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Stitched mendable composites: Balancing healing performance against mechanical performance

机译:缝线可修补复合材料:平衡愈合性能和机械性能

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摘要

The effect of through-the-thickness stitching with thermoplastic filaments on the healing efficiency and mechanical properties of mendable carbon epoxy composites is investigated. Stitching with filaments of polyethylene-co-methacrylic acid (EMAA) provides composite materials with high delamination resistance and self-healing efficiency, but at the expense of reduced mechanical properties. The modes I and II interlaminar fracture toughness properties and healing performance are improved greatly by thermoplastic stitching. However, stitching reduces the tensile and compressive properties of mendable composites. Experimental research reveals that the delamination toughness and healing properties increase whereas the mechanical properties decrease with increasing areal density or size of the mendable stitches. However, the percentage improvements to the interlaminar fracture toughness (in the order of 35-650%) and healing efficiency (50-250%) are much greater than the reductions to the mechanical properties (less than 50%) caused by thermoplastic stitching. (C) 2014 Elsevier Ltd. All rights reserved.
机译:研究了热塑性细丝的全厚度缝合对可修补碳环氧复合材料的愈合效率和机械性能的影响。用聚乙烯-甲基丙烯酸丙烯酸酯(EMAA)的丝线进行缝合可为复合材料提供高抗分层性和自修复效率,但以降低的机械性能为代价。热塑性缝制极大地改善了I和II型层间断裂韧性和愈合性能。但是,缝合会降低可修补复合材料的拉伸和压缩性能。实验研究表明,随着面密度或可缝合线迹尺寸的增加,分层韧性和愈合性能增加,而机械性能下降。但是,层间断裂韧性(约35-650%)和愈合效率(50-250%)的改善百分比远大于热塑性缝合导致的机械性能下降(小于50%)。 (C)2014 Elsevier Ltd.保留所有权利。

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