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Crystallographic Oxide Phase Identification of Char Deposits Obtained from Space Shuttle Columbia Window Debris

机译:从哥伦比亚号航天飞机窗户碎片获得的焦炭沉积物的结晶学氧化相鉴定

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摘要

Analyzing the remains of Space Shuttle Columbia has proven technically beneficial years after the vehicle breakup. This investigation focused on charred deposits on fragments of Columbia overhead windowpanes. Results were unexpected relative to the engineering understanding of material performance in a reentry environment. The TEM analysis demonstrated that the oxides of aluminum and titanium mixed with silicon oxides to preserve a history of thermal conditions to which portions of the vehicle were exposed. The presence of Ti during the beginning of the deposition process, along with the thermodynamic phase precipitation upon cool down, indicate that temperatures well above the Ti melt point were experienced. The stratified observations implied that additional exothermic reaction, expectedly metal combustion of a Ti structure, had to be present for oxide formation. Results are significant for aerospace vehicles where thermal protection system (TPS) breaches cause substructures to be in direct path with the reentry plasma. 1
机译:在车辆解体后数年,分析哥伦比亚航天飞机的残骸已被证明在技术上是有益的。这项调查的重点是哥伦比亚高架窗玻璃碎片上的烧焦沉积物。相对于工程人员对折返环境中材料性能的工程理解,结果出乎意料。 TEM分析表明,铝和钛的氧化物与硅氧化物混合可保留车辆部分所处的热状况。在沉积过程开始时,Ti的存在以及冷却时的热力学相沉淀表明,经历了远高于Ti熔点的温度。分层的观察结果暗示,为了形成氧化物,必须存在额外的放热反应,预期是Ti结构的金属燃烧。对于热保护系统(TPS)违反导致子结构与折返等离子直接进入的航空航天飞行器而言,结果非常重要。 1个

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