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Published in: Production Engineering 5/2019

06-07-2019 | Production Management

Life cycle oriented technology chain optimization: a methodology to identify the influences of tool manufacturing on environmental impacts caused in the tool’s use phase

Authors: Timm Grünebaum, Ulrich Müller, Jan Rey, Sebastian Barth, Thomas Bergs

Published in: Production Engineering | Issue 5/2019

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Abstract

Limited availability of resources, increasing global energy demand and legal regulations force tool manufacturers to offer ecologically efficient products. Tools cause environmental impacts in every phase of their life cycles—from resource extraction to disposal. Environmental impacts arising during the use phase are highly dependent on the tool characteristics created in the tool’s manufacturing phase. A holistic analysis of the parameters affecting the use phase as well as of the manufacturing technologies used to manufacture the tool is needed in order to minimize the environmental impacts of the use phase. A methodology that supports technology planners to modify technology chains in order to improve a tool’s ecological efficiency under consideration of the influences between lifecycle phases is therefore introduced. The tool is first analyzed to identify its relevant characteristics. Technological influences within the tool’s use phase are then analyzed. The influences of the manufacturing phase on tool characteristics are identified in a third stage. Fourthly, the tool’s environmental impacts caused by the tool characteristics and by the technological influences during the use phase are added. The methodology therefore enables the reduction of a tool’s environmental impacts in selected impact categories by adjusting identified levers in the tool’s manufacturing phase and in its use phase.

