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Systems thinking towards holistic, sustainability-oriented assessment and decision-making for lightweighting

Published online by Cambridge University Press:  16 May 2024

Katharina Johnston-Lynch*
Affiliation:
University of Strathclyde, United Kingdom
Robert Ian Whitfield
Affiliation:
University of Strathclyde, United Kingdom
Dorothy Evans
Affiliation:
National Manufacturing Institute Scotland, United Kingdom

Abstract

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Multiple industries have hailed lightweighting promise to reduce the mass of their product at equivalent or improved performance. Lightweighting as a strategy encompasses lightweight end-product desired attributes and through-life processing decisions. Assessment of lightweighting gathers information for decision-making towards the optimization of these strategies. An exploratory study, using systems thinking is conducted, to identify requirements of lightweighting and its assessment in terms of holistically defining its impact on the sustainability of its background system, the Earth.

Type
Design for Sustainability
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), 2024.

References

Akhshik, M., Panthapulakkal, S., Tjong, J. and Sain, M. (2017), “Life cycle assessment and cost analysis of hybrid fiber-reinforced engine beauty cover in comparison with glass fiber-reinforced counterpart”, Environmental Impact Assessment Review, Elsevier Inc., Vol. 65, pp. 111117, https://dx.doi.org/10.1016/j.eiar.2017.04.005.Google Scholar
Antucheviciene, J., Tavana, M., Nilashi, M. and Bausys, R. (2017), “Managing information uncertainty and complexity in decision-making”, Complexity, Hindawi Limited, https://dx.doi.org/10.1155/2017/1268980.Google Scholar
Beyer, C. (2014), “Strategic Implications of Current Trends in Additive Manufacturing”, Journal of Manufacturing Science and Engineering, Transactions of the ASME, American Society of Mechanical Engineers (ASME), Vol. 136 No. 6, https://dx.doi.org/10.1115/1.4028599.CrossRefGoogle Scholar
Booth, A. (2006), “‘Brimful of STARLITE’”: Toward Standards for Reporting Literature Searches, J Med Libr Assoc, Vol. 94.Google Scholar
Burch, S., Gupta, A., Inoue, C.Y.A., Kalfagianni, A., Persson, Å., Gerlak, A.K., Ishii, A., et al. (2019), “New directions in earth system governance research”, Earth System Governance, Elsevier B.V., https://dx.doi.org/10.1016/j.esg.2019.100006.CrossRefGoogle Scholar
Colyvas, J.A. (2012), “Performance metrics as formal structures and through the lens of social mechanisms: When do they work and how do they influence?”, American Journal of Education, Vol. 118 No. 2, pp. 167197, https://dx.doi.org/10.1086/663270.CrossRefGoogle Scholar
Costanza, R. (2004), Value Theory and Energy, https://dx.doi.org/10.1016/B0-12-176480-X/00118-2.CrossRefGoogle Scholar
Czerwinski, F. (2021), “Current trends in automotive lightweighting strategies and materials”, Materials, MDPI, Vol. 14 No. 21, https://dx.doi.org/10.3390/ma14216631.Google ScholarPubMed
Dezfuli, H., Stamatelatos, M., Maggio, G. and Everett, C. (2010), NASA/SP-2010-576, NASA Risk-Informed Decision Making Handbook.Google Scholar
Fan, J. and Njuguna, J. (2016), “An Introduction to Lightweight Composite Materials and Their Use in Transport Structures”, Lightweight Composite Structures in Transport: Design, Manufacturing, Analysis and Performance, Elsevier Inc., pp. 334, https://dx.doi.org/10.1016/B978-1-78242-325-6.00001-3.CrossRefGoogle Scholar
Garritty, C., Gartlehner, G., Nussbaumer-Streit, B., King, V.J., Hamel, C., Kamel, C., Affengruber, L., et al. (2021), “Cochrane Rapid Reviews Methods Group offers evidence-informed guidance to conduct rapid reviews”, Journal of Clinical Epidemiology, Elsevier Inc., Vol. 130, pp. 1322, https://dx.doi.org/10.1016/j.jclinepi.2020.10.007.CrossRefGoogle ScholarPubMed
Guinée, J.B., Heijungs, R., Huppes, G., Zamagni, A., Masoni, P., Buonamici, R., Ekvall, T., et al. (2011), “Life cycle assessment: Past, present, and future”, Environmental Science and Technology, Vol. 45 No. 1, pp. 9096, https://dx.doi.org/10.1021/es101316v.CrossRefGoogle ScholarPubMed
Hannes, K. and Lockwood, C. (2011), “Pragmatism as the philosophical foundation for the Joanna Briggs meta-aggregative approach to qualitative evidence synthesis”, Journal of Advanced Nursing, Vol. 67 No. 7, pp. 16321642, https://dx.doi.org/10.1111/j.1365-2648.2011.05636.x.CrossRefGoogle Scholar
