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A non-asymptotic model for the stability analysis of thin biperiodic cylindrical shells

机译:薄双周期圆柱壳稳定性分析的非渐近模型

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摘要

The object of considerations is a thin linear-elastic cylindrical shell with arbitrary cross-section having a periodic structure in both directions tangent to the shell midsurface. The aim of this paper is to propose a new averaged non-asymptotic model of dynamical stability problems for such shells. As a tool of modeling we shall apply the tolerance averaging technique, given for periodic structures in Wozniak and Wierzbicki [Averaging techniques in thermomechanics of composite solids, Wydawnictwo Politechniki Czestochowskiej, 2000]. In contrast with models obtained by means of asymptotic homogenization methods, the proposed one makes it possible to describe the effect of the period lengths on the global shell stability, called a length-scale effect.
机译:考虑的目的是具有任意横截面的薄线弹性圆柱壳,在与壳中表面相切的两个方向上具有周期性结构。本文的目的是为此类壳提供一个新的动力学稳定性问题的平均非渐近模型。作为建模工具,我们将应用Wozniak和Wierzbicki中周期性结构的公差平均技术[复合固体热力学的平均技术,Wydawnictwo Politechniki Czestochowskiej,2000年]。与通过渐近均匀化方法获得的模型相比,提出的模型使得可以描述周期长度对整体壳稳定性的影响,称为长度尺度效应。

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