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On the deformation mechanism of ultrafine-grained titanium with multilayered hierarchical structure

机译:多层分层结构超细晶粒钛的变形机理研究

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The ultrafine-grained Ti with a multilayered hierarchical structure (MHS) has been fabricated by using cryorolling combined with surface mechanical attrition treatment technique. The deformation behavior of this material is a result of superimposition of the different structural layers (and their interfaces) each of which has its specific deformation and failure mechanism. The deformation mechanisms include copious shear banding in the outer amorphousanocrystallite layer, grain boundary mediated deformation in the nanograined layer and shear localization in the ultrafine-grained core. The mechanical gradations in the junctions between layers are believed to be responsible for the mitigated interface failure pattern, crack-stopping effect and the enhanced loading resistance. Such a complex plastic deformation processes operating within the individual layers benefits the high strength and work hardening of the MHS Ti.
机译:利用低温轧制结合表面机械磨耗处理技术,制备了具有多层层次结构(MHS)的超细晶粒Ti。这种材料的变形行为是不同结构层(及其界面)叠加的结果,每个结构层都有其特定的变形和破坏机理。变形机制包括在外部非晶/纳米晶体层中的大量剪切带,在纳米晶粒层中的晶界介导的变形以及在超细晶粒核心中的剪切局部化。层之间的接合处的机械渐变被认为是减轻界面失效模式,止裂效果和增强的耐载荷性的原因。在各个层中进行的这种复杂的塑性变形过程有利于MHS Ti的高强度和加工硬化。

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