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Effects of Gradient Energy and Stress Terms in Diffusional Intermixing of Multilayers

机译:梯度能量和应力术语在多层漫射混合中的影响

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Results of simulations, carried out on the basis of our general continuum equations for the atomic currents (which allow simulations for simultaneous action of stress accumulation and relaxation as well as spinodal decomposition in diffusion intermixing) and in a deterministic discrete (Martin's) model, are presented for metallic model multilayer systems. It is shown that the results of both models for the stress-free limit are qualitatively the same and indicate that, if there is an initially wide interface, the spinodal decomposition can lead to a metastable "wave" formation in the interface. This process is asymmetrical if the diffusion coefficient has strong concentration dependence. Taking into account stress effects in the continuum model (it is not possible to do so in the discrete one) we have shown in an ideal system that - depending on the direction of the net volume transport - the stress accumulation and relaxation can enhance or diminish the curvature on the ln(I/I_o) versus t curves (I/I_o is the relative intensity of the first order small angle Bragg peak) caused originally by the concentration dependent diffusivities.
机译:模拟的结果,进行了我们对原子电流一般连续方程(其允许应力积累和放松同时作用,以及在扩散混旋节线分解的模拟)的基础上和在一个确定的离散(马丁)模型,是提出了金属模型多层系统。结果表明,这两种模式为无应力极限的结果是定性的相同,并且表明,如果有一个初始宽接口,亚稳分解可导致在界面亚稳态“波”的形成。这个过程是不对称的,如果扩散系数具有很强的浓度依赖性。考虑到在连续模型帐户应力效应(这是不可能在离散一个这样做),我们在一个理想的系统,该系统示出 - 取决于净体积输送的方向 - 的应力积累和松弛可以增强或减弱在LN(I / I_O)对t的曲线曲率(I / I_O是第一阶小角度布拉格峰的相对强度)由浓度依赖性扩散率最初导致。

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