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首页> 外文期刊>Materials Science and Engineering >Dynamic softening mechanism in Ti-13V-11Cr-3Al beta Ti alloy during hot compressive deformation
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Dynamic softening mechanism in Ti-13V-11Cr-3Al beta Ti alloy during hot compressive deformation

机译:Ti-13V-11Cr-3Al beta Ti合金热压缩变形的动态软化机理

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摘要

Dynamic recrystallization (DRX) behavior of Ti-13V-11Cr-3Al beta Ti alloy was investigated by performing hot compression tests at temperatures 930 and 1030 ℃ and strain rate of 0.1 s~(-1). EBSD measurements and optical microscopy analyses showed that continuous dynamic recrystallization leads to a considerable grain refinement through the dissociation of coarse deformed grains. It was observed that the well-developed subgrains formed by the extended dynamic recovery are responsible for the grain dissociation. The random orientation of new grains supports the fact that subgrains rotation would be the final step which turns the well-developed subgrains into the recrystallized grains. Some remarks such as grain boundary serrations and nucleations at 930 ℃ were typical of the propensity for discontinuous DRX at low temperatures. However, the same remarks were absent at 1030 ℃. The kinetics of dynamic recrystallization was described by the Avrami kinetics equation. The change of Avrami's exponent (n) from 1.17 to 0.48 by increasing temperature from 930 to 1030 ℃ was associated with variation in the mechanism of dynamic recrystallization from continuous-partial discontinuous DRX at 930 ℃ to the fully continuous DRX at 1030 ℃.
机译:通过在930和1030℃的温度和0.1 s〜(-1)的应变速率下进行热压缩试验,研究了Ti-13V-11Cr-3Al beta Ti合金的动态再结晶行为。 EBSD测量和光学显微镜分析表明,连续的动态再结晶通过粗大变形晶粒的解离导致相当大的晶粒细化。观察到由扩展的动态恢复形成的发达的亚晶粒是造成晶粒解离的原因。新晶粒的随机取向支持以下事实:亚晶粒旋转将是最后一步,它将成熟的亚晶粒转变为重结晶晶粒。 930℃下的晶界锯齿和成核现象是低温下不连续DRX的典型特征。然而,在1030℃时没有相同的评论。动态重结晶的动力学由Avrami动力学方程式描述。将温度从930升高到1030℃,将Avrami指数(n)从1.17改变为0.48,这与动态重结晶机理的变化有关,该过程从930℃的连续部分不连续DRX到1030℃的完全连续DRX。

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