Slope lighting roof glass curtain wall anti-seismic structure and installation method thereof
By installing a support structure consisting of fixed frames, beams, support rods, and shock-absorbing devices on the sloping glass curtain wall, the problem of poor stability of the glass curtain wall support structure is solved, achieving better seismic resistance and preventing glass breakage.
Patent Information
- Application Number
- CN202311190795.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-15
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2043-09-15
AI Technical Summary
Existing sloping glass curtain walls are unstable due to their tilted installation on the support structure, and are prone to resonance and breakage during strong winds or earthquakes.
The support structure consists of fixed frames, crossbeams, support rods, shock-absorbing frames, and connecting rods. Shock-absorbing devices such as shock-absorbing springs and movable shafts ensure a stable connection between the glass curtain wall and the support structure. Fixed shafts and clamps are installed around the glass for fixation, enhancing the seismic resistance.
It improves the stability of the glass curtain wall on the support structure, prevents the glass from loosening, enhances the seismic resistance, and avoids the glass from breaking in strong winds or earthquakes.
Smart Images

Figure CN117145107B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building construction technology, specifically to a seismic-resistant structure for a sloping skylight roof glass curtain wall and its installation method. Background Technology
[0002] A glass curtain wall is a building envelope or decorative structure that is supported by a structural system and can move relative to the main structure to a certain extent, without sharing the loads of the main structure. The wall can be single-pane or double-pane glass. Glass curtain walls are an aesthetically pleasing and innovative method of building wall decoration, and a prominent feature of the modernist high-rise building era.
[0003] Glass curtain walls installed on slopes are less stable and prone to collapse due to their inclined installation on the support structure. They are also susceptible to vibration and resonance during strong winds or earthquakes, which can cause them to break. Therefore, we provide earthquake-resistant structures for sloped skylight glass curtain walls and their installation methods. Summary of the Invention
[0004] The purpose of this invention is to provide an anti-seismic structure for a sloping roof glass curtain wall and its installation method, in order to solve the problems mentioned in the background art, such as the poor stability and easy collapse of existing glass curtain walls installed on sloping surfaces due to their inclined installation on the support structure, and the susceptibility of the glass curtain walls to resonance and breakage caused by vibration during strong winds or earthquakes.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a seismic-resistant structure for a sloping skylight roof glass curtain wall, comprising a wall;
[0006] Also includes:
[0007] A fixing frame is installed on the inner side of the wall, and several fixing frames are symmetrically arranged on the inner walls of both sides. A first locking block is provided above the front end of the fixing frame, and a second locking block is provided below the front end of the fixing frame. A crossbeam is provided below the fixing frames on both sides, and the crossbeam is fixedly installed between the second locking blocks on both sides. A support rod is provided at the upper end of the crossbeam, and several support rods are symmetrically arranged at the upper end of the crossbeam. An installation block is provided at the upper end of the support rod, and several installation blocks are provided and installed at the upper end of the corresponding support rod. The installation block has a connecting hole inside, and an installation rod is provided at the upper end of the installation block. The installation rod is offset according to the installation angle of the glass curtain wall and the installation rod is always aligned with the glass. The curtain wall maintains a vertical connection. Four connecting rods are symmetrically arranged around the outer wall of the mounting rods on the outer wall of each mounting rod. A damping frame is located at the upper end of each connecting rod, and a telescopic rod is located at the upper end of the damping frame. The telescopic rod is movably installed inside the upper end of the damping frame. The damping frame has mounting holes inside, which are movably connected to the bottom end of the telescopic rod. A damping spring is installed between the bottom end of the telescopic rod and the mounting hole. A movable shaft is located at the upper end of the telescopic rod, and a rotating rod is located at the upper end of the movable shaft. The rotating rod rotates through the movable shaft. A lower clamping plate is located at the upper end of the rotating rod, and several pieces of glass are installed at the upper end of the lower clamping plate and connected to the corresponding lower clamping plates.
