Effect of Fe Content on Steady-State Grain Size in Ni-Fe Alloys

H. Sato, Akito Tasaki, R. Fujita, N. Adachi, Y. Todaka, Yasuhiro Kobayashi
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Abstract

It is widely known that a steady–state grain size dss obtained by a plastic deformation varies with change in physical properties of a material, such as stacking fault energy ΓSFE, shear modulus G, flow stress σ and magnitude of Burgers vector b. In a previous study, a model has been proposed based on dislocation theory to describe the relationship between dss and physical properties. For pure metals, it has been reported that the variation of dss follows the model. For alloys, although the effect of the normalized stacking fault energy ΓSFE/Gb has been investigated, that of other physical properties such as σ has not been well considered. In this study, physical properties of the Ni–Fe alloys were controlled by changing Fe content, and effect of the physical properties on dss obtained by the High–pressure torsion (HPT) straining was investigated. dss of Ni–Fe alloys became finer with increasing Fe content. This study revealed that decrease in dss of Ni–Fe alloys follow the previous model, which suggested that not only ΓSFE/Gb but also normalized flow stress σ/G affects dss of Ni–Fe alloys. It is presumable that the decrease in ΓSFE/Gb suppresses the recovery of dislocations, and the decrease in inverse of σ/G enhances the introduction of dislocation, which leads to a finer dss in the Ni–Fe alloys. [doi:10.2320/jinstmet.J2021047]
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铁含量对Ni-Fe合金稳态晶粒尺寸的影响
众所周知,通过塑性变形获得的稳态晶粒尺寸dss随材料的层错能ΓSFE、剪切模量G、流动应力σ和Burgers矢量b的大小等物理性质的变化而变化。在前人的研究中,基于位错理论提出了一个描述dss与物理性质关系的模型。据报道,对于纯金属,dss的变化遵循该模型。对于合金,虽然研究了归一化层错能ΓSFE/Gb的影响,但σ等其他物理性质的影响尚未得到很好的考虑。本研究通过改变Fe含量来控制Ni-Fe合金的物理性能,并研究了物理性能对高压扭转(HPT)应变获得的dss的影响。随着铁含量的增加,Ni-Fe合金的dss越细。结果表明,Ni-Fe合金的dss降低遵循了先前的模型,这表明除了ΓSFE/Gb外,归一化流变应力σ/G也影响着Ni-Fe合金的dss。可以推测,ΓSFE/Gb的减小抑制了位错的恢复,σ/G逆的减小促进了位错的引入,从而导致Ni-Fe合金中更细的dss。(doi: 10.2320 / jinstmet.J2021047)
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