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Fabrication and Characterization of Lightweight Engineered Polypropylene Composites Using Silica Particles and Flax Woven Comingled Structure

机译:用二氧化硅颗粒和亚麻编织梳理结构的轻质工程聚丙烯复合材料的制造与表征

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The focus of the current study was the fabrication of woven comingled fabrics using flax and polypropylene yarns to improve the impregnation of flax reinforcing yarn in the polypropylene matrix. Hollow glass microspheres (HGM) as fillers were incorporated to tailor the mechanical properties of the resultant comingled composites. The dip and dry method was used to deposit the HGM on these comingled fabrics to achieve uniform distribution of hollow silica particles. Cross-ply composites were fabricated by these comingled fabrics using compression moulding technique. The mechanical properties were measured in terms of tensile, flexural and impact strength. Furthermore, the effect of HGM loading (1.5 and 3%) on mechanical properties was studied and compared with control composites prepared without HGM. It was observed that 1.5% inclusion of HGM had imparted an increase of 13.8 and 5.6% in the tensile strength and modulus respectively by enhancing the brittle-ness of the composites. However, a further increase in the HGM content from 1.5 to 3% had exhibited a decline of 10.2 and 8.8% in the tensile strength and modulus owing to the agglomeration of silica particles. A similar trend was observed in the flexural properties of the laminates. While, an increment of 10.4% and 18.2% was observed in the impact strength of the fabricated composite laminates by the loading of 1.5% and 3% HGM respectively.
机译:目前研究的重点是使用亚麻和聚丙烯纱线制造编织梳理织物,以改善聚丙烯基质中的亚麻增强纱的浸渍。作为填料的中空玻璃微球(HGM)掺入,以定制所得梳理复合材料的机械性能。浸渍和干法用于将HGM沉积在这些梳理织物上,以实现中空二氧化硅颗粒的均匀分布。使用压缩成型技术通过这些梳理织物制造交叉层复合材料。在拉伸,弯曲和冲击强度方面测量机械性能。此外,研究了HGM负载(1.5和3%)对机械性能的影响,并与没有HGM的控制复合材料进行比较。观察到,通过增强复合材料的脆性,分别在拉伸强度和模量中赋予的1.5%掺入了13.8%和5.6%。然而,由于二氧化硅颗粒的附聚,从1.5%到3%的HGM含量的进一步增加率在拉伸强度和模量中表现出10.2和8.8%。在层压板的弯曲性质中观察到类似的趋势。虽然,在制造的复合材料层压板的冲击强度分别载入1.5%和3%HGM时,观察到10.4%和18.2%的增量。

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