General Higher-Order Theory for Laminated Composite Structures with Interlayer Slip

Y. Negishi, K. Hirashima
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引用次数: 2

Abstract

A general higher-order approximation theory for analysis of static and/or dynamic behavior of laminated composite structures with interlayer slip is developed. Theoretical characteristics and validity of the theory are clarified using numerical examples. The theory is formulated by using a modified Hamilton's principle with relaxed displacement continuity requirements, after expanding displacements of each lamina using power series of the thickness coordinate. The independent unknown variables of this theory are the displacement coefficients of each lamina and interlamina stresses. It is shown that the present theory includes so many previous theories, and overcomes the defects of those theories.
层间滑移层合复合材料结构的一般高阶理论
提出了一种用于层间滑移层合复合材料结构静动力特性分析的一般高阶近似理论。通过数值算例阐明了该理论的理论特点和有效性。该理论是在利用厚度坐标的幂级数展开各层的位移后,采用改进的Hamilton原理,放宽位移连续性要求来表述的。该理论的独立未知变量是各层的位移系数和层间应力。结果表明,该理论吸收了前人的许多理论,并克服了前人理论的缺陷。
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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