Effect of High Porosity on Bending Fatigue Properties of 3D Printed AISI 316L Steel
Author:
Publisher
Elsevier BV
Subject
Artificial Intelligence,Industrial and Manufacturing Engineering
Reference19 articles.
1. Design for additive manufacturing in extended DFMA process;Mäntyjärvi;Key Engineering Materials,2018
2. Effect of selective laser melting (SLM) process parameters on microstructure and mechanical properties of 316L austenitic stainless steel;Liverani;Journal of Material Processing Technology,2017
3. Investigation of effects of process parameters on microstructure and hardness of SLM manufactured SS316L;Tucho;Journal of Alloys and Compounds,2018
4. Densification behavior of gas and water atomized 316L stainless steel powder during selective laser melting;Wang;Applied Surface Science,2010
5. Characterization and control of powder properties for additive manufacturing;Strondl;Jom,2015
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1. Microstructure and Hardness Properties of Additively Manufactured AISI 316L Welded by Tungsten Inert Gas and Laser Welding Techniques;Materials;2024-09-12
2. Combined effect of surface treatment and heat treatment on the fatigue properties of AISI 316L, manufactured by powder bed fusion of metals using a laser (PBF-LB/M);International Journal of Fatigue;2024-01
3. Effect of Isothermal Annealing on Residual Stresses and Fatigue Properties of LPBF 316L Steel;Key Engineering Materials;2023-11-23
4. Fatigue strength and impact toughness dependence of powder bed fusion with laser beam-manufactured 316L stainless steel on orientation and layer thickness;Journal of Laser Applications;2023-11-01
5. Additive Manufacturing of AISI 316L Stainless Steel: A Review;Metals;2023-07-30
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