各向异性立方材料中相干椭球相最小应变能的形状和取向

I.S. Suh, J.K. Park
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引用次数: 5

摘要

计算了各向异性立方晶体材料中与基体呈立方体取向关系的完全相干旋转椭球的弹性应变能与旋转轴的取向和形状因子的关系。根据析出相的剪切模量μ*1((C* 11-C *12)/2)和μ* (C*44),在球体、< 001 >轴的棒状、001面盘状和111面盘状4种不同形状和方向上均出现最小应变能条件。当各向异性系数大于1时,无论基体相的弹性性能如何,都是如此。每种形状和取向的发生条件很大程度上受到不同形状的沉淀的错配调节行为的差异的影响。对实验观察的回顾表明,在铝合金中GP区存在所有四种不同的形状和取向。它们的出现条件与本计算的预测很好地吻合。
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The shape and orientation of the minimum strain energy of coherent ellipsoidal precipitate in an anisotropic cubic material

The elastic strain energy of perfectly coherent ellipsoid of revolution, which has the cube-cube orientation relationship with the matrix, has been calculated as a function of the orientation of the axis of revolution and of shape factor in anisotropic cubic crystalline materials. The minimum strain energy condition occurs at four different shapes and orientations, i.e. sphere, rod along 〈001〉 axis, disc on 001 plane and disc on 111 plane, depending on the two shear moduli of precipitate, i.e. μ*1((C*11—C*12)/2) and μ* (C*44). This is true regardless of the elastic property of the matrix phase when its anisotropy factor is larger than 1. The conditions of the occurrence of each shape and orientation are greatly affected by the difference in the misfit accommodation behavior depending on the shape of precipitate. A review of the experimental observations indicates the presence of all four different shapes and orientations in the case of GP zones in Al alloys. The conditions of their appearance are in good agreement with the prediction of the present calculation.

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