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Orion Exploration Flight Test Post-Flight Inspection and Analysis

机译:猎户座探索飞行测试飞行后检查与分析

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摘要

The multipurpose crew vehicle, Orion, is being designed and built for NASA to handle the rigors of crew launch, sustainment and return from scientific missions beyond Earth orbit. In this role, the Orion vehicle is meant to operate in the space environments like the naturally occurring meteoroid and the artificial orbital debris environments (MMOD) with successful atmospheric reentry at the conclusion of the flight. As a result, Orion's reentry module uses durable porous, ceramic tiles on almost thirty square meters of exposed surfaces to accomplish both of these functions. These durable, non-ablative surfaces maintain their surface profile through atmospheric reentry; thus, they preserve any surface imperfections that occur prior to atmospheric reentry. Furthermore, Orion's launch abort system includes a shroud that protects the thermal protection system while awaiting launch and during ascent. The combination of these design features and a careful pre-flight inspection to identify any manufacturing imperfections results in a high confidence that damage to the thermal protection system identified post-flight is due to the in-flight solid particle environments. These favorable design features of Orion along with the unique flight profile of the first exploration flight test of Orion (EFT-1) have yielded solid particle environment measurements that have never been obtained before this flight.
机译:正在为NASA设计和制造多用途乘员车Orion,以处理乘员发射,维持和从地球轨道以外的科学飞行任务返回的严峻考验。在这个角色中,猎户座飞行器的设计意图是在太空环境中运行,例如自然流星体和人造轨道碎片环境(MMOD),并在飞行结束时成功进入大气层。因此,猎户座的折返模块在近三十平方米的裸露表面上使用耐用的多孔陶瓷砖来完成这两项功能。这些耐用,非烧蚀的表面通过大气再进入保持其表面轮廓;因此,它们保留了在大气折返之前发生的任何表面缺陷。此外,猎户座的发射中止系统包括一个护罩,可在等待发射和上升期间保护热保护系统。这些设计特征与仔细的飞行前检查相结合,以识别出任何制造缺陷,从而高度确信飞行后固体颗粒环境会损坏飞行后识别的热保护系统。 Orion的这些有利的设计特征以及Orion的首次探索性飞行测试(EFT-1)的独特飞行曲线,产生了在此飞行之前从未获得的固体颗粒环境测量结果。

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