Static and dynamic behaviors of laminated composite plates resting on elastic foundation

Tahir Ghazoul, M. A. Benatta, M. Bachir Bouiadjra
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引用次数: 0

Abstract

This present study consists to analyze the mechanical buckling and the free vibration stabilities of antisymmetric cross-ply and angle-ply laminated composite plates using a refined high order shear deformation theory of four variables against five in other high order theories. Among the advantages of this new theory it takes into consideration the shearing effect in the calculation of deformation without the need for shear correction factors and giving rise to a variation of the shear stresses along the thickness and satisfying the zero shear stresses condition in faces of the plate. The laminate resting on the Pasternak elastic foundation, including a shear layer and Winkler spring, are considered. The equations of the motion are derived from Hamilton’s principal. The closed form solution of simply supported rectangular plates has been obtained by using the Navier method. In addition, the effects of various parameters of the laminated composite plate on static buckling and dynamic are presented.  
弹性基础上叠合板静动力性能研究
本研究采用四变量精细高阶剪切变形理论,对比其他高阶理论中的五个变量,分析了反对称交层板和角层板复合材料层压板的机械屈曲和自由振动稳定性。在这一新理论的优点中,它在计算变形时考虑了剪切效应,而不需要剪切校正因子,并引起剪切应力沿厚度的变化,并满足板表面的零剪切应力条件。考虑了Pasternak弹性基础上的层压板,包括剪切层和Winkler弹簧。运动方程是从汉密尔顿原理推导出来的。用Navier方法得到了简支矩形板的闭合形式解。此外,还讨论了复合材料层合板的各种参数对静屈曲和动力屈曲的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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