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Application of FMEA method in enterprise focused on quality

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: A new approach to production process monitoring in organization using Failure Mode and Effect Analysis method has been presented. Design/methodology/approach: The possibility of use of Failure Mode and Effect Analysis methods is connected with continuous quality improvement of organization. Interdependence of the quality research methods and production process’s requirements have been taken into account. Findings: At the present time the enterprises should integrate quality management and quality control with customer’s requirements, production process’s requirements and also quality methods. Such kind of strategy will enable to achieve success for these companies. Research limitations/implications: FMEA is a very important method which should be employed in companies for an engineering design, production process, new product in preproduction and production sphere in product life cycle. Aim of FMEA is establishing links between causes and effects of defects, as well as searching, solving and drawing the best decisions concerning application of proper action. Practical implications: The example of implementing FMEA shows possibility of monitoring chosen production process according to idea of defects prevention. Usage of this method allows to keep a process production focus, reduction in the product development cycle, providing opportunities for cost reduction. Originality/value: Application of Failure Mode and Effect Analysis in polish companies have been presented. It helps define Potential defect, Effects of defects, Defects causes in chosen production process of train hoops.
Rocznik
Strony
89--102
Opis fizyczny
Bibliogr. 27 poz., rys., tab.
Twórcy
  • Division of Materials Processing Technology, Management and Computer Techniques in Materials Science, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
Bibliografia
  • [1] E. Skrzypek, Quality and efficiency, UMCS, Lublin, 2000 (in Polish).
  • [2] J. Michalska, Quality costs in the production process, Special Issue of the Worldwide Journal of Achievements in Materials and Manufacturing Engineering 17 (2006) 425-428.
  • [3] E. Kindlarski, Product quality, PWN, Warszawa 1998 (in Polish).
  • [4] Standard EN ISO 9000:2005, Quality management system -Fundamentals and vocabulary, ISO 2005.
  • [5] J. Ketola, K. Roberts, Demystifying ISO 9001:2000 - part 1, Quality Progress 34/9 (2001) 65-70.
  • [6] J. Ketola, K. Roberts, Demystifying ISO 9001:2000 - part 2, Quality Progress 34/10 (2001) 44-47.
  • [7] M. Dudek-Burlikowska, Aspects of improving the organization directed to the quality, Archives of Materials Science and Engineering 43/2 (2010) 101-108.
  • [8] M. Dudek-Burlikowska, D. Szewieczek, Quality estimation methods used in product life cycle, Journal of Achievements in Materials and Manufacturing Engineering 24/2 (2007) 203-206.
  • [9] M. Dudek, Quality methods as a factor of functionality and improvement preproduction of organization sphere, Proceedings of the Materials of Nationwide Scientific Conference: „Management of organization of project oriented” UMCS’2004, Lublin, 2004, 89-93 (in Polish).
  • [10] E.W. Deming, Quality, Productivity and Competitive Postion, University of Cambridge, 1982.
  • [11] T. Karkoszka, Improvement of chosen process based on the occupational health and safety criterion, Journal of Achievements in Materials and Manufacturing 37/2 (2009) 735-742.
  • [12] H. Bieniok, Basic rule of company management, AE, Katowce, 2003 (in Polish).
  • [13] Standard EN ISO 9001:2008, Quality management systems -Requirements, ISO 2008.
  • [14] A. Hamrol, Quality assurance in production processes, Publishing House of Poznań University of Technology, Poznań, 1995 (in Polish).
  • [15] R. Nowosielski, A. Kania, M. Spilka, Integrated recycling technology as a candidate for best available techniques, Archives of Materials Science and Engineering 32/1 (2008) 49-52.
  • [16] M. Dudek-Burlikowska, Quality research methods as a factor of improvement of preproduction sphere , Journal of Achievements in Materials and Manufacturing Engineering 18 (2006) 435-438.
  • [17] D.E. Hardt, Modeling and Control of Manufacturing Processes: Getting More Involved, ASME Journal of Dynamic Systems Measurement and Control 115(1993) 291300.
  • [18] A. Chodyński, Proquality management of production develop in company, Bielsko-Biała, 2000 (in Polish).
  • [19] A. Tabor, A. Zając, M. Rączka, Quality Management, Volume II, Cracow, 2000 (in Polish).
  • [20] A. Hamrol, W. Mantura, Quality Management. Theory and Practice, PWN, Warsaw, 2005 (in Polish).
  • [21] M. Dudek-Burlikowska, D. Szewieczek, The modern quality control of preproduction sphere in a company, Journal of Achievements in Materials and Manufacturing Engineering 28/1 (2008) 79-86.
  • [22] R. Kolman, Quality Engineering, PWE, Warsaw, 1992 (in Polish).
  • [23] M. Dudek-Burlikowska, D. Szewieczek, The Poka-Yoke method as an improving quality tool of operations in the process, Journal of Achievements in Materials and Manufacturing Engineering 36/1 (2009) 95-102.
  • [24] S. Tkaczyk, M. Dudek, Methodology research of quality in industry, Proceedings of the 7th Scientific International Conference “Achievements in Mechanical and Materials Engineering” AMME’1998, Gliwice-Zakopane 1998, 513-516 (in Polish).
  • [25] M. Dudek, D. Szewieczek, Usage of quality methods: Failure Mode and Effect Analysis (FMEA) and Statistical Process Control (SPC) as a element of continuous improvement of production process, Proceedings of the 12th International Scientific Conference “Achievements in Mechanical and Materials Engineering” AMME’2003, Gliwice-Zakopane, 2003, 317-321.
  • [26] A. Hamrol, Quality management. Science and practice, PWN, Warsaw-Poznan, 1998 (in Polish).
  • [27] D. H. Stamatis, Failure mode and effect analysis: FMEA from theory to execution, ASQ 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-063eb48b-04c5-40be-b981-159ffedb014d
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