Fabricated energy-saving curtain wall window

Through the innovative design of prefabricated energy-saving curtain wall windows, the problems of single appearance and low installation efficiency of traditional doors and windows are solved, and efficient installation and strength improvement of glass structures are achieved to meet the appearance needs of high-end residential buildings.

CN223088720UActive Publication Date: 2025-07-11CHENGDU FANGDA BUILDING TECH CO LTD
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Patent Information

Application Number
CN202421849064.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-07-11
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

Traditional doors and windows have a single appearance, low installation efficiency, high material and labor costs, and it is difficult to ensure the vertical wind load strength of the glass.

Method used

The prefabricated energy-saving curtain wall window is adopted, including an elongated aluminum alloy keel frame, connecting members and hollow glass, which is fixed by expansion tube nails, combined with glass pressing wire and decorative buckle wire, and sealing and insulated with polyurethane foam filling layer. The shaft tube provides buffering, improving installation efficiency and wind load strength.

Benefits of technology

The effect of all-bright glass curtain wall is achieved, the installation efficiency is improved, the strength and reliability of the glass structural surface are enhanced, and the material and labor costs are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an assembly type energy-saving curtain wall window, and relates to the technical field of curtain wall structures, the assembly type energy-saving curtain wall window comprises a keel frame, the keel frame is a slender aluminum alloy frame body, the upper end, the lower end and the side end of the keel frame are respectively and fixedly provided with a connecting component and a side component, and the connecting component, the side component and a mounting wall surface are combined and fixed through expansion pipe nails; a stand column is formed in the keel frame, hollow glass is arranged on the two sides of the stand column, and glass pressing lines are clamped and matched between the hollow glass and the stand column. Compared with a common aluminum alloy door and window, the door and window has the advantages that the effect of a full-exposed frame glass curtain wall can be achieved at indoor and outdoor visible positions through the innovative design of the cross section style of the transverse keel frame and the vertical keel frame, meanwhile, compared with a common opening glass curtain wall, installation procedures can be greatly reduced through adjustment of pre-installation, and installation efficiency is improved. The mounting efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of curtain wall structures, and particularly relates to an assembled energy-saving curtain wall window. Background Art

[0002] With the development of architecture and the improvement of aesthetics, architects have increasingly diverse requirements for the appearance of buildings. For traditional window and door practices, only different window and door profiles are used to form different window sizes and embed them in building openings. The exterior walls often adopt surface treatment methods such as real stone paint, ceramic tiles, and coatings. The overall shape of the building is only achieved by the civil engineering structure design, and the effect has great limitations and can no longer fully meet the appearance requirements of high-end residences. Subsequently, a unique structure combining window and door practices with the appearance of curtain walls has emerged;

[0003] However, due to the single appearance of traditional window and door practices and the low installation efficiency of the embedded opening curtain wall practices, the material cost and labor cost are also very high. How to balance the installation convenience of traditional window systems with the beautiful appearance of curtain walls and ensure the vertical wind load strength of glass on the curtain wall structure surface has become a new problem to be solved. Summary of the Utility Model

[0004] In view of the above technical problems existing in the prior art, an assembled energy-saving curtain wall window is provided.

[0005] The purpose and effect of the utility model are achieved by the following specific technical means:

[0006] An assembled energy-saving curtain wall window includes a keel frame. The keel frame is a slender aluminum alloy frame body. Connecting members and side members are respectively fixed at the upper and lower ends and the side ends of the keel frame. The connecting members, side members and the installation wall surface are all fixedly combined by expansion tube nails;

[0007] Columns are formed in the keel frame. Insulating glass is arranged on both sides of the columns, and glass press strips are clamped and matched between the insulating glass and the columns;

[0008] Decorative buckle lines are arranged on the outer edge of the insulating glass. Sealing members are fixed between the decorative buckle lines and the glass press strips, and fireproof cotton is sealed between adjacent decorative buckle lines;

[0009] A transfer frame is arranged at one end of the keel frame close to the connecting member. Hanging plate frames and connecting column plates are respectively arranged at the head and tail ends of the transfer frame. The hanging plate frames and connecting column plates are respectively fixedly hung with the insulating glass and the connecting members, and a shaft tube is directly embedded at the hanging end of the hanging plate frame and the insulating glass.

