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Manufacturing Pitch and Polyethylene Blends-Based Fibres as Potential Carbon Fibre Precursors

机译:制造沥青和聚乙烯共混物作为潜在的碳纤维前体的纤维

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摘要

The advantage of mesophase pitch-based carbon fibres is their high modulus, but pitch-based carbon fibres and precursors are very brittle. This paper reports the development of a unique manufacturing method using a blend of pitch and linear low-density polyethylene (LLDPE) from which it is possible to obtain precursors that are less brittle than neat pitch fibres. This study reports on the structure and properties of pitch and LLDPE blend precursors with LLDPE content ranging from 5 wt% to 20 wt%. Fibre microstructure was determined using scanning electron microscopy (SEM), which showed a two-phase region having distinct pitch fibre and LLDPE regions. Tensile testing of neat pitch fibres showed low strain to failure (brittle), but as the percentage of LLDPE was increased, the strain to failure and tensile strength both increased by a factor of more than 7. DSC characterisation of the melting/crystallization behaviour of LLDPE showed melting occurred around 120 °C to 124 °C, with crystallization between 99 °C and 103 °C. TGA measurements showed that for 5 wt%, 10 wt% LLDPE thermal stability was excellent to 800 °C. Blend pitch/LLDPE carbon fibres showed reduced brittleness combined with excellent thermal stability, and thus are a candidate as a potential precursor for pitch-based carbon fibre manufacturing.
机译:中间相沥青基碳纤维的优点是它们的高模量,但沥青基碳纤维和前体非常脆。本文报道了使用俯仰和线性低密度聚乙烯(LLDPE)的混合物的独特制造方法的发展,从中获得比整齐的凝固纤维更脆的前体。该研究报告了沥青和LLDPE混合物前体的结构和性质,LLDPE含量范围为5wt%至20wt%。使用扫描电子显微镜(SEM)测定纤维微观结构,其显示具有不同间距纤维和LLDPE区域的两相区域。整洁的沥青纤维的拉伸试验显示出低菌株(脆弱),但随着LLDPE的百分比增加,失效和拉伸强度的菌株增加了超过7. DSC表征熔化/结晶行为的DSC表征LLDPE显示熔化约120℃至124℃,结晶在99℃和103℃之间。 TGA测量显示,对于5wt%,10wt%的LLDPE热稳定性优异至800℃。融合间距/ LLDPE碳纤维显示出降低的脆性结合具有优异的热稳定性,因此是候选物作为俯仰基碳纤维制造的潜在前体。

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