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Silicone polymer composites for thermal protection system: Fiber reinforcements and microstructures

机译:用于热防护系统的有机硅聚合物复合材料:纤维增强材料和微结构

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摘要

A new class of silicone polymer matrix composites was evaluated using a simulated solid rocket motor test apparatus. Conversion of this organic silicone polymer to a ceramic (i.e. silica) structure on exposure to flame impingement or high temperature, accounts for its outstanding thermal stability. A research program was aimed to develop and evaluate this new class of thermal protection materials for military applications. This article presents the effects of the type and form of reinforcements on the thermal performance of a novel class of silicone polymer matrix composites. Reinforcement types such as glass, silica, quartz, Nextel~(TM), and Nicalon~(TM) were used. Reinforcement forms such as random continuous-fiber mat, chopped-fiber mat, 2-D fabric, 3-D fabric, chopped roving, and broadgood tapes with different ply angles were tested. Detailed microstructural, mass loss, and peak erosion analyses were conducted on the phenolic-based matrix composite (control) and silicone-based matrix composites to understand their protective mechanisms.
机译:使用模拟的固体火箭发动机测试设备对新型有机硅聚合物基复合材料进行了评估。在暴露于火焰或高温下时,这种有机硅聚合物转化为陶瓷(即二氧化硅)结构,说明了其出色的热稳定性。旨在研究和评估这种新型军事防护材料的研究计划。本文介绍了增强剂的类型和形式对新型有机硅聚合物基复合材料热性能的影响。使用了增强类型,例如玻璃,二氧化硅,石英,NextelTM和NicalonTM。测试了增强形式,例如随机连续纤维垫,短切纤维垫,2-D织物,3-D织物,短切粗纱和具有不同帘布层角度的宽阔胶带。对酚基基质复合材料(对照)和硅酮基基质复合材料进行了详细的微观结构,质量损失和峰值腐蚀分析,以了解其保护机理。

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