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Fatigue Reliability Assessment of Gas Equipment under Randomly Fluctuating Stress Amplitude in Small Range

机译:小范围内随机波动幅度下的气体设备疲劳可靠性评估

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摘要

A new method is proposed to assess the fatigue reliability of gas equipment subjected to a load with a randomly fluctuating stress amplitude in a relatively small range. The Langevin equation for fatigue damage evolution was derived on the basis of the Palmgren-Miner's rule and the S-N diagram under constant amplitude loading. A stochastic partial differential equation, called the Fokker-Planck equation, for the evolution of the probability density function of cummulated futigue damage was obtained from the Langevin equation. The probability density function of cummulated damage was expressed in a Gaussian distribution function. The mean of the remaining fatigue life can be evaluated on the basis of the concept of first passage time. The new method was applied to the fatigue data of an aluminum alloy subjected to a random loading. The scatter of the fatigue life can be obtained by introducing a magnification factor of the intensity of actual randomly fluctuating stress. The magnification factor corresponds to the degree of the contributions by factors other than the fluctuating load.
机译:提出了一种新方法来评估经受载荷的气体设备的疲劳可靠性,在相对较小的范围内随机波动幅度。在恒定幅度加载下,基于PalmGren-Miner的规则和S-N图来得出疲劳损伤演化的Langevin方程。从LangeVin方程获得了一种称为Fokker-Planck方程的随机偏微分方程,称为Fokker-Planck方程,用于Cumumpute Futigue损坏的概率密度函数的演变。在高斯分布函数中表达了破碎损伤的概率密度函数。可以基于第一次通过时间的概念来评估剩余疲劳寿命的平均值。将新方法应用于对随机荷载作用的铝合金的疲劳数据。通过引入实际随机波动应力强度的放大因子,可以获得疲劳寿命的散射。放大因子对应于除波动负荷之外的因素的贡献程度。

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