When is a material stable?

A. Sutton
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Abstract

This chapter is an introduction to classical thermodynamics that does not assume any knowledge of the subject. The significance of thermodynamic equilibrium in materials is discussed keeping in mind that it is rarely achieved in practice. The concepts of thermodynamic systems, components, work, energy, phase, absolute temperature, heat, potential energy, internal energy, state variables, intensive and extensive variables are introduced and defined. The first and second laws of thermodynamics are introduced. The concept of entropy is discussed in terms of irreversibility, the direction of time and microstates of the system. Configurational entropy is illustrated with the example of a binary alloy. The Helmholtz and Gibbs free energies are introduced and their physical significance is discussed in terms of the conditions for a material to be in equilibrium with its environment. This leads to a discussion of chemical potentials, the Gibbs-Duhem relation for each phase present and the phase rule.
什么时候物质是稳定的?
这一章是对经典热力学的介绍,不假设对该主题有任何知识。讨论了材料的热力学平衡的意义,记住在实践中很少能达到这种平衡。引入并定义了热力学系统、组成、功、能、相、绝对温度、热量、势能、内能、状态变量、集约变量和外延变量等概念。介绍了热力学第一和第二定律。从系统的不可逆性、时间方向和微观状态等方面讨论了熵的概念。以二元合金为例说明了构型熵。介绍了亥姆霍兹自由能和吉布斯自由能,并从物质与其环境平衡的条件出发,讨论了它们的物理意义。这导致了化学势的讨论,吉布斯-迪昂关系的每一个存在的相和相规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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