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The experimental and theoretical analysis of high strains and limit states of elastoplasic cylindric shells under the complex loading of pressure and torsion

机译:复杂压力和扭转载荷下弹性圆柱壳高应变和极限态的实验和理论分析。

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摘要

Nowadays, there are no techniques or software making it possible to simulate the high strains of shells under the combined complex loadings of internal pressure and torsion in the generalized axisymmetrical formulation. These problems are inherent for the experimental investigations of elastoplastic properties of metals and alloys on tubular samples. In this paper, we present the variation-difference method for solving similar problems with taking into consideration high strains and the conditions of an inhomogeneous stress-strain state. We conduct the numerical and experimental studies of the process of elastoplastic deformation and plastic strain localization under the combined loadings of internal pressure and torsion. The mutual influence of torsion on the shell forming under high strains is estimated. The loss of stability with axisymmetric and non-axisymmetric forms is analyzed by 2D and 3D modeling. The simulations results are finally validated by experiments.
机译:如今,没有任何技术或软件可以在广义轴对称公式中模拟内部压力和扭转的复杂载荷下的高应变壳。这些问题是管状样品上金属和合金的弹塑性特性实验研究所固有的。在本文中,我们考虑了高应变和非均匀应力应变状态的条件,提出了一种解决差异问题的变差方法。我们对内压和扭转共同作用下的弹塑性变形和塑性应变局部化过程进行了数值和实验研究。估计了在高应变下扭转对壳形成的相互影响。通过2D和3D建模分析了轴对称和非轴对称形式的稳定性损失。仿真结果最终通过实验验证。

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