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Nondestructive method to predict the buckling load in elastic spherical shells

机译:弹性球壳屈曲载荷的无损预测方法

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This paper presents a general methodology for predicting the critical buckling loads of spherical shells using a nondestructive test. For this purpose, the well known graphical method of predicting buckling loads, i.e., the Southwell's nondestructive method for columns is analytically extended to spherical shells and a new formula is derived for the critical buckling load of uniformly compressed spherical shells. Subsequently, finite element simulation and experimental work proved that the theory is also applicable to spherical shells with an arbitrary axi-symmetrical loading as well. The results show that the technique provides a useful estimate of the elastic buckling load provided care is taken in interpreting of the results. The usefulness of the method lies in its generality, simplicity and in the fact that, it is non-destructive. Moreover, it does not make any assumption regarding the number of buckling waves or the exact localization of buckling. Published by Elsevier Ltd.
机译:本文提出了一种使用无损检验来预测球壳临界屈曲载荷的通用方法。为此,将众所周知的预测屈曲载荷的图形方法,即用于柱子的Southwell的非破坏性方法解析地扩展到球壳,并为均匀压缩的球壳的临界屈曲载荷导出一个新公式。随后,有限元模拟和实验工作证明了该理论也适用于任意轴对称载荷的球壳。结果表明,如果在解释结果时要格外小心,该技术可以对弹性屈曲载荷提供有用的估计。该方法的实用性在于它的通用性,简单性以及无损的事实。而且,它不对屈曲波的数量或屈曲的确切位置做出任何假设。由Elsevier Ltd.发布

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