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Nondestructive Methods and Special Test Instrumentation Supporting NASA Composite Overwrapped Pressure Vessel Assessments

机译:非破坏性方法和专用测试仪器支持NASA复合式压力容器评估

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摘要

Many aging composite overwrapped pressure vessels (COPVs), being used by the National Aeronautics and Space Administration (NASA) are currently under evaluation to better quantify their reliability and clarify their likelihood of failure due to stress rupture and age-dependent issues. As a result, some test and analysis programs have been successfully accomplished and other related programs are still in progress at the NASA Johnson Space Center (JSC) White Sands Test Facility (WSTF) and other NASA centers, with assistance from the commercial sector. To support this effort, a group of Nondestructive Evaluation (NDE) experts was assembled to provide NDE competence for pretest evaluation of test articles and for application of NDE technology to real-time testing. Techniques were required to provide assurance that the test article had adequate structural integrity and manufacturing consistency to be considered acceptable for testing and these techniques were successfully applied. Destructive testing is also being accomplished to better understand the physical and chemical property changes associated with progression toward "stress rupture" (SR) failure, and it is being associated with NDE response, so it can potentially be used to help with life prediction. Destructive work also includes the evaluation of residual stresses during dissection of the overwrap, laboratory evaluation of specimens extracted from the overwrap to evaluate physical property changes, and quantitative microscopy to inform the theoretical micromechanics.
机译:美国国家航空航天局(NASA)正在使用许多老化的复合包裹压力容器(COPV),目前正在对其评估中,以更好地量化其可靠性并阐明由于应力破裂和与年龄有关的问题而导致失效的可能性。结果,在商业部门的协助下,NASA约翰逊航天中心(JSC)的白沙试验设施(WSTF)和其他NASA中心已成功完成了一些测试和分析程序,而其他相关程序仍在进行中。为了支持这项工作,组建了一组非破坏性评估(NDE)专家,以提供NDE能力来进行测试物品的预测试评估以及将NDE技术应用于实时测试。需要使用技术来确保测试物品具有足够的结构完整性和制造一致性,以确保可以接受测试,并且这些技术已成功应用。破坏性测试也正在完成,以更好地理解与“应力破裂”(SR)失效进展相关的物理和化学性质变化,并且它与NDE响应有关,因此可以潜在地用于帮助预测寿命。破坏性工作还包括评估外包装剥离过程中的残余应力,对从外包装中提取的标本进行实验室评估以评估物理性质的变化以及定量显微镜以告知理论上的微力学。

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