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首页> 外文期刊>Powder Metallurgy >Mechanical properties of alloy Ti-6Al-4V and of stainless steel 316L processed by selective laser melting: influence of out-of-equilibrium microstructures
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Mechanical properties of alloy Ti-6Al-4V and of stainless steel 316L processed by selective laser melting: influence of out-of-equilibrium microstructures

机译:选择性激光熔化处理的Ti-6Al-4V合金和316L不锈钢的机械性能:不平衡微结构的影响

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摘要

Ti-6Al-4V and stainless steel 316L have been processed by selective laser melting under similar conditions, and their microstructures and mechanical behaviours have been compared in details. Under the investigated conditions, Ti-6Al-4V exhibits a more complex behaviour than stainless steel 316L with respect to the occurrence of microstructural and mechanical anisotropy. Moreover, TM3AI-4V appears more sensitive to the build-up of internal stresses when compared with stainless steel 316L, whereas stainless steel 316L appears more prone to the formation, of 'lack of melting' defects. This correlates nicely with the difference in thermal conductivity between the two materials. Thermal conductivity was shown to increase strongly with increasing temperature and the thermophysical properties appeared to be influenced by variations in the initial metallurgical state.
机译:Ti-6Al-4V和316L不锈钢已在相似的条件下通过选择性激光熔化进行了加工,并对其微观结构和力学行为进行了详细比较。在研究的条件下,就微观结构和机械各向异性的发生而言,Ti-6Al-4V表现出比不锈钢316L更复杂的行为。此外,与不锈钢316L相比,TM3AI-4V似乎对内部应力的积累更为敏感,而不锈钢316L似乎更易于形成“无熔化”缺陷。这与两种材料之间的热导率差异非常相关。结果表明,随着温度的升高,导热系数会大大增加,并且热物理性质似乎受到初始冶金状态变化的影响。

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