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Experimental investigation on impact response of sandwich composites integrated with a novel 3D multi-layer stitched core

机译:新型三维多层缝合芯集成夹层复合材料冲击响应试验研究

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摘要

Impact damage resistance of the sandwich composites affects the structure reliability and crucially depends on the core. The weak junction of core unit-cell walls causes a catastrophic failure on sandwich composites under impact load. Stitching is an efficient and easy way to obtain the strengthened core unit-cells. In this study, the impact behavior of glass/epoxy face sandwich composites integrated with a novel 3D multi-layer stitched core were investigated. The peak forces and absorbed energy of sandwich composites were increased as the number of core layer increased. The increase in core layers and core dimensions caused more flexible sandwich composites. The core was more effective in the energy absorption mechanism of the sandwich composites than faces with the increased stitching density and decreased unit-cell size of core. The number of core layers, dimensions of core unit-cells and stitching density were found to be most important parameters for the impact failure of sandwich composites.
机译:夹层复合材料的抗冲击损伤性会影响结构的可靠性,并且关键取决于芯材。核心晶胞壁的弱连接在冲击载荷下导致夹层复合材料发生灾难性破坏。缝合是获得强化核心晶胞的一种有效且简单的方法。本研究研究了玻璃/环氧树脂面夹芯复合材料与新型三维多层缝合芯材的冲击行为。夹层复合材料的峰值力和吸收能量随着芯层数量的增加而增加。芯层和芯尺寸的增加导致了更柔韧的夹层复合材料。随着缝合密度的增加和晶胞尺寸的减小,芯体在夹层复合材料的能量吸收机制中比面更有效。芯层数、芯胞尺寸和拼接密度是影响夹层复合材料冲击破坏的最重要参数。

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