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Multi-model finite element scheme for static and free vibration analyses of composite laminated beams

机译:复合材料层合梁静,自由振动分析的多模型有限元方案

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摘要

A transition element is developed for the local global analysis of laminated composite beams. It bridges one part of the domain modelled with a higher order theory and other with a 2D mixed layerwise theory (LWT) used at critical zone of the domain. The use of developed transition element makes the analysis for interlaminar stresses possible with significant accuracy. The mixed 2D model incorporates the transverse normal and shear stresses as nodal degrees of freedom (DOF) which inherently ensures continuity of these stresses. Non critical zones are modelled with higher order equivalent single layer (ESL) theory leading to the global mesh with multiple models applied simultaneously. Use of higher order ESL in non critical zones reduces the total number of elements required to map the domain. A substantial reduction in DOF as compared to a complete 2D mixed model is obvious. This computationally economical multiple modelling scheme using the transition element is applied to static and free vibration analyses of laminated composite beams. Results obtained are in good agreement with benchmarks available in literature.
机译:开发了一种过渡元件,用于层状复合梁的局部整体分析。它将使用高阶理论建模的领域的一部分与在领域关键区域使用的2D混合分层理论(LWT)桥接的一部分联系起来。开发的过渡元件的使用使层间应力分析变得非常精确。混合2D模型将横向法向应力和剪应力合并为节点自由度(DOF),从而固有地确保了这些应力的连续性。非关键区域使用高阶等效单层(ESL)理论建模,从而导致同时应用多个模型的全局网格。在非关键区域中使用高阶ESL会减少映射域所需的元素总数。与完整的2D混合模型相比,DOF明显降低了。使用过渡元素的这种计算经济的多重建模方案被应用于层压复合梁的静态和自由振动分析。获得的结果与文献中的基准非常吻合。

著录项

  • 作者

    BAND, UN; DESAI, YM;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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