Open Access

The Product and Process Quality Level Analysis in the Automotive Elements Production Management

 and   
Nov 09, 2024

Cite
Download Cover

S. Takata, F. Kirnura, F.J.A.M. Van Houten, E. Westkamper, M. Shpitalni, D. Ceglarek, J. Lee Maintenance, “Changing Role in Life Cycle Management. CIRP Annals – Manufacturing Technology, vol. 53, issue 2, 2004, pp. 643-655 Search in Google Scholar

M. Colledani, T. Tolio, A. Fischer, B. Iung, G. Lanza, R. Schmitt, J. Váncza, “Design and management of manufacturing systems for production quality”, CIRP Annals, vol. 63, issue 2, 2014, pp. 773-796 Search in Google Scholar

R. Chougule, V.R. Khare, K.A. Pattada, “Fuzzy Logic Based Approach for Modeling Quality and Reliability Related Customer Satisfaction in the Automotive Domain”. Expert Syst. Appl. 2013, vol. 40, pp. 800-810. https://doi.org/10.1016/j.eswa.2012.08.032 Search in Google Scholar

W. Ostasiewicz, “Ocena i analiza jakości życia”, Wydawnictwo Akademii Ekonomicznej im. Oskara Langego we Wrocławiu, Wrocław, 2004, pp. 118-120 Search in Google Scholar

A. Szczyrba, M. Ingaldi, “Implementation of the FMEA Method as a Support for the HACCP System in the Polish Food Industry”, Management Systems in Production Engineering, vol. 32, no 3, 2024, pp. 357-371, https://doi.org/10.2478/mspe-2024-0034 Search in Google Scholar

A. Hamrol, “Zarządzanie jakością z przykładami”, PWN, Warszawa, 2005, pp. 19 Search in Google Scholar

A. Iwasiewicz, “Zarządzanie jakością”, PWN, Warszawa-Kraków, 1999, pp. 22 Search in Google Scholar

F. Mroczko, “Zarządzanie jakością”, Prace Naukowe Wał-brzyskiej Wyższej Szkoły Zarządzania i Przedsiębiorczości, Seria: Zarządzanie, 2012, pp. 17-25. Search in Google Scholar

J. Brdulak, J. Lewicki, “Zapewnienie jakości – przegląd współczesnych modeli oraz rekomendacje dla podmiotów zewnętrznego zapewnienia jakości (PZZJ)”, Instytut Badań Edukacyjnych, Warszawa, 2022, pp. 6-15. Search in Google Scholar

K. Łyp-Wrońska, J. Buliński, “System jakości w praktyce. Quality system in practice”, Praktyka zarządzania jakością w XXI wieku. The practice of quality management in the XXI century, ed. T. Sikora and M. Giemza, Uniwersytet Ekonomiczny w Krakowie, Kraków 2012, pp.590-591 Search in Google Scholar

A. Kowalczyk, A. Maleszka, “Metody i techniki zarządzania jakością w branży motoryzacyjnej”, Akademia Ekonomiczna, Kraków 2010, pp. 524-535 Search in Google Scholar

J. Cieśla, R. Ulewicz, “The Future of Automotive Quality Control: How Cloud-Based Reporting is Changing the Game”, Management Systems in Production Engineering, vol. 32, no 1, pp. 72-79, https://doi.org/10.2478/mspe-2024-0008 Search in Google Scholar

R. Sanchez-Marquez, J.M. Albarracín Guillem, E. Vicens-Salort, J. Jabaloyes Vivas, “Diagnosis of quality management systems using data analytics – A case study in the manufacturing sector”, Computers in Industry, vol. 115, 2020, https://doi.org/10.1016/j.compind.2019.103183 Search in Google Scholar

S. Sahoo, “Assessing lean implementation and benefits within Indian automotive component manufacturing SMEs”, Benchmarking: An International Journal, vol. 27 No. 3, 2020, pp. 1042-1084, Emerald Publishing Limited 1463-5771, https://doi.org/10.1108/BIJ-07-2019-0299 Search in Google Scholar

https://asq.org/quality-resources/quality-glossary/f [access: 28.09.2024] Search in Google Scholar

