Constructions of high and large copper flame back light artistic curtain wall with complex surface and construction method and process thereof

Through innovative design of the keel frame, curtain wall installation components, and reinforced connection components, the problem of precision control in the construction of complex curved art curtain walls has been solved, achieving efficient and stable wall panel installation and improving construction progress and quality.

CN120592394BActive Publication Date: 2026-03-03CHINA CONSTR EIGHT ENG DIV CORP LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

In the construction of complex curved art curtain walls, the difficulty in controlling the precision of high-altitude operations leads to errors in the installation position of the keel frame compared with the design drawings, large errors in the tilt angle of the wall panels, and excessive gaps. This necessitates multiple dismantling and modification of the keel frame, affecting the construction progress and quality.

Method used

The design adopts a combination of keel frame, curtain wall installation components and reinforced connection components, including wall panels, hanging mesh, connecting bolts, reinforced sleeves, embedded blocks, longitudinally embedded curved plates, limiting grooves and other structures. Through the cooperation of limiting strips and limiting grooves, the wall panels can be precisely adjusted and fixed, avoiding manual dismantling and modification of the keel frame.

Benefits of technology

This enabled precise installation of wall panels, reduced construction errors, improved construction efficiency and quality, and enhanced the stability and service life of the curtain wall.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a complex curved surface tall copper flame backlit art curtain wall structure and its construction method, relating to the field of curtain wall construction technology. Connecting screws are welded at the four corners of the hanging mesh, and a reinforcing sleeve is provided at the top of the connecting screw. An embedded block is embedded inside the reinforcing sleeve, and a connecting screw is welded to one end of the embedded block. The connecting screw and the connecting screw are connected through a screw hole. A longitudinally embedded curved plate is welded to the other end of the embedded block via a hexagonal rod. An embedded cylinder is welded to one side of the longitudinally embedded curved plate, and a longitudinal sleeve curved plate is connected to one side of the longitudinally embedded curved plate. An outer sleeve is welded to one side of the longitudinal sleeve curved plate. This invention allows for horizontal and vertical rotation adjustment of the wall panel by changing the position of the limiting strip inside the limiting groove. It can accurately install the wall panel in the corresponding position without manually dismantling or modifying the keel frame, making construction convenient and accelerating the overall construction progress.
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Description

Technical Field

[0001] This invention relates to the field of curtain wall construction technology, specifically to the structure, construction method, and process of a complex curved, tall copper flame-backlit artistic curtain wall. Background Technology

[0002] During the construction of complex curved art curtain walls, the curtain wall frame is first installed according to the design drawings, and then the curved wall panels at the corresponding positions are assembled one by one when installing the curtain wall.

[0003] In the Chinese patent application number CN202211060139.6 entitled "An armored curtain wall structure and its construction method", the patent forms multiple undulating installation surfaces on the surface of the building by setting an inner frame, an outer frame and a folding keel, and installing the curtain wall on each undulating installation surface to realize the armored curtain wall structure and solve the construction problem of the armored curtain wall.

[0004] During the installation of existing curtain walls, the difficulty in controlling the precision of high-altitude operations leads to poor installation accuracy, resulting in discrepancies between the theoretical installation position of the keel frame and the design drawings. If the installation error of the keel frame is large, the tilt angle of the subsequent wall panel installation will also deviate significantly from the theoretical tilt angle, ultimately causing excessive gaps between the wall panels. To ensure construction quality, the keel frame needs to be manually dismantled and modified multiple times, which is cumbersome and affects the overall construction progress. Summary of the Invention

[0005] This invention provides a complex curved surface tall copper flame backlit art curtain wall structure, its construction method, and its process. It can effectively solve the problems in the background technology mentioned above, where the difficulty in controlling the precision of high-altitude operations and the poor control of installation precision lead to errors between the theoretical keel frame installation position and the design drawings. If the installation error of the keel frame is large, the tilt angle of the subsequent wall panel installation will also have a large error compared with the theoretical tilt angle, ultimately resulting in excessive gaps between the wall panels. To ensure construction quality, the keel frame needs to be manually dismantled and modified multiple times, which is cumbersome and affects the overall construction progress.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a complex curved surface tall copper flame backlit art curtain wall structure, including a keel frame, a curtain wall installation component is provided on one side of the keel frame, and the curtain wall installation component includes a wall panel;

