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Structure and properties of syndiotactic polystyrene fibers prepared in high-speed melt spinning process

机译:高速熔纺过程中间同立构聚苯乙烯纤维的结构与性能

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摘要

High-speed melt spinning of syndiotactic polystyrene was carried out using high and low molecular weight polymers, HMs-PS and LMs-PS, at the throughput rates of 3 and 6 g/min. The effect of take-up velocity on the structure and properties of as-spun fibers was investigated. Wide angle X-ray diffraction (WAXD) patterns of the as-spun fibers revealed that the orientation-induced crystallization started to occur at the take-up velocities of 2–3 km/min. The crystal modification wasα-form. Birefringence of as-spun fibers showed negative value, and the absolute value of birefringence increased with an increase in the take-up velocity. The cold crystallization temperature analyzed through the differential scanning calorimetry (DSC) decreased with an increase in the take-up velocity in the low speed region, whereas as the melting temperature increased after the on-set of orientation-induced crystallization. It was found that the fiber structure development proceeded from lower take-up velocities when the spinning conditions of higher molecular weight and lower throughput rate were adopted. The highest tensile modulus of 6.5 GPa was obtained for the fibers prepared at the spinning conditions of LMs-PS, 6 g/min and 5 km/min, whereas the highest tensile strength of 160 MPa was obtained for the HMs-PS fibers at the take-up velocity of 2 km/min. Elongation at break of as-spun fibers showed an abrupt increase, which was regarded as the brittle-ductile transition, in the low speed region, and subsequently decreased with an increase in the take-up velocity. There was a universal relation between the thermal and mechanical properties of as-spun fibers and the birefringence of as-spun fibers when the fibers were still amorphous. The orientation-induced crystallization was found to start when the birefringence reached — 0.02. After the starting of the orientation-induced crystallization, thermal and mechanical properties of as-spun fibers with similar level of birefringence varied significantly depending on the processing conditions.
机译:间规聚苯乙烯的高速熔融纺丝是使用高分子量和低分子量聚合物HMs-PS和LMs-PS进行的,吞吐速率分别为3和6 g / min。研究了卷取速度对初纺纤维结构和性能的影响。初纺纤维的广角X射线衍射(WAXD)模式表明,取向诱导的结晶以2–3 km / min的卷取速度开始发生。晶体修饰为α-形式。初纺纤维的双折射为负值,并且双折射的绝对值随卷取速度的增加而增加。通过差示扫描量热法(DSC)分析的冷结晶温度随着低速区域中卷取速度的增加而降低,而随着取向诱导结晶开始后熔融温度的升高。发现当采用较高分子量和较低吞吐率的纺丝条件时,纤维结构的发展是从较低的卷绕速度开始的。在LMs-PS的纺丝条件下(6 g / min和5 km / min)获得的纤维的最高拉伸模量为6.5 GPa,而在LMs-PS的纺丝条件下获得的最高拉伸强度为160 MPa。收线速度为2 km / min。初纺纤维的断裂伸长率在低速区域显示出急剧的增加,这被认为是脆性-延性转变,随后随着卷取速度的增加而降低。当纤维仍为非晶态时,初纺纤维的热和机械性能与初纺纤维的双折射之间存在普遍关系。发现当双折射达到-0.02时,取向诱导的结晶开始。在取向诱导的结晶开始之后,具有相似双折射水平的初纺纤维的热和机械性能会根据加工条件而发生显着变化。

著录项

  • 来源
    《Fibers and Polymers》 |2005年第1期|19-27|共9页
  • 作者单位

    Department of Organic and Polymeric Materials Graduate School of Science and Engineering Tokyo Institute of Technology 152-8552 Tokyo Japan;

    Department of Organic and Polymeric Materials Graduate School of Science and Engineering Tokyo Institute of Technology 152-8552 Tokyo Japan;

    Department of Organic and Polymeric Materials Graduate School of Science and Engineering Tokyo Institute of Technology 152-8552 Tokyo Japan;

    Department of Organic and Polymeric Materials Graduate School of Science and Engineering Tokyo Institute of Technology 152-8552 Tokyo Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Syndiotactic polystyrene; High-speed melt spinning; Orientation-induced crystallization; Negative birefringence;

    机译:间规聚苯乙烯;高速熔体纺丝;取向诱导结晶;负双折射;

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