首页> 外文会议>Review of Progress in Quantitative Nondestructive Evaluation >FLUORESCENT PENETRANT INSPECTION PROBABILITY OF DETECTION DEMONSTRATIONS PERFORMED FOR SPACE PROPULSION
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FLUORESCENT PENETRANT INSPECTION PROBABILITY OF DETECTION DEMONSTRATIONS PERFORMED FOR SPACE PROPULSION

机译:进行空间推进的检测演示的荧光渗透检查概率

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摘要

Fracture critical rocket hardware requires nondestructive testing for flight quality assurance. Fracture critical hardware is defined as hardware with failure modes that may endanger space systems, missions or crew. This hardware includes major housings, disks, impellers and gas path hardware. A number of these components are evaluated with fluorescent penetrant inspection for defects open to the surface. Industry data supports the conclusion that with ultra high sensitivity penetrant, defects > 0.090" in length can reliably be detected with a 90/95 probability of detection (POD). To ensure the same POD on fracture critical hardware with reject lengths < 0.090", POD demonstrations are conducted. These demonstrations are conducted on in-house inspectors and on approved external vendor's inspectors. Included in this paper are the results from over 50 of these demonstrations including results from different levels, methods and manufactures of penetrant. The paper describes: the specimens used, process used, specimen cleaning method, types of systems tested, analysis method, problem encountered and the lessons and conclusions that can be made.
机译:断裂关键的火箭硬件需要进行无损测试以确保飞行质量。断裂关键型硬件定义为具有可能危害航天系统,任务或机组人员的故障模式的硬件。该硬件包括主要外壳,磁盘,叶轮和气路硬件。对这些成分中的许多成分进行了荧光渗透检查,以检查表面是否有缺陷。行业数据支持以下结论:使用超高灵敏度的渗透剂,可以以90/95的检测概率(POD)可靠地检测长度> 0.090“的缺陷。为确保剔除长度<0.090”的断裂关键硬件上的POD相同,进行了POD演示。这些演示是在内部检查员和经批准的外部供应商的检查员上进行的。本文包括了这些演示中的50多个结果,包括来自不同水平,方法和渗透剂制造的结果。该文件描述:使用的样品,使用的过程,样品清洁方法,测试的系统类型,分析方法,遇到的问题以及可以得出的经验教训和结论。

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