Steel thick-wall curtain wall system
The design of the steel thick-walled curtain wall system, which uses embedded bolt connections and thermal insulation pads, solves the problem of complex traditional curtain wall connections, simplifies installation and improves installation efficiency, and is suitable for various building types.
Patent Information
- Application Number
- CN202210705229.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-21
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2042-06-21
AI Technical Summary
Traditional curtain wall systems have fixed structures, complex connections, cumbersome installation, and are inconvenient for manual operation.
The system employs a steel thick-walled curtain wall system, including vertical frames, horizontal beams, glass pressure plates, and supporting thermal insulation components. It utilizes embedded bolt connections and thermal insulation pads, employing glass fiber reinforced polymer materials, combined with aluminum alloy profiles and heat treatment processes to achieve simplified connections.
It achieves simple curtain wall connection, accurate positioning, saves time and effort, improves installation efficiency and load-bearing capacity, and is suitable for different building forms and environments.
Smart Images

Figure CN115142593B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of curtain wall technology, specifically to a steel thick-walled curtain wall system. Background Technology
[0002] A curtain wall is a non-load-bearing exterior wall cladding for a building, hung like a curtain, hence also called a "curtain wall." It is a lightweight wall structure with decorative effects commonly used in modern large and high-rise buildings. Composed of panels and a supporting structural system, it is a building envelope or decorative structure that can have a certain degree of displacement relative to the main structure or a certain degree of deformation capacity, and does not bear the load of the main structure. Traditional curtain wall systems have a fixed structure, complex connections between parts, and are all fixed with bolts. Installation is cumbersome and inconvenient due to the numerous manual steps involved. Summary of the Invention
[0003] The purpose of this invention is to provide a steel thick-walled curtain wall system to solve the problems mentioned in the background art. To achieve the above objective, this invention provides the following technical solution: a steel thick-walled curtain wall system, comprising:
[0004] Vertical frame;
[0005] The crossbeams are fixedly installed on both sides of the vertical frame via crossbeam connectors;
[0006] The glass pressure plate is fixedly connected to the vertical frame and the horizontal beam by the first bolt;
[0007] The thermal insulation compensation component is installed between the crossbeam and the glass pressure plate and cooperates with it to support and protect the partition glass curtain wall.
[0008] As a further technical solution of the present invention, the supporting heat insulation compensation member includes:
[0009] The inner sealing strip of the vertical frame is designed to fit the vertical frame.
[0010] The inner sealing strip of the crossbeam is fitted with the crossbeam;
[0011] The glass bracket is fixedly connected to the crossbeam connector at one end by a crossbeam connector mounting bolt, and fixedly connected to the crossbeam at the other end by a glass bracket fastening screw.
[0012] The heat insulation pad frame is bolted together, with one end cooperating with the vertical frame and the horizontal beam, and the other end connected to the glass pressure plate by a second bolt.
[0013] The heat insulation pad frame compensation pad frame cooperates with the bolt-connected heat insulation pad frame, and the heat insulation pad frame compensation pad frame is disposed between the bolt-connected heat insulation pad frame and the glass bracket.
[0014] As a further technical solution of the present invention, a first T-shaped groove is provided on the crossbeam, and a first T-shaped block that cooperates with the first T-shaped groove is installed on the glass bracket.
[0015] As a further technical solution of the present invention, a second T-shaped groove is provided on the vertical frame, and a second T-shaped block that cooperates with the second T-shaped groove is installed on the bolt-connected heat insulation pad frame.
[0016] As a further technical solution of the present invention, a bolt pressure spacer sleeve is installed on the first bolt.
[0017] As a further technical solution of the present invention, a glass pressure plate sealing strip is installed on the glass pressure plate to cooperate with it.
[0018] As a further technical solution of the present invention, the glass pressure plate is fitted with a mounting pad that matches it.
[0019] Compared with the prior art, the beneficial effects of this invention are: the heat insulation function of the system is achieved by using embedded bolts to connect the heat insulation pad frame and the heat insulation pad frame compensation pad frame; the height is available in various options to suit different configuration requirements; the material is glass fiber reinforced polymer material, which not only provides heat insulation but also has a force transmission function; the invention pioneered the slotted connection process of thick-walled steel keel, making the curtain wall connection simpler, achieving free positioning and free avoidance, making the connection more convenient, saving tedious manual operation, saving time and effort, and providing strong load-bearing capacity. Attached Figure Description
[0020] Figure 1 Exploded view of a steel thick-walled curtain wall system;
[0021] Figure 2 An exploded view of a steel thick-walled curtain wall system in operation;
[0022] Figure 3 This is a schematic diagram of the connection structure between the glass bracket and the beam in a steel thick-walled curtain wall system.
[0023] Figure 4 This is a schematic diagram of the connection structure between the bolted thermal insulation pad frame and the vertical frame in a steel thick-walled curtain wall system.
[0024] In the diagram: 1-Vertical frame, 2-Horizontal beam, 3-Horizontal beam connector, 4-Horizontal beam connector mounting bolt, 5-Vertical frame sealant.
[0025] 6-Crossbeam sealing inner rubber strip, 7-Glass bracket, 8-Glass bracket fastening screw, 9-Mounting pad, 10-Glass pressure plate sealing strip, 11-Glass pressure plate, 12-Bolt pressure spacer sleeve, 13-Bolt connection heat insulation pad frame, 14-Heat insulation pad frame compensation pad frame, 15-First T-slot, 16-First T-block, 17-Second T-slot, 18-Second T-block. Detailed Implementation
[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
[0027] The embodiments of the present invention are implemented as follows, such as... Figure 1 The steel thick-walled curtain wall system shown includes:
[0028] Vertical frame 1;
[0029] The crossbeam 2 is fixedly installed on both sides of the vertical frame 1 via the crossbeam connector 3;
[0030] The glass pressure plate 11 is fixedly connected to the vertical frame 1 and the horizontal beam 2 by the first bolt;
[0031] The thermal insulation compensation component is installed between the crossbeam 2 and the glass pressure plate 11 and cooperates with it to support and protect the partition glass curtain wall.
