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Free vibration analysis of fiber-reinforced polymer honeycomb sandwich beams with a refined sandwich beam theory

机译:纤维增强聚合物蜂窝夹层梁的自由振动分析

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Free vibration of a fiber-reinforced polymer honeycomb sandwich beam with sinusoidal core configuration is studied based on a refined sandwich beam theory. Using a micro/macromechanics approach for face laminates and a mechanics of material approach for honeycomb core, the equivalent elastic properties of face laminates and honeycomb core are obtained. A free vibration model based on the refined sandwich beam theory is formulated using the Hamilton's variational principle. Analytical solutions for a cantilevered sandwich beam are obtained by the Ritz method. Experimental results conducted on the fiber-reinforced polymer honeycomb sandwich beams with different lengths are applied to validate the proposed analytical solutions. As a comparison and further verification, the analytical solutions based on the Timoshenko beam theory and high-order beam theory are also presented. The analytical solutions in term of natural frequencies are compared with the numerical simulation results as well. Good agreements among various comparisons demonstrate the accuracy and capability of the refined sandwich beam theory and its potentials in design applications and health monitoring of fiber-reinforced polymer honeycomb sandwich beams.
机译:基于改进的夹心梁理论,研究了纤维增强的聚合物正弦蜂窝结构夹芯梁的自由振动。使用面向面板的微/宏观力学方法和针对蜂窝芯的材料力学方法,可以获得面板和蜂窝芯的等效弹性。基于汉密尔顿的变分原理,建立了基于改进的夹心梁理论的自由振动模型。悬臂式夹层梁的解析解通过Ritz方法获得。在不同长度的纤维增强聚合物蜂窝夹层梁上进行的实验结果被用于验证所提出的分析解决方案。作为比较和进一步的验证,还提出了基于Timoshenko束理论和高阶束理论的解析解。还将固有频率方面的解析解与数值模拟结果进行了比较。各种比较之间的良好一致性证明了改进的夹芯梁理论的准确性和能力,以及其在纤维增强聚合物蜂窝夹芯梁的设计应用和健康监测中的潜力。

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