[0010] Further, both the decorative buckle lines and the glass press strips are made of aluminum alloy structures.

[0011] Further, the keel frame and the glass pressing strip are in an indented fit structure.

[0012] Further, both ends of the column are of a through-bar heat insulation structure, and both ends of the column are combined and connected through heat insulation strips.

[0013] Further, a polyurethane foam filling layer is formed by filling between the keel frame, the decorative button line and the installation wall surface.

[0014] Further, the seal is sealed by a combination of rubber strips and sealant.

[0015] Further, the side edge of the hanging plate frame is of a countersunk head L-shaped structure, and the hanging plate frame is hung and combined with the insulating glass through the countersunk head structure.

[0016] Further, the shaft tube is of an inner-filled spring ring structure with a sealed port, and the spring ring shaft tube opening of the shaft tube is vertically matched with the hanging plate frame.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0018] This kind of assembled energy-saving curtain wall window, compared with ordinary aluminum alloy doors and windows, through the innovative design of the cross-section styles of the horizontal and vertical keel frames, can present the effect of a full-frame glass curtain wall at both the indoor and outdoor visible positions. At the same time, compared with ordinary opening glass curtain walls, it can greatly reduce the installation process through pre-installation adjustment, improve the installation efficiency, and cooperate with the hanging plate frame mounted and fixed in the structure, and cooperate with the shaft tube, the glass pressing strip and the insulating glass to reduce the impact of vertical airflow, so as to improve the strength and reliability of the glass structure surface of the glass curtain wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0020] Figure 2 It is a schematic diagram of the longitudinal cross-section structure of the keel frame of the present utility model;

[0021] Figure 3 It is a schematic diagram of the transverse cross-section structure of the keel frame of the present utility model;

[0022] Figure 4 It is a schematic diagram of the adapter frame structure of the present utility model;

[0023] Figure 5 It is a schematic diagram of the transverse cross-section structure of the adapter frame of the present utility model.

[0024] Markings in the figure: 1 - Dragon skeleton; 2 - Decorative button line; 3 - Insulating glass; 4 - Connecting member; 5 - Adapter frame; 6 - Expansion tube nail; 7 - Column; 8 - Glass pressure line; 9 - Seal; 10 - Fireproof cotton; 11 - Side member; 12 - Hanging plate frame; 13 - Shaft tube; 14 - Connecting column plate. Detailed implementation manner

[0025] Please refer to Figures 1-5 , and further illustrate the embodiments of the present utility model;

[0026] An assembled energy-saving curtain wall window includes a dragon skeleton 1, which is a slender aluminum alloy frame. Connecting members 4 and side members 11 are respectively fixed at the upper and lower ends and the side ends of the dragon skeleton 1. The connecting members 4, side members 11 and the installation wall surface are combined and fixed through expansion tube nails 6;

[0027] Columns 7 are formed in the dragon skeleton 1. Insulating glasses 3 are arranged on both sides of the columns 7, and glass pressure lines 8 are clamped and matched between the insulating glasses 3 and the columns 7;

[0028] Decorative button lines 2 are arranged on the outer edges of the insulating glasses 3. Seals 9 are fixed between the decorative button lines 2 and the glass pressure lines 8, and fireproof cotton 10 is sealed between adjacent decorative button lines 2;

[0029] An adapter frame 5 is arranged at one end of the dragon skeleton 1 close to the connecting member 4. Hanging plate frames 12 and connecting column plates 14 are respectively arranged at the head and tail ends of the adapter frame 5. The hanging plate frames 12 and connecting column plates 14 are respectively hung and fixed with the insulating glasses 3 and the connecting members 4, and a shaft tube 13 is directly embedded at the hanging end of the hanging plate frame 12 and the insulating glass 3.