[0032] In practical applications, the vertical frame 1 and horizontal beam 2 are available in various models to suit different floor heights and wind pressure areas. Furthermore, through different structural and connection designs, they can be applied to different supporting structures such as concrete and steel structures, and can adapt to architectural forms such as 90°, 135° internal and external angles, and arbitrary angles. They are also suitable for curved curtain wall forms. The vertical frame 1 is connected to the floor slab via a connecting structure. The design and installation of the connecting structure must consider that the vertical frame 1 can be adjusted and moved in three directions: up and down, left and right, and front and back. Therefore, all bolt holes on the connecting structure are designed as elongated oval holes. The vertical frame 1 is connected to the horizontal beam connector 3 of the horizontal beam 2, and the horizontal beam connector 3 is connected to the vertical frame... 1. The horizontal beam connector 3 and the horizontal frame are fixed with bolts. The vertical frame 1 of the glass curtain wall is usually divided according to the height of one floor, that is, the height of the vertical frame 1 is equal to the floor height. Therefore, the adjacent vertical frames 1 need to be connected by sleeves. A gap of 15-20mm needs to be left between the vertical frames 1 to solve the problem of thermal expansion of metal and support the setting of thermal insulation compensation parts. Multiple glass curtain walls are installed between the glass pressure plate 11 and the horizontal beam 2 and the vertical frame 1 to ensure the safety and stability of the glass curtain wall. The thick-walled steel keel grooved connection process structure is the first of its kind, which makes the curtain wall connection simpler, realizes free positioning and free avoidance, and makes the connection more convenient. It saves tedious manual operation, saves time and effort, and has strong load-bearing capacity.
[0033] like Figures 2 to 4 As shown, in a preferred embodiment of the present invention, the supporting thermal insulation compensation member includes:
[0034] The inner sealing strip 5 of the vertical frame is matched with the vertical frame 1;
[0035] The inner sealing strip 6 of the crossbeam is matched with the crossbeam 2;
[0036] The glass bracket 7 is fixedly connected to the crossbeam connector 3 at one end by the crossbeam connector mounting bolt 4, and fixedly connected to the crossbeam 2 at the other end by the glass bracket fastening screw 8.
[0037] The heat insulation pad frame 13 is bolted together, with one end cooperating with the vertical frame 1 and the horizontal beam 2, and the other end connected to the glass pressure plate 11 by a second bolt;
[0038] The heat insulation pad frame compensation pad 14 cooperates with the bolt-connected heat insulation pad frame 13, and the heat insulation pad frame compensation pad 14 is disposed between the bolt-connected heat insulation pad frame 13 and the glass bracket 7.
[0039] In one embodiment, for ease of connection, a first T-slot 15 is provided on the crossbeam 2, and a first T-block 16 that mates with the first T-slot 15 is installed on the glass bracket 7; a second T-slot 17 is provided on the vertical frame 1, and a second T-block 18 that mates with the second T-slot 17 is installed on the bolt-connected heat insulation pad frame 13; a glass pressure plate sealing strip 10 that mates with the glass pressure plate 11 is installed on the glass pressure plate 11; a bolt pressure spacer sleeve 12 is installed on the first bolt; and a through hole that mates with the second bolt is provided on the heat insulation pad frame compensation pad frame 14. That is, the T-slots are prefabricated during the processing of the crossbeam and vertical frame, thereby achieving the production of steel plate profiles. Preferably, the crossbeam and vertical frame are processed using an aluminum alloy profile extrusion method. The process involves adding a heat treatment process to eliminate stress concentration at the groove opening, ensuring the dimensional and positional tolerances of the slotted horizontal beams and vertical frames, greatly reducing processing difficulty, improving work efficiency and market share, and reducing processing costs. During connection, the inner sealing strip 5 of the vertical frame and the inner sealing strip 6 of the horizontal beam are attached to the corresponding positions of the vertical frame 1 and the horizontal beam 2. Then, the glass bracket 7 is connected and fixed to the horizontal beam connector 3 and the horizontal beam 2 through the horizontal beam connector mounting bolt 4 and the glass bracket fastening screw 8. The heat insulation pad frame compensation pad 14 is then fitted over the second bolt. After the glass curtain wall is installed, the glass pressure plate sealing strip 10 and the glass pressure plate 11 are installed and fixed. The bolt-connected heat insulation pad frame 13 and heat insulation pad frame compensation pad 14 are made of glass fiber reinforced polymer material, which provides both heat insulation and force transmission functions.
[0040] like Figure 2 As shown, in another preferred embodiment of the present invention, the glass pressure plate 11 is fitted with a mounting pad 9 that matches it.
[0041] In one embodiment, the overall aesthetics and safety are further improved by setting the mounting plate 9.
[0042] 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.
[0043] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A steel thick wall curtain wall system characterized by, The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises a vertical frame, a horizontal beam fixedly installed on both sides of the vertical frame through a horizontal beam connector, a glass pressing plate fixedly connected with the vertical frame and the horizontal beam through a first bolt, a support heat insulation compensation assembly arranged between the horizontal beam and the glass pressing plate for supporting and protecting a glass curtain wall, and a glass bracket. The utility model relates to a steel thick wall curtain wall system which comprises
Citation Information
Patent Citations
Glass curtain wall system with detachable closed-cavity cross beam
CN213115133U
Steel thick-wall curtain wall system
CN218205081U