[0007] A wall panel is installed on one side of the keel frame. There are two wall panels. A hanging mesh is welded to the inner side of the wall panel. A connecting screw is welded to each of the four corners of the hanging mesh. A reinforcing sleeve is opened at the top of the connecting screw. An embedded block is embedded inside the reinforcing sleeve. A connecting screw is welded to one end of the embedded block. The connecting screw is connected to the connecting screw through a screw hole.

[0008] The other end of the embedded block is welded with a longitudinally embedded curved plate via a hexagonal rod. An inner cylinder is welded to one side of the longitudinally embedded curved plate. A longitudinal sleeve curved plate is connected to one side of the longitudinally embedded curved plate. An outer sleeve is welded to one side of the longitudinal sleeve curved plate. The longitudinally embedded curved plate and the longitudinal sleeve curved plate are fixed together by fixing bolts.

[0009] According to the above technical solution, the top and bottom of the reinforcing sleeve are provided with fixing holes, and the top and bottom of the inner block are provided with fixing slides. The fixing slides are connected to fixing heads by fixing springs, and the fixing heads are embedded in the adjacent fixing holes.

[0010] According to the above technical solution, the outer side of the fixing head is in contact with the inner side of the adjacent fixing slide, and both the outer side of the fixing head and the inner side of the fixing slide are smooth surfaces.

[0011] According to the above technical solution, one end of the longitudinal sleeve bending plate is connected to a transverse embedded bending plate, one side of the transverse embedded bending plate is connected to a transverse sleeve bending plate, an inner sleeve is also welded to one side of the transverse embedded bending plate, an outer sleeve is also welded to one side of the transverse sleeve bending plate, and the transverse embedded bending plate and the transverse sleeve bending plate are also fixed by fixing bolts.

[0012] According to the above technical solution, a number of limiting grooves are provided on one end of the inner side of the outer sleeve, and a number of limiting strips are provided on one end of the outer side of the inner sleeve. The inner sleeve is embedded inside the adjacent outer sleeve.

[0013] According to the above technical solution, the fixing bolts penetrate the interior of adjacent inner and outer sleeves, the number of limiting strips is equal to the number of limiting grooves, and the limiting strips are embedded in the interior of adjacent limiting grooves.

[0014] According to the above technical solution, a fixed arc plate is connected to one end of the horizontal sleeve bending plate, and a movable arc plate is connected to one side of the fixed arc plate by several bolts. The fixed arc plate and the movable arc plate are fixed to the outside of the keel frame.

[0015] According to the above technical solution, a reinforcing connection component is provided between the two wall panels, and the reinforcing connection component includes a connection hole;

[0016] The wall panel has two connecting holes at the top and bottom. A reinforcing screw is installed inside the two adjacent connecting holes. The top of the reinforcing screw is connected to a mating screw through a threaded hole. A limiting piece is welded to the top of the mating screw. A reinforcing spring is sleeved on the outside of the reinforcing screw. A sleeve ring is welded to both ends of the reinforcing spring. The bottom surface of the sleeve ring at the bottom is in contact with the inner side of the adjacent wall panel, and the top surface of the sleeve ring at the top is in contact with the bottom surface of the adjacent limiting piece.

[0017] The reinforcing screw has locking grooves on both sides of its outer surface, and a limiting pad is embedded inside the locking groove. A reinforcing nut is connected to the bottom of the outer surface of the reinforcing screw, and the reinforcing nut is located at the bottom of the limiting pad.

[0018] According to the above technical solution, three connecting rods are welded at equal intervals on the top of the wall panel, and three connecting pipes are welded at equal intervals on the bottom inner side of the wall panel, with the connecting rods embedded inside the adjacent connecting pipes.

