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2022 | 13 | nr 3 | 20--29
Tytuł artykułu

Production Resource Flexibility Assessment: Case Studies in the Automotive Industry

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The automotive industry is characterized by a high degree of uncertainty. Companies are facing the challenge of producing different systems simultaneously. Additionally, the global quantity of electric vehicles is also expected to increase significantly. This results in the following capability to remain competitive: Effective and efficient adaptions of production systems to model variations and volume increases. While flexible production is identified as the most promising concept, defining the actual flexibility level of included production resources is essential for its proper realization. A literature review on existing flexibility assessment approaches revealed their emphasis on high-level enablers and limited practical applicability in the automotive industry. In contrast, focusing the assessment on single workstations supports the selection of appropriate production resources. Therefore, a simple and structured standard procedure for a production resource flexibility assessment was developed. This theoretical construct was subsequently complemented with practical insights through its application on two real-life case studies within one automotive engineering company. Summarizing and discussing the findings in combination with a conclusion completed this paper. (original abstract)
Rocznik
Tom
13
Numer
Strony
20--29
Opis fizyczny
Twórcy
  • Graz University of Technology, Austria
  • Graz University of Technology, Austria
  • Pro2Future GmbH, Austria
  • Pro2Future GmbH, Austria
  • AVL List GmbH, Austria
  • AVL List GmbH, Austria
Bibliografia
  • Abdul Hadi M., Brillinger M. and Weinzerl M. (2021), Parametric evaluation and cost analysis in an e-axle assembly layout, Proceedings of the 5th EAI International Conference on Management of Manufacturing Systems, pp. 39-55.
  • Ali M. and Murshid M. (2016), Performance Evaluation of Flexible Manufacturing System Under Different Material Handling Strategies, Global Journal of Flexible Systems Management, No. 3, Vol. 17, pp. 287-305.
  • Azab A., Elmaraghy H., Nyhuis P., Pachow-Frauenhofer J., and Schmidt M. (2013), Mechanics of change: A framework to reconfigure manufacturing systems, CIRP Journal of Manufacturing Science and Technology, Vol. 6, pp. 110-119.
  • Beach R., Muhlemann A.P., Price D.H.R., Paterson A., and Sharp J.A. (2000), A review on manufacturing flexibility, European Journal of Operational Research, No. 1, Vol. 122, pp. 41-57.
  • Berger R. and Lazard (2017), Global Automotive Supplier Study 2018, available at https://www.rolandberger.com/en/Insights/Publications/Global-Automotive-Supplier-Study-2018.html.
  • Bi Z.M., Lang S.Y.T., Shen W., and Wang L. (2008), Reconfigurable manufacturing systems: The state of the art, International Journal of Production Research, No. 4, Vol. 46, pp. 967-992.
  • Boothroyd G., Knight W., and Dewhurst P. (2002), Product Design for Manufacturing Assembly, Marcel Dekker, United States of America.
  • Bralla J.G. (1996), Design for Excellence. Technicraft Publishers, United States of America.
  • Calvo R., Domingo R., and Sebastián M.A. (2003), An Integrated Assessment of Manufacturing Flexibility, Journal for Manufacturing Science and Production, No. 3, Vol. 5, pp. 151-161.
  • Chakraborty S. and Banik D. (2006), Design of a material handling equipment selection model using analytic hierarchy process, International Journal of Advanced Manufacturing Technologies, Vol. 28, pp. 1237-1245.
  • Chang A-Y., Whitehouse D.J., Chang S-Y., and Hsieh YC. (2001), An approach to the measurement of singlemachine flexibility, International Journal of Production Research, No. 8, Vol. 39, pp. 1589-1601.
  • Chen I.J., Calantone R.J., and Chung C.H. (1992), The Marketing-Manufacturing Inter-face and Manufacturing Flexibility, International Journal of Management Science, No. 4, Vol. 20, pp. 431-443.