[0008] Preferably, an arc-shaped frame is provided above the space between the two fixing frames on both sides. The two ends of the arc-shaped frame are fixedly installed inside the first locking blocks on both sides. The arc-shaped frame communicates with the connecting hole, and the mounting block is fixedly installed to the arc-shaped frame through the connecting hole.
[0009] Preferably, the glass has four fixing holes located at the four corners of the glass. A fixing shaft is located at the middle of the upper end of the lower clamping plate. The fixing shaft is connected to the fixing holes, and the glass is fixedly installed on the upper end of the lower clamping plate via the fixing shaft. An upper clamping plate is located at the upper end of the fixing shaft, and the bottom end of the upper clamping plate is in contact with the upper end of the glass.
[0010] Preferably, the bottom end of the upper clamping plate is provided with an upper soft rubber pad, and the upper soft rubber pad is fixed to the bottom end of the upper clamping plate by adhesive. The upper end of the lower clamping plate is provided with a lower soft rubber pad, and the lower soft rubber pad is fixed to the upper end of the lower clamping plate by adhesive. Both the lower soft rubber pad and the upper soft rubber pad are made of rubber.
[0011] Preferably, a first connecting rod is provided on the side of the crossbeam, and a plurality of first connecting rods are provided and symmetrically arranged on the side of the crossbeam, and the other end of the first connecting rod is connected and fixed to the crossbeam on the side. Third locking blocks are symmetrically arranged on both sides of the mounting block, and a second connecting rod is provided between the two mounting blocks, and the two ends of the second connecting rod are respectively connected and fixed to the third locking blocks on both sides.
[0012] Preferably, the glass is provided with symmetrical horizontal connecting frames on the front and rear sides, and the horizontal connecting frames are provided with first side grooves on the front and rear sides, and the first side grooves are engaged with the front and rear sides of the glass. The glass is provided with symmetrical vertical connecting frames on the left and right sides, and the vertical connecting frames are provided with symmetrical second side grooves on the two sides, and the second side grooves are engaged with the left and right sides of the glass.
[0013] Preferably, the vertical connecting frame has a slot at its bottom center, and the slot is integrally formed with the vertical connecting frame. The horizontal connecting frame has a fixing groove at its top center, and the fixing groove engages with the slot. The surface of the fixing groove has a second threaded hole, and the surface of the slot has a first threaded hole. The vertical connecting frame has a connecting bolt at its top center, and the connecting bolt is threadedly connected to the first threaded hole and the second threaded hole. The horizontal connecting frame and the vertical connecting frame are then connected and fixed by the connecting bolt.
[0014] Preferably, adhesive is provided on the inner sides of both the first side groove and the second side groove, and the glass is bonded to the first side groove and the second side groove by the adhesive.
[0015] Preferably, the glass is an insulated glass composed of mirrored glass and ordinary glass.
[0016] The preferred method for installing a seismic-resistant glass curtain wall structure with a sloping roof includes the following steps:
[0017] Step 1: Install several fixed brackets symmetrically on the inner walls of both sides. A second locking block is set at the lower front end of the fixed bracket. Insert both ends of each crossbeam into the second locking blocks on both sides to fix the crossbeam between the fixed brackets. Fix the crossbeams to each other with several first connecting rods. Fix the first connecting rods between the crossbeams by welding.
[0018] Step 2: Then, weld several support rods evenly to the upper end of the crossbeam, and set the height of the row of support rods in an arc shape. Fix the mounting block at the upper end of each support rod, and set the connecting hole in the middle of the mounting block. Install the two ends of the arc frame between the first clips of the two fixed frames respectively, and pass the arc frame through the row of connecting holes to fix the arc frame on the support rod. Set the third clips on both sides of the mounting block, and connect and fix them between the third clips through the second connecting rod.
[0019] Step 3: Install an installation rod at the top of each installation block, and install four connecting rods around the installation rod. Install a shock absorber at the top of the connecting rod. Fit the fixing holes at the four corners of the glass onto the corresponding fixing shafts around it. Then connect the upper clamp to the fixing shaft to fix the glass on the telescopic rod.
