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Flexural Properties of Wet-Laid Hybrid Nonwoven Recycled Carbon and Flax Fibre Composites in Poly-Lactic Acid Matrix

机译:聚乳酸基质中湿式混杂非织造再生碳纤维和亚麻纤维复合材料的弯曲性能

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Recycling carbon fibre is crucial in the reduction of waste from the increasing use of carbon fibre reinforced composites in industry. The reclaimed fibres, however, are usually short and discontinuous as opposed to the continuous virgin carbon fibre. In this work, short recycled carbon fibres (rCF) were mixed with flax and poly-lactic acid (PLA) fibres acting as the matrix to form nonwoven mats through wet-laying. The mats were compression moulded to produce composites with different ratios of rCF and flax fibre in the PLA matrix. Their flexural behaviour was examined through three-point-bending tests, and their morphological properties were characterised with scanning electron and optical microscopes. Experimental data showed that the flexural properties increased with higher rCF content, with the maximum being a flexural modulus of approximately 14 GPa and flexural strength of 203 MPa with a fibre volume fraction of 75% rCF and 25% flax fibre. The intimate mixing of the fibres contributed to a lesser reduction of flexural properties when increasing the flax fibre content.
机译:碳纤维的回收对于减少工业中碳纤维增强复合材料使用量的减少至关重要。然而,与连续的原始碳纤维相反,再生纤维通常是短且不连续的。在这项工作中,将短循环碳纤维(rCF)与亚麻和聚乳酸(PLA)纤维作为基质混合,通过湿法成网形成非织造毡。将垫压缩成型以产生在PLA基质中具有不同比率的rCF和亚麻纤维的复合材料。通过三点弯曲试验检查了它们的弯曲行为,并用扫描电子显微镜和光学显微镜表征了它们的形态特性。实验数据表明,弯曲性能随rCF含量的增加而增加,最大为大约14 GPa的弯曲模量和203 MPa的弯曲强度,纤维体积分数为75%rCF和亚麻纤维为25%。当增加亚麻纤维含量时,纤维的紧密混合有助于减少挠曲性能。

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