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A ROBUST DESIGN RESEARCH LANDSCAPE - REVIEW ON THE IMPORTANCE OF DESIGN RESEARCH FOR ACHIEVING PRODUCT ROBUSTNESS

Published online by Cambridge University Press:  27 July 2021

Tobias Eifler*
Affiliation:
Technical University of Denmark
Benjamin Schleich
Affiliation:
Friedrich-Alexander-Universität Erlangen-Nürnberg
*
Eifler, Tobias, Technical University of Denmark, Engineering Design and Product Development, Denmark, tobeif@mek.dtu.dk

Abstract

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The strive for design principles, qualitative and quantitative design tools, and product development methodologies that enable and support the design of robust products, that is products which are insensitive to noise and variation, is an ongoing challenge for both practitioners and academics. This paper reviews and classifies recent research efforts dedicated to robust design originating from the design society and carves out important challenges and potentials for future research. The main novelty of the paper can be found in the structured analysis and classification of recent robust design efforts as well as in the systematic elaboration of future research challenges, which seeks to stimulate a discussion on future tasks and challenges in robust design research.

Type
Article
Creative Commons
Creative Common License - CCCreative Common License - BYCreative Common License - NCCreative Common License - ND
This is an Open Access article, distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives licence (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is unaltered and is properly cited. The written permission of Cambridge University Press must be obtained for commercial re-use or in order to create a derivative work.
Copyright
The Author(s), 2021. Published by Cambridge University Press

References

Andersson, P. (1997), On Robust Design in the Conceptual Design Phase: A Qualitative Approach, Journal of Engineering Design, Vol. 8, No. 1, p. 7589. https://doi.org/10.1080/09544829708907953.CrossRefGoogle Scholar
Arvidsson, M. and Gremyr, I. (2008), Principles of Robust Design Methodology, Quality and Reliability Engineering International, Vol. 24, No. 1, p. 2335. https://doi.org/10.1002/qre.864.CrossRefGoogle Scholar
Mashhadi, Azadeh Fazl, Alänge, Sverker, Gustafsson, Göran & Roos, Lars-Uno (2015): The Volvo Robust Engineering System: how to make robust design work in an industrial context, Total Quality Management & Business Excellence, https://dx.doi.org/10.1080/14783363.2015.1039938CrossRefGoogle Scholar
Haley, B.; Dong, A.; Tumer, I. (2015) “Measuring functional robustness with network topological robustness metrics”, Proceedings of the 20th International Conference on Engineering Design (ICED 15), Milan/Italy 27.-30. August 2015. DOI: (if present).Google Scholar
Campean, F., Delaux, D., Sharma, S., and Bridges, J. (2020). Reliability research roadmapping workshop: implications for engineering design. Proceedings of the DESIGN conference. https://dx.doi.org/10.1017/dsd.2020.337CrossRefGoogle Scholar
Dean, J.W. and Bowen, D.E.: “Management Theory and Total Quality: Improving Research and Practice through Theory Development. The Academy of Management Review, Jul., 1994, Vol. 19, No. 3, Special Issue: “Total Quality” Jr. and David E. Bowen Source: The Academy of Management Review, Jul., 1994, Vol. 19, No. 3, Special Issue: “Total Quality”Google Scholar
Eifler, T. and Howard, T.J. (2018), The importance of robust design methodology: case study of the infamous GM ignition switch recall, Research in Engineering Design 29, 3953 (2018). https://dx.doi.org/10.1007/s00163-017-0251-x.CrossRefGoogle Scholar
Forslund, K. and Söderberg, R. (2010) “Aesthetic consequences of making car exteriors visually robust to geometrical variation”, Journal of Design Research, Vol. 8, No. 3, p. 252 - 271. https://doi.org/10.1504/JDR.2010.032609CrossRefGoogle Scholar
Göhler, S. M., Eifler, T., and Howard, T. J. (2016) Robustness Metrics: Consolidating the multiple approaches to quantify Robustness. Journal of Mechanical Design, Vol. 138. https://doi.org/10.1115/1.4034112.Google Scholar
Götz, S., Schleich, B., and Wartzack, S. (2020). “Integration of robust and tolerance design in early stages of the product development process. Research in Engineering Design, 31, 157173. https://dx.doi.org/10.1007/s00163-019-00328-2CrossRefGoogle Scholar
Haley, B.; Dong, A.; Tumer, I. (2015) “Measuring functional robustness with network topological robustness metrics”, Proceedings of the 20th International Conference on Engineering Design (ICED 15), Milan/Italy 27.-30. August 2015. DOI: (if present).Google Scholar
Hasenkamp, T., Arvidsson, M. & Gremyr, I. (2009) A review of practices for robust design methodology, Journal of Engineering Design, 20:6, 645657, https://dx.doi.org/10.1080/09544820802275557.CrossRefGoogle Scholar
Jugulum, R., Frey, D.D., 2007: Toward a taxonomy of concept designs for improved robustness, Journal of Engineering Design, 18:2, 139156, https://dx.doi.org/10.1080/09544820600731496.CrossRefGoogle Scholar
Krogstie, L., Ebro, M. & Howard, T.J. (2015) How to implement and apply robust design: insights from industrial practice, Total Quality Management & Business Excellence, 26:1112, 1387-1405, https://dx.doi.org/10..CrossRefGoogle Scholar
Lönn, D.; Öman, M.; Nilsson, L. G.; and Simonsson, K. (2009), Finite element based robustness study of a truck cab subjected to impact loading. International Journal of Crashworthiness, Vol. 14, No. 2, p. 111124. https://doi.org/10.1080/13588260802412992.CrossRefGoogle Scholar
Park, G.J, Lee, T.H., Lee, K.W. & Hwang, K.H. (2006) Robust Design: An Overview. AIAA JOURNAL Vol. 44, No. 1, January 2006CrossRefGoogle Scholar
Robinson, T.J., Borror, C.M. & Myers, R.H. (2004) “Robust Parameter Design - A Review”. Quality and Reliability Engineering International. 20:81101CrossRefGoogle Scholar
Taguchi, G., Chowdhury, S., and Yuin Wu, B.S. (2005), “Taguchi's Quality Engineering Handbook”. Wiley & Sons, Inc. New Jersey.CrossRefGoogle Scholar