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Grain boundary engineering for control of fatigue crack propagation in austenitic stainless steel

机译:奥氏体不锈钢疲劳裂纹传播控制晶界工程

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The roles of grain boundary microstructure in fatigue crack propagation during cyclic deformation were investigated in order to evidence the utility of grain boundary engineering for control of fatigue crack propagation in SUS304 austenitic stainless steel. It was found that the polycrystalline specimen with a higher fraction of low-Z boundaries shows a lower crack propagation rate than the specimen with a lower fraction of them. Grain boundary microstructures play important role in the deflection, path and the local propagation rate of fatigue crack. The introduction of a higher fraction of {111}/E3 boundaries leads to a lower contribution of intergranular fracture to the total crack length and a lower local propagation rate of fatigue crack in SUS304 stainless steel.
机译:研究了晶界微观结构在循环变形期间疲劳裂纹繁殖的作用,以证明SUS304奥氏体不锈钢疲劳裂纹繁殖控制的效用。发现具有较高级别的低Z边界的多晶样本显示比具有较低分数的样品较低的裂缝繁殖速率。晶界微观结构在挠曲,路径和抗疲劳裂纹的局部传播速率中起重要作用。 {111} / E3边界的较高分数的引入导致晶间断裂到SUS304不锈钢中疲劳裂纹的总裂缝长度的较低贡献和较低的局部繁殖速率。

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