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Fiber Structure-Property Relationships: A Disulfide-Crosslinked Self-Crimping Polyamide

机译:纤维结构-性能关系:二硫化物交联的自卷曲聚酰胺

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摘要

A structural modification of nylon-6 fiber (polycaprolactam) was achieved by the introduction of a high density of intermolecular disulfide crosslinkages. The crosslinking process leads to an unexpected three-dimensional crimping in the dry and wet states (similar to wool), and to the formation of helical coils if swelling is carried out in a solvent capable of destroying the crystallites remaining after crosslinking. This phenomenon has not been observed previously in round cross-section synthetic homofibers. A possible explanation is advanced which attributes this crimping and coiling tendency to differential swelling caused by the varying crosslinking density across the fiber axis and to structural asymmetry resulting from the crosslinking process.
机译:通过引入高密度的分子间二硫键交联来实现尼龙6纤维(聚己内酰胺)的结构改性。交联过程会导致在干燥和潮湿状态下发生意外的三维卷曲(类似于羊毛),如果在能够破坏交联后残留微晶的溶剂中进行溶胀,则会形成螺旋线圈。以前在圆形截面的合成均纤维中未观察到此现象。提出了一种可能的解释,其将这种卷曲和卷曲趋势归因于纤维轴上交联密度的变化引起的不同溶胀以及交联过程导致的结构不对称。

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