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Microstructural characteristics of adiabatic shear localization in a metastable beta titanium alloy deformed at high strain rate and elevated temperatures

机译:在高应变率和高温下变形的亚稳β钛合金中绝热剪切局部化的微观结构特征

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The microstructural evolution and grain refinement within adiabatic shear bands in the Ti6554 alloy deformed at high strain rates and elevated temperatures have been characterized using transmission electron microscopy. No stress drops were observed in the corresponding stress-strain curve, indicating that the initiation of adiabatic shear bands does not lead to the loss of load capacity for the Ti6554 alloy. The outer region of the shear bands mainly consists of cell structures bounded by dislocation clusters. Equiaxed subgrains in the core area of the shear band can be evolved from the subdivision of cell structures or reconstruction and transverse segmentation of dislocation clusters. It is proposed that dislocation activity dominates the grain refinement process. The rotational recrystallization mechanism may operate as the kinetic requirements for it are fulfilled. The coexistence of different substructures across the shear bands implies that the microstructural evolution inside the shear bands is not homogeneous and different grain refinement mechanisms may operate simultaneously to refine the structure. (C) 2015 Elsevier Inc. All rights reserved.
机译:使用透射电子显微镜表征了在高应变速率和高温下变形的Ti6554合金在绝热剪切带内的组织演变和晶粒细化。在相应的应力-应变曲线中未观察到应力下降,这表明绝热剪切带的萌生不会导致Ti6554合金的负载能力下降。剪切带的外部区域主要由以位错簇为边界的单元结构组成。剪切带核心区域的等轴亚晶粒可以从单元结构的细分或位错簇的重建和横向分割中演化而来。建议位错活动主导晶粒细化过程。旋转重结晶机制可以满足其动力学要求。剪切带上不同亚结构的共存意味着剪切带内部的微观结构演化不均匀,并且不同的晶粒细化机制可能同时起作用以细化结构。 (C)2015 Elsevier Inc.保留所有权利。

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