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Transparent assembly

A component, transparent technology, applied in the direction of layered products, metal layered products, glass/slag layered products, etc., can solve problems such as human injury

Pending Publication Date: 2022-02-25
CHINA BUILDING MATERIALS ACAD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, such as vehicles transporting missiles, bombers carrying special weapons, space shuttles, and medical facilities with ray detection functions, etc., are equipped with transparent windows to facilitate observation through the transparent windows. However, the environment in which these facilities are located often produces Rays, rays can cause a certain degree of damage to the human body

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] see figure 1 , Embodiment 1 of the present invention discloses a transparent component 10, including a first glass layer 1, a radiation protection layer 3 and a second glass layer 7, the radiation protection layer 3 includes opposite first surfaces 31 and second surfaces 32, the first A surface 31 is bonded to the first glass layer 1 through the first adhesive layer 2, the buffer layer 5 includes an opposite third surface 51 and a fourth surface 52, and the third surface 51 is bonded to the radiation protection layer through the second adhesive layer 4. The second surface 32 of the layer 3 and the second glass layer 7 are bonded to the fourth surface 52 of the buffer layer 5 through the third adhesive layer 6 .

[0033] In the transparent component 10 of Embodiment 1 of the present invention, since the transparent component 10 includes a radiation protection layer 3 and a buffer layer 5, the radiation protection layer 3 can be used to protect the radiation, and the buff...

Embodiment 2

[0067] see image 3 , Embodiment 2 of the present invention discloses a method for manufacturing a transparent component, including:

[0068] 101. Stack the second glass layer, the third bonding layer, the buffer layer, the second bonding layer, the radiation protection layer, the first bonding layer, the shielding layer, and the first glass layer in sequence and place them in a vacuum bag;

[0069] 102. Carrying out high-temperature hot-pressing treatment to the vacuum bag in an autoclave to form a first laminate;

[0070] 103. Apply the strong light protective layer to the first plywood in a clean environment.

[0071] In this way, the transparent component 10 with high structural strength can be formed, and the production efficiency is high.

[0072] Optionally, the hot-pressing temperature of the high-temperature hot-pressing treatment for the vacuum bag in the autoclave is 125°C±10°C, so as to ensure the pressing effect of the first laminate and improve the yield.

Embodiment 3

[0074] see Figure 4 , Embodiment 2 of the present invention discloses a method for manufacturing a transparent component, including:

[0075] 101. Stack the buffer layer, the second adhesive layer, the radiation protection layer, the first adhesive layer, the shielding layer, and the first glass layer in sequence and place them in a vacuum bag;

[0076] 102. Carrying out high-temperature hot-pressing treatment on the vacuum bag in an autoclave to form a second laminate;

[0077] 103. The second laminated board and the second glass layer are spaced apart, and placed on the mold, and the mold has an opening;

[0078] 104. Pouring the bonding solution into the mold through the opening and filling it between the second laminate and the second glass layer 7;

[0079] 105. Curing the bonding solution to form a third laminate;

[0080] 106. Apply the strong light protection component to the third plywood in a clean environment.

[0081] In this way, a transparent component 10 wi...

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Abstract

The invention discloses a transparent assembly. The transparent assembly comprises a first glass layer, a ray protection layer and a second glass layer, wherein the ray protection layer comprises a first surface and a second surface which are opposite to each other, and the first surface is bonded to the first glass layer through a first bonding layer; a buffer layer comprises a third surface and a fourth surface which are opposite to each other, and the third surface is bonded to the second surface of the ray protection layer through a second bonding layer; and the second glass layer is bonded and connected with the fourth surface of the buffer layer through a third bonding layer. The transparent assembly comprises the ray protection layer which is arranged between the first glass layer and the second glass layer and the buffer layer which is arranged between the ray protection layer and the second glass layer, so the transparent assembly can realize ray protection, and meanwhile, the transparent assembly can be protected from damage with relatively large thermal stress due to different materials of the ray protection layer and the second glass layer.

Description

technical field [0001] The invention relates to the technical field of glass deep processing, in particular to a transparent component. Background technique [0002] At present, such as vehicles transporting missiles, bombers carrying special weapons, space shuttles, and medical facilities with ray detection functions, etc., are equipped with transparent windows to facilitate observation through the transparent windows. However, the environment in which these facilities are located often produces Rays, rays can cause a certain degree of damage to the human body. Therefore, it is urgent to produce a kind of glass that can be used for shielding radiation. Contents of the invention [0003] The embodiment of the invention discloses a transparent component, which can protect against radiation, so as to reduce the damage of radiation to the human body. [0004] In order to achieve the above purpose, the embodiment of the present invention discloses a transparent component, in...

Claims

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Application Information

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IPC IPC(8): B32B17/10B32B27/42B32B27/40B32B7/12B32B27/08B32B27/30B32B27/06B32B33/00B32B9/00B32B9/04B32B15/095B32B15/098B32B3/12B32B17/06
CPCB32B27/42B32B27/40B32B7/12B32B27/08B32B27/308B32B27/06B32B33/00B32B9/007B32B9/045B32B15/095B32B15/098B32B3/12B32B17/06B32B2307/212B32B2307/56
Inventor 刘超英欧迎春陈记寿周绍骏曹文龙户云婷张文辉徐驰黄友奇吴志远刘建民崔新雨
Owner CHINA BUILDING MATERIALS ACAD