurality of sensors 111 and fed back to the motion control device 112 in real time. This provides auxiliary work for the on-site workers and ensures that the installation accuracy between the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8 and each decorative panel 6 is controlled within a minimum range, thereby ensuring that the large-span roof decorative aluminum panels are accurately installed on the concrete structure 1.
[0061] Furthermore, in another embodiment of the invention, a construction method for an adjustable large-span roof decorative aluminum panel frame is provided, comprising the following steps:
[0062] S1: First, press the panel 12 firmly onto the concrete structure 1 and install several first bolts 13 to fix the first decorative panel frame 2. Then, install the decorative panel connector 3 onto the first decorative panel frame 2. Then, fix the second decorative panel frame 7 to the appropriate position through several first steel tubes 14. Finally, complete the connection between the third decorative panel frame 8 and the second decorative panel frame 7 and the second fixing component 5, as well as the debugging and installation of the synchronous shielding group 9.
[0063] S2: Install the three sets of decorative panels 6 onto the decorative panel connector 3, the first fixing component 4 and the second fixing component 5 in sequence to complete the initial installation of the large-span decorative aluminum panel;
[0064] S3: By manipulating the first decorative panel frame 2, the second decorative panel frame 7 and the third decorative panel frame 8 respectively to adjust the height position and angle of the corresponding decorative panel 6, the rough connection of the large-span decorative aluminum panel is completed.
[0065] S4: Activate several sensors 111, and observe the pressure and displacement changes of the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8 through the motion control device 112. Utilize the prompts from the motion control device 112 and the actual installation conditions on site to control the first decorative panel frame 2, the second decorative panel frame 7, and the third decorative panel frame 8 to change their own lengths again, and make fine adjustments to the position of each decorative panel 6 until each decorative panel 6 is precisely aligned with the corresponding decorative panel frame to complete the installation.
[0066] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. An adjustable large-span roof decorative aluminum panel frame, characterized in that, include: A concrete structure (1), a first decorative panel frame (2) integrally connected to the top of the concrete structure (1) and used for length adjustment, a decorative panel connector (3) installed at the end of the first decorative panel frame (2) and used to form a transition connection, a first fixing component (4) and a second fixing component (5) installed on the right side of the concrete structure (1) and arranged vertically in sequence, three sets of decorative panels (6) respectively installed on the decorative panel connector (3), the first fixing component (4) and the second fixing component (5), and a first fixing component (4) connected to the right side of the concrete structure (1). The second decorative panel frame (7), the third decorative panel frame (8) vertically connected to the end of the second decorative panel frame (7) and connected to the second fixing component (5), the synchronous shielding group (9) set on the third decorative panel frame (8) and the decorative panel (6), the exhaust workstation (10) set on the concrete structure (1) and used for rapid dispersal of harmful gases and waste residue, and the monitoring mechanism (11) set on the first decorative panel frame (2), the second decorative panel frame (7) and the third decorative panel frame (8) and used for real-time feedback of pressure and displacement change values. The first decorative panel frame (2) is fitted with a panel (12) for increasing the surface area at the top, and several first bolts (13) are spirally passed through the four corners of the panel (12) and embedded in the concrete structure (1); The second decorative panel frame (7) is equipped with a plurality of first steel tubes (14), and the plurality of first steel tubes (14) are integrally connected to the concrete structure (1); The decorative panel (6) includes a decorative aluminum plate base layer (61) for strengthening installation strength and preventing falling, and a decorative aluminum plate surface layer (62) installed on the decorative aluminum plate base layer (61). The first fixing component (4) includes a first aluminum alloy beam (41) mounted on the top right side of the concrete structure (1) and used to provide a positioning mounting base, and a patch (42) mounted on the first aluminum alloy beam (41) and used to fill gaps. The decorative aluminum plate base (61) is installed on the first aluminum alloy beam (41) and closely attached to the patch (42). The second fixing component (5) includes two second aluminum alloy beams (51) mirror-mounted and attached to the right side of the concrete structure (1), a plurality of second bolts (52) screwed onto the two second aluminum alloy beams (51), a second steel tube (53) obliquely hinged to the second aluminum alloy beam (51) located on the lower layer, and a third steel tube (54) installed at the end of the second steel tube (53) and used to create a vertical surface. The decorative aluminum plate base (61) is installed on the second steel tube (53); The end of the third decorative panel frame (8) is connected to the third steel tube (54); The first decorative panel frame (2) includes an upper connecting end (21) on which the panel (12) is installed, an electric jack (22) installed in the upper connecting end (21) for downward lifting, a force transmission rod (23) connected to the output end of the electric jack (22), a lower connecting end (24) connected to the force transmission rod (23), and a button (25) installed on the lower connecting end (24) and electrically connected to the electric jack (22) for convenient start and stop of the electric jack (22): The decorative panel connector (3) includes a square plate (31) installed at the end of the lower connecting end (24), a connecting post (32) installed on the decorative aluminum plate base (61), a threaded post (33) that is spirally connected at both ends to the square plate (31) and the connecting post (32) and is used to achieve quick assembly and disassembly, and two transmission rods (34) installed on both sides of the connecting post (32) and connected to both ends of the decorative aluminum plate base (61).
