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首页> 外文期刊>Journal of teoretical and applied mechanics >AN ENERGY-BASED METHOD IN PHENOMENOLOGICAL DESCRIPTION OF MECHANICAL PROPERTIES OF NONLINEAR MATERIALS UNDER PLANE STRESS
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AN ENERGY-BASED METHOD IN PHENOMENOLOGICAL DESCRIPTION OF MECHANICAL PROPERTIES OF NONLINEAR MATERIALS UNDER PLANE STRESS

机译:平面应力作用下非线性材料力学性能的物能学描述的一种基于能量的方法

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摘要

A method based on energy is a very useful tool for description of mechanical properties of materials. In the current paper, on the base of geometrical interpretation of a deformation process, the strain energy density function for isotropic nonlinear materials has been constructed. On account of hydrostatic interpretation of the volumetric deformation, the elastic part of energy has been extracted. The initiation of the damage process due to plastic flow of the material under plane stress has been determined and the stability conditions have been formulated by using in the stability analysis the strain energy density function in addition to Sylvester's theorem and assumption of zero volume change during pure plastic deformations. This concept is an original part of the work and continuation of the investigations previously carried out by Wegner and Kurpisz. The theoretical investigations have been illustrated on the example of aluminium.
机译:基于能量的方法是描述材料机械性能的非常有用的工具。在目前的论文中,基于对变形过程的几何解释,构造了各向同性非线性材料的应变能密度函数。由于流体力学解释了体积变形,因此提取了能量的弹性部分。已经确定了由于材料在平面应力下的塑性流动而导致的破坏过程的开始,并通过在稳定性分析中使用应变能密度函数,Sylvester定理以及纯净过程中零体积变化的假设,确定了稳定性条件。塑性变形。这个概念是Wegner和Kurpisz先前进行的工作和调查工作的原始组成部分。理论研究已经以铝为例进行了说明。

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