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Effects of disoriented grains on the elastic constants of directionally solidified superalloys

机译:晶粒错位对定向凝固高温合金弹性常数的影响

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摘要

Two models, namely, coaxial and non-coaxial, are proposed to estimate the elastic constants of directionally solidified superalloys, which behave like transversely isotropic materials and require five independent elastic constants. Coaxial model considers each grain as an individual and obtains the averaged values. Because of the longitudinal grain structure, three independent constants are carried over from original cubic single crystal and the other two are obtainable through the averaging process. For each disoriented direction in the non-coaxial model, a lumped grain, which behaves like a transverse isotropy is proposed. By assuming the disoriented angle follows Weibull distribution, non-coaxial model obtains the expectations of compliances from probability consideration. Disoriented effect could be simulated through the parameters of Weibull distribution. Experimental off-axis Young's modulus data are compared with numerical predictions by both models. Excellent agreement is observed between coaxial model and 90° off-axis experimental data. However, the coaxial model over predicts the 45° off-axis Young's modulus, because anisotropic coupling effect is very strong in the real off-axis specimens. As non-coaxial model considers the disoriented effect, excellent agreement is observed between non-coaxial model and 45° off-axis experiment data. Disoriented grain consideration reduces the anisotropic coupling effect and predicts better to the real off-axis specimens.
机译:为了估计定向凝固的高温合金的弹性常数,提出了两种模型,即同轴模型和非同轴模型,它们的行为类似于横向各向同性材料,并且需要五个独立的弹性常数。同轴模型将每个晶粒视为一个个体,并获得平均值。由于具有纵向晶粒结构,因此从原始立方单晶中继承了三个独立常数,而其他两个常数可通过平均过程获得。对于非同轴模型中的每个散乱方向,提出了一种集总晶粒,其行为类似于横向各向同性。通过假设偏角遵循威布尔分布,非同轴模型从概率考虑中获得了顺应性的期望。通过Weibull分布的参数可以模拟迷失方向的效果。两种模型均将实验轴外杨氏模量数据与数值预测进行了比较。在同轴模型和90°离轴实验数据之间观察到极好的一致性。但是,同轴模型过高地预测了45°离轴杨氏模量,因为在实际离轴试样中各向异性耦合作用非常强。由于非同轴模型考虑了偏向效应,因此在非同轴模型与45°离轴实验数据之间观察到了极好的一致性。偏心晶粒的考虑降低了各向异性耦合效应,并更好地预测了真实的离轴试样。

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