Multi-angle adjusting structure of special-shaped glass curtain wall
By using the sliding fit between the wedge-shaped rubber strip and the arc-shaped adjustment part, and the meshing structure of the aluminum alloy pressure plate, the problem of inconsistent entry and exit distances of the column tails at angle changes in irregularly shaped glass curtain walls is solved, achieving flexible adaptability and stability of the angle of irregularly shaped glass curtain walls and reducing construction costs.
Patent Information
- Application Number
- CN202521925217.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-08
AI Technical Summary
Existing irregularly shaped glass curtain walls have inconsistent column tail lengths at corners or angle changes, resulting in high design and construction difficulty, high material and labor costs, and difficulty in systematically handling various angle effects.
By employing the sliding fit of wedge-shaped rubber strips and arc-shaped adjustment parts, along with the toothed structure of the aluminum alloy pressure plate, and combining the design of the aluminum alloy base and glass subframe, flexible angle adjustment and fixation of the glass panel can be achieved, reducing the number of column molds.
It achieves flexible adaptability and stability of irregularly shaped glass curtain walls, reduces the number of molds, lowers construction costs, and at the same time ensures visual appeal and safety and durability.
Smart Images

Figure CN224678945U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a multi-angle adjustable structure for irregularly shaped glass curtain walls, belonging to the field of glass curtain wall technology. Background Technology
[0002] While irregularly shaped buildings possess architectural aesthetics and cultural significance, the junctions between panels create various angular changes. From a visual perspective, the diverse types of columns often result in inconsistent column extensions at corners or during angle changes. From a design and construction perspective, the numerous column types require a large number of molds, leading to significant material and labor costs. Therefore, how to systematically handle various angular effects while maintaining the building's aesthetic appeal, reducing the number of molds needed, ensuring safety and durability, and improving cost-effectiveness are issues worthy of our consideration. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a multi-angle adjustable structure for irregularly shaped glass curtain walls.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a multi-angle adjustable structure for an irregularly shaped glass curtain wall, comprising a column, a connecting component, an aluminum alloy base, a glass panel, a glass subframe, and an aluminum alloy pressure plate; the connecting component is connected and fixed to the rear end of the column for connecting the column to the building body; the aluminum alloy base is connected and fixed to the front end of the column, with wedge-shaped rubber strips symmetrically arranged on both sides of the front end of the aluminum alloy base; the aluminum alloy pressure plate is fixed to the middle of the front end of the aluminum alloy base, with toothed tips at both ends; the glass panel is connected and fixed to the glass subframe; the rear side of the glass subframe has an arc-shaped adjusting part, the inner side of which is smooth and the outer side has a toothed structure; the smooth side of the arc-shaped adjusting part slides in cooperation with the wedge-shaped rubber strips at the front end of the aluminum alloy base, and the toothed structure of the arc-shaped adjusting part meshes with the toothed structure of the aluminum alloy pressure plate.
[0005] Preferably, a first waterproof strip is provided on both sides of the glass subframe, and the first waterproof strip on both sides of the glass subframe abuts against the two side walls of the aluminum alloy base.
[0006] Preferably, the aluminum alloy base and the column are fixed by a plurality of stainless steel bolt groups, and a flexible gasket is provided between the aluminum alloy base and the column.
[0007] Preferably, waterproof aluminum plates are symmetrically arranged on both sides of the column, and sealant is applied between the rear end of the aluminum alloy base and the waterproof aluminum plates.
[0008] Preferably, a sealing silicone sealant is provided between adjacent glass panels, and an aluminum alloy cover plate is provided on the outer side of the glass panel. The middle part of the aluminum alloy cover plate is fixed to the front end of the aluminum alloy base by a connector, and the two sides of the aluminum alloy cover plate are pressed against the ends of the adjacent glass panels.