  • Ervural B.C., Ervural B., and Kabak Ö. (2019), Evaluation of Flexible Manufacturing Systems Using a Hesitant Group Decision Making Approach, Journal of Intelligent Systems, No. 2, Vol. 28, pp. 245-258.
  • Florescu A. and Barabas S.A. (2017), Decision models in designing flexible production systems, MATEC Web of Conferences, Vol. 94, pp. 1-8.
  • Gerwin D. (1987), An Agenda for Research on the Flexibility of Manufacturing Processes, International Journal of Operations & Production Management, No. 1, Vol. 7, pp. 38-49.
  • Gudehus T. and Kotzab H. (2012), Comprehensive Logistics, Springer, London.
  • Gupta Y.P. and Somers T.M. (1992), The measurement of manufacturing flexibility, European Journal of Operational Research, Vol. 60, pp. 166-182.
  • Gutenberg E. (1951), Grundlagen der Betriebswirtschaftslehre: Die Produktion, Springer, Germany.
  • Hallgren M. and Olhager J. (2009), Flexibility configurations. Empirical analysis of volume and product mix flexibility, Omega, No. 4, Vol. 37, pp. 746-756.
  • Heimes H.H. (2014), Methodik zur Auswahl von Fertigungsressourcen in der Batterieproduktion, PhD Thesis, RWTH Aachen University.
  • Hettesheimer T., Möller K.C., Wolter M., Lorentz V., Wenger M., Prill T., Zausch J., et al. (2017), Entwicklungsperspektiven für Zellformate von Lithium-Ionen-Batterien in der Elektromobilität, Fraunhofer-Allianz Batterien, Fraunhofer, Germany.
  • International Energy Agency (2021), Global EV Outlook 2020 - Accelerating ambitions despite the pandemic, available at https://www.iea.org/reports/global-evoutlook-2021.
  • Joseph O.A. and Sridharan R. (2011), Evaluation of routing flexibility of a flexible manufacturing system using simulation modelling and analysis, International Journal of Advanced Manufacturing Technology, Vol. 56, pp. 273-289.
  • Kampker A. (2014), Elektromobilproduktion, Springer, Aachen.
  • Keese D.A., Takawale N., Seepersad C., and Wood K.L. (2006), An enhanced change modes and effects analysis (CMEA) tool for measuring product flexibility with applications to consumer products, Proceedings ASME 2006 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference, pp. 1-16.
  • Kirschner C., Moerth-Teo O., and Ramsauer C. (2021), Zukunftsperspektive von Lithium-Ionen-Batteriepacks: Erörterung von Trends, Herausforderungen und Unsicherheiten der Produktion, Zeitschrift für wirtschaftlichen Fabrikbetrieb - Elektromobilität, No. 11, Vol. 116, pp. 788-791.
  • Korthauer R. (2013), Handbuch Lithium-Ionen-Batterien, Springer, Frankfurt.
  • Küpper D., Sieben C., Kuhlmann K., and Ahmad J. (2018), Will Flexible-Cell Manufacturing Revolutionize Carmaking?, available at https://www.bcg.com/publications/2018/flexible-cell-manufacturing-revolutionize-carmaking.aspx
  • Lafou M., Mathieu L., Pois S., and Alochet M. (2015), Manufacturing System Flexibility: Product Flexibility Assessment, Procedia CIRP, Vol. 41, pp. 99-104.
  • Maier-Speredelozzi V. and Koren Y. (2003), Convertibility Measures for Manufacturing Systems, CIRP Annals, No. 1, Vol. 52, pp. 367-370.
  • Metternich J., Böllhoff J., Seifermann S., and Beck S. (2013), Volume and Mix Flexibility Evaluation of Lean Production Systems, Procedia CIRP, Vol. 9, pp. 79-84.
  • Michalos G., Makris S., Papakostas N., Mourtzis D. and Chryssolouris G. (2010), Automotive assembly technologies review: challenges and outlook for a flexible and adaptive approach, CIRP Journal of Manufacturing Science and Technology, No. 2, Vol. 2, pp. 81-91.
