首页> 外文期刊>Composites Science and Technology >Establishment of multistage gradient modulus intermediate layer between fiber and matrix via designing double 'rigid-flexible' structure to improve interfacial and mechanical properties of carbon fiber/resin composites
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Establishment of multistage gradient modulus intermediate layer between fiber and matrix via designing double 'rigid-flexible' structure to improve interfacial and mechanical properties of carbon fiber/resin composites

机译:通过设计双层“刚性”结构的纤维与矩阵之间多级梯度模量中间层的建立,提高碳纤维/树脂复合材料的界面和力学性能

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摘要

The gradient modulus intermediate layer between CF and epoxy by designing double "rigid-flexible" structure using CNTs and polyamide (PA) on the CF surface was firstly established, and the effects of modulus intermediate layer on interfacial and mechanical properties of CF composites were investigated. The constructing of double "rigid-flexible" structure on the CF surface can greatly increase the polar functional groups, roughness and wettability of the CF surface as well as the thickness of intermediate layer, which could balance the modulus of fiber and resin to achieve the best matching. The interfacial shear strength (IFSS), interlaminar shear strength (ILSS), flexural strength, and impact strength of CF composites increased by 75.6%, 44.1%, 41.3%, and 34.6%, respectively. In addition, the interfacial failure behaviors and strengthening mechanisms of composites have been studied. This novel design and method built a multistage gradient modulus intermediate layer of composite with strong physicochemical interaction and good wettability, which has greatly potential for high-performance composite.
机译:首先建立了使用CNT和聚酰胺(PA)在CF表面上设计双“刚性柔性”结构的CF和环氧树脂之间的梯度模量中间层,研究了模量中间层对CF复合材料的界面和机械性能的影响。 CF表面上的双“刚性”结构的构建可以大大增加CF表面的极性官能团,粗糙度和润湿性以及中间层的厚度,这可能平衡纤维和树脂的模量来实现最好的匹配。 CF复合材料的界面剪切强度(Interlaminar剪切强度(ILS),弯曲强度和冲击强度分别增加了75.6%,44.1%,41.3%和34.6%。此外,已经研究了界面失效行为和加强复合材料的机制。这种新颖的设计和方法建立了一种多级梯度模量中间层,具有强大的物理化学相互作用和良好的润湿性,这具有很大的高性能复合材料的潜力。

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