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Structure and properties development in poly(phenylene sulfide) fibers. II. Effect of one-zone draw annealing

机译:聚苯硫醚纤维的结构和性能发展。二。一区拉伸退火的效果

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摘要

In this article, we discuss the role of one-zone drawing followed by annealing in enhancing the structure and properties of fibers manufactured from Fortron? linear poly(phenylene sulfide) resins. The interaction effects of the polymer molecular weight (MW), melt-spinning process parameters, and draw-annealing process conditions were also elucidated. Several tools used to probe the investigation were tensile testing, differential scanning calorimetry, polarized light optical microscopy, wide-angle X-ray scattering, and small-angle X-ray scattering. This study showed that the optimum drawing temperature was around 95°C. A considerable improvement in the fiber tensile properties was observed upon drawing and annealing under optimum processing conditions. Fibers with tenacities close to 5 g/den were obtained. The development of the tensile properties was statistically correlated with the morphological changes in the fibers. The routes to achieving fibers with optimum tensile properties were shown to be different for resins with different MWs.
机译:在本文中,我们讨论了单区拉伸然后退火在增强Fortron®制造的纤维的结构和性能方面的作用。线性聚苯硫醚树脂。还阐明了聚合物分子量(MW),熔体纺丝工艺参数和拉伸退火工艺条件的相互作用。用于调查研究的几种工具是拉伸测试,差示扫描量热法,偏光光学显微镜,广角X射线散射和小角X射线散射。这项研究表明,最佳拉伸温度约为95°C。在最佳加工条件下进行拉伸和退火后,可以观察到纤维拉伸性能的显着改善。获得具有接近5g / den的强度的纤维。拉伸性能的发展与纤维的形态变化在统计学上相关。对于具有不同分子量的树脂,获得具有最佳拉伸性能的纤维的途径显示出不同。

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