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Improved impact performance of marine sandwich panels using through-thickness reinforcement: Experimental results

机译:使用增厚膜增强船用夹芯板的冲击性能:实验结果

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This paper presents results from a test developed to simulate the water impact (slamming) loading of sandwich boat structures. A weighted elastomer ball is dropped from increasing heights onto rigidly supported panels until damage is detected. Results from this test indicate that honeycomb core sandwich panels, the most widely used material for racing yacht hulls, start to damage due to core crushing at impact energies around 550 J. Sandwich panels of the same areal weight and with the same carbon/epoxy facings but using a novel foam core reinforced in the thickness direction with pultruded carbon fibre pins, do not show signs of damage until above 1200J impact energy. This suggests that these will offer significantly improved resistance to wave impact. Quasi-static test results cannot be used to predict impact resistance here as the crush strength of the pinned foam is more sensitive to loading rate than that of the honeycomb core.
机译:本文介绍了为模拟三明治船结构的水冲击(撞击)载荷而开发的测试结果。将已加重的弹性球从增加的高度掉落到牢固支撑的面板上,直到检测到损坏为止。该测试的结果表明,蜂窝芯夹心板是赛车游艇船体中使用最广泛的材料,由于在550 J左右的冲击能量下芯子被挤压而开始损坏。相同面积重量和相同碳/环氧面层的夹心板但是使用在厚度方向上用拉挤的碳纤维销钉增强的新型泡沫芯,直到超过1200J的冲击能,才会显示出损坏的迹象。这表明这些将大大提高抗波浪冲击的能力。此处无法使用准静态测试结果来预测抗冲击性,因为固定泡沫的抗压强度比蜂窝芯的抗压强度对加载速率更为敏感。

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