[0009] Preferably, an aluminum alloy decorative strip is fixedly provided on the outer side of the aluminum alloy cover plate, and a second waterproof strip is symmetrically provided on both sides of the aluminum alloy decorative strip, with the second waterproof strip on both sides of the aluminum alloy decorative strip abutting against the adjacent glass panel.
[0010] Preferably, the adapter assembly includes two adapter steel parts and a connecting bolt group. The front ends of the two adapter steel parts are fixed to the column through the connecting bolt group, and the rear ends of the two adapter steel parts are fixed to the building body by welding.
[0011] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art:
[0012] 1. This utility model adopts a smooth side sliding cooperation between a wedge-shaped rubber strip and an arc-shaped adjustment part, which can absorb the deformation angle without adjusting the relative position of the glass panel and the column, and flexibly adapt to the angle requirements of irregular curtain walls. The meshing cooperation between the aluminum alloy pressure plate and the toothed structure on the arc-shaped adjustment part ensures that no slippage occurs after the angle is fixed, effectively guaranteeing stability.
[0013] 2. By optimizing the glass subframe and aluminum alloy pressure plate, a single column mold system can be used, reducing the number of column molds, not affecting the visual effect of the indoor columns, facilitating construction, saving costs, and increasing economic benefits. Attached Figure Description
[0014] The technical solution of this utility model will be further described below with reference to the accompanying drawings:
[0015] Appendix Figure 1 This is a cross-sectional view of a multi-angle adjustable structure for an irregularly shaped glass curtain wall as described in this utility model.
[0016] Appendix Figure 2 For the appendix Figure 1 Enlarged view of point A in the middle;
[0017] Appendix Figure 3 This is an exploded view of the joint between the glass subframe and the aluminum alloy pressure plate described in this utility model.
[0018] In the diagram: 1. Column; 11. Waterproof aluminum plate; 2. Aluminum alloy base; 21. Wedge-shaped rubber strip; 3. Glass panel; 31. Sealing silicone; 32. Aluminum alloy cover plate; 33. Aluminum alloy decorative lines; 331. Second waterproof rubber strip; 4. Glass subframe; 41. Arc-shaped adjustment part; 411. Smooth side; 412. Toothed structure; 42. First waterproof rubber strip; 5. Aluminum alloy pressure plate; 51. Tooth tip structure; 6. Main building structure; 7. Flexible gasket; 8. Sealant; 9. Connector; 101. Adapter steel part; 102. Connecting bolt assembly. Detailed Implementation
[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0020] As attached Figure 1-3 As shown, the multi-angle adjustable structure of the irregular glass curtain wall of this utility model includes a column 1, a connecting component, an aluminum alloy base 2, a glass panel 3, a glass subframe 4, and an aluminum alloy pressure plate 5.
[0021] The adapter assembly is fixed to the rear end of the column 1 to connect the column 1 to the building body 6. Specifically, the adapter assembly includes two adapter steel parts 101 and a connecting bolt group 102. The front ends of the two adapter steel parts 101 are fixed to the column 1 through the connecting bolt group 102, and the rear ends of the two adapter steel parts 101 are fixed to the building body 6 by welding to ensure that the column 1 and the building body 6 are firmly connected.
[0022] The aluminum alloy base 2 is connected and fixed to the front end of the column 1. In this embodiment, the aluminum alloy base 2 and the column 1 are fixed by a group of multiple M8 stainless steel bolts, and a flexible gasket 7 is provided between the aluminum alloy base 2 and the column 1. The flexible gasket 7 can be made of rubber to buffer the vibration deformation between the column 1 and the aluminum alloy base 2, and at the same time avoid damage to the components caused by rigid contact.
[0023] Furthermore, waterproof aluminum plates 11 are symmetrically arranged on both sides of the column 1. Sealant 8 is applied between the rear end of the aluminum alloy base 2 and the waterproof aluminum plate 11. Specifically, the end of the waterproof aluminum plate 11 can be bent and fixed to the column 1 with self-tapping screws, so that the inner side of the waterproof aluminum plate 11 fits against the side wall of the column 1 and the outer side extends to the rear end of the aluminum alloy base 2. Finally, neutral silicone sealant 8 is applied at the joint between the rear end of the aluminum alloy base 2 and the waterproof aluminum plate 11 to form the first waterproof barrier.
