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Structure and properties liquid crystal polymer and poly < ethylene 2,6-naphthalate > blend fibers of thermotropic

机译:液晶聚合物与聚 1,2,6-萘二甲酸乙二酯>热致性混纺纤维的结构与性能

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BACKGROUND: The melt blending of thermotropic liquid crystal polymers (TLCPs) using conventional thermoplastics has attracted much attention due to the improved strength and tensile modulus of the resulting polymer composites. Moreover, because of their low melt viscosity, the addition of small amounts of TLCPs can reduce the melt viscosity of polymer blends, thereby enhancing the processability. RESULTS: In this study, TLCP/poly(ethylene 2,6-naphthalate) (PEN) blend fibers were prepared by melt blending and melt spinning to improve fiber performance and processability. The relation between the structure and the mechanical properties of TLCP/PEN blend fibers and the effect of annealing on these properties were also investigated. The mechanical properties of the blend fibers were improved by increasing the spinning speed and by adding TLCP. These properties of the blend fibers were also improved by annealing. The tensile strength of TLCP5/PEN spun at a spinning speed of 2.0 km h(-1) and annealed at 235 degrees C for 2 h was about three times higher than that of TLCP5/PEN spun at a spinning speed of 0.5km h(-1). The double melting behavior observed in the annealed fibers depended on the annealing temperature and time. CONCLUSION: The improvement of the mechanical properties of the blend fibers with spinning speed, by adding TLCP and by annealing was attributed to an increase in crystallite size, an increase in the degree of crystallinity and an improvement in crystal perfection. The double melting behavior was influenced by the distribution in lamella thickness that occurred because of a melt-reorganization process during differential scanning calorimetry scans. (C) 2007 Society of Chemical Industry.
机译:背景:由于改善了所得聚合物复合材料的强度和拉伸模量,因此使用常规热塑性塑料进行热致液晶聚合物(TLCP)的熔融共混备受关注。而且,由于它们的低熔体粘度,添加少量的TLCP可以降低聚合物共混物的熔体粘度,从而提高加工性能。结果:在本研究中,通过熔融共混和熔融纺丝制备了TLCP /聚2,6-萘二甲酸乙二醇酯(PEN)共混纤维,以改善纤维性能和可加工性。还研究了TLCP / PEN共混纤维的结构与力学性能之间的关系,以及退火对这些性能的影响。通过提高纺丝速度和添加TLCP,可以改善共混纤维的机械性能。共混纤维的这些性能也通过退火得到改善。在2.0 km h(-1)的纺丝速度下纺丝并在235摄氏度退火2 h的TLCP5 / PEN的拉伸强度比在0.5 km h的纺丝速度的TLCP5 / PEN的拉伸强度高约三倍( -1)。在退火纤维中观察到的双重熔化行为取决于退火温度和时间。结论:通过添加TLCP和通过退火,混纺纤维的机械性能随纺丝速度的提高归因于微晶尺寸的增加,结晶度的提高和晶体完美度的提高。由于在差示扫描量热法扫描期间的熔体重组过程而发生的薄层厚度分布影响了双重熔融行为。 (C)2007年化学工业协会。

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