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首页> 外文期刊>Indian journal of engineering and materials sciences >Effect of fiber orientation and ply stacking sequence on buckling behaviour of basalt-carbon hybrid composite laminates
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Effect of fiber orientation and ply stacking sequence on buckling behaviour of basalt-carbon hybrid composite laminates

机译:纤维取向堆叠序列对玄武岩 - 碳杂交复合层压板屈曲行为的影响

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摘要

The aim of this study is to investieate the effect of fiber orientation and ply stacking sequence of basalt-carbon hybrid composite laminates on the critical buckling strength, experimentally and by using nonlinear finite element analysis. The composite laminated plates are simply supported and subjected to axial compression load. Nonlinear FEA results using ANSYS have good agreement with the experimental results. FEA results showed that the outer layers have the most significant influence on the buckling strength of the composite laminated material. Furthermore, placing carbon fiber reinforced layers in the outer surface of the basalt-carbon/epoxy hybrid laminates results in significant increase in the critical buckling load compared to placing basalt fiber reinforced layers in the outer surface. It is also concluded that [O2C/OB/+/- 45B]s laminate is the best combination of the hybrid stacking sequences as far as buckling strength is concerned.
机译:本研究的目的是通过使用非线性有限元分析来研究碱致碳杂交复合层压层对临界屈曲强度的纤维取向和层堆叠序列的影响。 简单地支撑复合层压板并经受轴向压缩载荷。 使用ANSYS的非线性FEA结果与实验结果吻合良好。 结果表明,外层对复合层压材料的屈曲强度具有最大的影响。 此外,与在外表面上放置玄武岩纤维增强层相比,将碳纤维增强层放置在玄武岩 - 碳/环氧混合层压层的外表面上导致关键屈曲负荷显着增加。 还结论是,只要屈曲强度涉及屈曲强度,它们的层压板是混合堆叠序列的最佳组合。

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