马氏体时效钢
材料科学
奥氏体
微观结构
韧性
冶金
马氏体
延展性(地球科学)
选择性激光熔化
扫描电子显微镜
复合材料
蠕动
作者
Fábio Faria Conde,Julián Escobar,J.P. Oliveira,Miloslav Béreš,André Luiz Jardini,W. W. Bose,Julián A. Ávila
标识
DOI:10.1016/j.msea.2019.03.129
摘要
Additive manufacturing techniques allow the creation of complex parts in a layer by layer fashion, bringing new opportunities in terms of applications and properties when compared to conventional manufacturing processes. Among other ultra-high-strength steels, the 18 Ni maraging 300 steel offers a good toughness/strength ratio. However, when fabricated by additive manufacturing, this steel presents lower ductility and strain-hardening than its forging counterparts. One way to enhance ductility and toughness is to promote martensite-to-austenite reversion. Therefore, in the present study, 18 Ni maraging steel powder was processed by selective laser melting and different heat treatments were applied to the built parts, aiming for homogenization, microstructural refinement and martensite-to-austenite reversion. Thermodynamic simulations were used to assess a range of temperatures for the reversion heat treatments. Microstructural characterization was performed by scanning electron microscopy, electron backscattered diffraction and x-ray diffraction.
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