[0020] Step 4: The upper end of the shock absorber is connected to the telescopic rod. When vibration occurs, the telescopic rod moves up and down and achieves the shock absorption effect through the shock-absorbing spring. The upper end of the telescopic rod is equipped with an adjustable movable shaft to facilitate the adjustment of the glass position.
[0021] Step 5: Engage and fix the bottom slot of the vertical connecting frame with the fixing slot at the top of the horizontal connecting frame, and connect and fix the connecting bolts with the first threaded hole and the second threaded hole to fix the vertical connecting frame and the horizontal connecting frame in place.
[0022] Step Six: Fill the interior of the second side groove and the first side groove with adhesive. Then, snap the left and right sides of the glass into the second side groove, and then snap the front and back sides of the glass into the first side groove. Connect and fix the two glass pieces together using the vertical connecting frame and the horizontal connecting frame.
[0023] Compared with the prior art, the beneficial effects of the present invention are:
[0024] This invention installs a glass curtain wall on a support structure and fixes the glass curtain wall with a shock-absorbing structure at the upper end of the support structure. The shock-absorbing structure holds the glass in place with a fixed shaft, and the glass has through holes around its perimeter for connection and engagement with the fixed shaft. It is then fixed to the shock-absorbing structure with upper and lower clamping plates, thereby effectively improving the stability of the glass installed on the shock-absorbing structure and preventing the glass from loosening.
[0025] The glass curtain wall is installed and fixed at its bottom using a support structure, which consists mainly of horizontal beams and curved frames. The curved frames and horizontal beams are connected and fixed by support rods, and the support rods and horizontal beams are installed between the wall using fixing frames. The fixing structures on both sides are connected and fixed by the first and second connecting rods, thereby improving the stability of the support structure and further stabilizing the seismic resistance of the glass curtain wall. Attached Figure Description
[0026] Figure 1 This is a front view of the overall structure of the present invention;
[0027] Figure 2 This is a schematic diagram of the mounting bracket structure of the present invention;
[0028] Figure 3 This is a schematic diagram of the installation shock absorption structure of the present invention;
[0029] Figure 4 This is a schematic diagram of the glass fixing structure of the present invention;
[0030] Figure 5 This is a schematic diagram of the disassembled connecting frame structure of the present invention;
[0031] Figure 6 This is a schematic diagram of the glass connecting frame structure of the present invention;
[0032] In the diagram: 1. Wall; 2. Fixing frame; 3. First locking block; 4. Second locking block; 5. Crossbeam; 6. Support rod; 7. First connecting rod; 8. Mounting block; 9. Third locking block; 10. Second connecting rod; 11. Connecting hole; 12. Arc-shaped frame; 13. Glass; 14. Mounting rod; 15. Connecting rod; 16. Shock absorber frame; 17. Shock absorber spring; 18. Telescopic rod; 19. Mounting hole; 20. Movable shaft; 21. Rotating rod; 22. Lower clamping plate; 23. Fixed shaft; 24. Upper clamping plate; 25. Upper soft rubber pad; 26. Lower soft rubber pad; 27. Horizontal connecting frame; 28. Vertical connecting frame; 29. First side groove; 30. Second side groove; 31. Slot; 32. Fixing groove; 33. First threaded hole; 34. Second threaded hole; 35. Connecting bolt; 36. Fixing hole; 37. Adhesive. Detailed Implementation
[0033] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0034] Please see Figure 1-6 An embodiment of the present invention provides: a seismic-resistant structure for a sloping skylight roof glass curtain wall, comprising a wall 1;
[0035] Also includes:
[0036] A fixing frame 2 is installed on the inner side of the wall 1. Several fixing frames 2 are symmetrically arranged on the inner walls of both sides of the wall 1. A first locking block 3 is installed above the front end of the fixing frame 2, and a second locking block 4 is installed below the front end of the fixing frame 2. A crossbeam 5 is installed between the two fixing frames 2 and fixed between the two second locking blocks 4. A support rod 6 is installed at the upper end of the crossbeam 5, and several support rods 6 are symmetrically arranged at the upper end of the crossbeam 5. An installation block 8 is installed at the upper end of the support rod 6, and several installation blocks 8 are installed at the upper end of the corresponding support rod 6. A connecting hole 11 is provided inside the installation block 8. An installation rod 14 is installed at the upper end of the installation block 8. The installation rod 14 is offset according to the installation angle of the glass curtain wall and is always perpendicular to the glass curtain wall. The outer wall of the mounting rod 14 is provided with connecting rods 15, and four connecting rods 15 are provided and symmetrically arranged around the outer wall of the mounting rod 14. The upper end of the connecting rod 15 is provided with a shock absorber frame 16, and the upper end of the shock absorber frame 16 is provided with a telescopic rod 18, which is movably installed inside the upper end of the shock absorber frame 16. The inside of the shock absorber frame 16 is provided with a mounting hole 19, and the mounting hole 19 is movably connected to the bottom end of the telescopic rod 18. A shock absorber spring 17 is provided between the bottom end of the telescopic rod 18 and the mounting hole 19. The upper end of the telescopic rod 18 is provided with a movable shaft 20, and the upper end of the movable shaft 20 is provided with a rotating rod 21, which rotates through the movable shaft 20. The upper end of the rotating rod 21 is provided with a lower clamping plate 22, and the upper end of the lower clamping plate 22 is provided with glass 13, and several pieces of glass 13 are provided and connected to the corresponding lower clamping plates 22.
[0037] The glass curtain wall is installed and fixed by a support structure, which consists of a horizontal beam 5 and an arc frame 12 as the main structure. The fixed structures on both sides are connected and fixed by the first connecting rod 7 and the second connecting rod 10, thereby improving the stability of the support structure and further stabilizing the seismic resistance of the glass curtain wall.
[0038] Please see Figure 1-2 An arc-shaped frame 12 is provided above the space between the two fixed frames 2. The two ends of the arc-shaped frame 12 are fixedly installed inside the first clips 3 on both sides. The arc-shaped frame 12 is connected to the connecting hole 11, and the mounting block 8 is fixedly installed to the arc-shaped frame 12 through the connecting hole 11. The arc-shaped frame 12 is used to support the installation position of the glass 13.
[0039] Please see Figure 3-4The glass 13 has four fixing holes 36 located at the four corners of the glass 13. A fixing shaft 23 is located at the middle of the upper end of the lower clamping plate 22. The fixing shaft 23 is connected to the fixing holes 36, and the glass 13 is fixedly installed on the upper end of the lower clamping plate 22 through the fixing shaft 23. An upper clamping plate 24 is located at the upper end of the fixing shaft 23, and the bottom end of the upper clamping plate 24 is attached to the upper end of the glass 13 to fix the glass 13 on the fixing shaft 23.
[0040] Please see Figure 3-4 The bottom end of the upper clamping plate 24 is provided with an upper soft rubber pad 25, and the upper soft rubber pad 25 is fixed to the bottom end of the upper clamping plate 24 by adhesive. The upper end of the lower clamping plate 22 is provided with a lower soft rubber pad 26, and the lower soft rubber pad 26 is fixed to the upper end of the lower clamping plate 22 by adhesive. Both the lower soft rubber pad 26 and the upper soft rubber pad 25 are made of rubber, which reduces the friction between the clamping plate and the surface of the glass 13 and increases the friction to prevent the clamping plate from loosening.
[0041] Please see Figure 2 A first connecting rod 7 is provided on the side of the crossbeam 5. Several first connecting rods 7 are provided and symmetrically arranged on the side of the crossbeam 5. The other end of the first connecting rod 7 is connected and fixed to the side of the crossbeam 5. Third locking blocks 9 are symmetrically arranged on both sides of the mounting block 8. A second connecting rod 10 is provided between the two mounting blocks 8. The two ends of the second connecting rod 10 are respectively connected and fixed to the third locking blocks 9 on both sides, thereby improving the fixation between the crossbeams 5.