[0024] The aluminum alloy base 2 has wedge-shaped rubber strips 21 symmetrically arranged on both sides of the front end. The aluminum alloy pressure plate 5 is fixed to the middle of the front end of the aluminum alloy base 2 by bolt group. Both ends of the aluminum alloy pressure plate 5 have tooth tip structure 51. The glass panel 3 is connected and fixed to the glass sub-frame 4. In this embodiment, the glass panel 3 is bonded to the front end of the glass sub-frame 4 by two-component silicone structural adhesive.
[0025] The rear side of the glass subframe 4 has an arc-shaped adjustment part 41. The inner side of the arc-shaped adjustment part 41 is a smooth side 411, and the outer side has a toothed structure 412. The smooth side 411 of the arc-shaped adjustment part 41 slides and engages with the wedge-shaped rubber strip 21 at the front end of the aluminum alloy base 2 to flexibly adjust the angle of the glass subframe 4. The toothed structure 412 of the arc-shaped adjustment part 41 engages with the tooth tip structure 51 of the aluminum alloy pressure plate 5 to ensure clamping and limiting.
[0026] During installation, the glass subframe 4 is first rotated according to the design angle of the irregular curtain wall. Since the smooth side 411 of the arc-shaped adjustment part 41 and the wedge-shaped rubber strip 21 are in sliding fit, the tilt angle of the glass panel 3 can be flexibly adjusted. After the angle is adjusted to the correct position, the aluminum alloy pressure plate 5 is fixed on the aluminum alloy base 2 to ensure that the toothed structure 51 at both ends of the pressure plate fully engages with the outer toothed structure 412 of the arc-shaped adjustment part 41, thereby locking the angle and preventing the glass subframe 4 from loosening.
[0027] By using the wedge-shaped rubber strip 21 to slide and cooperate with the smooth side 411 of the arc-shaped adjustment part 41, the deformation angle can be absorbed without adjusting the relative position of the glass panel 3 and the column 1, and the angle requirements of the irregular curtain wall can be flexibly adapted. The meshing cooperation between the aluminum alloy pressure plate 5 and the toothed structure 412 on the arc-shaped adjustment part 41 ensures that no sliding occurs after the angle is fixed, effectively guaranteeing stability.
[0028] Meanwhile, by optimizing the glass subframe 4 and the aluminum alloy pressure plate 5, a single column mold system can be used to reduce the number of molds for column 1, without affecting the visual effect of the indoor column 1, facilitating construction, saving costs, and increasing economic benefits.
[0029] Furthermore, a first waterproof strip 42 is provided on both sides of the glass subframe 4. The first waterproof strip 42 on both sides of the glass subframe 4 abuts against the side walls of the aluminum alloy base 2. The first waterproof strip 42 can be made of foamed EPDM rubber strip, forming a second waterproof barrier between the glass subframe 4 and the aluminum alloy base 2, which further improves the waterproof effect.
[0030] A sealing silicone 31 is provided between adjacent glass panels 3 to ensure a sealed and waterproof seal. An aluminum alloy cover plate 32 is provided on the outside of the glass panel 3. The middle part of the aluminum alloy cover plate 32 is fixed to the front end of the aluminum alloy base 2 by a connector 9. The two sides of the aluminum alloy cover plate 32 are pressed against the ends of the adjacent glass panels 3 to prevent the glass panels 3 from shifting and to improve structural stability.