C.L. Chang, C.C. Wei, Y.H. Lee, “Failure mode and effects analysis using fuzzy method and grey theory”, Kybernetes, vol. 28, 1999, pp. 1072-1080. Search in Google Scholar

M. Ben-Daya, A. Raouf, “A revised failure mode and effects analysis model”, International Journal of Quality and Reliability Management, vol. 13, no. 1, 1996, pp. 43-47. Search in Google Scholar

A.C. Kutlu, M. Ekmekcioglu, “Fuzzy failure modes and effects analysis by using fuzzy TOPSIS-based fuzzy AHP”, Expert Systems with Applications, vol. 39, 2012, pp. 61-67. Search in Google Scholar

A.P. Subriadi, N.F. Najwa, “The Consistency Analysis of Failure Mode and Effect Analysis (FMEA) in Information Technology Risk Assessment”, Heliyon, 2020, vol. 6, issue 1. https://doi.org/10.1016/j.heliyon.2020.e03161 Search in Google Scholar

S. Rastayesh, S. Bahrebar, F. Blaabjerg, D. Zhou, H. Wang, J.A. Dalsgaard Sørensen, “System Engineering Approach Using FMEA and Bayesian Network for Risk Analysis – A Case Study”, Sustainability, 2020, vol. 12, issue 77, https://doi.org/10.3390/su12010077 Search in Google Scholar

A. Kania, K. Cesarz-Andraczke, J. Odrobiński, J. “Application of FMEA method for an analysis of selected production proces”, Journal of Achievements in Materials and Manufacturing Engineering, vol. 91, issue 1, 2018, pp. 34-40. https://doi.org/10.5604/01.3001.0012.9655 Search in Google Scholar

K. Kowalik, “Six Sigma as a method of improving the quality of service process”, Production Engineering Archives, 2018, vol. 19, pp. 10-15. Search in Google Scholar

R. Wolniak, “Problems of use of FMEA method in industrial enterprise”, Production Engineering Archives, vol. 23, 2019, pp. 12-17. https://doi.org/10.30657/pea.2019.23.02 Search in Google Scholar

H.C. Liu, J. X. You, Q.L. Lin, H. Li, “Risk assessment in system FMEA combining fuzzy weighted average with fuzzy decision-making trial and evaluation laboratory”, International Journal of Computer Integrated Manufacturing, vol. 28, no. 7, 2014, pp. 701-714. https://doi.org/10.1080/0951192X.2014.900865 Search in Google Scholar

https://www.aiag.org/about/news/2019/06/03/aiag-andvda-release-new-automotive-fmea-handbook [access 28.09.2024]. Search in Google Scholar

R. Moen, C. Norman, “Evolution of the PDCA Cycle”, “The History of the PDCA Cycle.” In Proceedings of the 7th ANQ Congress, Tokyo, 2009, Asian Network for Quality https://www.anforq.or,g/activities/congresses/index.html Search in Google Scholar

Godina, Radu, Beatriz Gomes Rolis Silva, and Pedro Espadinha-Cruz. 2021. “A DMAIC Integrated Fuzzy FMEA Model: A Case Study in the Automotive Industry”, Applied Sciences, vol. 11, no. 8, pp. 3726. https://doi.org/10.3390/app11083726 Search in Google Scholar

F. Crawley, F., “Failure modes and effects analysis (FMEA) and failure modes, effects and criticality analysis (FMECA).” A guide to hazard identification methods, 2020, pp. 103-109. Search in Google Scholar

L. Petrescu, E. Cazacu, M.C. Petrescu, “Failure mode and effect analysis in automotive industry: a case study”, The Scientific Bulletin of Electrical Engineering Faculty, vol. 19, issue 2, pp. 10-15. https://doi.org/10.1515/SBEEF-2019-0014 Search in Google Scholar