Suspended combined curtain wall installation system

The suspended combined curtain wall installation system solves the connection problem between the building structure and the insulated roof, achieving stable connection and improved thermal insulation and fire resistance.

CN224591634UActive Publication Date: 2026-08-04CHINA CONSTR SECOND BUREAU DECORATION ENG CO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA CONSTR SECOND BUREAU DECORATION ENG CO
Filing Date
2025-09-10
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The independent movement between the building structure and the insulated roof makes it difficult to connect the curtain wall structure and makes it susceptible to damage.

Method used

The suspended modular curtain wall installation system includes components such as vertical keels, horizontal keels, transition systems, and aluminum panels. The top keel is connected by I-beams, and thermal break strips and galvanized steel plates are installed to ensure displacement space and thermal insulation effect, and to enhance structural strength.

Benefits of technology

It achieves a stable connection of the curtain wall system, avoids damage when the structure moves alone or asynchronously, ensures thermal insulation performance and installation accuracy, and enhances the load-bearing capacity and fire resistance of the structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a suspended combined curtain wall installation system, including a building structure, a roof structure located on one side of the building structure, supporting columns for the roof structure, and I-beams. Vertical joists are fixedly installed on the building structure, and horizontal joists connect the vertical joists. Insulating glass is installed on the frame formed by the vertical and horizontal joists. A transition system is provided between the building structure and the roof structure. The transition system includes a top joist, columns, beams, a bottom joist, and aluminum panels. One end of the top joist is connected to the building structure, and the other end rests on the flange of the I-beam. The columns are connected to the top joists, and the beams connect between the columns. One end of the bottom joist is connected to the vertical joists, and the other end is connected to the columns. The aluminum panels are installed on the frame formed by the columns and beams, and the edges of the aluminum panels are connected to the horizontal joists. This application, by setting up a suspended combined curtain wall system, satisfies the installation of curtain walls between two unconnected building structures.
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Description

Technical Field

[0001] This utility model relates to the technical field of curtain wall installation, and in particular to a suspended combined curtain wall installation system. Background Technology

[0002] A glass curtain wall (reflection glass curtain wall) refers to an exterior building envelope or decorative structure that is supported by a structural system and allows for a certain degree of displacement relative to the main structure, 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 architectural wall decoration, and a prominent feature of the modernist high-rise building era.

[0003] With the development of modern cities, building curtain walls have experienced rapid growth. Due to their advantages such as light weight, strong adaptability to building functions, fast and convenient construction, easy maintenance and replacement, and beautiful and transparent appearance, they are widely used in high-rise buildings such as office buildings and hotels, as well as large-span buildings such as shopping malls, convention centers, railway stations, and airport terminals.

[0004] In a certain project, a non-accessible insulated roof is provided on one side of the structure. A separate beam and column structure is provided under the insulated roof. The insulated roof is not connected to the structure. Since the structure and the insulated roof are not connected, there is an independent tendency for movement between the two. How to set up the curtain wall structure between the structure and the insulated roof is the problem faced by this application. Utility Model Content

[0005] To address the aforementioned problems, this utility model provides a suspended combined curtain wall installation system.

[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: This utility model of a suspended combined curtain wall installation system includes a building structure, a roof structure located on one side of the building structure, support columns supported below the roof structure, and I-beams located on the bottom surface of the roof structure and connected between the support columns. Vertical keels are fixedly installed on the building structure, and horizontal keels are connected between the vertical keels. Insulating glass is installed on the frame formed by the vertical keels and the horizontal keels. A transition system is provided between the building structure and the roof structure. The transition system includes a top joist, columns, beams, a bottom joist, and aluminum panels. One end of the top joist is connected to the building structure, and the other end is placed on the flange of the I-beam. The columns are connected to the top joists, and the beams are connected between the columns. One end of the bottom joist is connected to the vertical joists, and the other end is connected to the columns. The aluminum panels are installed on the frame formed by the columns and beams, and the edges of the aluminum panels are connected to the horizontal joists.

[0007] In this utility model of suspended combined curtain wall installation system, the aluminum single panel is further connected to the columns and beams via corner brackets.

[0008] In this utility model of suspended combined curtain wall installation system, the lower end of the aluminum panel is bent toward the horizontal keel and connected to the horizontal keel through a connector.

[0009] In this utility model of suspended combined curtain wall installation system, the transition system covers an area where a galvanized steel plate is connected between the building structure and the horizontal keel. One end of the galvanized steel plate is connected to the building structure, and the other end is connected to the horizontal keel.

[0010] In this utility model of suspended combined curtain wall installation system, thermal insulation cotton is filled between the galvanized steel plate and the frame composed of horizontal and vertical keels.

