新的SAE FMECA标准

J. Bowles
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引用次数: 86

摘要

新的SAE FAMECA标准在使FMECA(失效模式效应和临界性分析)与现代设计实践相一致方面走了很长的路。这是通过三个主要变化来实现的。(1)新标准将FMECA程序描述为在整个产品开发周期中使用的过程,而不是在设计完成后完成的任务。强调功能性和界面FMECA的作用,以及传统的片式FMECA的作用。(2)“失效模式等效”的概念使具有等效影响的失效模式能够一起进行分析,从而减少了传统逐个部件故障分析所产生的大量重复工作。这个概念允许在设计过程中早期完成的功能失效模式分析延续到设计后期分析的界面和零件失效模式的影响。(3)根据故障模式的概率和严重程度,采用帕累托排序法对临界性进行评估。这比使用Mil-Std-1629中定义的临界数更适用,并且避免了汽车FMECA标准SAE J1739中使用的RPN分析的一些数学困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The new SAE FMECA standard
The new SAE FAMECA standard goes a long way toward bringing FMECA (failure mode effects and criticality analysis) into line with modern design practices. This is accomplished through three major changes. (1) The new standard describes the FMECA procedure as a process to be used throughout the product development cycle, rather than as a task to be done after the design is complete. It emphasizes the role of functional and interface FMECAs as well as that of the traditional piece part FMECA. (2) The concept of "failure mode equivalence" enables failure modes that have equivalent effects to be analyzed together and reduces much of the duplicative work generated by traditional component-by-component fault analyses. This concept allows the analyses of functional failure modes done early in the design process to be carried over to the effects of interface and piece-part failure modes analyzed later in the design. (3) Criticality is assessed using a Pareto ranking procedure based on the probability and the severity of the failure mode. This is more broadly applicable than the use of criticality numbers as defined in Mil-Std-1629 and it avoids some of the mathematical difficulties of the RPN analysis used in the Automobile FMECA standard, SAE J1739.
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