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Effect of Strain on Microstructure Evolution of 1Cr18Ni9Ti Stainless Steel During Adiabatic Shearing

机译:绝热剪切过程中应变对1Cr18Ni9Ti不锈钢组织演变的影响

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Dynamic shear test was conducted on the hat-shaped specimen of the thermo-mechanical-processed 1Cr18Ni9Ti stainless steel by using the split Hopkinson pressure bar at ambient temperature. The effect of the shear strain on the microstructure evolution was investigated during adiabatic shearing. The results revealed that the development of adiabatic shear localization went through three stages, including the incubation period, the development stage, and the maturity period. TEM observations showed that the grains in the shear region were elongated, and the elongated grains were gradually evolved into equiaxed nano-grains of 100 nm as shear strain increased. The rotational dynamic recrystallization kinetics calculation showed that subgrains had sufficient time to generate an equiaxed microcrystalline structure by rotation within the deformation time. Based on the observation of the evolution of dislocations and subgrains in the adiabatic shear region, a model of the microstructure evolution was established during the adiabatic shearing.
机译:在环境温度下,使用分流的霍普金森压力棒,对热机械加工的1Cr18Ni9Ti不锈钢的帽形试样进行了动态剪切试验。在绝热剪切过程中研究了剪切应变对组织演变的影响。结果表明,绝热剪切定位的发展经历了潜伏期,发育期和成熟期三个阶段。 TEM观察结果表明,随着剪切应变的增加,剪切区域内的晶粒被拉长,并且拉长的晶粒逐渐演化为100 nm的等轴纳米晶粒。旋转动态重结晶动力学计算表明,亚晶粒有足够的时间在变形时间内通过旋转产生等轴的微晶结构。基于对绝热剪切区位错和亚晶粒演化的观察,建立了绝热剪切过程中微观组织演化的模型。

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