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Flame-retardant material with composite gas film structure
The invention discloses a flame-retardant material with a composite gas film structure, the flame-retardant material sequentially comprises an anti-explosion layer, an airtight layer and a fabric layer from outside to inside, the fabric layer is of a double-layer structure, an inner stay wire layer is arranged in the fabric layer, the inner stay wire layer is a double-layer inflatable wiredrawing cloth prepared by adopting a double-layer film material inner stay wire space cloth technology, and the inner stay wire layer is a double-layer inflatable wiredrawing cloth prepared by adopting a double-layer film material inner stay wire space cloth technology. The anti-explosion layer, the airtight layer and the fabric layer are sequentially glued, the inner side of the fabric layer is glued with the inner stay wire layer, the flame-retardant material of the composite air film structure adopts a multi-air-chamber design, all air chambers are communicated, air is not stored in the flame-retardant material when the flame-retardant material is not used, and the flame-retardant material is temporarily inflated when the flame-retardant material is used. The flame-retardant material with the composite gas film structure has the following advantages that the flame-retardant material is good in spatial characteristic, good in stability, high in environmental adaptability, good in safety, high in heat insulation performance, good in airtight performance, light and good in flame-retardant performance, and the outer layer is made of a macromolecular explosion-proof flame-retardant material, so that the flame-retardant grade B1 is achieved.
本发明公开了一种复合气膜结构的阻燃材料,从外到内依次包括抗爆层、气密层和织物层,所述织物层为双层结构且内部设置内拉线层,所述内拉线层为采用双层膜材内拉线空间布技术制备的双层充气拉丝布,所述抗爆层、气密层和织物层依次胶粘而成,所述织物层内侧与内拉线层胶粘,所述复合气膜结构的阻燃材料采用多气室设计,每个气室相通,不使用时内部不存储空气,使用时临时充气。本复合气膜结构的阻燃材料,具有以下好处:空间特性好,稳固性好,环境适应性强,安全性好,绝热性能强,气密性能好,轻便,阻燃性能好,外层采用高分子防爆阻燃材料,达到阻燃等级B1级。
Flame-retardant material with composite gas film structure
The invention discloses a flame-retardant material with a composite gas film structure, the flame-retardant material sequentially comprises an anti-explosion layer, an airtight layer and a fabric layer from outside to inside, the fabric layer is of a double-layer structure, an inner stay wire layer is arranged in the fabric layer, the inner stay wire layer is a double-layer inflatable wiredrawing cloth prepared by adopting a double-layer film material inner stay wire space cloth technology, and the inner stay wire layer is a double-layer inflatable wiredrawing cloth prepared by adopting a double-layer film material inner stay wire space cloth technology. The anti-explosion layer, the airtight layer and the fabric layer are sequentially glued, the inner side of the fabric layer is glued with the inner stay wire layer, the flame-retardant material of the composite air film structure adopts a multi-air-chamber design, all air chambers are communicated, air is not stored in the flame-retardant material when the flame-retardant material is not used, and the flame-retardant material is temporarily inflated when the flame-retardant material is used. The flame-retardant material with the composite gas film structure has the following advantages that the flame-retardant material is good in spatial characteristic, good in stability, high in environmental adaptability, good in safety, high in heat insulation performance, good in airtight performance, light and good in flame-retardant performance, and the outer layer is made of a macromolecular explosion-proof flame-retardant material, so that the flame-retardant grade B1 is achieved.
本发明公开了一种复合气膜结构的阻燃材料,从外到内依次包括抗爆层、气密层和织物层,所述织物层为双层结构且内部设置内拉线层,所述内拉线层为采用双层膜材内拉线空间布技术制备的双层充气拉丝布,所述抗爆层、气密层和织物层依次胶粘而成,所述织物层内侧与内拉线层胶粘,所述复合气膜结构的阻燃材料采用多气室设计,每个气室相通,不使用时内部不存储空气,使用时临时充气。本复合气膜结构的阻燃材料,具有以下好处:空间特性好,稳固性好,环境适应性强,安全性好,绝热性能强,气密性能好,轻便,阻燃性能好,外层采用高分子防爆阻燃材料,达到阻燃等级B1级。
Flame-retardant material with composite gas film structure
一种复合气膜结构的阻燃材料
MAI HAOPING (Autor:in) / ZHAO CHANGJIANG (Autor:in) / WU YINGBO (Autor:in) / LIANG XIN (Autor:in)
06.12.2022
Patent
Elektronische Ressource
Chinesisch
Europäisches Patentamt | 2020
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