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Development of Automated Structural Health Monitoring for Composite Overwrapped Pressure Vessels

机译:复合材料包裹压力容器自动结构健康监测的开发

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摘要

Virtually all NASA spacecraft use composite overwrapped pressure vessels (COPVs) to reduce the weight disadvantage of metal pressure vessels. However, these composite structures are more susceptible to damage than metal PVs, are difficult to inspect, have large burst pressure variability, and are susceptible to stress rupture when maintained at pressure. Over the past few years, NASA's Johnson Space Center (JSC) White Sands Test Facility (WSTF) has developed novel analysis methods that show promise for assessing the structural health of composite overwrapped pressure vessels. These methods and industry standard methods have been integrated into specialized software for automated analysis, thus significantly increasing throughput to the point where real-time assessments of structural health may be determined. Adaptive analysis methods have also been developed to provide modal analyses at specified points in a structure's life, including loading, unloading, and dwells. Together, these enhancements increase the utility and ease of use for acoustic emission testing.
机译:实际上,所有NASA航天器都使用复合包裹压力容器(COPV)来减轻金属压力容器的重量缺点。但是,这些复合结构比金属PV更易于损坏,难以检查,爆破压力变化大,并且在保持一定压力时容易发生应力破裂。在过去的几年中,美国国家航空航天局(NASA)的约翰逊航天中心(JSC)白沙试验设施(WSTF)开发了新颖的分析方法,这些方法显示出可用于评估复合包裹压力容器结构健康的希望。这些方法和行业标准方法已集成到用于自动化分析的专用软件中,从而显着提高了产量,可以确定结构健康状况的实时评估。还开发了自适应分析方法,以提供结构寿命中指定点的模态分析,包括加载,卸载和停留。这些增强功能共同提高了声发射测试的实用性和易用性。

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    《NASA Tech Briefs》 |2017年第11期|55-55|共1页
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