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Science and technology of polymeric ablative materials for thermal protection systems and propulsion devices: A review

机译:用于热防护系统和推进装置的聚合烧蚀材料科学和技术:综述

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Ablative materials are at the base of entire aerospace industry; these sacrificial materials are used to manage the heat shielding of propulsion devices (such as liquid and Solid Rocket Motors (SRMs)) or to protect vehicles and probes during the hypersonic flight through a planetary atmosphere. Accordingly they are also known as Thermal Protection System (TPS) materials. Some non-polymeric materials have been successfully used as ablatives; however, due to their versatility, Polymeric Ablatives (PAs) represent the widest family of sacrificial TPS materials. In fact, when compared to non-polymeric ablatives such as high melting point metals, inorganic polymers (or metal oxides or carbides), PAs have some intrinsic advantages such as: tunable density, lower cost, and higher heat shock resistance. This review covers all main topics related to the science and technology of ablative materials with current and potential applications in the aerospace industry. After a short, yet comprehensive, introduction on non-ablative materials, this review paper summarizes fifty years of research efforts on polymeric ablatives, starting from the state of the art solutions currently used as TPS, up to covering the most recent efforts for nanostructuring their formulations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:烧蚀材料是整个航空航天工业的基础。这些牺牲材料用于管理推进装置(例如液体和固体火箭发动机(SRM))的隔热性,或在通过行星大气层进行超音速飞行期间保护车辆和探测器。因此,它们也被称为热保护系统(TPS)材料。一些非聚合材料已被成功用作烧蚀剂。但是,由于它们的多功能性,聚合消融剂(PAs)代表了最广泛的TPS牺牲材料家族。实际上,与非聚合物烧蚀剂(例如高熔点金属,无机聚合物(或金属氧化物或碳化物))相比,PA具有一些固有的优势,例如:密度可调,成本更低,耐热冲击性更高。这篇综述涵盖了与烧蚀材料科学技术相关的所有主要主题,在航空航天工业中具有当前和潜在的应用。在简短,全面地介绍了非烧蚀性材料之后,本综述总结了五十年来对聚合物烧蚀性的研究工作,从目前用作TPS的最新解决方案开始,直至涵盖了对其纳米结构进行纳米结构化的最新工作。配方。 (C)2016 Elsevier Ltd.保留所有权利。

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