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An Approach to Evaluate Precision and Inter-Laboratory Variability of Flammability Test Methods for Aerospace Materials

机译:一种评估航空材料易燃性测试方法的精度和实验室间变异性的方法

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摘要

Materials selection for spacecraft is based on conventional flammability or ignition sensitivity acceptance tests. Current procedures for determining the inter-laboratory repeatability and reproducibility of aerospace materials flammability tests are not considering the dependence of data variability on test conditions and consequently attempts to characterize the precision of these methods were not successful. The inter-laboratory data variability is determined with tests conducted under arbitrary conditions, which consequently may not provide sufficient information to enable adequate determination of a method's precision. For evaluating the precision of NASA's flammability test methods, the protocol recommended includes selecting critical parameters and determining the 50% failure point by considering the specific failure criteria of each method using the critical parameter as a variable. Upon performing inter-laboratory round robin testing using this approach, the laboratories' performance could be evaluated by comparing the repeatability of the 50% failure point and/or the repeatability of critical conditions where the probabilities of passing and failing are unity, i.e., the transition zone repeatability. When a sufficient amount of data has been acquired with this method, an adequate estimation of precision of aerospace materials flammability test methods will be possible.
机译:航天器的材料选择基于常规的易燃性或点火敏感性验收测试。当前确定实验室间航空航天材料易燃性测试的可重复性和可再现性的程序并未考虑数据可变性对测试条件的依赖性,因此表征这些方法精度的尝试均未成功。实验室之间的数据变异性是通过在任意条件下进行的测试确定的,因此可能无法提供足够的信息来充分确定方法的准确性。为了评估NASA可燃性测试方法的精度,建议的协议包括选择关键参数,并通过使用关键参数作为变量考虑每种方法的特定故障准则,确定50%的故障点。使用这种方法进行实验室间轮循测试后,可以通过比较50%失效点的可重复性和/或通过和失败的概率为1的临界条件的可重复性,来评估实验室的性能。过渡区重复性。当使用这种方法获得足够数量的数据时,将有可能对航空航天材料可燃性测试方法的精度进行足够的估计。

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