High heat flux density resisting thermal protection material and preparation method thereof
A heat protection material and flow density technology, which is applied in coatings, layered products, textiles and papermaking, etc., can solve the problems of poor damage resistance of light heat protection materials, and achieve simple structure, no need for mechanical connections, and high reliability high effect
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[0041] An embodiment of the present invention provides a method for preparing a high heat flux resistant thermal protection material, comprising the following steps:
[0042] (1) Prepare the second carbon fiber layer on one side of the first carbon fiber layer to obtain an integrated carbon fiber fabric, wherein the thermal conductivity of the first carbon fiber layer is greater than the thermal conductivity of the second carbon fiber layer, and the second carbon fiber layer a carbon fiber layer having a density greater than that of the second carbon fiber layer;
[0043]Specifically, the first carbon fiber layer is a laminar fabric structure, which can be made of the first carbon fiber, the first carbon fiber carbon cloth and / or the first carbon fiber net tire through weaving, needle punching or sewing, etc. A carbon fiber layer can also be made of the first carbon fiber to form the main structure, which is formed by inserting other carbon fiber mesh tires, carbon cloth, etc....
Embodiment 1
[0074] This embodiment provides a high heat flux resistant thermal protection material, the preparation method of which comprises:
[0075] (1) Lay layers of high thermal conductivity mesophase pitch-based carbon fiber cloth with a thermal conductivity of 950W / (m.K) and its mesh tires alternately. Before laying the uppermost layer of mesophase pitch-based carbon fiber cloth, lay a layer of viscose base carbon fiber mesh tire, and then spread the uppermost layer of mesophase pitch-based carbon fiber cloth, which is needle-punched to obtain a thickness of 10mm and a density of 0.55g / cm 3 The first carbon fiber layer; on the upper surface of the first carbon fiber layer lay a viscose-based carbon fiber mesh tire, and continue to form a layer with a thickness of 50mm and a density of 0.16g / cm by acupuncture. 3 The second carbon fiber layer finally forms an integrated carbon fiber fabric (size 200×50×60mm), with an overall density of about 0.23g / cm 3 .
[0076] (2) Using propane ...
Embodiment 2
[0082] This embodiment provides a high heat flux resistant thermal protection material, the preparation method of which comprises:
[0083] (1) Alternately lay layers of high thermal conductivity mesophase pitch-based carbon fiber cloth with a thermal conductivity of 950W / (m.K) and vapor-phase grown carbon fiber mesh tires, and lay a layer before laying the top layer of mesophase pitch-based carbon fiber cloth Polyacrylonitrile-based T300 carbon fiber mesh tire, and then lay the uppermost layer of mesophase pitch-based carbon fiber cloth, needle punched to obtain a thickness of 12mm and a density of 0.53g / cm 3 The first carbon fiber layer; on the upper surface of the first carbon fiber layer, polyacrylonitrile-based T300 carbon fiber mesh tires are laid, and the acupuncture method is used to continue to form a thickness of 45mm and a density of 0.18g / cm 3 The second carbon fiber layer finally forms an integrated carbon fiber fabric (size 200×50×57mm), with an overall density o...
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