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Reliability Evaluation of Machine Center Components Based on Cascading Failure Analysis 被引量:3
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作者 Ying-Zhi Zhang Jin-Tong Liu +2 位作者 gui-xiang shen Zhe Long Shu-Guang Sun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第4期933-942,共10页
In order to rectify the problems that the com- ponent reliability model exhibits deviation, and the evalu- ation result is low due to the overlook of failure propagation in traditional reliability evaluation of machin... In order to rectify the problems that the com- ponent reliability model exhibits deviation, and the evalu- ation result is low due to the overlook of failure propagation in traditional reliability evaluation of machine center components, a new reliability evaluation method based on cascading failure analysis and the failure influ- enced degree assessment is proposed. A direct graph model of cascading failure among components is established according to cascading failure mechanism analysis and graph theory. The failure influenced degrees of the system components are assessed by the adjacency matrix and its transposition, combined with the Pagerank algorithm. Based on the comprehensive failure probability function and total probability formula, the inherent failure proba- bility function is determined to realize the reliability evaluation of the system components. Finally, the method is applied to a machine center, it shows the following: 1) The reliability evaluation values of the proposed method are at least 2.5% higher than those of the traditional method; 2) The difference between the comprehensive and inherent reliability of the system component presents a positive correlation with the failure influenced degree ofthe system component, which provides a theoretical basis for reliability allocation of machine center system. 展开更多
关键词 s Cascading failure Machine centercomponents Reliability evaluation Pagerank algorithmInfluenced degree
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复杂产品可用性屋中故障因素自相关系数确定方法
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作者 孙曙光 梁雪华 +2 位作者 张蒙 申桂香 官馨 《机床与液压》 北大核心 2020年第24期94-100,共7页
在复杂产品可用性屋中,精确计算故障因素自相关系数有利于更准确得到故障因素权重,从而更有针对性地构建可用性保障机制。为此本研究给出一种可以综合多名专家意见与多个影响因素的故障因素自相关系数计算方法,将不同专家对故障因素间... 在复杂产品可用性屋中,精确计算故障因素自相关系数有利于更准确得到故障因素权重,从而更有针对性地构建可用性保障机制。为此本研究给出一种可以综合多名专家意见与多个影响因素的故障因素自相关系数计算方法,将不同专家对故障因素间因果关系的模糊性判断表达为一个可拓区间数,运用可拓层次分析法(Extensional Analytic Hierarchy Process,EAHP)将该可拓区间数转化为确定的值,得到故障因素间的自相关系数。该法全面考虑了故障因素的各种影响因素及其模糊性,使计算获得的故障因素自相关系数准确度更高。最后以某系列复杂产品——加工中心可用性屋的自相关矩阵构建为例,验证了该方法的应用。 展开更多
关键词 可用性屋 故障因素 自相关 可拓层次分析法
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