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2022 | OriginalPaper | Chapter

Life Cycle Sustainability Assessment of Repair Through Wire and Arc Additive Manufacturing

Authors : Emanuele Pagone, Joachim Antonissen, Filomeno Martina

Published in: REWAS 2022: Developing Tomorrow’s Technical Cycles (Volume I)

Publisher: Springer International Publishing

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Abstract

Extending the useful life of a product through repair can significantly reduce the environmental impact associated with its production, and it can be less resource intensive than other environmentally virtuous practices like recycling. Wire and arc additive manufacturing (WAAM) appears to be a promising approach in this context, being characterized by high-resource efficiency, flexibility to perform repairs, and having recently gained industrial maturity. In this work, a methodology to assess the life cycle environmental sustainability of repaired products through WAAM will be presented with a real-world, industrial case study.

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Literature
1.
go back to reference Wu B, Pan Z, Ding D, Cuiuri D, Li H, Xu J, Norrish J (2018) A review of the wire arc additive manufacturing of metals: properties, defects and quality improvement. J Manuf Process 35:127–139CrossRef Wu B, Pan Z, Ding D, Cuiuri D, Li H, Xu J, Norrish J (2018) A review of the wire arc additive manufacturing of metals: properties, defects and quality improvement. J Manuf Process 35:127–139CrossRef
2.
go back to reference Priarone PC, Pagone E, Martina F, Catalano AR, Settineri L (2020) Multi-criteria environmental and economic impact assessment of wire arc additive manufacturing. CIRP Ann 69(1):37–40CrossRef Priarone PC, Pagone E, Martina F, Catalano AR, Settineri L (2020) Multi-criteria environmental and economic impact assessment of wire arc additive manufacturing. CIRP Ann 69(1):37–40CrossRef
3.
go back to reference Bekker ACM, Verlinden JC (2018) Life cycle assessment of wire + arc additive manufacturing compared to green sand casting and CNC milling in stainless steel. J Clean Prod 177:438–447CrossRef Bekker ACM, Verlinden JC (2018) Life cycle assessment of wire + arc additive manufacturing compared to green sand casting and CNC milling in stainless steel. J Clean Prod 177:438–447CrossRef
4.
go back to reference Frazier WE (2014) Metal additive manufacturing: a review. J Mater Eng Perform 23:1971–1928 Frazier WE (2014) Metal additive manufacturing: a review. J Mater Eng Perform 23:1971–1928
5.
go back to reference Busachi A, Erkoyuncu J, Colegrove P, Martina F, Ding J (2015) Designing a WAAM based manufacturing system for defence applications. Procedia CIRP 37:48–53 Busachi A, Erkoyuncu J, Colegrove P, Martina F, Ding J (2015) Designing a WAAM based manufacturing system for defence applications. Procedia CIRP 37:48–53
6.
go back to reference Campatelli G, Montevecchi F, Venturini G, Ingarao G, Priarone P (2020) Integrated WAAM-subtractive versus pure subtractive manufacturing approaches: an energy efficiency comparison. Int J Precis Eng Manuf Green Technol 7(1):1–11 Campatelli G, Montevecchi F, Venturini G, Ingarao G, Priarone P (2020) Integrated WAAM-subtractive versus pure subtractive manufacturing approaches: an energy efficiency comparison. Int J Precis Eng Manuf Green Technol 7(1):1–11
7.
go back to reference Peng T (2016) Analysis of energy utilization in 3D printing processes. Procedia CIRP 40:62–67 Peng T (2016) Analysis of energy utilization in 3D printing processes. Procedia CIRP 40:62–67
8.
go back to reference Priarone PC, Campatelli G, Montevecchi F, Venturini G, Settineri L (2019) A modelling framework for comparing the environmental and economic performance of WAAM-based integrated manufacturing and machining. CIRP Ann 68(1):37–40CrossRef Priarone PC, Campatelli G, Montevecchi F, Venturini G, Settineri L (2019) A modelling framework for comparing the environmental and economic performance of WAAM-based integrated manufacturing and machining. CIRP Ann 68(1):37–40CrossRef
9.
go back to reference Serres N, Tidu D, Sankare S, Hlawka F (2011) Environmental comparison of MESO-CLAD process and conventional machining implementing life cycle assessment. J Clean Prod 19(9–10):1117–1124 Serres N, Tidu D, Sankare S, Hlawka F (2011) Environmental comparison of MESO-CLAD process and conventional machining implementing life cycle assessment. J Clean Prod 19(9–10):1117–1124
10.
go back to reference Paris H, Mokhtarian H, Coatanéa E, Museau M, Ituarte IF (2016) Comparative environmental impacts of additive and subtractive manufacturing technologies. CIRP Ann 65(1):29–32CrossRef Paris H, Mokhtarian H, Coatanéa E, Museau M, Ituarte IF (2016) Comparative environmental impacts of additive and subtractive manufacturing technologies. CIRP Ann 65(1):29–32CrossRef
11.
go back to reference Faludi J, Van Sice CM, Shi Y, Bower J, Brooks OMK (2019) Novel materials can radically improve whole-system environmental impacts of additive manufacturing. J Clean Prod 212:1580–1590CrossRef Faludi J, Van Sice CM, Shi Y, Bower J, Brooks OMK (2019) Novel materials can radically improve whole-system environmental impacts of additive manufacturing. J Clean Prod 212:1580–1590CrossRef
12.
go back to reference International Organization for Standardization (2018) BSI Standards Publication Environmental Management—Life cycle assessment—Requirements and Guidelines. ISO 14044:2018 International Organization for Standardization (2018) BSI Standards Publication Environmental Management—Life cycle assessment—Requirements and Guidelines. ISO 14044:2018
14.
go back to reference Huijbregts MAJ, Steinmann ZJN, Elshout PMF, Stam G, Verones F, Vieira MDM, Hollander A, Van Zelm R (2016) ReCiPe2016: a harmonized life cycle impact assessment method at midpoint and endpoint level. RIVM Report 2016–0104. Bilthoven, The Netherlands Huijbregts MAJ, Steinmann ZJN, Elshout PMF, Stam G, Verones F, Vieira MDM, Hollander A, Van Zelm R (2016) ReCiPe2016: a harmonized life cycle impact assessment method at midpoint and endpoint level. RIVM Report 2016–0104. Bilthoven, The Netherlands
Metadata
Title
Life Cycle Sustainability Assessment of Repair Through Wire and Arc Additive Manufacturing
Authors
Emanuele Pagone
Joachim Antonissen
Filomeno Martina
Copyright Year
2022
DOI
https://doi.org/10.1007/978-3-030-92563-5_39