概率方法在高置信度可靠性预测中的应用

R. Kanapady, R. Adib
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引用次数: 2

摘要

本文利用建模和仿真技术,提出了一种高置信度下的概率可靠性分析方法。这不仅降低了测试成本,而且可以预测系统的故障物理特性和响应,量化加载环境中的不确定性。可以确定概率敏感性,以评估每个随机变量对概率响应的相对重要性。利用结构可靠性方法建立了橡胶构件干滑动磨损的概率磨损模型,验证了该方法的有效性。采用随时间变化的结构可靠度模型计算结构的磨损概率。通过在极限状态函数中适当考虑退化模型来考虑材料在时间上的退化。确定了每个潜在变量对生命的相对影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of modeling and simulations with probabilistic method to predict reliability at high confidence level
In this paper a probabilistic reliability analysis approach at high confidence level is presented that employs the modeling and simulations techniques. This not only reduces the cost of testing, but also predicts the physics-of-failures, response of system and quantifies the uncertainty in loading environment. Probabilistic sensitivities may be determined to assess the relative importance of each of the random variables on the probabilistic response. The effectiveness of the proposed approach is illustrated with a probabilistic wear-out model for dry sliding wear in rubber components using structural reliability methods. A time-dependent structural reliability model is adapted to calculate the probability of wear-out. Degradation of material in time is considered by properly accounting for a degradation model in the limit-state function. Relative impact each underlying variable on life is determined.
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