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Twin nucleation in Fe-based bcc alloys-modeling and experiments

机译:Fe基bcc合金的双晶核化-模型与实验

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We develop an analytical expression for twin nucleation stress in bcc metal and alloys considering generalized planar fault energy and the dislocations bounding the twin nucleus. We minimize the total energy to predict the twinning stress relying only on parameters that are obtained through atomistic calculations, thus excluding the need for any empirical constants. We validate the present approach by means of precise measurements of the onset of twinning in bcc Fe-50at%Cr single crystals showing excellent agreement. The experimental observations of the three activated slip systems of symmetric configuration in relation to the twinning mechanism are demonstrated via transmission electron microscopy techniques along with digital image correlation. We then confirm the validity of the model for Fe, Fe-25at%Ni and Fe-3at%V alloys compared with experiments from the literature to show general applicability.
机译:考虑到普遍的平面断层能量和以双核为界的位错,我们针对bcc金属和合金中的双核应力进行了解析表达式。我们仅依靠通过原子计算获得的参数来最小化总能量以预测孪生应力,因此排除了任何经验常数的需要。我们通过精确测量bcc Fe-50at%Cr单晶中孪生开始的方式来验证本方法,显示出极好的一致性。通过传输电子显微镜技术以及数字图像相关性,证明了相对于孪生机理,对称构型的三个活化滑模系统的实验观察结果。然后,与文献中的实验相比,我们证实了该模型对Fe,Fe-25at%Ni和Fe-3at%V合金的有效性,以表明其普遍适用性。

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