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Microstructure and Texture Evolution during Friction Stir Processing of Fully Lamellar Ti-6Al-4V

机译:全层状Ti-6Al-4V搅拌摩擦过程中的微观结构和织构演变

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摘要

Friction stir processing (FSP) was used to locally refine a thin surface layer of the coarse, fully lamellar microstructure of investment-cast Ti-6Al-4V. Depending on the peak temperature reached in the stir zone during processing relative to the β transus, three distinct classes of microstructures were observed. Using accepted wrought product terminology, they are equiaxed, bimodal, and lamellar, except for the case of FSP, the length scale of each was smaller by at least an order of magnitude compared to typical wrought material. The evolution of an initially strain-free fully lamellar microstructure to each of these three refined conditions was characterized with scanning electron microscopy, transmission electron microscopy and electron backscatter diffraction. The fundamental mechanisms underlying grain refinement during FSP, including both the morphological changes and the formation of high-angle grain boundaries, were discussed.
机译:摩擦搅拌工艺(FSP)用于局部精修熔模铸造的Ti-6Al-4V的粗大,全层状微结构的薄表面层。根据加工过程中相对于βtransus在搅拌区达到的峰值温度,观察到三类不同的微观结构。使用公认的锻造产品术语,它们是等轴的,双峰的和层状的,除了FSP的情况,与典型的锻造材料相比,它们的长度尺度至少小一个数量级。用扫描电子显微镜,透射电子显微镜和电子反向散射衍射表征了最初无应变的完全层状微观结构向这三个精细条件的演化。讨论了FSP晶粒细化的基本机理,包括形态变化和高角度晶界的形成。

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