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Reliability Evaluation Based on Different Distributions of Random Load

机译:基于随机负荷分布的可靠性评估

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The reliability models of the components under the nonstationary random load are developed in this paper. Through the definition of the distribution of the random load, it can be seen that the conventional load-strength interference model is suitable for the calculation of the static reliability of the components, which does not reflect the dynamic change in the reliability and cannot be used to evaluate the dynamic reliability. Therefore, by developing an approach to converting the nonstationary random load into the random load whose pdf is the same at each moment when the random load applies, the reliability model based on the longitudinal distribution is derived. Moreover, through the definition of the transverse standard load and the transverse standard load coefficient, the reliability model based on the transverse distribution is derived. When the occurrence of the random load follows the Poisson process, the dynamic reliability models considering the strength degradation are derived. These models take the correlation between the random load and the strength into consideration. The result shows that the dispersion of the initial strength and that of the transverse standard load coefficient have great influences on the reliability and the hazard rate of the components.
机译:本文开发了非间断随机负荷下的组件的可靠性模型。通过定义随机负载的分布,可以看出传统的负载强度干扰模型适用于计算组件的静态可靠性,这不反映可靠性的动态变化,并且不能使用评估动态可靠性。因此,通过开发将非营养随机载荷转换为在随机载荷时的PDF相同的随机负载中的方法,推导了基于纵向分布的可靠性模型。此外,通过横向标准负载的定义和横向标准负载系数,导出了基于横向分布的可靠性模型。当随机载荷的发生遵循泊松过程时,推导了考虑强度降级的动态可靠性模型。这些模型考虑了随机负荷与强度之间的相关性。结果表明,初始强度的分散和横向标准载荷系数的分散对组件的可靠性和危险率具有很大的影响。

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