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Constitutive behavior and microstructural evolution in Ti-Al-Si ternary alloys processed by mechanical milling and spark plasma sintering

机译:机械铣削加工及火花等离子体烧结加工的Ti-Al-Si三元合金中的组成型行为和微观结构演化

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Severe plastic deformation is closely related to the microstructural behaviors of intermetallics or grain refinement by mechanical milling and subsequent rapid sintering process, i.e. high energy ball milling and spark plasma sintering. In this study, the Ti-Al-Si ternary powders were synthesized to investigate their phase transformation by plastic deformation during the mechanical milling in each process time and composition. The sintered-bodies Ti-Al-Si ternary alloys were fabricated by spark plasma sintering among the rapidly consolidated powders, except for the distribution of single phases in accordance with the Al-melting. The microstructures of intermetallics in Ti-Al-Si ternary alloys were composed of titanium aluminides and titanium silicides, and even ternary compounds as a tau(1)-phase. In particular, the twining or stacking faults induced by severe plastic deformation were revealed through crystallographic patterns and microstructural evidence. These defects were caused by the slip system for TiAl3 (fcc) or Ti5Si3 (hcp) phases, depending on the grain refinement and generation of ambient intermetallics. To estimate the possibility of these defects, various approaches were taken to obtain experimental measurement of the twin probability and stacking fault energy derived from TEM and XRD analyses. (C) 2020 The Authors. Published by Elsevier B.V.
机译:严重的塑性变形与机械研磨和随后的快速烧结过程的金属间化学或晶粒细化的微观结构行为密切相关,即高能球铣削和火花等离子体烧结。在该研究中,合成了Ti-Al-Si三元粉末,以在每个工艺时间和组合物中通过机械研磨期间通过塑性变形研究它们的相变。除了根据Al-熔化的单相分布外,通过在快速固结的粉末中的火花等离子体烧结制造烧结体Ti-Al-Si三元合金。 Ti-Al-Si三元合金中金属间化合物的微观结构由铝化物和硅化钛组成,甚至是Ternary化合物作为Tau(1)-phase。特别地,通过结晶模式和微观结构证据揭示了严重塑性变形引起的缠绕或堆叠故障。根据TiAl3(FCC)或Ti5Si3(HCP)相的滑移系统,根据晶粒细化和生成环境金属间金属间化合物引起这些缺陷。为了估算这些缺陷的可能性,采取了各种方法来获得从TEM和XRD分析衍生的双概率和堆叠故障能量的实验测量。 (c)2020作者。 elsevier b.v出版。

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