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Fabricated structure sound insulation and fracture prevention outer window for ultra-low energy consumption building

An architectural and prefabricated technology, applied in the field of windows, can solve the problems of poor anti-breakage performance of tempered glass, lack of thermal insulation and sound insulation performance of window frames, poor overall performance, etc. Effect

Pending Publication Date: 2022-05-27
荣华智能集成建造科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the overall performance of the existing external window structure is not good, the window frame is heavy, and it is not easy to assemble. At the same time, the window frame does not have heat and sound insulation performance. In addition, the overall crack resistance of the tempered glass is not good, and the user experience is not good.

Method used

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  • Fabricated structure sound insulation and fracture prevention outer window for ultra-low energy consumption building
  • Fabricated structure sound insulation and fracture prevention outer window for ultra-low energy consumption building
  • Fabricated structure sound insulation and fracture prevention outer window for ultra-low energy consumption building

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] like Figure 1-12As shown, the prefabricated soundproof and anti-rupture exterior window for ultra-low energy consumption buildings according to an embodiment of the present invention includes a window frame 1 and a glass 2, the glass 2 is located inside the window frame 1, and the window frame 1 It is composed of several window frame units 3 connected end to end. The window frame unit 3 is composed of a peripheral profile 4, an inner cladding profile 5, an inner cladding profile 6, a limit support profile 7, a limit support profile 2 8, and a pre- The clamping profile 9, the glass clamping profile 1 10 and the glass clamping profile 2 11 are constituted. The inner cladding profile 1 5 and the inner cladding profile 2 6 are located on both sides of the outer profile 4, respectively. The first limiting support profile 7 and the second limiting support profile 8 are respectively connected to the two ends between the inner cladding profile 1 5 and the inner cladding profil...

Embodiment 2

[0038] like Figure 1-12 As shown in the figure, the glass 2 is located inside the window frame 1, and the window frame 1 is composed of a plurality of window frame units 3 connected end to end, and the window frame unit 3 is composed of a peripheral profile 4, an inner cladding profile 5, an inner profile The second cladding profile 6, the limiting support profile 1 7, the limiting support profile 2 8, the pre-tightening profile 9, the glass clamping profile 1 10 and the glass clamping profile 2 11 are composed of the inner cladding profile 1 5 and all the The second inner cladding profiles 6 are located on both sides of the interior of the peripheral profiles 4, respectively, and the first limiting support profiles 7 and the second limiting supporting profiles 8 are respectively connected to the inner coating profiles 1 5 and the The two ends between the inner cladding profiles 2 6 , the pre-tightening profiles 9 are connected between the limit supporting profiles 2 8 , the ...

Embodiment 3

[0040] like Figure 1-12 As shown in the figure, the glass 2 is located inside the window frame 1, and the window frame 1 is composed of a plurality of window frame units 3 connected end to end, and the window frame unit 3 is composed of a peripheral profile 4, an inner cladding profile 5, an inner profile The second cladding profile 6, the limiting support profile 1 7, the limiting support profile 2 8, the pre-tightening profile 9, the glass clamping profile 1 10 and the glass clamping profile 2 11 are composed of the inner cladding profile 1 5 and all the The second inner cladding profiles 6 are located on both sides of the interior of the peripheral profiles 4, respectively, and the first limiting support profiles 7 and the second limiting supporting profiles 8 are respectively connected to the inner coating profiles 1 5 and the The two ends between the inner cladding profiles 2 6 , the pre-tightening profiles 9 are connected between the limit supporting profiles 2 8 , the ...

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Abstract

The invention discloses an ultra-low energy consumption building sound insulation and fracture prevention outer window with a fabricated structure, which comprises a window frame and glass, and is characterized in that the window frame is formed by connecting a plurality of window frame units end to end; each window frame unit is composed of a peripheral profile, a first inner wrapping profile, a second inner wrapping profile, a first limiting supporting profile, a second limiting supporting profile, a pre-tightening profile, a first glass clamping profile and a second glass clamping profile, glass is composed of a glass body and an outer wrapping frame, and the glass body is composed of a tempered glass outer layer, a tempered glass middle layer and a tempered glass inner layer. The window has the beneficial effects that the window is convenient to assemble, reasonable in structure and tight in connection, the overall weight of the window frame can be reduced, meanwhile, the overall strength of the window frame is not affected, the window frame has the effects of heat insulation, fire prevention and noise prevention, and the noise prevention performance of glass is effectively improved through the design of the two vacuum layers; the glass formed by the glass body and the outer wrapping frame can effectively avoid breakage of the glass, and the overall performance of the window is improved.

Description

technical field [0001] The invention relates to the technical field of windows, in particular to a prefabricated soundproof and anti-rupture exterior window for ultra-low energy consumption buildings. Background technique [0002] With the promulgation of the central government's new "practical, economical, green, and beautiful" policy, in order to improve the indoor environment of buildings, improve energy efficiency, improve building quality and life, and guide buildings to continuously improve energy-saving levels, ultra-low energy consumption, near zero energy Energy consumption and zero energy consumption will become the development trend of green buildings in the future. In ultra-low energy consumption buildings, the thermal insulation performance, air tightness and no thermal bridges of external windows are important technical measures to realize ultra-low energy consumption buildings. However, the overall performance of the existing exterior window structure is po...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E06B5/20E06B3/58E06B3/66E06B3/67E06B3/677E06B7/22
CPCE06B5/205E06B3/58E06B3/66E06B3/6612E06B3/6707E06B3/677E06B7/22Y02B80/22
Inventor 李海生于海洋亓群杨迎春高旭林贾国行吴金栩王勇郑文涛
Owner 荣华智能集成建造科技有限公司