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Plastic Flow and Microstructure Evolution during Low-Temperature Superplasticity of Ultrafine Ti-6Al-4V Sheet Material

机译:Ti-6Al-4V超细板材低温超塑性过程中的塑性流动和组织演变

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摘要

The low-temperature superplastic (SP) flow behavior of two lots of Ti-6Al4V sheet, each with an ultrafine microstructure, was established by performing tension tests at temperatures of 775 deg C and 815 deg C and true strain rates of 10~(-4) and 10~(-3) s~(-1) The as received microstructures of the two materials comprised either equiaxed or slightly elongated alpha particles in a beta matrix. The material with equiaxed alpha particles exhibited flow hardening which was correlated with concurrent (dynamic) coarsening. The rate of dynamic coarsening was rationalized in terms of static coarsening measurements and the enhancement of kinetics due to pipe diffusion. By contrast, the material with initially elongated alpha particles exhibited comparable flow hardening at the lower strain rate but a complex, near-steady-state behavior at the higher strain rate. These latter observations were explained on the basis of the evolution of the alpha particle shape and size during straining; dynamic coarsening or dynamic spheroidization was concluded to be most important at the lower and higher strain rates, respectively The plaltic flow behavior was interpreted m the context of a long-wavelength flow localization analysis.
机译:通过在775摄氏度和815摄氏度的温度下以及真实应变率为10〜(-)的条件下进行拉伸试验,建立了两批具有超细微结构的Ti-6Al4V薄板的低温超塑性(SP)流动行为。 4)和10〜(-3)s〜(-1)两种材料的微观结构包括在β基质中的等轴或稍伸长的α粒子。具有等轴α粒子的材料表现出流动硬化,这与同时(动态)粗化相关。动态粗化率根据静态粗化测量和因管道扩散而引起的动力学增强而合理化。相比之下,具有初始拉长的α粒子的材料在较低的应变速率下表现出相当的流动硬化,但在较高的应变速率下表现出复杂的接近稳态的行为。后面的这些观察是根据应变过程中α颗粒形状和大小的演变来解释的。得出结论,分别在较低和较高应变率下,动态粗化或动态球化作用最为重要。在长波长流域定位分析的背景下,对波状流的行为进行了解释。

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