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Coarsening of γ' in Ni-Al alloys aged under uniaxial compression: II. Diffusion under stress and retardation of coarsening kinetics

机译:在单轴压缩下时效的镍铝合金中γ'的粗化:II.应力下的扩散和粗化动力学的延缓

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摘要

An elasticity-based model is developed for predicting how the coefficient of diffusion, D, changes under an applied compressive stress. Stress affects the activation energy for motion, Q_M, of an atom, as well as its jump distance, l. Since a cubic crystal is slightly distorted tetragonally under uniaxial stress, Q_m and l, hence D, both become different in directions normal and parallel to the stress axis. Q_M is calculated using a dynamical model of diffusion due to Flynn Point defects and diffusion. London: Oxford University Press; 1972. Using the elastic constants for Ni-Al alloys, and taking into account the effect of the hydrostatic component of the applied stress on D, the model predicts that D decreases by about 6 under an applied stress of 150 MPa. This reduction does not account entirely for the retardation of coarsening kinetics observed experimentally, but given the simplicity of the model the result is satisfactory.
机译:开发了一个基于弹性的模型,用于预测扩散系数 D 在施加的压应力下如何变化。应力会影响原子运动的活化能,Q_M,以及它的跳跃距离l。由于立方晶体在单轴应力下四方线轻微变形,因此 Q_m 和 l(即 D)在法线和平行于应力轴的方向上都变得不同。Q_M是使用 Flynn [点缺陷和扩散引起的扩散动力学模型计算的。伦敦:牛津大学出版社;1972]. 利用Ni-Al合金的弹性常数,并考虑外加应力的静水力分量对D的影响,该模型预测,在150 MPa的应力下,D减小了约6%。这种减少并不能完全解释实验中观察到的粗化动力学的延迟,但考虑到模型的简单性,结果是令人满意的。

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