[0011] In this utility model of suspended combined curtain wall installation system, angle steel is connected between the vertical keels, and one end of the bottom keel is connected to the column, and the other end is connected to the angle steel.

[0012] In this utility model of suspended combined curtain wall installation system, the sides of the horizontal and vertical keels are respectively formed with aluminum alloy bases, and the insulated glass is fixed to the aluminum alloy bases by aluminum alloy pressure plates.

[0013] Furthermore, in this utility model of a suspended combined curtain wall installation system, the aluminum alloy base is fitted with a decorative buckle cover.

[0014] Compared with the prior art, this utility model has the following advantages: 1. This application uses a suspended combined curtain wall installation system to connect two independent building structures. By placing the top keel on the I-beam, the installation of the transfer system is satisfied on the one hand, and on the other hand, there is displacement space between the frame of the transfer system and the roof structure, thus avoiding the problem of the transfer system being damaged when the building structure and the roof structure move separately or differently. 2. By setting thermal break strips, the thermal insulation effect of the curtain wall system is ensured on the one hand, and the installation position of the aluminum alloy pressure plate is limited on the other hand to ensure installation accuracy; 3. By embedding steel plates into the aluminum alloy base, the structural strength and load-bearing capacity of the aluminum alloy base are ensured, meeting the installation requirements of aluminum single panels and insulated glass.

[0015] The present invention will be further described below with reference to the accompanying drawings. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2This is a diagram showing the installation details of the curtain wall structure of this utility model.

[0017] Figure label: 1. Building structure; 2. Roof structure; 3. Supporting columns; 4. I-beams; 5. Vertical joists; 6. Horizontal joists; 7. Insulating glass; 8. Aluminum alloy pressure plate; 9. Aluminum alloy base; 9.1. Connecting parts; 9.2. Mounting grooves; 10. Thermal break strips; 11. Slots; 12. Protrusions; 13. Mounting openings; 14. Decorative covers; 15. Embedded grooves; 16. Steel plates; 17. Adapter system; 17.1. Top joists; 17.2. Uprights; 17.3. Horizontal beams; 17.4. Bottom joists; 17.5. Aluminum single panels; 18. Galvanized steel plates; 19. Thermal insulation cotton; 20. Connecting angle steel. Detailed Implementation

[0018] like Figures 1-2 As shown, this utility model discloses a suspended combined curtain wall installation system, including a building structure 1, a roof structure 2 located on one side of the building structure 1, support columns 3 supported below the roof structure 2, and I-beams 4 located on the bottom surface of the roof structure 2 and connected between the support columns 3.

[0019] Vertical keels 5 are fixedly installed on the bottom surface of building structure 1. Horizontal keels 6 are connected between the vertical keels 5. Insulating glass 7 is installed on the frame composed of vertical keels 5 and horizontal keels 6 by aluminum alloy pressure plates 8. Aluminum alloy bases 9 are formed on the sides of vertical keels 5 and horizontal keels 6. The aluminum alloy bases 9 include a connecting part 9.1 located in the middle and mounting grooves 9.2 located on both sides. The aluminum alloy pressure plates 8 are connected to the connecting part 9.1 by bolts. The mounting grooves 9.2 are provided with a rubber strip located between the aluminum alloy bases 9 and the insulating glass 7.

[0020] In addition, a heat-breaking strip 10 is provided between the connecting part 9.1 and the aluminum alloy pressure plate 8 for heat insulation treatment to ensure the thermal insulation effect of the curtain wall. A groove 11 is formed on the connecting part 9.1, and a protrusion 12 that matches the shape of the groove 11 is formed on the heat-breaking strip 10. The protrusion 12 is inserted into the groove 11 to connect the heat-breaking strip 10 and the connecting part 9.1. An installation port 13 is formed on the aluminum alloy pressure plate 8. The other end of the heat-breaking strip 10 is inserted into the installation port 13 for positioning and installing the aluminum alloy pressure plate 8 to ensure installation accuracy.

[0021] A decorative cover 14 is fastened to the outside of the aluminum alloy pressure plate 8 to form decorative lines and ensure the decorative effect.

[0022] An inset groove 15 is formed on the aluminum alloy base 9 between the mounting groove 9.2 and the connecting part 9.1. A steel plate 16 is provided in the inset groove 15 to ensure the structural strength and load-bearing capacity of the aluminum alloy base 9 and to meet the installation requirements of the insulated glass 7.

