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Finite element simulation and experimental study on mechanical behavior of 3D woven glass fiber composite sandwich panels

机译:3D玻璃纤维复合夹芯板力学性能的有限元模拟与实验研究

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The results of finite element simulation followed by an experimental study are presented in order to investigate the mechanical behavior of three-dimensional woven glass-fiber sandwich composites using FE method. Experimental load-displacement curves were obtained for flatwise compressive, edgewise compressive, shear, three-point bending and four-point bending loads on the specimens with three different core thicknesses in two principal directions of the sandwich panels, called warp and weft. A 3D finite element model is employed consisting of glass fabric and surrounding epoxy resin matrix in order to predict the mechanical behavior of such complex structures. Comparison between the finite element predictions and experimental data showed good agreement which implies that the FE simulation can be used instead of time-consuming experimental procedures to study the effect of different parameters on mechanical properties of the 3D woven sandwich composites.
机译:提出了有限元模拟的结果,然后进行了实验研究,以研究采用有限元方法的三维编织玻璃纤维夹芯复合材料的力学性能。在夹心板的两个主要方向上,分别在三种不同芯厚的样本上,分别对经向和纬向施加了水平压缩,边向压缩,剪切,三点弯曲和四点弯曲载荷的实验载荷-位移曲线。为了预测这种复杂结构的机械性能,采用了由玻璃纤维和周围的环氧树脂基质组成的3D有限元模型。有限元预测结果与实验数据之间的比较显示出很好的一致性,这意味着可以使用有限元模拟代替耗时的实验程序来研究不同参数对3D机织夹芯复合材料力学性能的影响。

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