[0019] This invention also provides a construction method for a complex curved, tall copper flame-backlit art curtain wall. The construction operation according to the above technical solution includes the following steps:

[0020] S1. Hold the insert block, press the fixing head into the fixing slide, align the connecting screw with the corresponding connecting screw tube, rotate the insert block, the connecting screw connects with the connecting screw tube, and the fixing head will be embedded in the fixing hole;

[0021] S2. Fit the fixed arc plate to the keel frame, and use bolts to fix the fixed arc plate and the movable arc plate to the keel frame;

[0022] S3. Repeat steps S and S to connect all the corresponding components at the four corners of the wall panel, thus completing the initial fixing of a wall panel.

[0023] S4. Insert the butt rod at the top of one wall panel into the butt rod at the bottom of the other wall panel;

[0024] S5. Insert the reinforcing screw into the connection hole between two adjacent wall panels, put the sleeve ring and reinforcing spring on the outside of the reinforcing screw, connect the butt screw to the top of the reinforcing screw, press the limiting piece, insert the inner side of the limiting pad into the snap groove, loosen the limiting piece, and tighten the reinforcing nut.

[0025] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0026] 1. The system is equipped with curtain wall installation components. When the installation angle of the wall panel deviates significantly from the designed installation angle, loosen all the fixing bolts, pull out the inner sleeve to disengage the limiting strip from the limiting groove, and keep the inner sleeve inside the outer sleeve. Rotate the inner sleeve to adjust the horizontal and vertical rotation of the wall panel according to the required installation angle. When the installation angle of the wall panel meets the required installation angle, push the inner sleeve to push the limiting strip into the limiting groove. The limiting groove limits the limiting strip, and the inner sleeve can no longer rotate. Tighten all the fixing bolts with a wrench to fully fix the corresponding longitudinal embedded bending plate, longitudinal sleeve bending plate, horizontal embedded bending plate, and horizontal sleeve bending plate. By changing the different positions of the limiting strip inside the limiting groove, the horizontal and vertical rotation of the wall panel can be adjusted. The wall panel can be accurately installed in the corresponding position without manual dismantling and modification of the keel frame, which is convenient for construction and speeds up the overall construction progress.

[0027] After the connecting screw and the connecting tube are connected, the fixing head is embedded in the fixing hole. When the wall panel vibrates, because the fixing head is embedded in the fixing hole, the fixing head limits the inner block, and the connecting screw will not move relative to the connecting tube, making the curtain wall installation more secure and the construction quality better.

[0028] 2. Equipped with reinforced connection components, when installing two adjacent wall panels, insert the butt joint rod at the top of one wall panel into the butt joint pipe at the bottom of the other wall panel. At this time, the two wall panels are aligned, requiring no manual adjustment, making construction convenient and quick.

[0029] Insert the reinforcing screw into the connection hole between two adjacent wall panels. Then, put the sleeve ring and reinforcing spring on the outside of the reinforcing screw. Next, connect the butt screw to the top of the reinforcing screw. Press the limiting piece, and the reinforcing spring is compressed. When the snap-fit ​​groove moves from the inside of one wall panel to the inside of another wall panel, insert the inside of the limiting pad into the snap-fit ​​groove. Release the limiting piece, and the reinforcing spring will cause the reinforcing screw to spring back. The limiting pad will fit against the inside of the adjacent wall panel, limiting the springback of the reinforcing screw. Under the action of the reinforcing spring, and with the connection between the reinforcing screw and the reinforcing nut, the contact surface between the two adjacent wall panels is tighter, and the overall construction quality of the curtain wall is better.

[0030] In summary, when the curtain wall vibrates, the fixing head in the curtain wall installation component limits the embedded block, and the connecting screw will not move relative to the connecting tube. The limiting pad in the reinforced connection component is made of rubber. When the wall panel vibrates, the rubber limiting pad can absorb the vibration. The two components work together to reduce the damage of vibration to the curtain wall and extend the service life of the curtain wall. Attached Figure Description

[0031] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0032] In the attached diagram:

[0033] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0034] Figure 2 This is a structural schematic diagram of the curtain wall installation component of the present invention;

[0035] Figure 3 This is a schematic diagram of the installation structure of the connecting solenoid of the present invention;

[0036] Figure 4 This invention comes from Figure 3 Enlarged view of region A;

[0037] Figure 5This is a schematic diagram of the mounting structure of the fixing head of the present invention;

[0038] Figure 6 This is a schematic diagram of the installation structure of the inner tube of the present invention;

[0039] Figure 7 This is a schematic diagram of the installation structure of the outer sleeve of the present invention;

[0040] Figure 8 This is a schematic diagram of the structure of the reinforced connection component of the present invention.