[0023] A transition system 17 is provided between the building structure 1 and the roof structure 2. The transition system 17 includes a top joist 17.1, columns 17.2, beams 17.3, a bottom joist 17.4, and aluminum panels 17.5. One end of the top joist 17.1 is connected to the building structure 1, and the other end is placed on the flange plate of the I-beam 4. The upper end of the column 17.2 is fixedly connected to the top joist 17.1. The beams 17.3 are connected between the columns 17.2. One end of the bottom joist 17.4 is connected to the vertical joist 5, and the other end is connected to the column 17.2. The aluminum panels 17.5 are installed on the frame formed by the columns 17.2 and the beams 17.3, and the edge of the aluminum panels 17.5 is connected to the horizontal joist 6.

[0024] Specifically, the aluminum panel 17.5 is connected to the column 17.2 and the crossbeam 17.3 via corner brackets; the lower end of the aluminum panel 17.5 is bent toward the crossbeam 6 to the connecting part 9.1 and connected to the connecting part 9.1 with screws.

[0025] Furthermore, a galvanized steel plate 18 is connected between the building structure 1 and the top horizontal keel 6 in the area covered by the transfer system 17. One end of the galvanized steel plate 18 is connected to the building structure 1, and the other end is connected to the horizontal keel 6. By adding the galvanized steel plate 18, the interlayer fire resistance of the structure is ensured. Insulation cotton 19 is filled between the galvanized steel plate 18 and the frame formed by the horizontal keel 6 and the vertical keel 5 to improve the thermal insulation performance at the installation location of the aluminum single panel 17.5.

[0026] In addition, when the bottom keel 17.4 is installed closely, angle steel 20 is connected between the vertical keels 5. One end of the bottom keel 17.4 is connected to the column 17.2, and the other end is connected to the angle steel to meet the installation requirements of the bottom keel 17.4 and ensure the stability of the entire frame structure.

[0027] This application sets up a suspended combined curtain wall installation system, which is connected between two independent building structures 1. By erecting the top keel 17.1 on the I-beam 4, the installation of the transfer system 17 is satisfied on the one hand, and on the other hand, there is displacement space between the frame of the transfer system 17 and the roof structure 2, so as to avoid the problem of the transfer system 17 being damaged when the building structure 1 and the roof structure 2 move separately or differently.

[0028] The embodiments described above are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.

Claims

1. A suspended composite curtain wall mounting system, characterized in that, It includes a building structure (1), a roof structure (2) located on one side of the building structure (1), a support column (3) supporting the roof structure (2) below it, and an I-beam (4) located on the bottom of the roof structure (2) and connected between the support columns (3); Vertical keel (5) is fixedly installed on the building structure (1), and horizontal keel (6) is connected between the vertical keels (5). Insulating glass (7) is installed on the frame formed by the vertical keel (5) and the horizontal keel (6). A transition system (17) is provided between the building structure (1) and the roof structure (2). The transition system (17) includes a top keel (17.1), a column (17.2), a crossbeam (17.3), a bottom keel (17.4), and an aluminum single panel (17.5). One end of the top keel (17.1) is connected to the building structure (1), and the other end is placed on the flange plate of the I-beam (4). The column (17.2) is connected to the top keel (17.1). The crossbeam (17.3) is connected between the columns (17.2). One end of the bottom keel (17.4) is connected to the vertical keel (5), and the other end is connected to the column (17.2). The aluminum single panel (17.5) is installed on the frame composed of the column (17.2) and the crossbeam (17.3), and the edge of the aluminum single panel (17.5) is connected to the cross keel (6).

2. The suspended composite curtain wall mounting system of claim 1, wherein, The aluminum panel (17.5) is connected to the column (17.2) and the beam (17.3) via corner brackets.

3. The suspended composite curtain wall mounting system according to claim 1, wherein, The lower end of the aluminum panel (17.5) is bent toward the horizontal keel (6) and connected to the horizontal keel (6) through a connector.

4. The suspended composite curtain wall mounting system according to claim 1, wherein, The transition system (17) covers an area where a galvanized steel plate (18) is connected between the building structure (1) and the horizontal keel (6). One end of the galvanized steel plate (18) is connected to the building structure (1), and the other end is connected to the horizontal keel (6).

5. The suspended composite curtain wall mounting system according to claim 4, wherein, Insulating cotton (19) is filled between the galvanized steel sheet (18) and the frame consisting of the horizontal keel (6) and the vertical keel (5).

6. The suspended composite curtain wall mounting system according to claim 1, wherein, Angle steel is connected between the vertical keels (5), and one end of the bottom keel (17.4) is connected to the column (17.2), and the other end is connected to the angle steel.

7. The suspended composite wall system of claim 1, wherein, The sides of the horizontal keel (6) and the vertical keel (5) are respectively formed with aluminum alloy bases (9), and the hollow glass (7) is fixed on the aluminum alloy bases (9) by aluminum alloy pressure plates (8).

8. The suspended composite curtain wall mounting system according to claim 7, wherein, The aluminum alloy base (9) is fitted with a decorative buckle cover (14).