[0042] Please see Figure 6 A horizontal connecting frame 27 is symmetrically arranged on the front and rear sides of the glass 13. A first side groove 29 is provided on the front and rear sides of the horizontal connecting frame 27, and the first side groove 29 engages with the front and rear sides of the glass 13. A vertical connecting frame 28 is symmetrically arranged on the left and right sides of the glass 13. A second side groove 30 is symmetrically arranged on both sides of the vertical connecting frame 28, and the second side groove 30 engages with the left and right sides of the glass 13. The surrounding glass 13 is connected and sealed by the vertical connecting frame 28 and the horizontal connecting frame 27.
[0043] Please see Figure 5 The vertical connecting frame 28 has a slot 31 at its bottom center, and the slot 31 is integrally formed with the vertical connecting frame 28. The horizontal connecting frame 27 has a fixing groove 32 at its top center, and the fixing groove 32 is engaged with the slot 31. The surface of the fixing groove 32 has a second threaded hole 34, and the surface of the slot 31 has a first threaded hole 33. The vertical connecting frame 28 has a connecting bolt 35 at its top center, and the connecting bolt 35 is threadedly connected with the first threaded hole 33 and the second threaded hole 34. The horizontal connecting frame 27 and the vertical connecting frame 28 are connected and fixed by the connecting bolt 35.
[0044] Please see Figure 6 Adhesive 37 is provided on the inner side of the first side groove 29 and the second side groove 30, and the glass 13 is bonded to the first side groove 29 and the second side groove 30 by the adhesive 37, which is used to fix the glass 13 to the first side groove 29 and the second side groove 30.
[0045] Please see Figure 6 Glass 13 is an insulated glass unit composed of mirrored glass and ordinary glass, which serves to insulate against heat and block sunlight.
[0046] Please see Figure 1-6 The installation method of the earthquake-resistant structure of the sloping roof skylight glass curtain wall includes the following steps:
[0047] Step 1: Install several fixing frames 2 symmetrically on the inner walls of the two side walls 1. A second locking block 4 is set at the lower front end of the fixing frame 2. Insert both ends of each crossbeam 5 into the second locking blocks 4 on both sides to fix the crossbeam 5 between the fixing frames 2. Fix the crossbeams 5 together with several first connecting rods 7. Fix the first connecting rods 7 between the crossbeams 5 by welding.
[0048] Step 2: Then, several support rods 6 are evenly welded to the upper end of the crossbeam 5, and the height of the row of support rods 6 is set in an arc shape. A mounting block 8 is fixed at the upper end of each support rod 6, and a connecting hole 11 is provided in the middle of the mounting block 8. The two ends of the arc frame 12 are respectively installed between the first clips 3 of the two side fixing frames 2, and the arc frame 12 is passed through a row of connecting holes 11 to fix the arc frame 12 on the support rod 6. Third clips 9 are provided on both sides of the mounting block 8, and the third clips 9 are connected and fixed by the second connecting rod 10.
[0049] Step 3: Install an installation rod 14 on the upper end of each installation block 8, and install four connecting rods 15 around the installation rod 14. Install a shock absorber 16 on the upper end of the connecting rod 15. Fit the fixing holes 36 at the four corners of the glass 13 onto the corresponding fixing shafts 23. Then connect the upper clamp 24 to the fixing shafts 23 to fix the glass 13 onto the telescopic rod 18.
[0050] Step 4: The upper end of the shock absorber 16 is connected to the telescopic rod 18. When vibration occurs, the telescopic rod 18 moves up and down and achieves the shock absorption effect through the shock absorber spring 17. The upper end of the telescopic rod 18 is provided with an adjustable movable shaft 20 to facilitate the adjustment of the position of the glass 13.
[0051] Step 5: Engage and fix the bottom slot 31 of the vertical connecting frame 28 with the fixing slot 32 at the upper end of the horizontal connecting frame 27, and connect and fix the connecting bolt 35 with the first threaded hole 33 and the second threaded hole 34 to fix the vertical connecting frame 28 and the horizontal connecting frame 27 in place.
