Integrated U-shaped energy-saving curtain wall system
Through the integrated U-shaped energy-saving curtain wall system, the U-shaped glass occlusion and aluminum alloy support structure are used to solve the design limitations of traditional glass curtain walls in U-shaped buildings, achieving a combination of energy saving, safety and aesthetics, and simplifying the construction process.
Patent Information
- Application Number
- CN202422293274.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Traditional glass curtain walls have design limitations when dealing with U-shaped building effects, resulting in delays in construction periods and increased costs, and lack of energy-saving advantages.
The integrated U-shaped energy-saving curtain wall system is adopted to form a cavity through multiple U-shaped glass non-contact choking, combining aluminum alloy support structure and sealant to achieve stable hanging of glass surface materials and air layer heat insulation, and the overall structure is convenient for factory processing and installation.
It improves the thermal insulation, thermal insulation and sound insulation performance of glass surface materials, reduces on-site construction, reduces artificial hidden dangers, enhances safety, and has a unique decorative effect.
Smart Images

Figure CN223269435U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an integrated U-shaped energy-saving curtain wall system, belonging to the technical field of building curtain walls. Background Art
[0002] With the development of the application of U-shaped glass in architectural glass curtain walls, the design of traditional glass curtain walls has great limitations. When we encounter this U-shaped building effect, we always think of changing the building facade effect or using flat glass bonding to make it as beautiful as possible and easy to construct. For this requirement, architectural designers generally do not change their design effects, and the use of flat glass bonding is undoubtedly a very difficult problem for glass manufacturers to deal with. Taking into account factors related to construction period, transportation and cost, many projects are delayed due to U-shaped glass. Therefore, it is necessary to design a curtain wall with good energy-saving advantages and an organic combination of design, construction, installation and aesthetics. Utility Model Content
[0003] The utility model aims to provide an integrated U-shaped energy-saving curtain wall system in order to overcome the deficiencies of the prior art.
[0004] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is: an integrated U-shaped energy-saving curtain wall system, comprising a top support structure, a bottom support structure, an aluminum alloy snap-fitting mounting piece, an aluminum alloy glass bottom channel, an aluminum alloy fixing base and a glass surface material;
[0005] The top supporting structure and the bottom supporting structure are respectively fixedly installed on the upper and lower sides of the building body; the glass surface material is composed of a plurality of U-shaped glasses that are interlocked with each other, and a plurality of cavities are formed between the plurality of U-shaped glasses, and the plurality of U-shaped glasses are all non-contact interlocked and form a whole; the aluminum alloy interlocking mounting piece is connected and fixed to the top of the glass surface material, and the glass surface material is fixed to the top supporting structure through the aluminum alloy interlocking mounting piece; the bottom of the glass surface material is connected to the aluminum alloy fixed base, and the aluminum alloy fixed base is connected and fixed to the aluminum alloy glass bottom groove, and the aluminum alloy glass bottom groove is connected and fixed to the bottom supporting structure.
[0006] Preferably, a flexible EPDM adhesive strip is provided at the open end of each U-shaped glass to separate the U-shaped glass from the interlocking U-shaped glass; and transparent silicone sealant is provided on the sides of adjacent U-shaped glasses.
[0007] Preferably, an upper connecting piece is fixedly connected to the top supporting structure, and the cross-section of the upper connecting piece is U-shaped; the aluminum alloy bite mounting piece is connected and fixed to the upper connecting piece, and both sides of the aluminum alloy bite mounting piece have a groove structure, and the top of the glass surface material is embedded in the groove structure on both sides of the aluminum alloy bite mounting piece.
[0008] Preferably, a flexible EPDM rubber strip is provided between the glass surface material and the upper connecting piece.
[0009] Preferably, a lower connecting piece is connected and fixed to the bottom supporting structure, and the aluminum alloy glass bottom groove is connected and fixed to the lower connecting piece; both sides of the aluminum alloy glass bottom groove have folded edge clamping structures, and the aluminum alloy fixed base and the aluminum alloy glass bottom groove are clamped and fixed by the folded edge clamping structures; both sides of the aluminum alloy fixed base have opening structures, and the bottom of the glass surface material is embedded in the opening structures on both sides of the aluminum alloy fixed base.
[0010] Preferably, PVC buffer pads are provided between the folding clamping structures on both sides of the aluminum alloy glass bottom channel and the glass surface material.
[0011] Due to the application of the above technical solution, the utility model has the following advantages compared with the prior art:
[0012] 1. The glass surface material of the present invention is composed of multiple U-shaped glasses biting each other, and multiple cavities are formed between the multiple U-shaped glasses. Air can enter the cavity and form an air layer, thereby ensuring the heat insulation, thermal insulation and sound insulation performance of the glass surface material, making the entire curtain wall structure more energy-efficient.
