Investigation of FMEA Improvement to Present a New Framework for an Efficient Failure Risk Analysis of the Products, Considering Cost Matter

被引:4
作者
Fazli, Mohammad [1 ]
Kazerooni, Mehrdad [1 ]
机构
[1] KN Toosi Univ Technol, Dept Mech Engn, 7 Pardis Ave,Mollasadra St, Tehran 1991943344, Iran
关键词
FMEA; Value engineering; Failure risk analysis; Product quality; Reliability; FUZZY-LOGIC; MODE; PRIORITIZATION; OPTIMIZATION; METHODOLOGY; SYSTEM; TOPSIS; FTA;
D O I
10.1007/s40997-021-00474-w
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Increase in product reliability is essential to gaining customer satisfaction and is a crucial competitive advantage for successful sale of products. Failure mode and effects analysis (FMEA) is a common method to identify and analyze the probable causes of products failure and their effects. FMEA is used during the design stage of the products to improve product design and mitigate risk of failure. The cost of improvement of product design would be high if analysis of the risk of failure occurs on a previously manufactured product. In such cases, detective measures could be taken to prevent possible failure or at least to mitigate its effects. The process of reducing product failure risk is costly, whether by making changes in product design and manufacturing process or through developing detective actions. This research presents a framework for failure risk analysis which decreases the cost of reliability upgrades by improving FMEA using value engineering basics. An integrated model using FMEA and value engineering is presented to enhance the reliability of the product. The proposed approach develops a criterion for selecting kinds of actions for failure risk reduction besides cost mitigation to enhance the reliability of the product.
引用
收藏
页码:1225 / 1244
页数:20
相关论文
共 79 条
[1]   Risk Management in the Construction Industry Using Combined Fuzzy FMEA and Fuzzy AHP [J].
Abdelgawad, Mohamed ;
Fayek, Aminah Robinson .
JOURNAL OF CONSTRUCTION ENGINEERING AND MANAGEMENT, 2010, 136 (09) :1028-1036
[2]   A new risk prioritization model for failure mode and effects analysis [J].
Anes, V. ;
Henriques, E. ;
Freitas, M. ;
Reis, L. .
QUALITY AND RELIABILITY ENGINEERING INTERNATIONAL, 2018, 34 (04) :516-528
[3]  
[Anonymous], 1971, GUID VE ACT BAS VE M
[4]   ELECTRE TRI-based approach to the failure modes classification on the basis of risk parameters: An alternative to the risk priority number [J].
Antonella, Certa ;
Mario, Enea ;
Maria, Galante Giacomo ;
Manuela, La Fata Concetta .
COMPUTERS & INDUSTRIAL ENGINEERING, 2017, 108 :100-110
[5]   Risk analysis of analytical validations by probabilistic modification of FMEA [J].
Barends, D. M. ;
Oldenhof, M. T. ;
Vredenbregt, M. J. ;
Nauta, M. J. .
JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2012, 64-65 :82-86
[6]  
Beauregard M, 2009, BASICS FMEA
[7]   Extended Model for Integrated Value Engineering [J].
Behncke, Florian G. H. ;
Maisenbacher, Sebastian ;
Maurer, Maik .
2014 CONFERENCE ON SYSTEMS ENGINEERING RESEARCH, 2014, 28 :781-788
[8]   Bouncing failure analysis (BFA): The unified FTA-FMEA methodology [J].
Bluvband, Z ;
Polak, R ;
Grabov, P .
ANNUAL RELIABILITY AND MAINTAINABILITY SYMPOSIUM, 2005 PROCEEDINGS, 2005, :463-467
[9]   Implementing Value Engineering based on a multidimensional quality-oriented control calculus within a Target Costing and Target Pricing approach [J].
Bock, Stefan ;
Puetz, Markus .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2017, 183 :146-158
[10]   FUZZY-LOGIC PRIORITIZATION OF FAILURES IN A SYSTEM FAILURE MODE, EFFECTS AND CRITICALITY ANALYSIS [J].
BOWLES, JB ;
PELAEZ, CE .
RELIABILITY ENGINEERING & SYSTEM SAFETY, 1995, 50 (02) :203-213