Comparative Life Cycle Assessment and Cost Analysis of the Production of Ti6Al4V-TiC Metal–Matrix Composite Powder by High-Energy Ball Milling and Ti6Al4V Powder by Gas Atomization

Author:

Santiago-Herrera Mario1ORCID,Ibáñez Jesús1ORCID,De Pamphilis Marco2,Alegre Jesús Manuel3ORCID,Tamayo-Ramos Juan Antonio1,Martel-Martín Sonia1,Barros Rocío1ORCID

Affiliation:

1. International Research Center in Critical Raw Materials for Advanced Industrial Technologies (ICCRAM), University of Burgos, Centro de I+D+I, Plaza Misael Bañuelos s/n, 09001 Burgos, Spain

2. MBN Nanomaterialia S.p.A, Via Giacomo Bortolan 42, 31050 Vascon di Carbonera, Italy

3. Structural Integrity Research Group, Universidad de Burgos, Avenida Cantabria s/n, 09006 Burgos, Spain

Abstract

Environmental awareness and the necessary reduction in costs in industrial processes has facilitated the development of novel techniques such as Additive Manufacturing, decreasing the amount of raw materials and energy needed. The longing for improved materials with different and enhanced properties has resulted in research efforts in the Metal Matrix Composites field. These two novelties combined minimise environmental impacts and costs without compromising technical properties. Two technologies can feed Additive Manufacturing techniques with metallic powder: Gas Atomization and High Energy Ball Milling. This study provides a comparative Life Cycle Assessment of these technologies to produce one kilogram of metallic powder for the Directed Energy Deposition technique: a Ti6Al4V alloy, and a Ti6Al4V-TiC Metal–Matrix Composite, respectively. The LCA methodology is according to ISO 14040:2006, and large amounts of information on the use of raw materials, energy consumption, and environmental impacts is provided. Different impact categories following the Environmental Footprint methodology were analysed, showing a big difference between both technologies, with an 87.8% reduction of kg CO2 eq. emitted by High Energy Ball Milling in comparison with Gas Atomization. In addition, an economic analysis was performed, addressing the viability perspective and decision making and showing a 17.2% cost reduction in the conventional process.

Funder

European Research Council

Board of Education of Junta de Castilla y León and the European Social Fund

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference86 articles.

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3. IPCC (2021). Sixth Assessment Report of the Intergovernmental Panel on Climate Change, IPCC.

4. Microstructure and Properties of AA7075/Al–SiC Composites Fabricated Using Powder Metallurgy and Hot Pressing;Canakci;Powder Technol.,2014

5. Atomization Processes of Metal Powders for 3D Printing;Kassym;Mater. Today Proc.,2020

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