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Overview of Initial Development of Flexible Ablators for Hypersonic Inflatable Aerodynamic Decelerators

机译:高超音速充气气动减速器柔性消融器的初步开发概述

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This paper describes the development of flexible ablative materials that represent a new class of thermal protection system (TPS) materials. NASA determined a need for flexible materials that could withstand heating at 120 W/cm2 for landing large payloads at Mars. Traditional flexible, insulative TPS materials would not survive these high heating rates, so the development of ablative flexible materials began. NASA's previous success with developing rigid ablators based on silicaceous and carbonaceous rigid reinforcements led their scientists to attempt to extend the concepts utilizing silicaceous and carbonaceous flexible substrates. In addition, even more innovative approaches were attempted utilizing polymeric and polymeric/organic flexible substrates. Screening tests were performed on the first phase of materials with excellent results. A second year of innovation has led to development of 15 different variants and improvements on the first year's materials, along with 5 vendor developed materials, with a comprehensive screening test matrix planned.
机译:本文介绍了柔性烧蚀材料的发展,这些材料代表了新型的热防护系统(TPS)材料。 NASA决定需要一种能承受120 W / cm2热量的挠性材料,以便在火星上着陆较大的有效载荷。传统的挠性,绝缘TPS材料无法承受这些高加热速率,因此开始了消融性挠性材料的开发。 NASA先前在开发基于硅质和碳质刚性增强材料的刚性消融器方面的成功,促使他们的科学家试图扩展利用硅质和碳质柔性基底的概念。另外,尝试了利用聚合物和聚合物/有机柔性基底的更多创新方法。对材料的第一阶段进行了筛选测试,结果极好。第二年的创新导致第一年材料的15种不同变体的开发和改进,以及5种厂商开发的材料,并计划了全面的筛选测试矩阵。

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