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首页> 外文期刊>The Journal of Chemical Physics >Mesoscopic nonequilibrium thermodynamics of solid surfaces and interfaces with triple junction singularities under the capillary and electromigration forces in anisotropic three-dimensional space
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Mesoscopic nonequilibrium thermodynamics of solid surfaces and interfaces with triple junction singularities under the capillary and electromigration forces in anisotropic three-dimensional space

机译:各向异性三维空间中在毛细管和电迁移力作用下具有三重连接奇异性的固体表面和界面的介观非平衡热力学

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摘要

A theory of irreversible thermodynamics of curved surfaces and interfaces with triple junction singularities is elaborated to give a full consideration of the effects of the specific surface Gibbs free energy anisotropy in addition to the diffusional anisotropy, on the morphological evolution of surfaces and interfaces in crystalline solids. To entangle this intricate problem, the internal entropy production associated with arbitrary virtual displacements of triple junction and ordinary points on the interfacial layers, embedded in a multicomponent, multiphase, anisotropic composite continuum system, is formulated by adapting a mesoscopic description of the orientation dependence of the chemical potentials in terms of the rotational degree of freedom of individual microelements. The rate of local internal entropy production resulted generalized forces and conjugated fluxes not only for the grain boundary triple junction transversal and longitudinal movements, but also for the ordinary points. The natural combination of the mesoscopic approach coupled with the rigorous theory of irreversible thermodynamics developed previously by the global entropy production hypothesis yields a well-posed, nonlinear, moving free-boundary value problem in two-dimensional (2D) space, as a unified theory. The results obtained for 2D space are generalized into the three-dimensional continuum by utilizing the invariant properties of the vector operators in connection with the descriptions of curved surfaces in differential geometry. This mathematical model after normalization and scaling procedures may be easily adapted for computer simulation studies without introducing any additional phenomenological system parameters (the generalized mobilities), other than the enlarged concept of the surface stiffness.
机译:阐述了具有三重连接奇点的曲面和界面的不可逆热力学理论,以充分考虑比表面吉布斯自由能各向异性和扩散各向异性对结晶固体中表面和界面的形态演化的影响。为了解决这个复杂的问题,通过适应介电常数的依赖关系的介观描述,可以得出与三层结和界面层上的普通点的任意虚拟位移相关的内部熵产,并嵌入到多组分,多相,各向异性复合连续体系统中。根据单个微量元素的旋转自由度的化学势。局部内部熵产生的速率不仅对晶界三结的横向和纵向运动,而且对于普通点产生广义力和共轭通量。作为统一理论,介观方法与之前由全局熵产生假设所发展的严格的不可逆热力学理论的自然结合,产生了二维(2D)空间中一个定律良好的,非线性的,移动的自由边界值问题。 。利用矢量算子的不变性质,结合在微分几何中对曲面的描述,可以将二维空间中获得的结果推广到三维连续体中。归一化和缩放过程后的该数学模型可以很容易地适用于计算机仿真研究,而无需引入任何其他现象学系统参数(广义迁移率),除了扩大了表面刚度的概念。

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