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Kinetics of interstitial segregation in Cottrell atmospheres and grain boundaries

机译:科特雷尔大气压和晶界中间隙隔离的动力学

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摘要

Trapping of interstitial (e.g. carbon) atoms is driven by the reduction in energy in the system. Diffusion of interstitials, together with their trapping in dislocation cores and/or grain boundaries, is studied by the thermodynamic extremal principle. In addition to the total Gibbs energy, a well-established formulation of the total dissipation is applied. Dimension-free evolution equations are derived, whose solution is well approximated by an easy to handle kinetic equation. Cottrell's power law can be verified in the initial stage.
机译:间隙原子(如碳)的捕获是由系统中能量的减少驱动的。利用热力学极值原理研究了间隙的扩散及其在位错核和/或晶界中的俘获。除了总吉布斯能量外,还应用了一个完善的总耗散公式。推导了无量纲演化方程,其解用一个易于处理的动力学方程很好地近似。科特雷尔的幂律可以在初始阶段得到验证。

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