[0030] This structure mainly uses the slender cross-sectional structure formed by the dragon skeleton 1 and the columns 7 to meet the indoor and outdoor visible widths. At the same time, the dragon skeleton 1, columns 7, and self-tapping screws are assembled into a frame by means of pre-installation at the factory, as Figure 2 , 3 shown, and are connected by galvanized steel pull tabs with matching dimensions around the dragon skeleton 1, so that the installation positions and dimensions of the glass pressure lines 8 and the decorative button lines 2 can be adjusted according to the glass size and the wall opening size during on-site installation, thus while presenting the appearance effect of a fully framed curtain wall, greatly reducing the installation process and improving the installation efficiency at the same time;

[0031] At the same time, as Figure 3As shown in the figure, in order to improve the installation quality and efficiency, two independent decorative trim lines 2 are integrally combined through fireproof cotton 10 and connecting parts. Considering that the curtain wall window system is a split-type installation and there must be certain deviations, a left-right split-type adjustable design is carried out at the connecting part position of the decorative trim line 2. The size can be adjusted in cooperation with the fireproof cotton 10 filled later, and on-site measurement and assembly can be carried out according to the installation situation of the on-site curtain wall window system to meet the verticality of the decorative strip installation;

[0032] As Figure 4 , 5 As shown in the figure, considering the impact of the vertical airflow on the insulating glass 3 of the glass curtain wall and the impact on the connection structure between the corner ends of the insulating glass 3 and the main keel frame 1, this structure further combines the connection ends of the main keel frame 1 and the connecting member 4 and the connection ends of the main keel frame 1 and the insulating glass 3 through the adapter frame 5, and cooperates with the shaft cylinder tube 13 and the hanging plate frame 12 structure with the shaft vertically arranged to bear the vertical impact force, so as to stabilize the vertical stress surface of the insulating glass 3 by means of the entire adapter frame 5 hanging structure and improve the overall wind load strength of the structure.

[0033] Preferably, both the decorative trim line 2 and the glass pressure line 8 are made of aluminum alloy. While the aluminum alloy outer covering trim line structure meets the structural strength requirements, it effectively cuts off heat in the voids inside the structures of the decorative trim line 2 and the glass pressure line 8 to ensure the heat insulation of the entire curtain wall window structure. At the same time, this curtain wall window is not limited to Figure 3 the rectangular decorative trim line 2 shown in the figure to present the full visible frame effect of the curtain wall window. Other special-shaped decorative trim line structures can also be used to adjust the exterior finish of this structure, so as to realize different exterior finish transformations in combination with the visible frame effect of the curtain wall window and improve the applicability of this structure.

[0034] Preferably, the main keel frame 1 and the glass pressure line 8 are in an indented fit structure. When the indoor visible width is designed to be 28 mm wide and the depth dimension is increased to 130 mm, by designing the glass pressure line 8 in an indented manner, preferably with an indented dimension of 55 mm, there is a more obvious sense of layering in and out between the glass pressure line 8 and the main keel frame 1, strengthening the indoor visual effect of the main keel.

[0035] Preferably, both ends of the column 7 are of a through-strip heat insulation structure. As shown in Figure 2, both ends of the column 7 are combined with heat insulation strips, and the heat insulation strips are used to connect the ports of the column 7 to provide heat insulation for the structure of the column 7 and the main keel frame 1.

[0036] Preferably, a polyurethane foam filling layer is formed by filling between the main keel frame 1, the decorative trim line 2 and the installation wall surface. The filling layer formed by filling and curing with polyurethane foam filling agent is used for sealing, heat insulation and sound absorption treatment between the curtain wall window structure and the installation wall surface.

[0037] Preferably, the seal 9 is sealed by a combination of rubber strips and sealant. As a connecting and sealing structure between the decorative trim line 2, the insulating glass 3, and the glass pressing strip 8, the seal 9 seals the ports through the adjustment of the penetration and the subsequent sealant filling the gap to improve the sealing performance of the seal 9.

[0038] Preferably, the side edge of the hanging plate frame 12 is a countersunk L-shaped structure. The hanging plate frame 12 is hung and combined with the insulating glass 3 through the countersunk structure. The countersunk hanging plate frame 12 structure is used to mount and snap onto the edge of the insulating glass 3, and in combination with the fixing structure of the insulating glass 3 and the column 7 and the snap-fit structure of the insulating glass 3 and the glass pressing strip 8, the connection tightness of the entire hanging plate frame 12 and the adapter frame 5 to the insulating glass 3 is improved.

