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The concept of material forces in phase transition problems within the level-set framework

机译:水平集框架内相变问题中的物质力概念

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The dynamics of a phase transition front in solids using the level set method is examined in this paper. Introducing an implicit representation of singular surfaces, a regularized version of the sharp interface model arises. The interface transforms into a thin transition layer of nonzero thickness where all quantities take inhomogeneous expressions within the body. It is proved that the existence of an inhomogeneous energy of the material predicts inhomogeneity forces that drive the singularity. The driving force is a material force entering the canonical momentum equation (pseudo-momentum) in a natural way. The evolution problem requires a kinetic relation that determines the velocity of the phase transition as a function of the driving force. Here, the kinetic relation is produced by invoking relations that can be considered as the regularized versions of the Rankine-Hugoniot jump conditions. The effectiveness of the method is illustrated in a shape memory alloy bar.
机译:本文使用能级集方法研究了固体中相变前沿的动力学。引入奇异表面的隐式表示后,出现了尖锐的界面模型的规则化版本。界面转换为厚度不为零的薄过渡层,其中所有量在体内都采用不均匀的表达方式。事实证明,材料不均匀能量的存在预示着驱动奇异性的不均匀力。驱动力是以自然方式进入规范动量方程(伪动量)的物质力。演化问题需要动力学关系,该动力学关系取决于驱动力确定相变的速度。在这里,动力学关系是通过调用关系而产生的,这些关系可以看作是兰金-休格尼奥跳条件的正则化形式。在形状记忆合金棒中说明了该方法的有效性。

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