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Insights into laser powder bed fused Scalmalloy®: investigating the correlation between micromechanical and macroscale properties

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URI: http://hdl.handle.net/10498/30511

DOI: 10.1016/J.JMRT.2023.06.228

ISSN: 2214-0697

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2023_Journal of Materials Research and Technology_25_4409-4424.pdf (5.889Mb)
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Shakil, Shawkat Imam; González Rovira, LeandroAuthority UCA; Cabrera Correa, LeticiaAuthority UCA; López Castro, Juan de DiosAuthority UCA; Castillo Rodríguez, MiguelAuthority UCA; Botana Pedemonte, Francisco JavierAuthority UCA; Haghshenas, Meysam
Date
2023
Department
Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica
Source
Journal of Materials Research and Technology_25_2023_4409-4424
Abstract
Additively manufactured Scalmalloy® using laser powder bed fusion (LPBF) has been showing increasing potential for industrial adoption. Its intended application in space, aerospace, and automotive industries requires extensive testing and characterization to produce parts with repeatable properties and safe operations. In the present paper, a thorough investigation of the association between small-scale (micro/nano-scale) and macro-scale (e.g., tensile) properties and microstructural features has been conducted. The prime novelty is the correlation of the small-scale hardness with the tensile properties, which is studied in both as-built and heat-treated conditions (325 ºC/4 h) along parallel and perpendicular build directions of the samples. Advanced microstructural characterization including scanning and transmission electron microscopies (SEM/TEM), as well as electron backscatter diffraction (EBSD), was carried out on each condition to correlate microstructure and mechanical properties. While significant improvement in strength was found from as-built to heat-treated conditions, due to the precipitation of secondary Al3Sc and Al3(Sc, Zr), grain size or texture did not change considerably. The grain size analysis revealed a fine-grained zone (FGZ: mostly between 0.5 and 1 mm) next to the coarse-grained zone (CGZ: mostly between 2 and 15 mm). All samples show texture-free FGZ and textured CGZ with a predominance of <001> crystal directions parallel to the building direction.
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Attribution-NonCommercial-NoDerivatives 4.0 Internacional
This work is under a Creative Commons License Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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