[0013] 2. The glass surface material is formed into a whole by multiple U-shaped glasses. This overall structure can be formed into a unified installation module through factory mold opening, processing, and assembly, which is convenient for transportation and installation, reduces on-site workload, and reduces on-site human hazards; at the same time, the shape of multiple U-shaped glasses after biting is banner-shaped, with relatively smooth lines and a very unique decorative effect.
[0014] 3. The top of the glass surface material is embedded in the groove structure of the aluminum alloy bite mounting part to form a stable hanging structure for the glass surface material, which solves the safety problem of stress concentration on the top of the U-shaped glass causing the glass to explode and then fall off; the bottom of the glass surface material is embedded in the opening structure of the aluminum alloy fixing base and is equipped with a PVC buffer pad to serve as a temperature expansion gap between the U-shaped glass, especially in areas with large annual temperature differences, which can prevent the glass expansion from damaging itself and the aluminum alloy fixing base. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The technical solution of the utility model is further described below with reference to the accompanying drawings:
[0016] Attachment Figure 1 This is a structural diagram of an integrated U-shaped energy-saving curtain wall system described in the utility model;
[0017] Attachment Figure 2 This is a schematic diagram of the top connection structure of the present invention;
[0018] Attachment Figure 3 This is a schematic diagram of the bottom connection structure of the present invention.
[0019] In the figure: 1. Top support structure; 11. Upper connecting piece; 2. Bottom support structure; 21. Lower connecting piece; 3. Aluminum alloy snap-in mounting piece; 31. Groove structure; 4. Aluminum alloy glass bottom groove; 41. Folding edge snap-in structure; 5. Aluminum alloy fixed base; 51. Opening structure; 6. Glass surface material; 61. U-shaped glass; 62. Cavity; 7. Flexible EPDM rubber strip; 8. Transparent silicone sealant; 9. PVC buffer pad. DETAILED DESCRIPTION
[0020] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0021] As attached Figure 1-3 As shown, the integrated U-shaped energy-saving curtain wall system described in the utility model includes a top supporting structure 1, a bottom supporting structure 2, an aluminum alloy interlocking mounting part 3, an aluminum alloy glass bottom groove 4, an aluminum alloy fixed base 5 and a glass surface material 6; wherein, the top supporting structure 1 and the bottom supporting structure 2 are fixedly installed on the upper and lower sides of the building body respectively.
[0022] The glass surface material 6 is composed of a plurality of U-shaped glasses 61 interlocked with each other, and a plurality of cavities 62 are formed between the plurality of U-shaped glasses 61. Air can enter the cavity 62 and form an air layer, thereby ensuring the heat insulation, thermal insulation and sound insulation performance of the glass surface material 6, making the entire curtain wall structure more energy-efficient.
[0023] The multiple U-shaped glasses 61 are all non-contact interlocked and form a whole. This overall structure can be formed into a unified installation module through factory mold opening, processing, and assembly, thereby reducing on-site workload and reducing on-site human hazards. At the same time, the multiple U-shaped glasses 61 are interlocked to form a banner-shaped shape with relatively smooth lines and a very unique decorative effect.
[0024] In this embodiment, the U-shaped glass 61 is tempered glass and is processed into a U-shaped body through a special process. The light-resistant and aging-resistant characteristics of tempered glass can extend the service life of the glass surface material 6. A flexible EPDM strip 7 is provided at the open end of each U-shaped glass 61 to separate the U-shaped glass 61 from the interlocking U-shaped glass 61 to form an interlocking flexible waterproof and sealed structure between the U-shaped glasses 61; transparent silicone sealant 8 is provided on the sides of adjacent U-shaped glasses 61 to achieve a waterproof and sealing effect, and the transparent sealant can also achieve an aesthetic effect.
[0025] Specifically, the flexible EPDM strip 7 at the open end of the U-shaped glass 61, on the one hand, serves to connect the interlocking U-shaped glasses 61, and on the other hand, can separate the multiple interlocking U-shaped glasses 61 to avoid direct contact. Similarly, the transparent silicone sealant 8 on the side of the adjacent U-shaped glass 61 has the same two functions, thereby forming a non-contact interlocking structure as a whole.
[0026] As attached Figure 2 As shown, the aluminum alloy interlocking mounting part 3 is connected and fixed to the top of the glass surface material 6, and the glass surface material 6 is fixed to the top supporting structure 1 through the aluminum alloy interlocking mounting part 3; specifically, an upper connecting part 11 is fixedly connected to the top supporting structure 1, and the cross-section of the upper connecting part 11 is U-shaped; the aluminum alloy interlocking mounting part 3 is connected and fixed to the upper connecting part 11, and both sides of the aluminum alloy interlocking mounting part 3 have groove structures 31, and the top of the glass surface material 6 is embedded in the groove structures 31 on both sides of the aluminum alloy interlocking mounting part 3, forming a top hanging structure for the glass surface material 6, which solves the safety problem of stress concentration at the top of the U-shaped glass causing the glass to explode and then fall off.
