弯曲界面边界的分离压力等温线

J. Gaydos
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引用次数: 0

摘要

仅给出摘要形式,如下。引入了分离压力(DP)的概念来解释必须施加的超压力,以抵消膜相从围合体相分离或脱离的趋势。它被认为是围相之间的分离距离的函数,有色散、静电、结构和空间分量的表达式。这些分量表达式允许计算DP等温线,作为分离的函数。本文采用了另一种方法,即允许膜的能量具有更大的功能依赖性(即分离和径向距离依赖性)。用变分方法求出DP等温线及其局部和全局平衡结构的欧拉-拉格朗日方程,表明等温线具有特定的函数形式,受几何约束(即实体边界)的限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A disjoining pressure isotherm for curved, interfacial boundaries
Summary form only given, as follows. The disjoining pressure (DP) concept was introduced as an explanation for the excess pressure that must be applied to offset the tendency of the film phase to separate or disjoin from the confining bulk phases. It is considered to be a function of the separation distance between the confining phases with expressions for dispersion, electrostatic, structural and steric components. These component expressions permit DP isotherms, as a function of separation, to be calculated. In this paper an alternative approach is adopted whereby the energy of the film is allowed to possess a greater functional dependence (i.e. both separation and radial distance dependence). A variational approach to obtain an Euler-Lagrange equation for the DP isotherm and its local and global equilibrium structure shows that the isotherm has specific functional forms that are limited when subjected to geometric constraints (i.e. solid boundary).
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