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Mechanical and fracture properties of cellulose-fibre-reinforced epoxy laminates

机译:机械和断裂的性质cellulose-fibre-reinforced环氧层压制品

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摘要

Epoxy laminates reinforced with cellulose-fibre mats (CFM) have been synthesized and characterized. The influence of CFM dispersion on the mechanical and fracture properties of these laminates have been characterized in terms of elastic modulus, hardness, flexural strength, fracture toughness, indentation responses, impact-fracture, crack-growth resistance and in situ fracture. The reinforcement by the CFM resulted in a significant increase in the strain at break, indentation creep, fracture toughness and impact toughness but moderate increase in flexural strength and flexural modulus. A pronounced R-curve behaviour is exhibited by the CFM-reinforced epoxy sample, which failed in a graceful manner with slow and stable crack-growth. The micromechanisms of toughening and crack-tip failure processes are identified and discussed in the light of observed microstructures from in situ and ex situ fracture. The implications for new approaches in the 'eco-design' of environmentally friendly composite materials are addressed.
机译:与纤维素纤维环氧复合材料加固垫(CFM)合成为特征。这些机械和断裂特性层压制品为特征的弹性模量、硬度、抗弯强度、断裂韧性,缩进反应,impact-fracture,裂纹扩展阻力和原位断裂。导致显著增加压力在打破,压痕蠕变断裂韧性和冲击韧性,但适度的增长弯曲强度和弯曲模量。明显R-curve行为表现出的CFM-reinforced环氧树脂样品,失败优雅的方式缓慢而稳定裂纹扩展。和有关的失败过程确定并讨论了在观测到的光从原位微观结构和非原位骨折。环境友好型的“生态设计”复合材料是解决。

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