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Fabrication of Fiber-Reinforced Single-Polymer Composites through Compression Molding of Bicomponent Fibers Prepared by High-Speed Melt Spinning Process

机译:通过高速熔融纺丝工艺制备的双组分纤维压缩成型制备纤维增强的单聚合物复合材料

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摘要

Fiber-reinforced single-polymer composites were fabricated through the compression molding of sheath-core bicomponent fibers consisting of low and high molecular weight poly(ethylene terephthalate), LMPET and HMPET, as the sheath and core components, respectively. The LMPET/HMPET bicomponent fibers were prepared through the high-speed melt spinning process. When the take-up velocity exceeded a certain level, orientation-induced crystallizaion started to occur in the HMPET while the LMPET remained in an amorphous state. After the starting of the crystallization of the HMPET in the melt spinning process, orientation relaxation of the LMPET proceeded. Accordingly, the sheath-core fibers consisting of the highly oriented and crystallized core component (HMPET) and the amorphous and low oriented sheath component (LMPET) were obtained. Compression molding of such sheath-core fibers was conducted at a temperature above the glass transition temperature and below the melting temperature of PET where the rubbery softening of the amorphous phase was utilized for the fusion of the sheath component to form matrix phase while maintaining the well-developed fiber structure of the core component intact. The fabricated fiber-reinforced single-polymer composites showed fairly high mechanical properties. Good recyclability of the composites is expected because the composites are consisting of only pure PET.
机译:纤维增强的单聚合物复合材料是通过压缩成型分别由低分子量和高分子量聚对苯二甲酸乙二酯,LMPET和HMPET组成的皮芯双组分纤维作为皮组分和芯组分制成的。 LMPET / HMPET双组分纤维是通过高速熔融纺丝工艺制备的。当卷取速度超过一定水平时,HMPET中开始发生取向诱导结晶,而LMPET保持非晶态。在熔体纺丝过程中开始HMPET的结晶后,LMPET的取向松弛得以进行。因此,获得了由高取向和结晶的芯组分(HMPET)和无定形和低取向的鞘组分(LMPET)组成的皮芯纤维。在高于玻璃化转变温度且低于PET的熔融温度的温度下进行这种皮芯纤维的压缩成型,其中非晶态相的橡胶状软化用于皮组分的熔融以形成基质相,同时保持良好的孔度。发达的纤维结构的核心部件完好无损。制成的纤维增强单聚合物复合材料显示出相当高的机械性能。由于复合材料仅由纯PET组成,因此预期复合材料具有良好的可回收性。

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  • 来源
    《繊維学会誌》 |2015年第5期|172-179|共8页
  • 作者单位

    Tokyo Inst Technol, Grad Sch Sci & Engn, Dept Organ & Polymer Mat, Tokyo, Japan;

    Tokyo Inst Technol, Grad Sch Sci & Engn, Dept Organ & Polymer Mat, Tokyo, Japan;

    Tokyo Inst Technol, Grad Sch Sci & Engn, Dept Organ & Polymer Mat, Tokyo, Japan;

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