A failure mode and risk assessment method based on cloud model

被引:0
作者
Xinlong Li
Yan Ran
Genbao Zhang
Yan He
机构
[1] Chongqing University,College of Mechanical Engineering and State Key Laboratory Mechanical Transmission
[2] Chongqing University of Arts and Sciences,College of Robot Engineering and Mechanical–Electrical Engineering
来源
Journal of Intelligent Manufacturing | 2020年 / 31卷
关键词
Cloud model; Best–worst method; Risk assessment; Meta-action; Failure modes;
D O I
暂无
中图分类号
学科分类号
摘要
Failure mode and effects analysis (FMEA) is a predictive reliability analysis technique, which is widely used to improve the reliability and safety of products in products design, manufacture and service phases. However, traditional FMEA has many shortcomings in practical application, resulting in poor accuracy of analysis results. In this paper, based on meta-action failure modes, a risk assessment and ranking method based on cloud model is proposed. First, the domain expert’s assessment of failure modes’ attributes is transformed into a cloud model. Then, the best–worst method (BWM) and cloud model are combined to calculate the cloud weight of each attribute, and the weight of each expert to risk factors of each failure mode is evaluated by cloud distance. Finally, the comprehensive cloud expression of each failure mode is synthesized and compared. The proposed evaluation method not only has the advantages of cloud model in dealing with fuzziness and randomness, but also integrates the advantages of BWM, and fully takes into account the differences of experts in assigning weights to different failure modes’ attributes. Finally, the effectiveness of the proposed method is verified by comparing the risk assessment results of the CNC machine tool’s rotation-meta-action failure modes with different risk assessment methods.
引用
收藏
页码:1339 / 1352
页数:13
相关论文
共 131 条
[1]  
Aya Z(2006)A fuzzy AHP approach to evaluating machine tool alternatives Journal of Intelligent Manufacturing 17 179-190
[2]  
Özdemir RG(2017)Assessing the social sustainability of supply chains using best worst method Resources, Conservation and Recycling 126 99-106
[3]  
Badri Ahmadi H(2018)Risk measurement and prioritization of auto parts manufacturing processes based on process failure analysis, interval data envelopment analysis and grey relational analysis Journal of Intelligent Manufacturing 29 1803-1825
[4]  
Kusi-Sarpong S(2018)Failure mode and effects analysis based on D numbers and TOPSIS Quality and Reliability Engineering International 34 501-515
[5]  
Rezaei J(2011)Evaluating the risk of failure using the fuzzy OWA and DEMATEL method Journal of Intelligent Manufacturing 22 113-129
[6]  
Baghery M(2016)Classical and fuzzy FMEA risk analysis in a sterilization unit Computers & Industrial Engineering 101 286-294
[7]  
Yousefi S(2019)Damage forecasting based on multi-factor fuzzy time series and cloud model Journal of Intelligent Manufacturing 30 521-538
[8]  
Jahangoshai M(2004)Using analytic hierarchy process (AHP) to improve human performance: An application of multiple criteria decision making problem Journal of Intelligent Manufacturing 15 491-503
[9]  
Bian T(2018)Risk evaluation using a novel hybrid method based on FMEA, extended MULTIMOORA, and AHP methods under fuzzy environment Safety Science 102 290-300
[10]  
Zheng H(2019)A hybrid ensemble and AHP approach for resilient supplier selection Journal of Intelligent Manufacturing 30 207-228