Hay, L. (2015), Generic Models of Technical Systems Sustainability.Google Scholar
Herrmann, C., Dewulf, W., Hauschild, M., Kaluza, A., Kara, S. and Skerlos, S. (2018), “Life cycle engineering of lightweight structures”, CIRP Annals, Elsevier USA, Vol. 67 No. 2, pp. 651672, https://dx.doi.org/10.1016/j.cirp.2018.05.008.CrossRefGoogle Scholar
Hieronymi, A. (2013), “Understanding systems science: A visual and integrative approach”, Systems Research and Behavioral Science, Vol. 30 No. 5, pp. 580595, https://dx.doi.org/10.1002/sres.2215.CrossRefGoogle Scholar
Isenstadt, A., German, J., Bubna, P., Wiseman, M., Venkatakrishnan, U., Abbasov, L., Guillen, P., et al. (2016), “Lightweighting technology development and trends in U.S. passenger vehicles”, The International Council on Clean Transportation, Vol. 2015-April, SAE International.Google Scholar
Kloepffer, W. and Renner. (2008), “Life cycle sustainability assessment of products (with Comments by Helias A. Udo de Haes, p. 95)”, International Journal of Life Cycle Assessment, Vol. 13, Springer Verlag, pp. 8995, https://dx.doi.org/10.1065/lca2008.02.376.CrossRefGoogle Scholar
Kuhn, A. and Heckelei, T. (2010), “Anthroposphere”, Impacts of Global Change on the Hydrological Cycle in West and Northwest Africa, Springer Berlin Heidelberg, pp. 282341, https://dx.doi.org/10.1007/978-3-642-12957-5_8.CrossRefGoogle Scholar
Kupfer, R., Schilling, L., Spitzer, S., Zichner, M. and Gude, M. (2022), “Neutral lightweight engineering: a holistic approach towards sustainability driven engineering”, Discover Sustainability, Springer Nature, 1 December, https://dx.doi.org/10.1007/s43621-022-00084-9.CrossRefGoogle Scholar
Leary, H. and Walker, A. (2018), “Meta-Analysis and Meta-Synthesis Methodologies: Rigorously Piecing Together Research”, TechTrends, Springer New York LLC, Vol. 62 No. 5, pp. 525534, https://dx.doi.org/10.1007/s11528-018-0312-7.CrossRefGoogle Scholar
Lewis, G.M., Buchanan, C.A., Jhaveri, K.D., Sullivan, J.L., Kelly, J.C., Das, S., Taub, A.I., et al. (2019), “Green Principles for Vehicle Lightweighting”, Environmental Science and Technology, American Chemical Society, 16 April, https://dx.doi.org/10.1021/acs.est.8b05897.CrossRefGoogle Scholar
Lövbrand, E., Stripple, J. and Wiman, B. (2009), “Earth System governmentality. Reflections on science in the Anthropocene”, Global Environmental Change, Vol. 19 No. 1, pp. 713, https://dx.doi.org/10.1016/j.gloenvcha.2008.10.002.CrossRefGoogle Scholar
Mambrey, S., Timm, J., Landskron, J.J. and Schmiemann, P. (2020), “The impact of system specifics on systems thinking”, Journal of Research in Science Teaching, John Wiley and Sons Inc, Vol. 57 No. 10, pp. 16321651, https://dx.doi.org/10.1002/tea.21649.CrossRefGoogle Scholar
McMahon, C. (2022), “History of Engineering Systems Design Research and Practice”, Handbook of Engineering Systems Design: With 178 Figures and 54 Tables, Springer International Publishing, pp. 3351, https://dx.doi.org/10.1007/978-3-030-81159-4_2.CrossRefGoogle Scholar
Milburn, T.W. and Billings, R.S. (1976), “Decision-Making Perspectives from Psychology: Dealing with Risk and Uncertainty”, American Behavioral Scientist, Vol. 20 No. 1, pp. 111126, https://dx.doi.org/10.1177/000276427602000107.CrossRefGoogle Scholar
Newton, B.J., Rothlingova, Z., Gutteridge, R., Lemarchand, K. and Raphael, J.H. (2012), “No room for reflexivity? Critical reflections following a systematic review of qualitative research”, Journal of Health Psychology, September, https://dx.doi.org/10.1177/1359105311427615.CrossRefGoogle Scholar
Nielsen, C.B., Larsen, P.G., Fitzgerald, J., Woodcock, J. and Peleska, J. (2015), “Systems of systems engineering: Basic concepts, model-based techniques, and research directions”, ACM Computing Surveys, Association for Computing Machinery, Vol. 48 No. 2, https://dx.doi.org/10.1145/2794381.Google Scholar
NRC (National Research Council). (2012), Application of Lightweighting Technology to Military Aircraft, Vessels, and Vehicles, Application of Lightweighting Technology to Military Aircraft, Vessels, and Vehicles, National Academies Press, https://dx.doi.org/10.17226/13277.Google Scholar
