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Analysis of variant selection in friction-stir-processed high-strength low-alloy steels

机译:搅拌摩擦加工高强度低合金钢的品种选择分析

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Variant selection in friction-stir-welded high-strength low-alloy steels has been studied using the electron backscatter diffraction and prior austenite (PA) reconstruction techniques described in previous papers. A hypothesis for variant selection has been proposed based on grain-boundary interfacial energy and misorientation. This study focuses on austenite 111 boundaries with a two-dimensional approach. Results indicate that variant selection is strongly dependent on misorientation. Certain PA misorientations produce combinations of variants that minimize the interfacial energies between a ferrite nucleus and a neighboring austenite grain, and between adjoining ferrite nuclei along the boundary between two PA grains. PA grains that exhibit a 60° 111 misorientation between them satisfy both these conditions for a combination of variants. These PA boundaries exhibit strong variant selection. As a result, the density of these boundary types influences the overall variant selection. Additionally, variant selection is more prevalent in small PA grains (<150 μm), which is probably a result of limited intragranular nucleation. Nearly all variants are present in larger PA grains.
机译:摩擦搅拌焊接高强度低合金钢的变种选择已使用先前论文中描述的电子反向散射衍射和先前的奥氏体(PA)重建技术进行了研究。已经提出了基于晶界界面能和取向错误的变体选择假说。本研究采用二维方法研究奥氏体111边界。结果表明,变体选择在很大程度上取决于方向错误。某些PA取向错误会产生变体组合,这些变体会使铁素体核与相邻奥氏体晶粒之间以及沿两个PA晶粒之间的边界的相邻铁素体核之间的界面能最小化。它们之间表现出60°111的取向错误的PA晶粒满足这些条件,满足各种变体的组合。这些PA边界显示出强大的变体选择。结果,这些边界类型的密度会影响整体变量的选择。此外,变体选择在较小的PA晶粒(<150μm)中更为普遍,这可能是有限的颗粒内成核作用的结果。几乎所有变体都存在于较大的PA颗粒中。

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