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Aligned discontinuous intermingled reclaimed/virgin carbon fibre composites for high performance and pseudo-ductile behaviour in interlaminated carbon-glass hybrids

机译:排列不连续的混杂再生/原始碳纤维复合材料,在层状碳-玻璃混合材料中具有高性能和拟延性性能

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Highly aligned intermingled fibre composites are produced from reclaimed and virgin carbon fibres using the High Performance Discontinuous Fibre (HiPerDiF) method. The stiffness and strength characteristics of these materials are studied as a function of the reclaimed to virgin fibres ratio. Interlaminated hybrid composites with discontinuous carbon fibre preforms sandwiched between continuous glass fibres are designed to demonstrate pseudo-ductility and allow investigation of the effect of the mixing ratio of reclaimed and virgin carbon fibres on the nonlinear stress-strain curve shape. The pseudo-ductile behaviour is explained by adapting the Damage Mode Map to describe the failure process of inter laminated hybrid specimens with different low elongation material strength. It is concluded that the HiPerDiF method is a valuable platform to remanufacture reclaimed carbon fibres into a high performance and potentially economical value recycled composite material. The Damage Mode Maps can be used to optimise the pseudo-ductile response of the interlaminated hybrid material. (C) 2017 The Authors. Published by Elsevier Ltd.
机译:使用高性能不连续纤维(HiPerDiF)方法,从再生碳纤维和原始碳纤维生产出高度对齐的混合纤维复合材料。研究了这些材料的刚度和强度特性与再生纤维与原始纤维比率的关系。设计将夹层不连续碳纤维预制件夹在连续玻璃纤维之间的层间混合复合材料,以证明其具有假延展性,并允许研究再生碳纤维和原始碳纤维的混合比对非线性应力-应变曲线形状的影响。通过采用损伤模式图来描述伪延性行为,以描述具有不同低伸长率材料强度的层间混合试样的破坏过程。结论是,HiPerDiF方法是将再生碳纤维再制造为高性能和潜在经济价值的循环利用复合材料的宝贵平台。损伤模式图可用于优化夹层杂化材料的拟延性响应。 (C)2017作者。由Elsevier Ltd.发布

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