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Ultralow-energy-consumption building curtain wall frame profile device and manufacturing method

A technology for profiles and energy consumption, applied in buildings, building components, building structures, etc., can solve the problems of reduced thermal insulation performance, poor fire and thermal insulation performance, low thermal conductivity, etc., and achieve high mechanical connection strength, fire and thermal insulation. The effect of high performance and low thermal conductivity

Pending Publication Date: 2020-11-17
SHAN XI XIN MING GE FIRE PROTECTION SCI&TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The existing building curtain wall uses metal materials as the supporting frame structure, so there are some limitations, such as poor fire protection and heat insulation performance, high energy consumption, etc.
The metal materials used in the existing building curtain wall supporting frames are mainly steel and broken bridge aluminum alloy. Steel has high load-bearing performance, but has poor heat insulation performance, high thermal conductivity, and high energy consumption; broken bridge aluminum alloy has good heat insulation performance and heat conduction. The coefficient is low, but the existing broken bridge aluminum alloy is to penetrate two heat-insulating strip profiles in the middle of the aluminum alloy profile, and the aluminum alloy profile is divided into two parts by the two heat-insulating strip profiles, which blocks heat conduction and reduces heat conduction coefficient, but the existing heat-insulating strip profiles usually use PA66 material, which has low strength. To achieve a lower heat transfer coefficient, the cross-sectional width of the heat-insulating strip must be increased, but when used as a profile with a larger cross-section, the strength of PA66 is difficult to support The weight of the building curtain wall panel, in addition, PA66 material cannot meet the fire protection requirements of the building curtain wall, and the aluminum alloy profile and the heat insulation bar profile are mechanically snapped and connected. Thermal expansion and contraction cause gaps in the connection between the aluminum alloy profile and the heat insulation bar profile, which reduces the mechanical connection strength and load-bearing performance, and is prone to water seepage and wind. The inner aluminum alloy profiles of the alloy are in contact, forming a heat conduction bridge and reducing the heat insulation performance

Method used

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  • Ultralow-energy-consumption building curtain wall frame profile device and manufacturing method
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  • Ultralow-energy-consumption building curtain wall frame profile device and manufacturing method

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Embodiment Construction

[0023] The preferred embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, so as to define the protection scope of the present invention more clearly.

[0024] Such as figure 1 The first shown embodiment is an ultra-low energy consumption building curtain wall frame profile device, including an inner frame profile 1, a medium fireproof and heat-insulating connection profile 2, a threaded glass fiber reinforcement 3, a fixed connection block 4 and a fastening nut 5. The frame profile 1 is a one-time processing and forming metal integral component, and its cross-section is in the shape of a "concave" character. In the middle of the concave surface of the inner frame profile 1, there is an installation connection notch 11, and there are slots 12 on both sides. The inner frame profile 1 The inside of...

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Abstract

The invention relates to an ultralow-energy-consumption building curtain wall frame profile device and a manufacturing method thereof. The device comprises an inner frame profile (1), a middle fireproof heat-insulation connecting profile (2), a threaded glass fiber rib (3), a fixing connecting block (4) and a fastening nut (5); the inner frame profile (1) is a metal integral component formed by one-time machining, and a mounting connecting notch (11) is formed in the middle of a sunken face; the middle fireproof heat-insulation connecting profile (2) is a glass fiber reinforced polyurethane resin integral component formed by one-time extrusion, the cross section of the middle fireproof heat-insulation connecting profile (2) is square, and the inner end of the middle fireproof heat-insulation connecting profile (2) is inserted into the mounting connecting notch (11); and the threaded glass fiber rib (3) penetrates through the inner frame profile (1) and the middle fireproof heat-insulation connecting profile (2) to conduct fastening, supporting and connecting. The device and the method have the advantages that the fireproof heat-insulation performance is high, the mechanical connection strength is high, the bearing performance is high, the structure is simple and novel, the production and manufacturing process is simple and mature, and the production cost is low.

Description

technical field [0001] The invention relates to the technical field of building curtain walls, in particular to an ultra-low energy consumption building curtain wall frame profile device and a manufacturing method. Background technique [0002] The building curtain wall is the non-load-bearing outer wall enclosure of the building. It is hung on it like a curtain, so it is also called a hanging wall. It is a light-weight wall with a decorative effect commonly used in modern large-scale and high-rise buildings. The biggest feature it gives to buildings is to organically unify factors such as architectural aesthetics, building functions, building energy efficiency and building structure, so that buildings show different hues from different angles, and give people a sense of harmony with the changes of sunlight, moonlight and light. Constructed beauty. Building curtain walls are usually composed of panels (glass, metal plates, stone plates, ceramic plates, etc.) and supporting ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B2/96E04B1/94E04B1/78
CPCE04B2/96E04B2/965E04B1/944E04B1/78
Inventor 矫振清尹鸿鹄
Owner SHAN XI XIN MING GE FIRE PROTECTION SCI&TECH CO LTD
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