[0041] Figure 9 This invention comes from Figure 8 Enlarged view of region B;

[0042] Figure 10 This is a schematic diagram of the installation structure of the connecting rod of the present invention;

[0043] Figure 11 This is a schematic diagram of the installation structure of the connecting screw of the present invention.

[0044] Figure 12 This is a schematic diagram of the construction method steps of the present invention;

[0045] The diagram shows: 1. The keel frame;

[0046] 2. Curtain wall installation components; 201. Wall panel; 202. Hanging mesh; 203. Connecting bolt; 204. Reinforcing sleeve; 205. Fixing hole; 206. Embedded block; 207. Connecting bolt; 208. Fixing slide; 209. Fixing spring; 210. Fixing head; 211. Hexagonal rod; 212. Longitudinal embedded curved plate; 213. Embedded cylinder; 214. Outer sleeve; 215. Longitudinal sleeve curved plate; 216. Limiting groove; 217. Limiting strip; 218. Fixing bolt; 219. Fixing arc plate; 220. Movable arc plate; 221. Horizontal embedded curved plate; 222. Horizontal sleeve curved plate;

[0047] 3. Reinforced connecting components; 301. Connecting hole; 302. Reinforced screw; 303. Butt screw; 304. Limiting plate; 305. Reinforced spring; 306. Sleeve ring; 307. Snap-fit ​​groove; 308. Limiting pad; 309. Reinforced nut; 310. Butt rod; 311. Butt joint pipe. Detailed Implementation

[0048] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0049] Example: Figure 1-11As shown, the present invention provides a technical solution for constructing a complex curved, tall copper flame-backlit art curtain wall, including a keel frame 1. A curtain wall installation component 2 is provided on one side of the keel frame 1. The curtain wall installation component 2 includes a wall panel 201, a hanging net 202, a connecting screw tube 203, a reinforcing sleeve 204, a fixing hole 205, an inner block 206, a connecting screw 207, a fixing slide 208, a fixing spring 209, a fixing head 210, a hexagonal rod 211, a longitudinally embedded curved plate 212, an inner cylinder 213, an outer sleeve 214, a longitudinally sleeved curved plate 215, a limiting groove 216, a limiting strip 217, a fixing bolt 218, a fixing arc plate 219, a movable arc plate 220, a horizontally embedded curved plate 221, and a horizontally sleeved curved plate 222.

[0050] A wall panel 201 is installed on one side of the keel frame 1. Two wall panels 201 are provided. A hanging mesh 202 is welded to the inner side of each wall panel 201. Connecting screws 203 are welded to the four corners of the hanging mesh 202. A reinforcing sleeve 204 is provided at the top of each connecting screw 203. An insert block 206 is embedded inside the reinforcing sleeve 204. A connecting screw 207 is welded to one end of the insert block 206. The connecting screw 207 is connected to the connecting screw 203 through a screw hole. Fixing holes 205 are provided at the top and bottom of the reinforcing sleeve 204. Fixing slides 208 are provided at the top and bottom of the insert block 206. Fixing heads 210 are connected to the fixing slides 208 through fixing springs 209. The head 210 is embedded in the adjacent fixing hole 205. The inner insert 206 is held and pressed into the fixing slide 208. The inner insert 206 is embedded into the reinforcing sleeve 204. The connecting screw 207 is rotated. When the connecting screw 207 and the connecting tube 203 are connected, the fixing head 210 moves to the position of the fixing hole 205. Under the elastic force of the fixing spring 209, the fixing head 210 will be embedded in the fixing hole 205. The outer side of the fixing head 210 is in contact with the inner side of the adjacent fixing slide 208. Both the outer side of the fixing head 210 and the inner side of the fixing slide 208 are smooth surfaces, so that the fixing head 210 can move stably and smoothly inside the fixing slide 208.

