Enhancing microstructure and mechanical properties of laser powder bed fusion-fabricated AlSi10Mg alloy through tailored friction stir processing and post-heat treatment
Author:
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference71 articles.
1. Additive manufacturing (3D printing): a review of materials, methods, applications and challenges;Ngo;Compos. Part B Eng.,2018
2. Review on the correlation between microstructure and mechanical performance for laser powder bed fusion AlSi10Mg;Zhao;Addit. Manuf.,2022
3. Fine-structured aluminium products with controllable texture by selective laser melting of pre-alloyed AlSi10Mg powder;Thijs;Acta Mater.,2013
4. Ductilisation and fatigue life enhancement of selective laser melted AlSi10Mg by friction stir processing;Santos Macías;Scripta Mater.,2019
5. Influence on microstructure, strength and ductility of build platform temperature during laser powder bed fusion of AlSi10Mg;Santos Macías;Acta Mater.,2020
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1. Evolution of mechanical properties and microstructure of selective laser melted AlSi10MgMn alloy with different post heat treatments;Materials Science and Engineering: A;2024-11
2. Breaking the strength-conductivity paradigm in hypoeutectic Al–Si alloy via annealing-induced Si nanoprecipitation;Materials Science and Engineering: A;2024-09
3. Combined influence of traverse and rotation speeds in friction stir processing OF AlSi10Mg alloy produced by laser-powder bed fusion;Materials Chemistry and Physics;2024-09
4. A pathway towards strengthening and ductilization of additive-manufactured AlSi10Mg through friction stir processing: Microstructural evolution and tensile behavior;Materials Science and Engineering: A;2024-07
5. In-situ induce reinforcement in WAAM of Al-matrix composite using active N2 as shielding gas followed by friction stir processing;Journal of Materials Research and Technology;2024-05
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