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Whole-field NDT of thermal protection system using digital holography

机译:使用数字全息的热保护系统全场无损检测

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In the development of re-entry space vehicles, thermal protection systems (TPS), which protect the vehicle from the high thermal environments during re-entry, constitute one of the most critical systems. Both metallic and non-metallic materials are candidates for TPS. Generally, the TPS materials are bonded to the structure in vacuum under load. For the successful performance of the vehicle, the TPS should be intact to the vehicle without any debond and hence the detection of debonds in TPS is very important. Holographic interferometry is established as a reliable NDT tool for detecting debonds. Digital holography is a technique that uses digital recording and numerical reconstruction of holograms, which does not require photographic films, wet processing and laser reconstruction. In this paper the application of the digital holographic interferometry technique in detecting debonds in different types of thermal protection systems is presented. The results of the tests on a few samples made of ablative and non-ablative TPS materials with debond are presented. The paper also describes the experimental details and stressing techniques used for the detection of debonds in TPS. The practical application of this technique for the NDT of TPS is explored.
机译:在再入太空飞行器的开发中,热保护系统(TPS)是最关键的系统之一,用于在再进入过程中保护飞行器免受高温环境的影响。金属和非金属材料都是TPS的候选材料。通常,TPS材料在负载下在真空中粘结到结构上。为了使车辆成功运行,TPS应该完整无损地保持在车辆上,因此检测TPS中的脱胶非常重要。全息干涉术被确立为一种可靠的无损检测工具,用于检测脱胶。数字全息术是使用数字记录和全息图的数值重建的技术,该技术不需要照相胶片,湿法处理和激光重建。本文介绍了数字全息干涉技术在不同类型的热保护系统中检测脱胶的应用。给出了一些由烧蚀和非烧蚀TPS材料制成的具有脱粘性能的测试结果。本文还描述了用于检测TPS中脱胶的实验细节和应力技术。探索了该技术在TPS无损检测中的实际应用。

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