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Microstructure and Fracture Behavior of 316L Austenitic Stainless Steel Produced by Selective Laser Melting 被引量:52
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作者 R.Casati J.Lemke m.vedani 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2016年第8期738-744,共7页
Selective laser melting is an additive manufacturing method based on local melting of a metal powder bed by a high power laser beam. Fast laser scans are responsible for severe thermal gradients and high cooling rates... Selective laser melting is an additive manufacturing method based on local melting of a metal powder bed by a high power laser beam. Fast laser scans are responsible for severe thermal gradients and high cooling rates which produce complex hydrodynamic fluid flow. These phenomena affect crystal growth and orientation and are believed to be the cause of material spattering and microstructural defects, e.g. pores and incompletely melted particles. In this work, the microstructure and texture of 316L bars built along two different orientations and the effect of different distribution of defects on their mechanical response and failure mechanisms were investigated. Partially molten powder particles are believed to be responsible for the scattering in elongation to failure, reduced strength, and premature failure of vertical samples. 展开更多
关键词 AISI 316L Additive manufacturing Selective laser melting Microstructural analysis Fracture behavior
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铝基不连续增强复合材料的热加工性能及其加工
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作者 m.vedani E.Gariboldi +3 位作者 F.D'Errico 邓陈记 詹美燕 尧军平 《国外金属加工》 2004年第1期27-35,共9页
研究了温度T=350-500℃、应变速率ε=10^-3-10^-1/s拉伸条件下,Al6061/20%Al2O3、Al2618/20%Al2O3、Al2618/20%SiC颗粒增强铝基复合物及纯6061铝合金的热变形行为,根据所获得的数据绘制了加工图,给出了不同材料的最佳热加工性能... 研究了温度T=350-500℃、应变速率ε=10^-3-10^-1/s拉伸条件下,Al6061/20%Al2O3、Al2618/20%Al2O3、Al2618/20%SiC颗粒增强铝基复合物及纯6061铝合金的热变形行为,根据所获得的数据绘制了加工图,给出了不同材料的最佳热加工性能区域。对不同变形条件下的微观组织分析表明,动态回复是上述复合材料的主要恢复机制。延性及流动应力的变化表明,增强相的性能对复合材料的性能具有重要的影响。 展开更多
关键词 铝基不连续增强复合材料 热加工性能 热变形 微观组织 动态回复
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