An Improved Grey Failure Mode and Effect Analysis for a Steel-Door Industry

被引:0
作者
Mehmet Yaşbayır
Erdal Aydemir
机构
[1] Suleyman Demirel University,Department of Industrial Engineering, Engineering Faculty
来源
Arabian Journal for Science and Engineering | 2022年 / 47卷
关键词
Grey failure mode and effect analysis; Mass gravity law; Grey relational analysis; Risk priority number; Uncertainty;
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中图分类号
学科分类号
摘要
Failure mode and effect analysis (FMEA) is a method used to detect causes of failures that may occur in a product or process, and FMEA is more important to prevent a failure before existing by computerized controllers in many industries. The control mechanism must have the ability to calculate and interpret the risk priority number (RPN) value for a fault mode. RPN consists of the ratio values of severity, occurrence, and detectability in FMEA for failure prioritization in order to provide a proper mechanism under this uncertain environment. So, this study is to develop a new grey failure mode and effect analysis (GFMEA) approach by combining grey relational analysis (GRA) with the mass gravity theory (MGT). A new RPN calculation technique based on the mass gravity law has been developed by calculating the relationship between the weights of each process for the production process. The problems resolved within the company without reflection to customers and were detected in the next operations for a steel-door manufacturing process. Hence, the new RPN values are more reliable for decision-makers in the process of production and operations management and obtained with efficient solutions for use to computerized FMEA process.
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页码:3789 / 3803
页数:14
相关论文
共 92 条
[1]  
Fattahi R(2018)Risk evaluation using a novel hybrid method based on FMEA, extended MULTIMOORA, and AHP methods under fuzzy environment Saf. Sci. 102 290-300
[2]  
Khalilzadeh M(2015)Failure diagnosis in real time stochastic discrete event systems Eng. Sci. Technol. Int. J. 18 616-633
[3]  
Dutta CB(2020)Propositional logic concept for fault diagnosis in complex systems Eng. Sci. Technol. Int. J. 23 1068-1073
[4]  
Biswas U(2003)Modified failure mode and effects analysis using approximate reasoning Reliability Eng. Syst. Safety 79 69-85
[5]  
Bicen Y(2011)A systematic approach for diagnosing service failure: service-specific FMEA and grey relational analysis approach Math. Comput. Model. 54 3126-3142
[6]  
Pillay A(2011)Multiple failure modes analysis and weighted risk priority number evaluation in FMEA Eng. Fail. Anal. 18 1162-1170
[7]  
Wang J(2012)Fuzzy failure modes and effects analysis by using fuzzy TOPSIS-based fuzzy AHP Expert Syst. Appl. 39 61-67
[8]  
Geum Y(1996)A revised failure mode and effects analysis model Int. J. Quality Reliab. Manag. 13 43-47
[9]  
Cho Y(2013)Risk evaluation approaches in failure mode and effects analysis: a literature review Expert Syst. Appl. 40 828-838
[10]  
Park Y(1995)Fuzzy logic prioritization of failures in a system failure mode, effects and criticality analysis Reliab. Eng. Syst. Saf. 50 203-213