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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Dynamic Reliability Analysis Method of Degraded Mechanical Components Based on Process Probability Density Function of Stress
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Dynamic Reliability Analysis Method of Degraded Mechanical Components Based on Process Probability Density Function of Stress

机译:基于应力过程概率密度函数的退化机械零件动力可靠性分析方法

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摘要

It is necessary to develop dynamic reliability models when considering strength degradation of mechanical components. Instant probability density function (IPDF) of stress and process probability density function (PPDF) of stress, which are obtained via different statistical methods, are defined, respectively. In practical engineering, the probability density function (PDF) for the usage of mechanical components is mostly PPDF, such as the PDF acquired via the rain flow counting method. For the convenience of application, IPDF is always approximated by PPDF when using the existing dynamic reliability models. However, it may cause errors in the reliability calculation due to the approximation of IPDF by PPDF. Therefore, dynamic reliability models directly based on PPDF of stress are developed in this paper. Furthermore, the proposed models can be used for reliability assessment in the case of small amount of stress process samples by employing the fuzzy set theory. In addition, the mechanical components in solar array of satellites are chosen as representative examples to illustrate the proposed models. The results show that errors are caused because of the approximation of IPDF by PPDF and the proposed models are accurate in the reliability computation.
机译:考虑机械部件的强度下降时,有必要建立动态可靠性模型。分别定义了通过不同统计方法获得的应力的瞬时概率密度函数(IPDF)和应力的过程概率密度函数(PPDF)。在实际工程中,使用机械部件的概率密度函数(PDF)主要是PPDF,例如通过雨水流量计数方法获得的PDF。为了方便应用,使用现有的动态可靠性模型时,PPDF总是近似于IPDF。但是,由于PPDF对IPDF的近似,可能会导致可靠性计算错误。因此,本文建立了直接基于应力PPDF的动态​​可靠性模型。此外,所提出的模型可以通过采用模糊集理论在应力过程样本较少的情况下用于可靠性评估。另外,选择了卫星太阳能电池阵列中的机械组件作为代表性示例,以说明所提出的模型。结果表明,误差是由于PPDF对IPDF的逼近而引起的,所提出的模型在可靠性计算上是准确的。

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