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首页> 外文期刊>Journal of Sandwich Structures and Materials >Bending and free vibration analysis of functionally graded sandwich plates using the Refined Zigzag Theory
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Bending and free vibration analysis of functionally graded sandwich plates using the Refined Zigzag Theory

机译:使用精细曲折理论分析功能梯度夹层板的弯曲和自由振动

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摘要

The increasing application of functionally graded materials in the aerospace structures requires the adoption of accurate modeling strategies. The original formulation of the Refined Zigzag Theory is here extended to the bending and free vibration analysis of sandwich plates embedding functionally graded layers, either as faces or core. Extensive numerical investigation shows the superior predictive capabilities of Refined Zigzag Theory over both First-order Shear Deformation Theory and Third-order Shear Deformation Theory, if compared with the reference three-dimensional elasticity or high-fidelity FEM solutions. In virtue of its accuracy and of the C~0-continuity requirement for shape functions, Refined Zigzag Theory can be adopted to formulate reliable and computationally efficient finite elements suited for large-scale analyses of both traditional and functionally graded structures.
机译:功能梯度材料在航空航天结构中的越来越多的应用要求采用精确的建模策略。精巧之字形理论的原始公式在此扩展到嵌入功能梯度层(作为面或芯)的夹心板的弯曲和自由振动分析。广泛的数值研究表明,与参考三维弹性或高保真有限元解决方案相比,精巧之字形理论的预测能力优于一阶剪切变形理论和三阶剪切变形理论。凭借其精确度和形状函数的C〜0连续性要求,可以采用精巧之字形理论来制定适用于传统分析和功能梯度结构的大规模分析的可靠且计算效率高的有限元。

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