[0052] Step 6: Fill the interior of the second side groove 30 and the first side groove 29 with adhesive 37, then engage the left and right sides of the glass 13 with the second side groove 30, and then engage the front and rear sides of the glass 13 with the first side groove 29. Connect and fix the two pairs of glass 13s together by the vertical connecting frame 28 and the horizontal connecting frame 27.
[0053] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A slope daylighting roof glass curtain wall anti-seismic structure, comprising a wall body (1); characterized in that Further comprising: A fixing frame (2) is arranged on the inner side of the wall body (1), and the fixing frame (2) is arranged on the inner walls of the wall bodies (1) on both sides, a first clamping block (3) is arranged above the front end of the fixing frame (2), a second clamping block (4) is arranged below the front end of the fixing frame (2), a cross beam (5) is arranged below between the fixing frames (2) on both sides, the cross beam (5) is fixedly installed between the second clamping blocks (4) on both sides, a supporting rod (6) is arranged on the upper end of the cross beam (5), and the supporting rod (6) is arranged on the upper end of the cross beam (5) in a symmetrical manner, an installation block (8) is arranged on the upper end of the supporting rod (6), and the installation block (8) is arranged on the upper end of the corresponding supporting rod (6) in a symmetrical manner, a connecting hole (11) is arranged in the installation block (8), an installation rod (14) is arranged on the upper end of the installation block (8), the installation rod (14) is installed in a deviated manner according to the installation angle of the glass curtain wall, the installation rod (14) is always vertically connected with the glass curtain wall, a connecting rod (15) is arranged on the outer wall of the installation rod (14), the connecting rod (15) is arranged on the outer wall of the installation rod (14) in a symmetrical manner, a damping frame (16) is arranged on the upper end of the connecting rod (15), an extension rod (18) is arranged on the upper end of the damping frame (16), the extension rod (18) is movably installed in the upper end of the damping frame (16), an installation hole (19) is arranged in the damping frame (16), the installation hole (19) is movably connected with the bottom end of the extension rod (18), a damping spring (17) is arranged between the bottom end of the extension rod (18) and the installation hole (19), a movable shaft (20) is arranged on the upper end of the extension rod (18), a rotating rod (21) is arranged on the upper end of the movable shaft (20), the rotating rod (21) rotates through the movable shaft (20), a lower clamping plate (22) is arranged on the upper end of the rotating rod (21), a glass (13) is arranged on the upper end of the lower clamping plate (22), and the glass (13) is arranged in a symmetrical manner and connected with the corresponding lower clamping plate (22).
2. The slope daylighting roof glass curtain wall seismic resistant structure according to claim 1, characterized in that: An arc-shaped frame (12) is arranged above between the fixing frames (2) on both sides, the arc-shaped frame (12) is fixedly installed in the first clamping blocks (3) on both sides, the arc-shaped frame (12) is in communication with the connecting hole (11), and the installation block (8) is fixedly installed with the arc-shaped frame (12) through the connecting hole (11).
3. The slope daylighting glazing wall seismic structure of claim 1, wherein: A fixing hole (36) is arranged in the glass (13), and the fixing hole (36) is arranged at four corners of the glass (13), a fixed shaft (23) is arranged on the upper end of the lower clamping plate (22), the fixed shaft (23) is connected with the fixing hole (36), the glass (13) is fixedly installed on the upper end of the lower clamping plate (22) through the fixed shaft (23), an upper clamping plate (24) is arranged on the upper end of the fixed shaft (23), and the bottom end of the upper clamping plate (24) is attached to the upper end of the glass (13).
4. The slope daylighting glazing wall seismic structure of claim 3, wherein: The bottom end of the upper clamping plate (24) is provided with an upper soft rubber pad (25), and the upper soft rubber pad (25) is fixed on the bottom end of the upper clamping plate (24) by adhesion. The upper end of the lower clamping plate (22) is provided with a lower soft rubber pad (26), and the lower soft rubber pad (26) is fixed on the upper end of the lower clamping plate (22) by adhesion. The materials of the lower soft rubber pad (26) and the upper soft rubber pad (25) are rubber.
