首页> 外文期刊>Journal of Polymers and the Environment >Potential Use of Recycled PET in Comparison with Liquid Crystalline Polyester as a Dual Functional Additive for Enhancing Heat Stability and Reinforcement for High Density Polyethylene Composite Fibers
【24h】

Potential Use of Recycled PET in Comparison with Liquid Crystalline Polyester as a Dual Functional Additive for Enhancing Heat Stability and Reinforcement for High Density Polyethylene Composite Fibers

机译:与液晶聚酯相比,可将再生PET用作增强高密度聚乙烯复合纤维热稳定性和增强性的双重功能添加剂

获取原文
获取原文并翻译 | 示例
           

摘要

The recycle poly(ethylene terephthalate) (rPET) used as an alternative reinforcing material for in situ microfibrillar-reinforced composite, compared with liquid crystalline polymer (LCP), was investigated. The PE-LCP and PE-rPET composites were prepared as fiber using hot drawing process. The effects of draw ratios and compati-bilizer (styrene-ethylene butylene-styrene-grafted maleic anhydride, SEBS-g-MA) loading on morphology, tensile properties, thermal stability and dynamic mechanical characteristics of the LCP- and rPET-composite systems were studied. In as-spun samples containing compatibiliz-er, the fibrillation of LCP domains was observed whereas rPET domains appeared as droplets. After drawing, good fibrillation of LCP and rPET domains is remarkably observed especially in the composite fibers with compati-bilizer loading. The mechanical properties of the composite fibers were strongly depended on the fibrillation of the dispersed phases which directly related the levels of draw ratio and compatibilizer loading. The mechanical properties enhanced by SEBS-g-MA were more pronounced in the rPET than LCP systems. The presence of rPET in the composite fibers alone or with the compatibilizer clearly improved the thermal resistance of PE whereas no significant change in thermal stability for the LCP-con-taining composite fibers with and without compatibilizer loading. The results from dynamic mechanical analysis revealed that an improvement in dynamic mechanical properties of the composite fibers could be achieved by drawing with optimum draw ratio together with optimum compatibilizer dosage. All obtained results suggested the high potential of rPET minor blend-component as a good reinforcing and thermal resistant materials for the thermoplastic composite fiber, in replacing the more expensive LCP.
机译:与液晶聚合物(LCP)相比,研究了用作原位微原纤增强复合材料的替代增强材料的循环聚对苯二甲酸乙二醇酯(rPET)。 PE-LCP和PE-rPET复合材料采用热拉伸工艺制成纤维。拉伸比和相容剂(苯乙烯-乙烯-丁烯-苯乙烯接枝的马来酸酐,SEBS-g-MA)负载量对LCP和rPET复合体系的形貌,拉伸性能,热稳定性和动态力学性能的影响研究。在含有增容剂的初纺样品中,观察到了LCP结构域的原纤维化,而rPET结构域则以液滴的形式出现。拉伸后,尤其是在具有增容剂负载的复合纤维中,LCP和rPET域的原纤化非常明显。复合纤维的机械性能在很大程度上取决于分散相的原纤化,这直接与拉伸比和增容剂含量有关。 SEPET-g-MA增强的机械性能在rPET中比LCP系统更为明显。单独或与增容剂混合的复合纤维中rPET的存在明显改善了PE的耐热性,而无论是否添加增容剂,含LCP的复合纤维的热稳定性均无明显变化。动态力学分析的结果表明,通过以最佳拉伸比和最佳增容剂用量进行拉伸,可以改善复合纤维的动态力学性能。所有获得的结果表明,rPET次要共混组分作为热塑性复合纤维的良好增强和耐热材料的巨大潜力,可以代替更昂贵的LCP。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号