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Mechanical Properties of Bio-Based Epoxy Composites Reinforced with Hybrid-Interlayer Ramie and Recycled Carbon Fibres

机译:用杂交层间苎麻和再生碳纤维加固生物基环氧复合材料的力学性能

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摘要

The growing environmental concerns have led to attention on bio-based composite materials, such as the natural fibres, recycled carbon fibres and bio-based resins. Herein, the bio-based epoxy composites were reinforced with ramie fibre (RF) and recycled carbon fibre (rCF) via inter-layer hybridisation. The dynamic mechanical analysis, tensile, flexural and impact properties characterisation were conducted to analyse the mechanical behaviour of the specimens. Also, the morphology of fractured surface after mechanical tests was studied under a scanning electron microscope. When the volume ratio between RF and rCF was varied from 100/0 to 0/100, the flexural and tensile strength of composites was significantly increased, while the impact strength was reduced. Thus the maximum values of flexural strength (182 MPa) and tensile strength (165 MPa) were observed for rCF reinforced composite, whilst impact strength of 24 kJ/m ~( 2 ) was found for RF reinforced composite. Furthermore, the values of storage and loss modulus were increased with the rCF incorporation due to a greater degree of restriction with the addition of rCF into the matrix. The hybridisation was able to combine the specific properties of RF and rCF and optimise the mechanical performance of composites. Therefore, the alternative low-cost green composites are prepared which can replace synthetic materials for semi-structural applications.
机译:不断增长的环境问题导致了对生物基复合材料的关注,例如天然纤维,再生碳纤维和生物基树脂。这里,通过层间杂交用苎麻纤维(RF)和再循环碳纤维(RCF)加强基于生物基环氧复合材料。进行动态力学分析,拉伸,弯曲和冲击性能表征以分析样品的力学行为。此外,在扫描电子显微镜下研究了机械测试后裂缝表面的形态。当RF和RCF之间的体积比从100/0至0/10000变化时,复合材料的弯曲和拉伸强度显着增加,而冲击强度降低。因此,对于RCF增强复合材料,观察到弯曲强度(182MPa)和拉伸强度(165MPa)的最大值,而RF增强复合材料发现24kJ / m〜(2)的冲击强度。此外,由于在将RCF添加到基质中,RCF掺入增加了储存和损失模量的值。杂交能够结合RF和RCF的特定性质,并优化复合材料的机械性能。因此,制备替代的低成本绿色复合材料,其可以代替半结构应用的合成材料。

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