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Crystallographic Reconstruction Study of the Effects of Finish Rolling Temperature on the Variant Selection During Bainite Transformation in C-Mn High-Strength Steels

机译:终轧温度对C-Mn高强度钢贝氏体相变选择的影响的晶体学重建研究

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摘要

The effect of finish rolling temperature on the austenite-(γ) to-bainite (α) phase transformation is quantitatively investigated in high-strength C-Mn steels using an alternative crystallographic γ reconstruction procedure, which can be directly applied to experimental electron backscatter diffraction mappings. In particular, the current study aims to clarify the respective contributions of the γ conditioning during the hot rolling and the variant selection during the phase transformation to the inherited texture. The results confirm that the sample finish rolled at the lowest temperature [1102 K (829 °C)] exhibits the sharpest transformation texture. It is shown that this sharp texture is exclusively due to a strong variant selection from parent brass {110}〈112〉, S {213}〈364〉 and Goss {110}〈001〉 grains, whereas the variant selection from the copper {112}〈111〉 grains is insensitive to the finish rolling temperature. In addition, a statistical variant selection analysis proves that the habit planes of the selected variants do not systematically correspond to the predicted active γ slip planes using the Taylor model. In contrast, a correlation between the Bain group to which the selected variants belong and the finish rolling temperature is clearly revealed, regardless of the parent orientation. These results are discussed in terms of polygranular accommodation mechanisms, especially in view of the observed development in the hot-rolled samples of high-angle grain boundaries with misorientation axes between 〈111〉γ and 〈110〉γ.
机译:使用替代的晶体学γ重建程序,定量研究了高强度C-Mn钢中终轧温度对奥氏体-(γ)-贝氏体(α)相变的影响,该方法可直接用于实验电子背散射衍射映射。特别地,当前的研究旨在阐明热轧过程中γ调节的各自贡献以及相变过程中向遗传织构的变体选择。结果证实了在最低温度[1102 K(829°C)]下轧制的样品具有最清晰的相变织构。结果表明,这种锋利的纹理完全是由于从母体黄铜{110} <112>,S {213} <364>和高斯{110} <001>晶粒中选择了强大的变体,而从铜{ 112} <111>晶粒对终轧温度不敏感。另外,统计变体选择分析证明,使用泰勒模型,所选变体的习惯平面不系统地对应于预测的活动γ滑动平面。相反,无论母体取向如何,都清楚地揭示了所选变体所属的贝恩组与精轧温度之间的相关性。这些结果是根据多颗粒调节机制来讨论的,特别是考虑到在取向角在<111>γ和<110>γ之间的高角度晶界热轧样品中观察到的发展。

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