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The hydrolysis and recrystallisation of lyocell and comparative cellulosic fibres in solutions of mineral acid

机译:无机酸溶液中莱赛尔纤维和对比纤维素纤维的水解和重结晶

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摘要

Regenerated cellulosic fibres undergo a process described as scission-reordering during hydrolysis in solutions of mineral acid. This occurs within disordered polymer regions at lateral crystal interfaces, which are accessible to aqueous agents through the pore spaces and polymer free volume. This process is distinct from that of oligomer-solubilsation, which occurs within disordered polymer regions in series between crystal domains, where no effective template exists for recrystallisation. The degradation of series disorder will have the greatest influence on fibre tensile properties, which fall dramatically even at low levels of hydrolysis. The mechanics of fibrillation are most sensitive to the degradation of lateral disorder, which occurs at a higher rate constant. Soft-touch fabric processing may therefore be possible under conditions where there is a reduced influence on tensile performance. A kinetic model has been proposed to describe the hydrolysis and recrystallisation pathways, which shows that lyocell has longer but thinner crystal domains than viscose or modal fibres, and also a tighter distribution of lateral crystal sizes. Lyocell also has a lower proportion of series disorder and also thinner regions of lateral disorder. This is consistent with the overall greater crystallinity of the original lyocell fibre and the also of the final microscrystalline product.
机译:再生纤维素纤维在无机酸溶液中的水解过程中经历了断裂重排序的过程。这发生在侧向晶体界面处的无序聚合物区域内,水性试剂可通过孔空间和聚合物自由体积接近该区域。该过程不同于低聚物溶解的过程,后者发生在晶体域之间串联的无序聚合物区域内,其中没有有效的模板用于重结晶。级数无序的降解将对纤维的拉伸性能产生最大的影响,即使在低水平的水解下,纤维的拉伸性能也会急剧下降。纤颤的机理对横向紊乱的降解最敏感,横向紊乱的发生率较高。因此,在对拉伸性能的影响降低的条件下,可以进行柔软的织物处理。已经提出了动力学模型来描述水解和重结晶途径,该动力学模型表明,莱赛尔比粘胶纤维或莫代尔纤维具有更长但更薄的晶畴,并且横向晶体尺寸的分布更紧密。莱赛尔的系列疾病比例也较低,横向疾病的区域也较薄。这与原始的莱赛尔纤维以及最终的微晶产品的整体更大的结晶度是一致的。

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