首页> 外文期刊>Polymer Engineering Reviews >THE ROLE OF MACROMOLECULAR ENTANGLEMENTS IN THE GEL SPINNING PROCESS AND PROPERTIES OF HIGH PERFORMANCE POLYACRYLONITRILE FIBERS
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THE ROLE OF MACROMOLECULAR ENTANGLEMENTS IN THE GEL SPINNING PROCESS AND PROPERTIES OF HIGH PERFORMANCE POLYACRYLONITRILE FIBERS

机译:高分子缠结在凝胶纺丝过程中的作用及高性能聚丙烯腈纤维的性能

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摘要

The mode of macromolecular entanglements may be varied and complicated. In most cases, the entanglement is generally just a looping between two molecular chains. In the formation process of ultrahigh-molecular-weight acrylic fibers by gel spinning, the influence of entanglements is present everywhere. The ultrahigh-molecular-weight polymer was born entangled; the chains may even form networks. To facilitate formation, the entanglements in the concentrated polymer solution must be properly controlled. The network structure may endow elasticity to the system, which is responsible for such peculiar rheological properties as die swell, Weissenberg effect, melt or solution fracture, etc. Part of the entanglements remaining in the finished fiber texture may affect the mechanical properties of the fiber, such as loop strength, tensile stress-strain properties, etc. The results given in this pertain partly to ordinary high molecular weight and partly to ultrahigh-molecular-weight polyacrylonitrile. [References: 20]
机译:高分子缠结的方式可以变化和复杂。在大多数情况下,缠结通常只是两个分子链之间的环。在通过凝胶纺丝形成超高分子量丙烯酸纤维的过程中,缠结的影响无处不在。超高分子量聚合物缠结在一起。这些链甚至可以形成网络。为了促进形成,必须适当控制浓聚合物溶液中的缠结。网状结构可以赋予系统弹性,这是造成模流变,Weissenberg效应,熔体或固溶体断裂等特殊流变性质的原因。最终纤维质地中残留的部分缠结可能会影响纤维的机械性能。例如环强度,拉伸应力-应变特性等。由此给出的结果部分与普通高分子量有关,部分与超高分子量聚丙烯腈有关。 [参考:20]

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