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Impact Behavior of Aramid Fiber/Glass Fiber Hybrid Composites: The Effect of stacking Sequence

机译:芳纶纤维/玻璃纤维杂化复合材料的冲击行为:堆积顺序的影响

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Aram1d fiber / glass fiber hybrid composites were prepared to examine the effect of stacking sequence on the impact behavior of thin laminates. The effect of position of the ararnid layer on the impact properties of hybrid composites was investigated using driven dart impact tester. The delamination area and fracture surface of hy- brid composites were analyzed for correlation with impact energy .The addition of glass layer to ararnid layer reduced the impact resistance of hybrid composite due to the restriction in the deformation of ararnid layer. The position of ararnid layer resulted in variations in the impact behavior of hybrid composites. When the ararnid layer was at the impacted surface, the composite exhibited a higher impact energy .This was attributed to the fact that the flexible layer at the impacted surface in thin laminates can experience larger deformation. In three-Iayer compos- ites, the ararnid fiber-reinforced composite (AAA) exhibited the highest total impact energy due to high impact energy per delamination area (IEDA) in spite of low de- lamination area. Aram1d fiber and glass fiber-reinforced composites showed a dif- ferent impact behavior according to the change of thickness. This was attributed to the difference in the energy absorption at interface between laminae.
机译:制备了Aram1d纤维/玻璃纤维杂化复合材料,以检查堆叠顺序对薄层压板的冲击行为的影响。使用驱动式飞镖冲击试验机研究了Ararnid层位置对杂化复合材料冲击性能的影响。分析了混合复合材料的分层区域和断裂表面与冲击能的相关性。由于在Ararnid层变形方面的限制,在Ararnid层中添加玻璃层降低了混合复合材料的抗冲击性。 Ararnid层的位置导致杂化复合材料冲击性能的变化。当Ararnid层位于受冲击的表面时,复合材料显示出更高的冲击能量,这是由于薄层压板的受冲击表面处的柔性层会经历较大的变形这一事实。在三艾亚尔复合材料中,尽管分层面积低,但由于每分层面积的高冲击能(IEDA),芳纶纤维增强复合材料(AAA)表现出最高的总冲击能。根据厚度的变化,芳纶纤维和玻璃纤维增​​强的复合材料表现出不同的冲击性能。这归因于薄片之间的界面处的能量吸收的差异。

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