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Inkjet printing of self-healing polymers for enhanced composite interlaminar properties

机译:用于增强复合材料层间性能的自修复聚合物的喷墨印刷

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摘要

Inkjet printing has been used to introduce an organic system that demonstrates thermally activated self-healing in composites. The organic system is composed of monomers that, when polymerised, are capable of thermally activated self-healing through a reversible Diels–Alder mechanism. After being synthesised the monomers were formulated into inks and inkjet printed on to carbon fibre epoxy prepreg. The polymers were co-cured with the prepreg into composite laminates and the effect on the interlaminar properties of the resultant system was investigated. A single ply at the mid-plane of double cantilever beam specimens was shown to increase the initiation (by NL Point) of the interlaminar fracture toughness by 9%. The interlaminar fracture toughness with regards to crack propagation was shown to increase further by up to 27%. Increases in apparent interlaminar shear strength as measured by short beam shear of up to 11% were also observed compared to unprinted controls. After a thermal treatment the short beam shear specimens are retested and the printed specimens are shown to have significantly smaller decreases in properties compared to the control which is consistent with repair in the interlaminar region.
机译:喷墨印刷已被用于引入有机体系,该体系证明了复合材料中的热活化自修复。有机体系由单体组成,这些单体在聚合后能够通过可逆的Diels-Alder机理进行热活化自我修复。合成后,将单体配制成油墨,然后喷墨印刷到碳纤维环氧预浸料上。将聚合物与预浸料共固化为复合层压板,并研究其对所得体系层间性能的影响。在双悬臂梁试样的中平面单层显示,层间断裂韧度的起始(按NL Point)增加了9%。与裂纹扩展相关的层间断裂韧性显示出进一步提高了27%。与未印刷的对照相比,还观察到通过短梁剪切测量的表观层间剪切强度增加了11%。热处理后,短梁剪切试样进行了重新测试,并且印刷后的试样与对照组相比,其性能下降明显较小,这与层间区域的修复相一致。

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