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Cumulative-Damage Reliability for Random-Independent (Normal- or Weibull-Distributed) Fatigue Stress, Random-Fixed Strength, and Deterministic Usage

机译:随机独立(正态分布或威布尔分布)疲劳应力,随机固定强度和确定性用法的累积损伤可靠性

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To determine helicopter component retirement intervals, it is common for fatigue engineers to utilize Miner's rule for cumulative damage. Time consuming Monte Carlo simulations are considered the state of the art method for determining reliability in the presence of load variations. However, a new set of methods employed on a recent AHS fatigue reliability round robin problem provide an indication that near term advances are on the horizon. This paper presents the development of a set of analytical formulas for the calculation of cumulative damage per Miner's rule for the case with randomly varying oscillatory fatigue loads applied to a given component selected randomly from a population of various components. Although further development is required to cover all material characterizations, the method shows great promise in providing efficient fatigue reliability calculations during iterations of the design process. This paper provides a detailed derivation of the method, useful charts and tables, and guidance regarding implementation of the formula in various computer applications.
机译:为了确定直升机部件的退役间隔,疲劳工程师通常会利用Miner规则来累积损坏。费时的蒙特卡洛模拟被认为是确定负载变化时可靠性的最新方法。但是,在最近的AHS疲劳可靠性轮循问题上采用的一组新方法表明了近期的进展即将到来。本文介绍了一组分析公式的开发,这些公式适用于在随机变化的振荡疲劳载荷作用于从各种组件中随机选择的给定组件的情况下,根据Miner规则计算累积损伤的方法。尽管需要进一步开发以涵盖所有材料特征,但该方法在设计过程的迭代过程中提供有效的疲劳可靠性计算方面显示出巨大的希望。本文提供了该方法的详细推导,有用的图表和表格,以及有关在各种计算机应用程序中实施该公式的指导。

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