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Damage Detection And Self-repair In Inflatable/deployable Structures

机译:充气/可展开结构的损伤检测和自我修复

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摘要

Inflatable/deployable structures are under consideration for applications as varied as expansion modules for the International Space Station to destinations for space tourism to habitats for the lunar surface. Monitoring and maintaining the integrity of the physical structure is critical, particularly since these structures rely on non-traditional engineering materials such as fabrics, foams, and elastomeric polymers to provide the primary protection for the human crew. The closely related prior concept of monitoring structural integrity by use of built-in or permanently attached sensors has been applied to structures made of such standard engineering materials as metals, alloys, and rigid composites. To effect monitoring of flexible structures comprised mainly of soft goods, however, it will be necessary to solve a different set of problems - especially those of integrating power and data-transfer cabling that can withstand, and not unduly interfere with, stowage and subsequent deployment of the structures.
机译:正在考虑将充气/可展开结构应用于各种用途,例如将国际空间站的扩展模块扩展到用于太空旅游,到达月球表面的栖息地的目的地。监视和维护物理结构的完整性至关重要,特别是因为这些结构依赖于非传统工程材料(例如织物,泡沫和弹性体聚合物)为人员提供主要保护。通过使用内置或永久连接的传感器来监视结构完整性的密切相关的现有概念已应用于由诸如金属,合金和刚性复合材料之类的标准工程材料制成的结构。但是,要对主要由软商品组成的柔性结构进行监视,就必须解决另一组问题,尤其是集成电源和数据传输电缆的问题,这些问题可以承受但不会过度干扰装载和后续部署结构。

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  • 来源
    《NASA Tech Briefs》 |2009年第3期|p.45-46|共2页
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  • 正文语种 eng
  • 中图分类 航空;
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  • 入库时间 2022-08-18 02:29:46

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