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Literature
2.
go back to reference European Commission (2014) Report on critical raw materials for the EU: report of the Ad hoc Working Group on defining critical raw materials European Commission (2014) Report on critical raw materials for the EU: report of the Ad hoc Working Group on defining critical raw materials
3.
go back to reference Eyrisch T (2009) Optimierung der Herstellung von Vollhartmetallwerkzeugen: Strategie zur Vermeidung von Oberflächenschädigungen. Diss., TU Kaiserslautern Eyrisch T (2009) Optimierung der Herstellung von Vollhartmetallwerkzeugen: Strategie zur Vermeidung von Oberflächenschädigungen. Diss., TU Kaiserslautern
5.
go back to reference International Organization for Standardization (2009) Environmental management—life cycle assessment—principles and framework 3.020.10 (ISO 14040) International Organization for Standardization (2009) Environmental management—life cycle assessment—principles and framework 3.020.10 (ISO 14040)
7.
go back to reference Kellens K, Dewulf W, Overcash M, Hauschild MZ, Duflou JR (2012) Methodology for systematic analysis and improvement of manufacturing unit process life-cycle inventory (UPLCI)—CO2PE!: initiative (cooperative effort on process emissions in manufacturing). Part 1: methodology description. Int J Life Cycle Assess 17(1):69–78. https://doi.org/10.1007/s11367-011-0340-4 CrossRef Kellens K, Dewulf W, Overcash M, Hauschild MZ, Duflou JR (2012) Methodology for systematic analysis and improvement of manufacturing unit process life-cycle inventory (UPLCI)—CO2PE!: initiative (cooperative effort on process emissions in manufacturing). Part 1: methodology description. Int J Life Cycle Assess 17(1):69–78. https://​doi.​org/​10.​1007/​s11367-011-0340-4 CrossRef
11.
go back to reference Intergovernmental Panel on Climate Change (2018) Global warming of 1.5 °C: an IPCC special report on the impacts of global warming of 1.5 °C above pre-industrial levels and related global greenhouse gas emission pathways in the context of strengthening the global response to the threat of climate change sustainable development and efforts to eradicate poverty. Intergovernmental Panel on Climate Change, Geneva, Switzerland Intergovernmental Panel on Climate Change (2018) Global warming of 1.5 °C: an IPCC special report on the impacts of global warming of 1.5 °C above pre-industrial levels and related global greenhouse gas emission pathways in the context of strengthening the global response to the threat of climate change sustainable development and efforts to eradicate poverty. Intergovernmental Panel on Climate Change, Geneva, Switzerland
12.
go back to reference Heller J, Loewer M, Feldhusen J (2014) Enhanced function structure applicability through adaptive function templates. Athens J Technol Eng 1(1):33–46 Heller J, Loewer M, Feldhusen J (2014) Enhanced function structure applicability through adaptive function templates. Athens J Technol Eng 1(1):33–46
19.
go back to reference CIRP International Institution for Production Engineering Research (2004) Dictionary of production engineering, 2nd edn. Springer, Berlin, p 26 CIRP International Institution for Production Engineering Research (2004) Dictionary of production engineering, 2nd edn. Springer, Berlin, p 26
20.
25.
go back to reference Paucksch E, Holsten S, Linß M, Tikal F (2008) Zerspantechnik: Prozesse, Werkzeuge, Technologien, 12th edn. Vieweg Teubner, Wiesbaden Paucksch E, Holsten S, Linß M, Tikal F (2008) Zerspantechnik: Prozesse, Werkzeuge, Technologien, 12th edn. Vieweg Teubner, Wiesbaden
27.
go back to reference Klocke F (2018) Zerspanung mit geometrisch bestimmter Schneide, 9th edn. Springer, BerlinCrossRef Klocke F (2018) Zerspanung mit geometrisch bestimmter Schneide, 9th edn. Springer, BerlinCrossRef
31.
go back to reference Mang T, Bobzin K, Bartels T (eds) (2011) Industrial tribology: tribosystems, friction, wear and surface engineering, lubrication. Wiley-VCH, Weinheim Mang T, Bobzin K, Bartels T (eds) (2011) Industrial tribology: tribosystems, friction, wear and surface engineering, lubrication. Wiley-VCH, Weinheim
32.
go back to reference Huijbregts MAJ, Steinmann ZJN, elshout PMF, Stam G, Verones F, Vieira MDM, Hollander A, Zijp M, van Zelm R (2016) ReCiPe 2016: a harmonized life cycle impact assessment method at midpoint and endpoint level report I: characterization. National Institute for Public Health and the Environment. Bilthoven, Netherlands Huijbregts MAJ, Steinmann ZJN, elshout PMF, Stam G, Verones F, Vieira MDM, Hollander A, Zijp M, van Zelm R (2016) ReCiPe 2016: a harmonized life cycle impact assessment method at midpoint and endpoint level report I: characterization. National Institute for Public Health and the Environment. Bilthoven, Netherlands
33.
go back to reference Maaßen U, Schiffer H-W (2018) The German lignite industry in 2017. World Min Surf Undergr 70(3):156–166 Maaßen U, Schiffer H-W (2018) The German lignite industry in 2017. World Min Surf Undergr 70(3):156–166
35.
go back to reference Juhrich K (2016) CO2 emission factors for fossil fuels. German Environment Agency (UBA), Dessau, Germany Juhrich K (2016) CO2 emission factors for fossil fuels. German Environment Agency (UBA), Dessau, Germany
37.
go back to reference Heisel U, Klocke F, Uhlmann E, Spur G (2014) Handbuch Spanen, 2nd edn. Hanser, Munich Heisel U, Klocke F, Uhlmann E, Spur G (2014) Handbuch Spanen, 2nd edn. Hanser, Munich
38.
go back to reference Degner W, Lutze H, Smejkal E (2015) Spanende Formung: Theorie, Berechnung, Richtwerte, 17th edn. Hanser, MunichCrossRef Degner W, Lutze H, Smejkal E (2015) Spanende Formung: Theorie, Berechnung, Richtwerte, 17th edn. Hanser, MunichCrossRef
40.
go back to reference Diaz N, Redelsheimer E, Dornfeld D (2011) Energy consumption characterization and reduction strategies for milling machine tool use. In: Hesselbach J, Herrmann C (eds) Glocalized solutions for sustainability in manufacturing: proceedings of the 18th CIRP international conference on life cycle engineering. Springer, Berlin, pp 263–267 Diaz N, Redelsheimer E, Dornfeld D (2011) Energy consumption characterization and reduction strategies for milling machine tool use. In: Hesselbach J, Herrmann C (eds) Glocalized solutions for sustainability in manufacturing: proceedings of the 18th CIRP international conference on life cycle engineering. Springer, Berlin, pp 263–267
42.
go back to reference Suh NP (1990) The principles of design. Oxford series on advanced manufacturing, vol 6. Oxford University Press, New York Suh NP (1990) The principles of design. Oxford series on advanced manufacturing, vol 6. Oxford University Press, New York
Metadata
Title
Life cycle oriented technology chain optimization: a methodology to identify the influences of tool manufacturing on environmental impacts caused in the tool’s use phase
Authors
Timm Grünebaum
Ulrich Müller
Jan Rey
Sebastian Barth
Thomas Bergs
Publication date
06-07-2019
Publisher
Springer Berlin Heidelberg
Published in
Production Engineering / Issue 5/2019
Print ISSN: 0944-6524
Electronic ISSN: 1863-7353
DOI
https://doi.org/10.1007/s11740-019-00911-5

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