[0027] In this embodiment, a flexible EPDM rubber strip 7 is provided between the glass surface material 6 and the upper connecting member 11 , so that the upper connecting member 11 reinforces the glass surface material 6 from the side, making the hanging of the glass surface material 6 more stable.
[0028] As attached Figure 3 As shown, the bottom of the glass surface material 6 is connected to the aluminum alloy fixing base 5, which is connected and fixed to the aluminum alloy glass bottom channel 4, which is connected and fixed to the bottom supporting structure 2. Specifically, a lower connecting piece 21 is connected and fixed to the bottom supporting structure 2, and the aluminum alloy glass bottom channel 4 is connected and fixed to the lower connecting piece 21; the aluminum alloy glass bottom channel 4 has folded edge clamping structures 41 on both sides, and the aluminum alloy fixing base 5 and the aluminum alloy glass bottom channel 4 are clamped and fixed by the folded edge clamping structures 41; the aluminum alloy fixing base 5 has opening structures 51 on both sides, and the bottom of the glass surface material 6 is embedded in the opening structures 51 on both sides of the aluminum alloy fixing base 5. In this embodiment, PVC buffer pads 9 are provided between the folded edge clamping structures 41 on both sides of the aluminum alloy glass bottom channel 4 and the glass surface material 6. On the one hand, they can serve as a temperature expansion gap between the U-shaped glass, especially in areas with large annual temperature differences, to prevent the glass expansion from damaging itself and the aluminum alloy fixing base 5. On the other hand, they can prevent the U-shaped glass from rigidly contacting the aluminum alloy glass bottom channel 4.
[0029] The above are only specific application examples of the present utility model and do not constitute any limitation to the protection scope of the present utility model; any technical solutions formed by equivalent transformation or equivalent replacement fall within the scope of protection of the present utility model.
Claims
1. An integrated U-shaped energy-saving curtain wall system, characterized by: It comprises a top supporting structure (1), a bottom supporting structure (2), an aluminum alloy snap-fitting mounting member (3), an aluminum alloy glass bottom groove (4), an aluminum alloy fixing base (5) and a glass surface material (6); The top supporting structure (1) and the bottom supporting structure (2) are respectively fixedly mounted on the upper and lower sides of the building body; the glass surface material (6) is composed of a plurality of U-shaped glasses (61) interlocked with each other, a plurality of cavities (62) are formed between the plurality of U-shaped glasses (61), and the plurality of U-shaped glasses (61) are all non-contact interlocked and form a whole; the aluminum alloy interlocking mounting member (3) is connected and fixed to the top of the glass surface material (6), and the glass surface material (6) is fixed to the top supporting structure (1) through the aluminum alloy interlocking mounting member (3); the bottom of the glass surface material (6) is connected to the aluminum alloy fixed base (5), and the aluminum alloy fixed base (5) is connected and fixed to the aluminum alloy glass bottom groove (4), and the aluminum alloy glass bottom groove (4) is connected and fixed to the bottom supporting structure (2).
2. The integrated U-shaped energy-saving curtain wall system according to claim 1, characterized in that: The open end of each U-shaped glass (61) is provided with a flexible EPDM adhesive strip (7) to separate the U-shaped glass (61) from the interlocking U-shaped glass (61); and the sides of adjacent U-shaped glasses (61) are provided with transparent silicone sealant (8).
3. The integrated U-shaped energy-saving curtain wall system according to claim 1, characterized in that: An upper connecting piece (11) is fixedly connected to the top supporting structure (1), and the cross section of the upper connecting piece (11) is U-shaped; the aluminum alloy bite mounting piece (3) is connected and fixed to the upper connecting piece (11), and both sides of the aluminum alloy bite mounting piece (3) have groove structures (31), and the top of the glass surface material (6) is embedded in the groove structures (31) on both sides of the aluminum alloy bite mounting piece (3).
4. The integrated U-shaped energy-saving curtain wall system according to claim 3, characterized in that: A flexible EPDM rubber strip (7) is provided between the glass surface material (6) and the upper connecting piece (11).
5. The integrated U-shaped energy-saving curtain wall system according to claim 1, characterized in that: A lower connecting piece (21) is connected and fixed to the bottom supporting structure (2), and the aluminum alloy glass bottom groove (4) is connected and fixed to the lower connecting piece (21); both sides of the aluminum alloy glass bottom groove (4) have folding edge clamping structures (41), and the aluminum alloy fixed base (5) and the aluminum alloy glass bottom groove (4) are clamped and fixed via the folding edge clamping structures (41); both sides of the aluminum alloy fixed base (5) have opening structures (51), and the bottom of the glass surface material (6) is embedded in the opening structures (51) on both sides of the aluminum alloy fixed base (5).
6. The integrated U-shaped energy-saving curtain wall system according to claim 5, characterized in that: PVC buffer pads (9) are provided between the folding edge clamping structures (41) on both sides of the aluminum alloy glass bottom groove (4) and the glass surface material (6).