[0051] The other end of the embedded block 206 is welded with a longitudinally embedded curved plate 212 via a hexagonal rod 211. An embedded cylinder 213 is welded to one side of the longitudinally embedded curved plate 212. A longitudinal sleeve curved plate 215 is connected to one side of the longitudinally embedded curved plate 212. An outer sleeve 214 is welded to one side of the longitudinal sleeve curved plate 215. The longitudinally embedded curved plate 212 and the longitudinal sleeve curved plate 215 are fixed together by fixing bolts 218.

[0052] A longitudinal sleeve bend 215 is connected to a transverse embedded bend 221 at one end, and a transverse sleeve bend 222 is connected to one side of the transverse embedded bend 221. An inner sleeve 213 is welded to one side of the transverse embedded bend 221, and an outer sleeve 214 is welded to one side of the transverse sleeve bend 222. The transverse embedded bend 221 and the transverse sleeve bend 222 are also fixed together by fixing bolts 218. Several limiting grooves 216 are opened at one end of the inner side of the outer sleeve 214, and several limiting strips 217 are opened at one end of the outer side of the inner sleeve 213. The inner sleeve 213 is embedded in the interior of the adjacent outer sleeve 214. The fixing bolts 218 pass through the interior of the adjacent inner sleeve 213 and the outer sleeve 214. The number of limiting strips 217 is equal to the number of limiting grooves 216. 7 is embedded inside the adjacent limiting groove 216. When the limiting strip 217 is not embedded inside the limiting groove 216, the inner cylinder 213 can rotate inside the outer sleeve 214. When the limiting strip 217 is embedded inside the limiting groove 216, the inner cylinder 213 cannot rotate inside the outer sleeve 214. The inner cylinder 213 on the longitudinally embedded curved plate 212 is connected to the outer sleeve 214 on the longitudinally sleeved curved plate 215 to adjust the vertical direction of the wall panel 201. The inner cylinder 213 on the transversely embedded curved plate 221 is connected to the outer sleeve 214 on the transversely sleeved curved plate 222 to adjust the horizontal direction of the wall panel 201. The limiting groove 216 and the limiting strip 217 can flexibly cooperate to adjust the tilt angle of the wall panel 201.

[0053] One end of the horizontal curved plate 222 is connected to a fixed arc plate 219. A movable arc plate 220 is connected to one side of the fixed arc plate 219 by several bolts. The fixed arc plate 219 and the movable arc plate 220 are fixed to the outside of the keel frame 1. The wall panel 201 can be fixed to the outside of the keel frame 1 by the cooperation of the fixed arc plate 219 and the movable arc plate 220.

[0054] A reinforced connection assembly 3 is provided between the two wall panels 201. The reinforced connection assembly 3 includes a connection hole 301, a reinforced screw 302, a mating screw 303, a limiting piece 304, a reinforced spring 305, a sleeve ring 306, a snap-fit ​​groove 307, a limiting pad 308, a reinforced nut 309, a mating rod 310, and a mating pipe 311.

[0055] The wall panel 201 has two connecting holes 301 at the top and bottom. A reinforcing screw 302 is installed inside the two adjacent connecting holes 301. The top of the reinforcing screw 302 is connected to a mating screw 303 through a threaded hole. A limiting piece 304 is welded to the top of the mating screw 303. A reinforcing spring 305 is sleeved on the outside of the reinforcing screw 302. A sleeve ring 306 is welded to both ends of the reinforcing spring 305. The bottom surface of the sleeve ring 306 at the bottom is in contact with the inner side of the adjacent wall panel 201, and the top surface of the sleeve ring 306 at the top is in contact with the bottom surface of the adjacent limiting piece 304.

[0056] The reinforcing screw 302 has snap-fit ​​grooves 307 on both sides of its outer side. A limiting pad 308 is embedded inside the snap-fit ​​groove 307. A reinforcing nut 309 is connected to the bottom of the outer side of the reinforcing screw 302. The reinforcing nut 309 is located at the bottom of the limiting pad 308.

