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Substrate integration in stainless steel components fabricated by plasma arc-directed energy deposition

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URI: http://hdl.handle.net/10498/37316

DOI: 10.1007/s40964-025-01215-0

ISSN: 2363-9520

ISSN: 2363-9512

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Author/s
Segovia Guerrero, LuisAuthority UCA; Baladés Ruiz, NuriaAuthority UCA; Garrido García, Carmen; Gil Mena, Antonio JoséAuthority UCA; Fernández Vidal, Severo RaúlAuthority UCA; Sales Lérida, DavidAuthority UCA
Date
2025
Department
Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica; Ingeniería Eléctrica; Ingeniería Industrial e Ingeniería Civil; Ingeniería Mecánica y Diseño Industrial
Source
Progress in Additive Manufacturing - 2025
Abstract
Directed energy deposition process needs a substrate, as a base for depositing layers of material, which is discarded after manufacturing. This study showed the feasibility of incorporating a substrate into the final product to reduce material waste and energy. For this purpose, double sided walls-substrate austenitic stainless steel structures were produced by Wire Arc Additive Manufacturing (WAAM). To assess the viability of this approach, mechanical tests such as tensile, hardness, and impact flexure tests were conducted on printed specimens, which were extracted through electrical discharge machining. This was completed with a fractographic analysis of the tested samples. A metallographic analysis was also performed both to assess the internal structure and to evaluate the effects of substrate integration on mechanical properties, thus showing various structural transitions across the bead-substrate interface, including the presence of vermicular and skeletal ferrite within an austenitic matrix. An EDX analysis showed chemical composition variations across the interface. Additionally, energy and cost assessments showed an 8% reduction in material usage, an 8.7% reduction in manufacturing time and an 8.4% reduction in energy consumption and associated CO2 emissions through substrate integration. The results confirmed the feasibility of integrating substrates into WAAM-fabricated components while maintaining mechanical characteristics within the expected range for stainless steel structures.
Subjects
Double sided printing; Mechanical properties; Stainless steel; Directed energy deposition
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Attribution 4.0 Internacional
This work is under a Creative Commons License Attribution 4.0 Internacional

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