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Prediction of buckling-mode interaction in composite columns

机译:复合柱中屈曲模式相互作用的预测

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Pultruded structural shapes are often used as columns of intermediate length, for which the global and local buckling loads are close. Interaction between the two buckling modes is accounted for in design by an empirical interaction constant. Theoreticalumerical prediction of such a constant is presented in this article. Stability theory is used to demonstrate the existence of buckling-mode interaction. The continuation method is used to study the imperfection sensitivity of the columns. A relationship between column imperfection and the interaction constant is established. Experimental results are presented to support the analysis.
机译:拉挤结构形状通常用作中等长度的柱,对于这些柱,总体和局部屈曲载荷都比较接近。在设计中,两个屈曲模式之间的相互作用是通过经验相互作用常数解决的。本文介绍了这种常数的理论/数值预测。稳定性理论用于证明屈曲模式相互作用的存在。连续法用于研究色谱柱的缺陷敏感性。建立了柱缺陷与相互作用常数之间的关系。提出实验结果以支持分析。

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