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Microstructure, tensile properties and mechanical anisotropy of selective laser melted 304L stainless steel

查看全文 作  者:Juan [1]Hou;Wei [1]Chen;Zhuoer [2]Chen;Kai [1,2]Zhang;Aijun [1,2]Huang 高影响力作者 机构地区:[1]School of Materials Science and Engineering,University of Shanghai for Science and Technology,Shanghai 200093,China;[2]Monash Center for Additive Manufacturing(MCAM),Monash University,Notting Hill,VIC 3168,Australia高影响力机构 出  处:《Journal of Materials Science & Technology》索引2020年第47卷第13期,共9页高影响力期刊 基  金:supported financially by the National Key R&D Program of China(Nos.2018 YFB1106100);the Special funds for Future Industries of Shenzhen(Project No.JSGG20170824104916638)。 摘  要:The microstructure and mechanical properties of 304 L stainless steel fabricated by selective laser melting are investigated in this study.With the optimized laser processing parameters,a relative density of 99.9%is achieved with fine austenite grains and nanoscale cellular subgrains in size of approximately 0.5μm.The presence ofδ-ferrite andσphase precipitates is identified by the x-ray diffraction and transmission electron microscopy.Moreover,the microstructure is identified as an austenite matrix with about 4%δ-ferrite and a trace amount ofσphase by using electron backscattered diffraction analysis.These smallσphase particles are mainly distributed along austenite grain boundaries.Furthermore,the presence of nanoscale cellular subgrains contributes to the good tensile strength and ductility of the selective laser melted 304 L,along with precipitate strengthening and strain hardening.Tensile property anisotropy is also identified in this 304 L,which is attributed to the microstructure difference on vertical and horizontal planes. 关 键 词:Selective laser melting MICROSTRUCTURE Tensile property anisotropy 304L stainless steel
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