A novel low-cost ultra-strong maraging steel by additive manufacturing

Author:

Nong X.D.,Xiong X.J.,Gu X.,Wang L.,Jiang Y.L.,Yu L.,Rao J.H.ORCID,Bi Y.J.

Funder

Ji Hua Laboratory

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference32 articles.

1. Ultrastrong nanotwinned titanium alloys through additive manufacturing;Zhu;Nat. Mater.,2022

2. Simultaneously enhanced strength and ductility for 3D-printed stainless steel 316L by selective laser melting;Sun;NPG Asia Mater.,2018

3. Precipitate evolution and strengthening behavior during aging process in a 2.5 GPa grade maraging steel;Niu;Acta Mater.,2019

4. Simulation of precipitation kinetics and precipitation strengthening of B2-precipitates in martensitic PH 13–8 Mo steel;Povoden-Karadeniz;ISIJ Int.,2012

5. Effect of the as-built microstructure on the martensite to austenite transformation in a 18Ni maraging steel after laser-based powder bed fusion;Conde;Addit. Manuf.,2021

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