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首页> 外文期刊>Journal of Sandwich Structures and Materials >Using New Closed-form Solutions to Set up Design Rules and Numerical Investigations for Global and Local Buckling of Sandwich Beams
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Using New Closed-form Solutions to Set up Design Rules and Numerical Investigations for Global and Local Buckling of Sandwich Beams

机译:使用新的封闭式解决方案为夹层梁的整体和局部屈曲建立设计规则和数值研究

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摘要

This paper is dedicated to the study of global (at the sandwich scale) and local (at the component scale) buckling in sandwich structures. This approach relies on the basis of an analytical model able to capture both local and global instabilities [Leotoing, L., Drapier, S. and Vautrin, A. (2002). First Applications of a Novel Unified Model for Global and Local Buckling of Sandwich Columns, European Journal of Mechanics A/SOLIDS, 21(4): 683-701]. Results from this model are used to provide simple design rules by assessing the combinations of geometrical and material parameters which control these instabilities. From there, design diagrams are extracted which permit very quickly to select sandwich configurations more susceptible to develop local or global phenomena. These design diagrams constitute a precious guide at the predesign stage of sandwich structures. Then, two distinct FE models are presented and compared. The ability of a reduced size FE model to capture local as well as global instabilities is demonstrated. Eventually, the predicted loads and wavelengths from both FE simplified model and analytical model are shown to correlate very well. Thus, analytical wavelengths give accurate evaluations of the mesh element size for a low time-consuming but accurate FE model which can be easily extended to fully non-linear computations of sandwich panels.
机译:本文致力于研究三明治结构的整体(在三明治尺度下)和局部(在组件尺度上)屈曲。这种方法依赖于能够捕获局部和全局不稳定性的分析模型[Leotoing,L.,Drapier,S.和Vautrin,A.(2002)。新型的统一模型对夹心柱整体和局部屈曲的首次应用,欧洲力学杂志A / SOLIDS,21(4):683-701]。通过评估控制这些不稳定性的几何参数和材料参数的组合,可以使用此模型的结果提供简单的设计规则。从那里提取设计图,可以非常迅速地选择更容易产生局部或整体现象的三明治结构。这些设计图在三明治结构的预设计阶段构成了宝贵的指导。然后,提出并比较了两个不同的有限元模型。演示了减小尺寸的有限元模型捕获局部以及全局不稳定性的能力。最终,来自有限元简化模型和分析模型的预测载荷和波长显示出很好的相关性。因此,分析波长可以为低耗时但精确的有限元模型提供网格元素尺寸的准确评估,该模型可以轻松扩展到夹心板的完全非线性计算。

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