Effect of the magnitude of sub-boundary angles on the abnormal grain growth rate of Goss grains in Fe-3%Si steel

被引:0
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作者
Kim, Tae-Young [1 ,3 ]
Na, Tae-Wook [2 ]
Shim, Hyung-Seok [3 ]
Gil, Kyehwan [4 ]
Hwang, Nong-Moon [1 ]
机构
[1] Department of Materials Science and Engineering, Seoul National University, Seoul,08826, Korea, Republic of
[2] Gangwon Regional Division, Korea Institute of Industrial Technology, Gangneung,25440, Korea, Republic of
[3] Korea Research Institute of Standards and Science, Daejeon,34113, Korea, Republic of
[4] Pohang Accelerator Laboratory, Pohang,37673, Korea, Republic of
基金
新加坡国家研究基金会;
关键词
Diffraction - Grain boundaries - Intelligent systems - Recrystallization (metallurgy) - Grain growth;
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摘要
In spites of extensive studies, the selective abnormal grain growth (AGG) of Goss grains in Fe-3%Si steel remains still unclear. Here, the effect of the magnitude of sub-boundary angles on AGG behavior was investigated both by computer simulations and experiments. In 3-dimensional Monte Carlo simulations of grain growth based on the realistic grain boundary energy distribution data, the grains of Goss orientation, which are given the sub-boundaries, grew abnormally and smaller sub-boundary energies resulted in larger Goss grains. Additionally, a Fe-3%Si steel, after primary recrystallization, was heated to 1050 °C to induce AGG. Measurements of sub-boundary angles for three different sizes of abnormally growing Goss grains by synchrotron X-ray microdiffraction after the initial stage of secondary recrystallization showed that the misorientation of the sub-boundary angles was 0.41° for the small Goss grain of 734 μm. Moreover, the average misorientation of sub-boundary angles was 0.33° for the medium Goss grain of 1050 μm and 0.25° for the large Goss grain of 2978 μm. In contrast, the average misorientation angles of the sub-boundaries after the final stage of secondary recrystallization were only 0.05°. The results indicate that the sub-boundary angle is a determining parameter for the size of abnormally growing grains. © 2021
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