[0057] Three connecting rods 310 are welded at equal intervals on the top of the wall panel 201, and three connecting pipes 311 are welded at equal intervals on the bottom inner side of the wall panel 201. The connecting rods 310 are embedded in the interior of the adjacent connecting pipes 311. When two adjacent wall panels 201 are installed, the connecting rods 310 at the top of one wall panel 201 are inserted into the connecting pipes 311 at the bottom of the other wall panel 201. At this time, the connecting holes 301 between the two wall panels 201 are aligned, which facilitates the connection and alignment of the two wall panels 201 and also facilitates the subsequent installation of the reinforcing screws 302.

[0058] like Figure 12 As shown, the construction method for a complex curved, tall copper flame-backlit art curtain wall includes the following steps:

[0059] S1. Hold the insert block 206, press the fixing head 210 into the fixing slide 208, align the connecting screw 207 with the corresponding connecting screw tube 203, rotate the insert block 206, the connecting screw 207 connects with the connecting screw tube 203, and the fixing head 210 will be embedded in the fixing hole 205.

[0060] S2. Fit the fixed arc plate 219 to the keel frame 1, and use bolts to fix the fixed arc plate 219 and the movable arc plate 220 to the keel frame 1.

[0061] S3. Repeat steps S1 and S2. After all the corresponding components at the four corners of the wall panel 201 are connected, the initial fixing of a wall panel 201 is completed.

[0062] S4. Insert the butt rod 310 at the top of one wall panel 201 into the butt tube 311 at the bottom of another wall panel 201;

[0063] S5. Insert the reinforcing screw 302 into the connecting hole 301 between two adjacent wall panels 201, put the sleeve ring 306 and the reinforcing spring 305 on the outside of the reinforcing screw 302, connect the mating screw 303 to the top of the reinforcing screw 302, press the limiting piece 304, insert the inner side of the limiting pad 308 into the snap-fit ​​groove 307, loosen the limiting piece 304, and tighten the reinforcing nut 309.

[0064] The working principle and usage process of this invention are as follows: First, hold the inner insert 206 and press the fixing head 210 into the fixing slide 208. Align the connecting screw 207 with the corresponding connecting screw tube 203. Clamp the hexagonal rod 211 with a wrench and rotate the inner insert 206. When the connecting screw 207 is fully connected to the connecting screw tube 203, the inner insert 206 is fully embedded in the reinforcing sleeve 204, and the fixing head 210 also moves to the position of the fixing hole 205. Under the elastic force of the fixing spring 209, the fixing head 210 will be embedded in the fixing hole 205. Then, attach the fixing arc plate 219 to the keel frame 1 and use bolts to fix the fixing arc plate 219 and the movable arc plate 220 to the keel frame 1. Repeat the above steps until all the corresponding components at the four corners of the wall panel 201 are connected, and the initial fixing of a wall panel 201 is completed.

[0065] When the wind blows the wall panel 201 and causes it to vibrate, the fixing head 210 is embedded in the fixing hole 205 and limits the inner block 206. The connecting screw 207 will not move relative to the connecting screw tube 203, making the installation of the curtain wall more secure and the construction quality better.

[0066] When the installation angle of the wall panel 201 deviates significantly from the designed installation angle, loosen all the fixing bolts 218, pull out the inner sleeve 213, and disengage the limiting strip 217 from the limiting groove 216. At this time, keep the inner sleeve 213 inside the outer sleeve 214, rotate the inner sleeve 213, and adjust the horizontal and vertical rotation of the wall panel 201 according to the required installation angle. When the installation angle of the wall panel 201 meets the required installation angle, push the inner sleeve 213 to push the limiting strip 217 into the limiting groove 216. The limiting groove 216 limits the limiting strip 217, and the inner sleeve 213 can no longer rotate. Tighten all the fixing bolts 218 with a wrench to fully fix the corresponding longitudinal embedded bending plate 212, longitudinal sleeve bending plate 215, horizontal embedded bending plate 221, and horizontal sleeve bending plate 222.

