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Structure-property relationship of carbon fibers derived from polyimide/polyacrylonitrile blends

机译:聚酰亚胺/聚丙烯腈共混物衍生碳纤维的结构 - 性质关系

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摘要

A series of polyimide/polyacrylonitrile (PI/PAN) blend fibers with different PAN weight ratios were prepared through a two-step wet-spinning method and stabilization process and then were carbonized at 1500 degrees C under high-purity nitrogen atmosphere, yielding in PI/PAN-derived carbon fibers. The effects of PAN content on the structures of the PI/PAN blend fibers were systematically investigated. The elemental composition, aggregation structure, carbon yields, and electrical properties of the PI/PAN-derived carbon fibers were also analyzed. The imidization degree and molecular orientation of the PI/PAN blend fibers increased first and then decreased with increasing PAN content, which directly affect the aggregation structures and properties of the corresponding PI/PAN-derived carbon fibers. As a consequence, the carbon fibers derived from PI/PAN-35% exhibited perfect graphite structure with a planar spacing d(002) of 0.349 nm, high carbon content of 97.14%, and low electrical resistivity of 1.89 x 10(-5) boldm/bold, attributing to the high degree of orientation along the fiber axis and low value of phi(a)/phi(c) in the PI/PAN blend fibers.
机译:通过两步湿纺法制料和稳定化方法制备具有不同泛重量比的一系列聚酰亚胺/聚丙烯腈(PI /锅)共混纤维,然后在高纯度氮气氛下在1500℃下碳化,屈服于PI /泛源性碳纤维。系统地研究了PAN含量对PI / PAN混合物纤维结构的影响。还分析了PI / PAN衍生的碳纤维的元素组成,聚集结构,碳产率和电性能。 PI / PAN共混纤维的酰亚胺化程度和分子取向首先增加,然后随着帕纳含量的增加而降低,这直接影响相应的PI /泛衍生的碳纤维的聚集结构和性质。因此,衍生自Pi / Pan-35%的碳纤维表现出完美的石墨结构,平面间距D(002)为0.349nm,高碳含量为97.14%,电阻率低1.89×10(-5) &粗体& m& / bold&,归因于沿光纤轴的高度取向和PI / PAN混合物纤维中的PHI(a)/ phi(c)的低值。

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