Osorio, L.A.R., Lobato, M.O. and Del Castillo, X.A. (2009), “An epistemology for sustainability science: A proposal for the study of the health/disease phenomenon”, International Journal of Sustainable Development and World Ecology, Vol. 16 No. 1, pp. 4860, https://dx.doi.org/10.1080/13504500902760571.CrossRefGoogle Scholar
Přikryl, R., Török, Theodoridou, M., Gomez-Heras, M. and Miskovsky, K. (2016), “Geomaterials in construction and their sustainability: Understanding their role in modern society”, Geological Society Special Publication, Geological Society of London, Vol. 416 No. 1, pp. 122, https://dx.doi.org/10.1144/SP416.21.CrossRefGoogle Scholar
Rasulzade, J., Rustamov, S., Akhmetov, B., Maksum, Y. and Nogaibayeva, M. (2023), “Computational Acceleration of Topology Optimization Using Deep Learning”, Applied Sciences (Switzerland), MDPI, Vol. 13 No. 1, https://dx.doi.org/10.3390/app13010479.Google Scholar
Raugei, M., El Fakir, O., Wang, L., Lin, J. and Morrey, D. (2014), “Life cycle assessment of the potential environmental benefits of a novel hot forming process in automotive manufacturing”, Journal of Cleaner Production, Elsevier Ltd, Vol. 83, pp. 8086, https://dx.doi.org/10.1016/j.jclepro.2014.07.037.CrossRefGoogle Scholar
Robinson, S. (2021), “A systems thinking perspective for the circular economy”, Circular Economy and Sustainability: Volume 1: Management and Policy, Elsevier, pp. 3552, https://dx.doi.org/10.1016/B978-0-12-819817-9.00034-X.CrossRefGoogle Scholar
Rodriguez, L.J., Peças, P., Carvalho, H. and Orrego, C.E. (2020), “A literature review on life cycle tools fostering holistic sustainability assessment: An application in biocomposite materials”, Journal of Environmental Management, Academic Press, 15 May, https://dx.doi.org/10.1016/j.jenvman.2020.110308.CrossRefGoogle Scholar
Roy, M. (2021), “Sustainable innovation and corporate environmentalism”, Sustainable Development Strategies, Elsevier, pp. 91131, https://dx.doi.org/10.1016/b978-0-12-818920-7.00002-5.CrossRefGoogle Scholar
Sala, S., Farioli, F. and Zamagni, A. (2013), “Life cycle sustainability assessment in the context of sustainability science progress (part 2)”, International Journal of Life Cycle Assessment, Vol. 18 No. 9, pp. 16861697, https://dx.doi.org/10.1007/s11367-012-0509-5.CrossRefGoogle Scholar
Schellnhuber, H.J. (1999), “‘Earth system’ analysis and the second Copernican revolution”, Nature, Vol. 402.CrossRefGoogle Scholar
Semmlow, J. (2012), “Chapter 7 - Linear Systems Analysis in the Time Domain: Convolution and Simulation”, in Semmlow, J. (Ed.), Signals and Systems for Bioengineers (Second Edition), Academic Press, Boston, pp. 261316, https://doi.org/10.1016/B978-0-12-384982-3.00007-9.CrossRefGoogle Scholar
Sniazhko, S. and Muralidharan. (2019), “Uncertainty in decision-making: A review of the international business literature”, Cogent Business and Management, Cogent OA, Vol. 6 No. 1, https://dx.doi.org/10.1080/23311975.2019.1650692.CrossRefGoogle Scholar
Snyder, H. (2019), “Literature review as a research methodology: An overview and guidelines”, Journal of Business Research, Elsevier Inc., Vol. 104, pp. 333339, https://dx.doi.org/10.1016/j.jbusres.2019.07.039.CrossRefGoogle Scholar
Voulvoulis, N., Giakoumis, T., Hunt, C., Kioupi, V., Petrou, N., Souliotis, I., Vaghela, C., et al. (2022), “Systems thinking as a paradigm shift for sustainability transformation”, Global Environmental Change, Elsevier Ltd, 1 July, https://dx.doi.org/10.1016/j.gloenvcha.2022.102544.CrossRefGoogle Scholar
Watson, M., Madni, A., Mesmer, B. and McKinney, D. (2020), “Envisioning Future Systems Engineering Principles Through a Transdisciplinary Lens”, INCOSE International Symposium, Wiley, Vol. 30 No. 1, pp. 15171532, https://dx.doi.org/10.1002/j.2334-5837.2020.00801.x.CrossRefGoogle Scholar
Woods, D.R. (2000), “An evidence-based strategy for problem solving”, Journal of Engineering Education, American Society for Engineering Education, https://dx.doi.org/10.1002/j.2168-9830.2000.tb00551.x.CrossRefGoogle Scholar
Zanchi, L., Delogu, M., Dattilo, C.A., Zamagni, A. and Del Pero, F. (2021), “Integrating Life Cycle Sustainability Assessment Results Using Fuzzy-TOPSIS in Automotive Lightweighting”, SAE International Journal of Materials and Manufacturing, SAE International, Vol. 14 No. 3, pp. 317341, https://dx.doi.org/10.4271/05-14-03-0022.CrossRefGoogle Scholar