[0067] When there is a large error in the installation position of the keel frame 1, the wall panel 201 can be rotated and adjusted in the horizontal and vertical directions by changing the different positions of the limiting strip 217 inside the limiting groove 216. The wall panel 201 can be accurately installed in the corresponding position without manual disassembly and modification of the keel frame 1, which is convenient for construction and speeds up the overall construction progress.

[0068] When installing two adjacent wall panels 201, insert the connecting rod 310 at the top of one wall panel 201 into the connecting pipe 311 at the bottom of the other wall panel 201. At this time, the two wall panels 201 are aligned and no manual adjustment is required, making construction convenient and quick.

[0069] After aligning two adjacent wall panels 201, the connecting holes 301 on the two wall panels 201 are also aligned. The reinforcing screw 302 is inserted into the connecting hole 301 between the two adjacent wall panels 201. Then, the sleeve ring 306 and reinforcing spring 305 are fitted onto the outside of the reinforcing screw 302. Next, the mating screw 303 is connected to the top of the reinforcing screw 302. At this time, the bottom surface of the sleeve ring 306 at the bottom is in contact with the inner side of the adjacent wall panel 201, and the top surface of the sleeve ring 306 at the top is in contact with the bottom surface of the adjacent limiting piece 304. Pressing the limiting piece 304 compresses the reinforcing spring 305. When the locking groove 307 moves from inside one wall panel 201 to inside another wall panel 201, the inner side of the limiting pad 308 is inserted into the locking groove. Inside the groove 307, the limiting plate 304 is released, and the reinforcing spring 305 drives the reinforcing screw 302 to rebound. The limiting pad 308 fits against the inner side of the adjacent wall panel 201, limiting the rebound of the reinforcing screw 302. Under the action of the elastic force, the limiting pad 308 is fixed. Then, the reinforcing nut 309 is tightened to complete the final fixation of the limiting pad 308. Under the action of the elastic force of the reinforcing spring 305, and with the connection between the reinforcing screw 302 and the reinforcing nut 309, the contact surface between the two adjacent wall panels 201 is tighter, and the overall construction quality of the curtain wall is better. The limiting pad 308 is made of rubber. When the wall panel 201 vibrates, the rubber limiting pad 308 can absorb the vibration, reduce the damage of vibration to the curtain wall, and extend the service life of the curtain wall.

[0070] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A complex curved, tall copper flame-backlit art curtain wall structure, including a keel frame (1), characterized in that, A curtain wall installation component (2) is provided on one side of the keel frame (1), and the curtain wall installation component (2) includes a wall panel (201). A wall panel (201) is installed on one side of the keel frame (1). There are two wall panels (201). A hanging mesh (202) is welded to the inner side of the wall panel (201). A connecting screw tube (203) is welded at each of the four corners of the hanging mesh (202). A reinforcing sleeve (204) is opened at the top of the connecting screw tube (203). An embedded block (206) is embedded inside the reinforcing sleeve (204). A connecting screw (207) is welded to one end of the embedded block (206). The connecting screw (207) and the connecting screw tube (203) are connected through a screw hole. The other end of the embedded block (206) is welded with a longitudinally embedded curved plate (212) via a hexagonal rod (211). An embedded cylinder (213) is welded to one side of the longitudinally embedded curved plate (212). A longitudinal sleeve curved plate (215) is connected to one side of the longitudinally embedded curved plate (212). An outer sleeve (214) is welded to one side of the longitudinal sleeve curved plate (215). The longitudinally embedded curved plate (212) and the longitudinal sleeve curved plate (215) are fixed together by fixing bolts (218). One end of the longitudinal sleeve bending plate (215) is connected to the transverse embedded bending plate (221), and one side of the transverse embedded bending plate (221) is connected to the transverse sleeve bending plate (222). An inner sleeve (213) is also welded to one side of the transverse embedded bending plate (221), and an outer sleeve (214) is also welded to one side of the transverse sleeve bending plate (222). The transverse embedded bending plate (221) and the transverse sleeve bending plate (222) are also fixed by fixing bolts (218).

2. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 1, characterized in that, The reinforcing sleeve (204) has fixing holes (205) at the top and bottom, and the inner block (206) has fixing slides (208) at the top and bottom. The fixing slides (208) are connected to fixing heads (210) by fixing springs (209), and the fixing heads (210) are embedded in the adjacent fixing holes (205).

3. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 2, characterized in that, The outer side of the fixing head (210) is in contact with the inner side of the adjacent fixing slide (208), and both the outer side of the fixing head (210) and the inner side of the fixing slide (208) are smooth surfaces.

4. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 2, characterized in that, The outer sleeve (214) has several limiting grooves (216) on one side of its inner side, and the inner sleeve (213) has several limiting strips (217) on one side of its outer side. The inner sleeve (213) is embedded inside the adjacent outer sleeve (214).

5. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 4, characterized in that, The fixing bolt (218) passes through the interior of the adjacent inner sleeve (213) and outer sleeve (214). The number of the limiting strip (217) and the limiting groove (216) are equal. The limiting strip (217) is embedded in the interior of the adjacent limiting groove (216).

6. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 5, characterized in that, One end of the horizontal sleeve bending plate (222) is connected to a fixed arc plate (219), and a movable arc plate (220) is connected to one side of the fixed arc plate (219) by several bolts. The fixed arc plate (219) and the movable arc plate (220) are fixed to the outside of the keel frame (1).

7. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 6, characterized in that, A reinforcing connection assembly (3) is provided between the two wall panels (201), the reinforcing connection assembly (3) including a connection hole (301). The wall panel (201) has two connecting holes (301) at the top and bottom. A reinforcing screw (302) is installed inside the two adjacent connecting holes (301). The top of the reinforcing screw (302) is connected to a mating screw (303) through a threaded hole. A limiting piece (304) is welded to the top of the mating screw (303). A reinforcing spring (305) is sleeved on the outside of the reinforcing screw (302). A sleeve ring (306) is welded to both ends of the reinforcing spring (305). The bottom surface of the sleeve ring (306) at the bottom is in contact with the inner side of the adjacent wall panel (201), and the top surface of the sleeve ring (306) at the top is in contact with the bottom surface of the adjacent limiting piece (304). The reinforcing screw (302) has snap-fit ​​grooves (307) on both sides of its outer side. A limiting pad (308) is embedded inside the snap-fit ​​groove (307). A reinforcing nut (309) is connected to the bottom of the outer side of the reinforcing screw (302). The reinforcing nut (309) is located at the bottom of the limiting pad (308).

8. The complex curved surface tall copper flame backlit art curtain wall structure according to claim 7, characterized in that, The top of the wall panel (201) is welded with three connecting rods (310) at equal intervals, and the bottom of the inner side of the wall panel (201) is welded with three connecting pipes (311) at equal intervals. The connecting rods (310) are embedded inside the adjacent connecting pipes (311).

9. A construction method for a complex curved surface tall copper flame-backlit art curtain wall, characterized in that: The construction operation of the complex curved surface tall copper flame backlit art curtain wall structure according to claim 8 includes the following steps: S1. Hold the insert block (206), press the fixing head (210) into the fixing slide (208), align the connecting screw (207) with the corresponding connecting screw tube (203), rotate the insert block (206), the connecting screw (207) connects with the connecting screw tube (203), and the fixing head (210) will be embedded in the fixing hole (205); S2. Fit the fixed arc plate (219) to the keel frame (1) and fix the fixed arc plate (219) and the movable arc plate (220) to the keel frame (1) with bolts; S3. Repeat steps S1 and S2 to connect all the corresponding components at the four corners of the wall panel (201) to complete the initial fixing of a wall panel (201); S4. Insert the butt rod (310) at the top of one wall panel (201) into the butt tube (311) at the bottom of another wall panel (201); S5. Insert the reinforcing screw (302) into the connecting hole (301) between two adjacent wall panels (201), put the sleeve ring (306) and the reinforcing spring (305) on the outside of the reinforcing screw (302), connect the mating screw (303) to the top of the reinforcing screw (302), press the limiting piece (304), insert the inner side of the limiting pad (308) into the snap groove (307), loosen the limiting piece (304), and tighten the reinforcing nut (309).

Citation Information

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