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立方相向四方相转变过程中失配析出物的定量形状分类:相场模拟与实验

Quantitative Shape-Classification of Misfitting Precipitates during Cubic to Tetragonal Transformations: Phase-Field Simulations and Experiments.

作者信息

Lin Yueh-Yu, Schleifer Felix, Holzinger Markus, Ta Na, Skrotzki Birgit, Darvishi Kamachali Reza, Glatzel Uwe, Fleck Michael

机构信息

Metals and Alloys, University of Bayreuth, Prof.-Rüdiger-Bormann-Straße 1, 95447 Bayreuth, Germany.

Max-Planck-Institut für Eisenforschung GmbH, Max-Planck-Straße 1, 40237 Düsseldorf, Germany.

出版信息

Materials (Basel). 2021 Mar 12;14(6):1373. doi: 10.3390/ma14061373.

Abstract

The effectiveness of the mechanism of precipitation strengthening in metallic alloys depends on the shapes of the precipitates. Two different material systems are considered: tetragonal γ'' precipitates in Ni-based alloys and tetragonal θ' precipitates in Al-Cu-alloys. The shape formation and evolution of the tetragonally misfitting precipitates was investigated by means of experiments and phase-field simulations. We employed the method of invariant moments for the consistent shape quantification of precipitates obtained from the simulation as well as those obtained from the experiment. Two well-defined shape-quantities are proposed: (i) a generalized measure for the particles aspect ratio and (ii) the normalized λ, as a measure for shape deviations from an ideal ellipse of the given aspect ratio. Considering the size dependence of the aspect ratio of γ'' precipitates, we find good agreement between the simulation results and the experiment. Further, the precipitates' in-plane shape is defined as the central 2D cut through the 3D particle in a plane normal to the tetragonal c-axes of the precipitate. The experimentally observed in-plane shapes of γ''-precipitates can be quantitatively reproduced by the phase-field model.

摘要

金属合金中析出强化机制的有效性取决于析出物的形状。考虑了两种不同的材料体系:镍基合金中的四方γ''析出物和铝铜合金中的四方θ'析出物。通过实验和相场模拟研究了四方失配析出物的形状形成和演变。我们采用不变矩方法对模拟得到的析出物以及实验得到的析出物进行一致的形状量化。提出了两个明确的形状量:(i) 颗粒纵横比的广义度量;(ii) 归一化λ,作为偏离给定纵横比理想椭圆形状的度量。考虑到γ''析出物纵横比的尺寸依赖性,我们发现模拟结果与实验结果吻合良好。此外,析出物的面内形状定义为在垂直于析出物四方c轴的平面上穿过三维颗粒的中心二维截面。相场模型可以定量再现实验观察到的γ''析出物的面内形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd7a/8000425/6b8e5d7f695d/materials-14-01373-g001.jpg

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