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Stress analysis of sandwich plates with functionally graded cores using peridynamic differential operator and refined zigzag theory

机译:使用绕动微分算子和精细曲折理论的功能梯度夹芯夹心板的应力分析

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摘要

This study presents a novel non-local model for the stress analysis of sandwich plates with a functionally graded core using Peridynamic Differential Operator (PDDO) and Refined Zigzag Theory (RZT). The through-thickness material properties of the functionally graded cores were tailored by means of mixing rules. The PDDO converts the equilibrium equations of the RZT from the differential form into the integral form. This makes the PDDO capable of solving the local differential equations accurately. The RZT is very suitable for the stress analysis, especially for thick and moderately thick plates. It contains only seven kinematic variables and eliminates the use of the shear correction factors. A typical sandwich structure consists of a soft core and stiff orthotropic face-sheets. The mismatch of the stiffness at the core and face sheet interfaces results in an increase in the interfacial shear stresses, leading to the core-face sheet delamination. The interfacial stresses can be mitigated by functionally grading the material properties of the core through the thickness. The PD-RZT stress and displacement predictions were compared with the analytical solutions by using the uniform and non-uniform mesh discretizations and good agreements were achieved. It was observed that the functionally graded cores offered some advantages with respect to the classical cores and minimized the stress concentrations at the interface of the core and the face sheets.
机译:这项研究提出了一种新的非局部模型,用于使用功能动力学微分算子(PDDO)和精细曲折理论(RZT)对具有功能梯度芯的夹心板进行应力分析。功能梯度型芯的全厚度材料特性是通过混合规则定制的。 PDDO将RZT的平衡方程从微分形式转换为积分形式。这使PDDO能够精确求解局部微分方程。 RZT非常适用于应力分析,尤其适用于厚板和中厚板。它仅包含七个运动学变量,并且无需使用剪切校正因子。典型的三明治结构由软芯和坚硬的正交各向异性面板组成。芯和面板界面处的刚度不匹配导致界面剪切应力的增加,导致芯-面板分层。界面应力可以通过在厚度方向上对芯材的材料性能进行功能分级来缓解。通过使用均匀和非均匀网格离散化,将PD-RZT应力和位移预测与分析解决方案进行了比较,并取得了良好的一致性。观察到,相对于经典型芯,功能梯度型芯提供了一些优势,并使芯和面板界面处的应力集中最小化。

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