The mechanics of phase transformations

Elias C. Aifantis
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引用次数: 8

Abstract

We outline a program to phase transformations by utilizing only the traditional concepts of mechanics together with the new notion of “normal” and “excited” atoms. The meaning of phase transformations is used here in a broad sense to cover phenomena ranging from liquid-vapor transitions and spinodal decomposition to the formation of slip and shear bands, plastic zones and necks, liquid crystal transitions, damage localization, and crack nucleation. In principle, all these phenomena are interpreted within the same theoretical framework by identifying the “excited” atoms and their motion with the predominant microstructure which is responsible for the transformation. For simplicity, we present the basic ideas in one dimension and assess only qualitatively the appropriateness of the model. Roughly speaking, transformations are occurences of a certain instability in the variables defining the body before the transformation. In our approach we retain the same variables but we introduce non-local interactions, usually in the form of gradients, in order to stabilize the behavior and trace the evolution of the system during the transformation.

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相变力学
我们只利用传统的力学概念以及“正常”和“激发”原子的新概念,概述了一个相变程序。相变的含义在广义上用于涵盖从液相转变和旋节分解到滑移带和剪切带、塑性区和颈部、液晶转变、损伤局部化和裂纹成核的形成等现象。原则上,所有这些现象都是在同一理论框架内通过识别“激发”原子及其运动与负责转变的主要微观结构来解释的。为了简单起见,我们在一个维度上介绍了基本思想,并仅对模型的适当性进行了定性评估。粗略地说,变换是在变换之前定义物体的变量中出现某种不稳定性。在我们的方法中,我们保留了相同的变量,但我们引入了非局部相互作用,通常以梯度的形式,以便在转换过程中稳定行为并跟踪系统的演变。
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