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Numerical study on thermal buckling of CFRP-Al honeycomb sandwich composites based on homogenization-localization analysis

机译:基于均质-局部化分析的CFRP-Al蜂窝夹芯复合材料热屈曲数值研究

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Thermal buckling of CFRP-Al honeycomb sandwich composites is numerically studied by performing linear eigenproblem analysis. The analysis focuses on the thermal buckling of the hexagonal faces of sandwich composites. Calculation of stress stiffness utilizes stresses responses obtained by homogenization localization analysis employing twelve unit-cell models. In this regard, the homogenization localization analysis is carried out by relieving periodicity in the thickness direction. The buckling analysis employs two modeling techniques, i.e. face modeling and face-core modeling, whereby the critical eigenvalues are found to be sensitive to the selected technique. In order to better understand the influence of out-of-plane periodicity, the results of standard analysis with three-dimensional periodicity are also presented. It is found that relieving periodicity in the thickness direction affects the calculation of stress responses as well as critical buckling eigenvalue, particularly for unidirectional laminate faces. Parametric studies of the critical buckling eigenvalue are also performed to investigate the effect of geometrical and material configuration, and obtain reasonable results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过进行线性本征问题分析,对CFRP-Al蜂窝夹芯复合材料的热屈曲进行了数值研究。分析的重点是夹心复合材料六角形表面的热屈曲。应力刚度的计算利用了应力响应,该应力响应是通过使用十二个单元格模型的均质化定位分析获得的。在这方面,通过消除厚度方向上的周期性来进行均质化定位分析。屈曲分析采用两种建模技术,即面部建模和面部核心建模,由此发现关键特征值对所选技术敏感。为了更好地了解平面外周期性的影响,还给出了具有三维周期性的标准分析结果。发现在厚度方向上的周期性减小会影响应力响应以及临界屈曲特征值的计算,特别是对于单向层合面。还对临界屈曲特征值进行了参数研究,以研究几何和材料构型的影响,并获得合理的结果。 (C)2015 Elsevier Ltd.保留所有权利。

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