[0039] Preferably, the shaft tube 13 is an internally filled spring ring structure with port sealing. The spring ring shaft opening of the shaft tube 13 is perpendicularly matched with the hanging plate frame 12. The sealed spring ring structure provides a buffer space for the vertical structure of the shaft tube 12 and the adapter frame 5 to the hanging plate frame 12 to reduce the impact of the DC airflow on the corner connection end of the insulating glass 3 on the keel frame 1 and the glass pressing strip 8 structure.

[0040] The implementation method of this device is as follows:

[0041] 1) The keel frame 1 and the column 7 are integrally assembled into a frame with self-tapping screws in the processing factory and then transported to the site for overall installation;

[0042] 2) The four sides of the keel frame 1 are connected by galvanized steel tabs arranged at a width of 30 mm and a spacing of 350 mm. The steel tabs are fixed to the main structure of the installation wall through M6x50 plastic expansion tube nails;

[0043] 3) The size of the insulating glass 3 is customized according to the structure of the installation wall opening, and the insulating glass 3 is installed by the on-site installation method;

[0044] 4) After the insulating glass 3 and the column 7 are fixed, then the glass pressing strip 8 is mounted on the installation surface of the insulating glass 3 and the column 7 for on-site installation;

[0045] 5) Subsequently, the vertical decorative trim line 2 is installed and fixed along the installation surface;

[0046] 6) Considering the construction errors in the main structure of the opening, a gap of about 20 - 25 mm is reserved between the window perimeter and the structure. The steel tabs are installed to adjust and absorb the structural errors, and finally, the gap is sealed according to the size of the gap opening.

[0047] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.

Claims

1. An assembled energy-saving curtain wall window, comprising a keel frame (1), characterized in that: The keel frame (1) is a slender aluminum alloy frame body. Connecting members (4) and side members (11) are respectively fixed at the upper and lower ends and the side ends of the keel frame (1). The connecting members (4), the side members (11) and the installation wall surface are combined and fixed through expansion pipe nails (6). Columns (7) are formed in the keel frame (1). Insulating glass (3) is arranged on both sides of each column (7). A glass pressing strip (8) is clamped and matched between the insulating glass (3) and the column (7). A decorative fastening line (2) is arranged on the outer edge of the insulating glass (3). A seal (9) is fixed between the decorative fastening line (2) and the glass pressing strip (8). Fireproof cotton (10) is sealed between adjacent decorative fastening lines (2). A transition frame (5) is arranged at one end of the keel frame (1) close to the connecting member (4). Hanging plate frames (12) and connecting column plates (14) are respectively arranged at the head and the tail ends of the transition frame (5). The hanging plate frames (12) and the connecting column plates (14) are respectively hung and fixed to the insulating glass (3) and the connecting member (4). An axle tube (13) is vertically embedded at the hanging end of the hanging plate frame (12) and the insulating glass (3).

2. The prefabricated energy-saving curtain wall window according to claim 1, wherein: Both the decorative fastening line (2) and the glass pressing strip (8) are of aluminum alloy structure.

3. The prefabricated energy-saving curtain wall window according to claim 1, characterized in that: The keel frame (1) and the glass pressing strip (8) are of a retracted matching structure.

4. The prefabricated energy-saving curtain wall window according to claim 1, wherein: Both ends of the column (7) are of a through-strip heat insulation structure. Both ends of the column (7) are combined and connected through heat insulation strips.

5. The prefabricated energy-saving curtain wall window according to claim 1, wherein: A polyurethane foam filling layer is formed by filling between the keel frame (1), the decorative fastening line (2) and the installation wall surface.

6. The prefabricated energy-saving curtain wall window according to claim 1, characterized in that: The seal (9) is sealed through a combination of rubber strips and sealant.

7. The prefabricated energy-saving curtain wall window according to claim 1, wherein: The side end edge of the hanging plate frame (12) is of a countersunk L-shaped structure. The hanging plate frame (12) is hung and combined with the insulating glass (3) through the countersunk structure.

8. The prefabricated energy-saving curtain wall window according to claim 1, wherein: The axle tube (13) is of an inner filling spring coil structure with sealed ports. The spring coil axle tube opening of the axle tube (13) is vertically matched with the hanging plate frame (12).