5. The slope daylighting glazing wall seismic structure of claim 1, wherein: The side edge of the cross beam (5) is provided with a first connecting rod (7), the first connecting rod (7) is provided with a plurality of symmetrically arranged connecting rods (7) on the side edge of the cross beam (5), and the other end of the first connecting rod (7) is connected and fixed with the cross beam (5) of the side edge. The two sides of the mounting block (8) are symmetrically provided with a third clamping block (9), and a second connecting rod (10) is arranged between the two mounting blocks (8), and the two ends of the second connecting rod (10) are respectively connected and fixed with the two third clamping blocks (9).
6. The slope glazing curtain wall seismic structure of claim 1, wherein: The front and rear sides of the glass (13) are symmetrically provided with a transverse connecting frame (27), the front and rear sides of the glass (13) are symmetrically provided with a transverse connecting frame (27), the front and rear sides of the glass (13) are symmetrically provided with a transverse connecting frame (27), and the front and rear sides of the glass (13) are symmetrically provided with a transverse connecting frame (27). The front and rear sides of the glass (13) are symmetrically provided with a first side slot (29), and the first side slot (29) is clamped with the front and rear sides of the glass (13). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). 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The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28). The left and right sides of the glass (13) are symmetrically provided with a vertical connecting frame (28), and the left and right sides of the glass (13 7. The slope daylighting glazing wall seismic structure of claim 6, wherein: 8. The slope daylighting glazing wall seismic structure of claim 7, wherein: 9. The slope daylighting glazing wall seismic structure of claim 8, wherein: 10. The method of installing the slope rooflight glass curtain wall seismic structure, based on the slope rooflight glass curtain wall seismic structure of claim 9, characterized in that, Step two: then a number of support rods (6) are evenly welded in the upper end of the beam (5), and a row of support rods (6) are arranged in arc shape, mounting block (8) is fixedly installed at the upper end of each support rod (6), and the middle of mounting block (8) is provided with connecting hole (11), the two ends of arc-shaped frame (12) are respectively installed between the first clamping block (3) of the two side fixed frame (2), and arc-shaped frame (12) passes through a row of connecting holes (11) to make arc-shaped frame (12) fixed on support rod (6), third clamping block (9) is arranged on both sides of mounting block (8), and second connecting rod (10) is connected and fixed between third clamping block (9); Step three: mounting rod (14) is arranged at the upper end of each mounting block (8), four connecting rods (15) are arranged around mounting rod (14), respectively, damping frame (16) is arranged at the upper end of connecting rod (15), the fixed hole (36) at the four corners of glass (13) is respectively sleeved on the corresponding fixed shaft (23), and then the upper clamping plate (24) is connected with the fixed shaft (23), so that the glass (13) is fixed on the telescopic rod (18); Step four: the upper end of damping frame (16) is connected with the telescopic rod (18) which can be stretched and contracted, the telescopic rod (18) moves up and down when vibration occurs, and the damping effect is achieved through damping spring (17), and the upper end of telescopic rod (18) is provided with adjustable movable shaft (20), which is convenient for adjusting the position of glass (13); Step five: the bottom clamping groove (31) of vertical connecting frame (28) is clamped and fixed with the fixed groove (32) at the upper end of horizontal connecting frame (27), and the connecting bolt (35) is connected and fixed with the first threaded hole (33) and the second threaded hole (34), so that the vertical connecting frame (28) and the horizontal connecting frame (27) are fixedly installed; Step six: the inside of the second side groove (30) and the first side groove (29) is filled with adhesive (37), then the left and right sides of the glass (13) are clamped with the second side groove (30), and the front and rear sides of the glass (13) are clamped with the first side groove (29), and the two glasses (13) are connected and fixed through the vertical connecting frame (28) and the horizontal connecting frame (27).
Citation Information
Patent Citations
Steel structure type point connection glass curtain wall
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