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Reasons for Formation of Twin-Precipitates in Two Phase Stainless Steel

机译:两相不锈钢中形成双析出物的原因

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This study focuses on the entire shape of the γ twin-precipitate in two phase stainless steel, Fe-25Cr-6Ni in terms of the interphase and elastic strain energies generated between the precipitate and matrix. An investigation of this precipitation is important not only in terms of microstructure control but also for improving the mechanical properties of materials. Firstly, the three-dimensional near-coincidence site lattice (3D-NCS) model, which is based on the atomic matching model, is applied for estimating the preferred habit planes by evaluating the result of geometrical atomic matching. Subsequently, the precipitate shape is determined from candidates of the preferred habit plane produced by the 3D-NCS model, and the elastic strain surrounding and within the precipitate is investigated by FEM analysis, which can calculate the anisotropic elastic strain depending on the shape of the precipitate. The results are compared with observed precipitate by TEM.
机译:这项研究着眼于沉淀物与基体之间产生的相间和弹性应变能,着眼于两相不锈钢Fe-25Cr-6Ni中的γ双沉淀物的整体形状。研究这种沉淀不仅在控制微观结构方面很重要,而且对于改善材料的机械性能也很重要。首先,基于原子匹配模型,通过评估几何原子匹配的结果,应用了基于原子匹配模型的三维接近重合点阵(3D-NCS)模型来估计偏好的惯性平面。随后,根据3D-NCS模型生成的优选习惯平面的候选物确定析出物的形状,并通过FEM分析研究析出物周围和内部的弹性应变,从而可以根据弹性体的形状来计算各向异性弹性应变。沉淀。将结果与通过TEM观察到的沉淀进行比较。

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