2. The adjustable large-span roof decorative aluminum panel frame as described in claim 1, characterized in that, The synchronous shielding assembly (9) includes a tail abutment block (91) installed at the end of the upper connecting end (21) in the third decorative panel frame (8), a main baffle (92) connected to the tail abutment block (91), a corner block (93) connected to the end of the decorative aluminum plate base layer (61) and the decorative aluminum plate surface layer (62) and at the same horizontal height as the main baffle (92), a groove (94) opened on the main baffle (92) and the corner block (93), and a secondary baffle (95) fitted in the groove (94).
3. The adjustable large-span roof decorative aluminum panel frame as described in claim 2, characterized in that, The exhaust workstation (10) includes two vacuum suction cups (101) arranged coaxially on the concrete structure (1), a support work plate (102) installed on the two vacuum suction cups (101), a storage tank (103) installed on the support work plate (102) for temporarily storing gas, an air pump (104) installed on the support work plate (102) and connected to the storage tank (103) for compressing air and pumping it outward, two gooseneck pipes (105) connected to the storage tank (103) for supplying air outward, air inlets (106) installed at the ends of the two gooseneck pipes (105) in an outward-expanding shape for expanding the gas in four directions, and two gripping rods (107) installed on both sides of the support work plate (102).
4. The adjustable large-span roof decorative aluminum panel frame as described in claim 3, characterized in that, The first decorative panel frame (2) also includes a hollow rectangular plate (26) installed at the opening of the upper connecting end (21), an annular piece (27) installed on the force transmission rod (23), and a plurality of elliptical pieces (28) circumferentially installed on the annular piece (27) and used to abut against the hollow rectangular plate (26).
5. An adjustable large-span roof decorative aluminum panel frame as described in claim 4, characterized in that, The first decorative panel frame (2) also includes a plurality of elliptical holes (29) circumferentially opened along the upper connecting end (21). The blowdown station (10) also includes two sealing rings (108) installed at the connection between the two gooseneck pipes (105) and the storage tank (103).
6. The adjustable large-span roof decorative aluminum panel frame as described in claim 5, characterized in that, The monitoring mechanism (11) includes a plurality of sensors (111) respectively installed on the first decorative panel frame (2), the second decorative panel frame (7) and the third decorative panel frame (8), and an external motion control device (112).
7. The construction method of the adjustable large-span roof decorative aluminum panel frame as described in claim 6 is as follows: S1: First, press the panel (12) firmly onto the concrete structure (1) and install several first bolts (13) to fix the first decorative panel frame (2). Then, install the decorative panel connector (3) onto the first decorative panel frame (2). Then, fix the second decorative panel frame (7) to the appropriate position through several first steel tubes (14), and complete the connection between the third decorative panel frame (8) and the second decorative panel frame (7) and the second fixing component (5), as well as the debugging and installation of the synchronous shielding group (9). S2: Install the three sets of decorative panels (6) onto the decorative panel connector (3), the first fixing component (4), and the second fixing component (5) in sequence to complete the initial installation of the large-span decorative aluminum panel; S3: By manipulating the first decorative panel frame (2), the second decorative panel frame (7) and the third decorative panel frame (8) respectively, adjust the height position and angle of the corresponding decorative panel (6) to complete the rough connection of the large-span decorative aluminum panel as a whole. S4: Activate several sensors (111), and observe the values of pressure and displacement changes of the first decorative panel frame (2), the second decorative panel frame (7) and the third decorative panel frame (8) through the motion control device (112). Using the prompts of the motion control device (112) and the actual installation situation on site, control the first decorative panel frame (2), the second decorative panel frame (7) and the third decorative panel frame (8) to change their own length again, and make fine adjustments to the position of each decorative panel (6) until each decorative panel (6) is precisely connected with the corresponding decorative panel frame to complete the installation.