  • Mishra T., Pundir A.K., and Ganapathy, L. (2014), Assessment of manufacturing flexibility, Management Research Review, No. 8, Vol. 37, pp. 750-776.
  • Olhager J. and West B.M. (2002), The house of flexibility. Using the QFD approach to deploy manufacturing flexibility, International Journal of Operations & Production Management, No. 1, Vol. 22, pp. 50-79.
  • Palani R.P.K, Van Wie M., and Campbell M. (2003), Design for Flexibility - Measures and Guidelines, paper presented at the International Conference on Engineering Design, 19-21 August, Stockholm.
  • Posteuca A. and Zapciu M. (2015), Setup time and cost reduction in conditions of low volume and overcapacity, UPB Scientific Bulletin, Series D: Mechanical Engineering, No. 4, Vol. 77, pp. 325-336.
  • Rabitsch C. (2016), Methodology for Implementing Agility in Manufacturing Companies, PhD thesis, Graz University of Technology.
  • Sahay N. and Ierapetritou M. (2015), Flexibility assessment and risk management in supply chains, Process Systems Engineering, No. 12, Vol. 61, pp. 4166-4178.
  • Scherrer-Rathje M., Deflorin P., and Anand G. (2014), Manufacturing flexibility through outsourcing. Effects of contingencies, International Journal of Operations & Production Management, No. 9, Vol. 34, pp. 1210-1242.
  • Sethi A.K. and Sethi S.P. (1990), Flexibility in Manufacturing: A Survey, International Journal of Flexible Manufacturing Systems, Vol. 2, pp. 289-328.
  • Siddique Z., Rosen D.W., and Wang N. (1998), On the applicability of product variety design concepts to automotive platform commonality, Proceedings of the Design Engineering Technical Conferences.
  • Son Y.K. and Park C.S. (1987), Economic measure of productivity, quality, and flexibility in Advanced Manufacturing Systems, Journal of Manufacturing Systems, No. 3, Vol. 6, pp. 193-206.
  • Suarez F.F., Cusumano M.A., and Fine C.F. (1991), Flexibility and performance: a literature critique and strategic framework, Massachusetts Institute of Technology - Sloan School of Management, Boston.
  • Tolio T. (2009), Design of flexible Production Systems - Methodologies and Tools, Springer, Germany.
  • Ulrich, K. (1995), The role of product architecture in the manufacturing firm, Research Policy, No. 3, Vol. 24, pp. 419-440.
  • Voss C., Johnson M., and Godsell J. (2016), Case Research, Karlsson, C. (Ed.), Research Methods for Operations Management, Taylor & Francis, New York.
  • Wahab M.I.M. and Osman M.F.S. (2013), A fundamental flexibility measure: Machine flexibility, paper presented at the 10th International Conference on Service Systems and Service Management, 17-19 July, Hong Kong.
  • Wallentowitz H. (2013), Fokus Batterie, Keichel M. and Schwedes M. (Ed.), Das Elektroauto - Mobilität im Umbruch, Springer, Wiesbaden.
  • Wiendahl H.-P. and Hernández R. (2002), Fabrikplanung im Blickpunkt. Herausforderung Wandlungsfähigkeit, wt Werkstattstechnik, No. 4, Vol. 92, pp. 133-138.
  • Wiendahl H.-P., ElMaraghy H.A., Nyhuis P., Zäh M.F., Wiendahl H.-H., Duffie N., and Brieke M. (2007), Changeable Manufacturing - Classification, Design and Operation, CIRP Annals - Manufacturing Technology, No. 2, Vol. 56, pp. 783-809.
  • Yin R.K. (2009), Case study research: Design and methods, Sage, California.
  • Zhong Y. (2015), Flexibility assessment and management in supply chain: a new framework and applications, available at https://tel.archives-ouvertes.fr/tel-01157143/document
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.ekon-element-000171653434

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