弹性固体虚功的等温原理

V. Sokolov
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引用次数: 0

摘要

本研究的目的是推导弹性固体的虚功等温原理。方法。我们所说的弹性固体是指连续介质的数学模型,其中自由能的比密度仅是温度和位移矢量导数的函数。在平衡热力学的框架下,得到了弹性固体虚功的等温原理。结果。导出了弹性固体虚功的等温原理。得到了弹性固体内部和表面的力学平衡条件。研究的意义。对于给定的自由能比密度函数和已知的温度值,可以确定位移函数对表征所考虑的弹性固体变形状态的坐标的依赖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE ISOHERMAL PRINCIPLE OF VIRTUAL WORK FOR AN ELASTIC SOLID
The aim of the research is the derivation of the isothermal principle of virtual work for an elastic solid. Methodology. By an elastic solid we mean a mathematical model of a continuous medium, in which the specific density of free energy is a function of only temperature and derivatives of displacement vectors. In the framework of equilibrium thermodynamics, the isothermal principle of virtual work for an elastic solid is obtained. Results. The isothermal principle of virtual work for an elastic solid is derived. The conditions for mechanical equilibrium inside and on the surface of an elastic solid are obtained. Research implications. For a given function of the specific density of free energy and the known value of the temperature, it is possible to determine the dependence of the displacement functions on the coordinates that characterize the deformed state of the considered elastic solid.
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