[0031] Furthermore, an aluminum alloy decorative strip 33 is fixedly installed on the outer side of the aluminum alloy cover plate 32. A second waterproof strip 331 is symmetrically installed on both sides of the aluminum alloy decorative strip 33. The second waterproof strip 331 on both sides of the aluminum alloy decorative strip 33 abuts against the adjacent glass panel 3, which not only improves the overall appearance of the curtain wall, but also forms a third waterproof barrier, greatly improving the overall waterproof performance of the curtain wall and effectively extending the service life of the curtain wall.
[0032] The above are merely specific application examples of this utility model and do not constitute any limitation on the scope of protection of this utility model; all technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of protection of this utility model.
Claims
1. A multi-angle adjustable structure for irregularly shaped glass curtain walls, characterized in that: The system includes a column (1), a connecting assembly, an aluminum alloy base (2), a glass panel (3), a glass subframe (4), and an aluminum alloy pressure plate (5). The connecting assembly is fixed to the rear end of the column (1) to connect the column (1) to the building body (6). The aluminum alloy base (2) is fixed to the front end of the column (1), and wedge-shaped rubber strips (21) are symmetrically arranged on both sides of the front end of the aluminum alloy base (2). The aluminum alloy pressure plate (5) is fixed to the middle of the front end of the aluminum alloy base (2), and both ends of the aluminum alloy pressure plate (5) have... The glass panel (3) is connected and fixed to the glass subframe (4) with a toothed structure (51). The glass subframe (4) has an arc-shaped adjustment part (41) on its rear side. The inner side of the arc-shaped adjustment part (41) is a smooth side (411), and the outer side has a toothed structure (412). The smooth side (411) of the arc-shaped adjustment part (41) slides in cooperation with the wedge-shaped rubber strip (21) at the front end of the aluminum alloy base (2). The toothed structure (412) of the arc-shaped adjustment part (41) meshes with the toothed structure (51) of the aluminum alloy pressure plate (5).
2. The multi-angle adjustable structure for an irregularly shaped glass curtain wall according to claim 1, characterized in that: The glass subframe (4) is provided with a first waterproof strip (42) on both sides, and the first waterproof strip (42) on both sides of the glass subframe (4) abuts against the two side walls of the aluminum alloy base (2).
3. The multi-angle adjustable structure for an irregularly shaped glass curtain wall according to claim 1, characterized in that: The aluminum alloy base (2) and the column (1) are fixed by a plurality of stainless steel bolt groups, and a flexible gasket (7) is provided between the aluminum alloy base (2) and the column (1).
4. The multi-angle adjustable structure for an irregularly shaped glass curtain wall according to claim 3, characterized in that: Waterproof aluminum plates (11) are symmetrically arranged on both sides of the column (1), and sealant (8) is applied between the rear end of the aluminum alloy base (2) and the waterproof aluminum plate (11).
5. The multi-angle adjustable structure for an irregularly shaped glass curtain wall according to claim 1, characterized in that: A sealing silicone (31) is provided between adjacent glass panels (3), and an aluminum alloy cover plate (32) is provided on the outside of the glass panel (3). The middle part of the aluminum alloy cover plate (32) is fixed to the front end of the aluminum alloy base (2) by a connector (9), and the two sides of the aluminum alloy cover plate (32) are pressed against the ends of the adjacent glass panels (3).
6. The multi-angle adjustable structure for an irregularly shaped glass curtain wall according to claim 5, characterized in that: An aluminum alloy decorative strip (33) is fixedly provided on the outer side of the aluminum alloy cover plate (32). A second waterproof strip (331) is symmetrically provided on both sides of the aluminum alloy decorative strip (33). The second waterproof strip (331) on both sides of the aluminum alloy decorative strip (33) abuts against the adjacent glass panel (3).
7. The multi-angle adjustable structure for an irregularly shaped glass curtain wall according to claim 1, characterized in that: The adapter assembly includes two adapter steel parts (101) and a connecting bolt group (102). The front ends of the two adapter steel parts (101) are fixed to the column (1) through the connecting bolt group (102), and the rear ends of the two adapter steel parts (101) are fixed to the building body (6) by welding.