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首页> 外文期刊>Journal of Elasticity >Rigorous Derivation of the Formula for the Buckling Load in Axially Compressed Circular Cylindrical Shells
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Rigorous Derivation of the Formula for the Buckling Load in Axially Compressed Circular Cylindrical Shells

机译:轴向压缩圆形圆柱壳屈曲载荷公式的严格推导

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摘要

The goal of this paper is to apply the recently developed theory of buckling of arbitrary slender bodies to a tractable yet non-trivial example of buckling in axially compressed circular cylindrical shells, regarded as three-dimensional hyperelastic bodies. The theory is based on a mathematically rigorous asymptotic analysis of the second variation of 3D, fully nonlinear elastic energy, as the shell's thickness goes to zero. Our main results are a rigorous proof of the classical formula for buckling load and the explicit expressions for the relative amplitudes of displacement components in single Fourier harmonics buckling modes, whose wave numbers are described by Koiter's circle. This work is also a part of an effort to understand the root causes of high sensitivity of the buckling load of axially compressed cylindrical shells to imperfections of load and shape.
机译:本文的目的是将最新发展的任意细长体的屈曲理论应用到轴向压缩的圆柱壳中被认为是三维超弹性体的易处理但非平凡的屈曲示例。该理论基于对3D的第二个变化(完全非线性的弹性能量)的严格数学渐近分析,当壳的厚度变为零时。我们的主要结果是对屈曲载荷经典公式的严格证明,以及单傅里叶谐波屈曲模式中位移分量的相对振幅的明确表达式,其波数由Koiter圆描述。这项工作也是了解轴向压缩圆柱壳的屈曲载荷对载荷和形状缺陷的高度敏感性的根本原因的一部分。

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