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Fabrication of bulk ultrafine grained titanium alloy via equal channel angular pressing based thermomechanical treatment

机译:基于等通道角挤压的热机械处理制备块状超细晶钛合金

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摘要

Equal channel angular pressing (ECAP) is one of the most feasible severe plastic deformation (SPD) techniques for fabrication of bulk ultrafine grained or even nanostructured materials. Previous studies show that the microstructure of titanium alloy (Ti-alloy) subjected to ECAP processing can only be refined to micron-scaled (1-5 μm), rather than nano-scaled. In this paper, the ECAP based thermomechanical treatment was successfully conducted for fabrication of bulk ultrafine grained and nanostructured Ti-alloy. In detail, a near α titanium alloy was firstly processed by ECAP at the temperature above α- β transformation temperature (T_β) and then followed by immediate quenching. The alloy was further pressed at the temperature of α+ β phase region (below T_β). Through observation and analysis of the microstructure evolution, it is found that the ultrafine grained Ti-alloy with partly equiaxed nano-scaled microstructure was successfully produced by the thermomechanical treatment process. To have an in-depth understand-ing of the process, the microstructure evolution in this grain refinement process and the property improvement after the refinement were extensively examined and discussed.
机译:等通道角挤压(ECAP)是用于制造块状超细晶粒甚至纳米结构材料的最可行的严重塑性变形(SPD)技术之一。先前的研究表明,经过ECAP处理的钛合金(Ti-alloy)的微观结构只能细化到微米级(1-5μm),而不是纳米级。在本文中,成功地进行了基于ECAP的热机械处理,以制造块状超细晶粒和纳米结构的钛合金。详细地,首先在高于α-β相变温度(T_β)的温度下通过ECAP处理近α钛合金,然后立即淬火。在α+β相区域的温度(T_β以下)进一步挤压合金。通过观察和分析组织演变,发现通过热机械处理工艺成功地制备了具有部分等轴纳米级微观结构的超细晶粒钛合金。为了深入了解该过程,对该晶粒细化过程中的微观组织演变和细化后的性能改善进行了广泛的检查和讨论。

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