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Integrity of Structural and Thermo-Structural Materials for Indian Space Programme

机译:印度空间计划结构和热结构材料的完整性

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As stakes are very high, a space programme places one of the highest priorities on the integrity of structural materials and Indian space programme is no exception to this. Starting from design of process, an exhaustive series of structural simulations, mechanical and structural tests and inspection-steps at room, elevated and cryogenic temperatures are followed during qualification and acceptance of structural materials for space applications. A continuous effort of space material-scientists is to adopt the emerging advanced destructive and non-destructive testing methods in order to enhance the reliability of structures. In the second phase of Indian space programme, high temperature materials are poised to play increasingly more important role. This in turn, calls upon the scientists to develop a variety of fhermo-structural materials based on dispersion strengthened alloys, ceramic matrix composites, intermetallics, ultra high temperature ceramics etc. Keeping pace with these developments, a host of characterization techniques are being evolved and facilities are being established to ensure the thermo-structural integrity of high temperature materials. The paper presents the whole gamut of important structural and thermo-structural materials that are presently in use or under development for the future missions of ISRO. It also includes the testing methodologies being adopted at VSSC/ISRO for qualifying these materials from the structural integrity point of view.
机译:由于赌注非常高,空间计划将最高优先级的一个最高优先级放在结构材料的完整性中,印度空间计划对此并不例外。从工艺设计开始,在房间内的结构模拟,机械和结构测试和检查步骤的详尽系列,抬高和低温温度遵循空间应用的结构材料的验证和接受。空间材料科学家的不断努力是采用新兴的先进破坏性和非破坏性的测试方法,以提高结构的可靠性。在印度空间计划的第二阶段,高温材料达到越来越重要的作用。这反过来呼吁科学家们通过基于色散强化合金,陶瓷基质复合材料,金属间质,超高温陶瓷等进行各种毛膜结构材料。保持步伐与这些发展,一系列特征技术正在进行正在建立设施,以确保高温材料的热结构完整性。本文介绍了目前在使用或正在开发中的重要结构和热结构材料的整个色域,以获得伊索未来的伊索未来任务。它还包括在VSSC / ISRO中采用的测试方法,用于从结构完整性的角度来符合这些材料。

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