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Quantitative analysis of entropic stress effect on the structural rearrangement during pre-stabilization of PAN precursor fibers

机译:PAN前体纤维预稳定过程中熵应力对结构重排影响的定量分析

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摘要

The stress and temperature dependency of structural rearrangements of Polyacrylonitrile (PAN) fibers has been investigated during pre-stabilization step. Continuous pre-stabilization of a special grade PAN fiber has been carried out in four different temperatures under three distinct imposed stresses, namely Free Shrinkage, Zero Shrinkage and Under Stress treatments. Due to entropic relaxation during Free Shrinkage treatment, the crystallinity sharply decreases from 38.6% to 31.50% and the average orientation angle of amorphous segments along the fiber axis increases from 25.7 degrees to 31.06 degrees. Imposing dimensional constraints in Zero Shrinkage treatment shows improvement in structural perfection with an increase in crystallinity and crystallite thickness, while average orientation angle of amorphous segments decreases to 22.92 degrees. The contribution of temperature and higher imposed stress in Under Stress treatment causes a reduction of average orientation angle of amorphous segments to 19.33 degrees, leading to incorporation of straight and oriented amorphous chains in the paracrystalline region followed by an increase of crystallinity up to 47.61%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在预稳定步骤中,已经研究了聚丙烯腈(PAN)纤维结构重排的应力和温度依赖性。特殊等级PAN纤维的连续预稳定化是在四个不同的温度下,在三种不同的外加应力下进行的,即自由收缩,零收缩和承受应力的处理。由于自由收缩处理过程中的熵松弛,结晶度从38.6%急剧下降到31.50%,无定形链段沿纤维轴的平均取向角从25.7度增加到31.06度。在零收缩处理中施加尺寸约束表明,随着结晶度和微晶厚度的增加,结构完善性得到改善,而非晶链段的平均取向角减小至22.92度。温度和欠应力处理中较高的施加应力导致非晶链段的平均取向角降低至19.33度,导致在顺晶区中掺入了直链和定向非晶链,随后结晶度提高了47.61%。 (C)2016 Elsevier Ltd.保留所有权利。

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