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Materials and structures technology insertion into spacecraft systems: Successes and challenges

机译:将材料和结构技术插入航天器系统:成功与挑战

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摘要

Over the last 30 years, significant advancements have led to the use of multifunctional materials and structures technologies in spacecraft systems. This includes the integration of adaptive structures, advanced composites, nanotechnology, and additive manufacturing technologies. Development of multifunctional structures has been directly influenced by the implementation of processes and tools for adaptive structures pioneered by Prof. Paolo Santini. Multifunctional materials and structures incorporating non-structural engineering functions such as thermal, electrical, radiation shielding, power, and sensors have been investigated. The result has been an integrated structure that offers reduced mass, packaging volume, and ease of integration for spacecraft systems.
机译:在过去的30年中,重大的进步已导致在航天器系统中使用多功能材料和结构技术。这包括自适应结构,先进复合材料,纳米技术和增材制造技术的集成。多功能结构的开发直接受到Paolo Santini教授率先采用的自适应结构的过程和工具的实施的影响。研究了包含非结构工程功能(如热,电,辐射屏蔽,电源和传感器)的多功能材料和结构。结果是形成了一种集成的结构,从而减少了质量,减小了包装体积,并简化了航天器系统的集成。

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