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首页> 外文期刊>Journal of Sandwich Structures and Materials >Quasi-3D Static and Dynamic Analysis of Undamaged and Damaged Sandwich Beams
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Quasi-3D Static and Dynamic Analysis of Undamaged and Damaged Sandwich Beams

机译:Quasi-3D静态和动态分析夹层夹层梁

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摘要

Static and dynamic analyses of sandwich beams are performed by means of a finite element approach based on: (i) the Hermitian Zig-Zag theory, previously developed by the authors and (ii) the sublaminates approach; the possibility to divide not only the beam length but also its thickness in several sub-domains leads to improved capabilities in describing through-the-thickness distributions of displacements, strains and stresses. The proposed approach is also able to predict the response of damaged beams. The sandwich core is substituted by an equivalent orthotropic layer whose engineering constants are calculated using models proposed in literature. The effectiveness of the approach is demonstrated presenting and discussing some numerical results (vibration frequencies and static response for undamaged beams, static response of damaged beams). It is shown that the proposed approach is valid in determining global and local responses of sandwich beams.
机译:夹层梁的静态和动态分析是通过基于以下的有限元方法来执行的:(i)赫米特·Zig-ZAG理论,以前由作者和(ii)所述子胺化方法; 不仅可以分割光束长度,而且其厚度在几个子域中导致了改进的能力,用于描述位移,菌株和应力的厚度分布。 所提出的方法还能够预测受损光束的响应。 夹层芯由当量的正交层代替,其工程常数使用文献中提出的模型计算。 该方法的有效性被证明并讨论了一些数值结果(振动频率和未损坏的光束的静态响应,损坏光束的静态响应)。 结果表明,该方法在确定夹层光束的全局和局部反应方面是有效的。

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