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Development of novel silk/wool hybrid fibre polypropylene composites

机译:新型丝/毛混杂纤维聚丙烯复合材料的开发

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摘要

Recycling and reusing fibrous waste is one of the most important environmental tasks that face the world, to reduce environmental loading and promote the most effective use of resources. In this study, the shuttle-less loom silk selvedge waste and wool fibres were used to produce functional composites. First, the silk selvedge waste was opened and converted into fibrous form. The opened silk fibres were mixed with wool and polypropylene staple fibres in the proportions of 35/15/50, 35/35/30 and 15/35/50. The functional composites were produced by compression moulding technique with optimum process conditions. The effect of silk and wool fibre content on the mechanical properties of silk/wool hybrid fibre polypropylene composites was studied by measuring the tensile strength, flexural strength and impact strength of the resultant composite material. The thermal conductivity and water uptake properties of the composites were also studied. The morphology of silk/wool hybrid fibre polypropylene composites was analyzed by scanning electron microscopy technique. It was found that the composite containing 35/15/50 silk/wool/polypropylene showed the best performance in mechanical properties. The tensile, flexural and impact strengths of 35/15/50 silk/wool/polypropylene composite sample were found to be 30.21 MPa, 19.88 MPa and 0.713 J, respectively. The results also showed that the thermal conductivity was the least while the silk and wool fibre contents were the most in the composite. The water absorption study showed that the composite containing more fibre content possessed maximum water uptake properties. The study strongly suggests that the silk/wool hybrid fibre polypropylene composite materials are quite capable of serving as a potential cost effective, technologically viable, and attractive substitute to the conventional glass epoxy composites used as electrical insulating materials in printed circuit boards.
机译:回收和再利用纤维废料是全世界面临的最重要的环境任务之一,以减少环境负荷并促进对资源的最有效利用。在这项研究中,无梭织机的丝织边废料和羊毛纤维被用于生产功能性复合材料。首先,将丝边废料打开并转化为纤维状。将打开的丝纤维与羊毛和聚丙烯短纤维以35/15 / 50、35 / 35/30和15/35/50的比例混合。功能性复合材料是通过压缩成型技术在最佳工艺条件下生产的。通过测量所得复合材料的拉伸强度,弯曲强度和冲击强度,研究了蚕丝和羊毛纤维含量对蚕丝/羊毛杂化纤维聚丙烯复合材料力学性能的影响。还研究了复合材料的导热性和吸水性能。通过扫描电子显微镜技术分析了丝/羊毛杂化纤维聚丙烯复合材料的形貌。发现含有35/15/50的丝/羊毛/聚丙烯的复合材料在机械性能方面表现出最好的性能。 35/15/50丝/羊毛/聚丙烯复合材料样品的拉伸强度,弯曲强度和冲击强度分别为30.21 MPa,19.88 MPa和0.713J。结果还表明,在复合材料中,导热系数最小,而丝和羊毛纤维含量最大。吸水率研究表明,纤维含量更高的复合材料具有最大的吸水性能。该研究强烈表明,丝/羊毛杂化纤维聚丙烯复合材料能够完全替代印刷电路板中用作电绝缘材料的常规玻璃环氧复合材料,从而具有潜在的成本效益,技术可行性和有吸引力的替代品。

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