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Layerwise solution of free vibrations and buckling of laminated composite and sandwich plates with embedded delaminations

机译:层状复合材料和夹层板具有嵌入式分层的自由振动和屈曲的分层解决方案

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摘要

Layerwise plate theory of Reddy, extended for the analysis of delaminations, has served as a basis for development of enriched finite elements. The proposed model assumes layerwise linear variation of in-plane displacements and constant transverse displacement through the plate thickness. Jump discontinuities in displacement field in three orthogonal directions are incorporated using Heaviside step functions, depending on delamination position through the plate thickness. Equations of motion are derived using Hamilton's principle. Using the proposed model laminated composite and sandwich plates were analyzed. All numerical solutions are obtained using originally coded MATLAB programs. Proposed model is verified using existing results from the literature. Results for natural frequencies, mode shapes and critical buckling loads for intact and damaged plates are compared. Effects of plate geometry, lamination scheme, degree of orthotropy and delamination size or position on dynamic characteristics of the plate are presented. Excellent agreement is obtained and a family of new results is presented as a benchmark for future investigations.
机译:Reddy的分层板理论扩展了分层分析,已成为开发有限元的基础。所提出的模型假设平面内位移的分层线性变化和整个板厚的恒定横向位移。根据整个板厚的分层位置,使用Heaviside阶跃函数可以在三个正交方向上合并位移场中的跳跃不连续性。运动方程式是使用汉密尔顿原理导出的。使用提出的模型,对层压复合材料和夹心板进行了分析。所有数值解均使用原始编码的MATLAB程序获得。所提出的模型使用文献中的现有结果进行了验证。比较了完整板和受损板的固有频率,振型和临界屈曲载荷的结果。提出了板几何形状,层压方案,正交性程度以及分层大小或位置对板动力特性的影响。获得了极好的协议,并提供了一系列新结果作为将来调查的基准。

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