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Short Nylon 6 Fibre Reinforced Polystyrene/Natural Rubber Blends: Effect of Maleated-Polystyrene Compatibiliser

机译:短尼龙6纤维增强聚苯乙烯/天然橡胶共混物:马来化聚苯乙烯增容剂的作用

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摘要

Nylon 6 short fibre was used to prepare composites based on blends of 85/15 Polystyrene (PS)/Natural rubber (NR) to study the effects of surface modification of the fibres and a compatibiliser based on PS. Initially, the loading of fibre, cut to 6 mm length, was varied from 0 to 3 wt.% in a 85/15 PS/NR blend. The composites were prepared on a Thermo Haake Rheocord mixer at 170 °C and sheeted out on a two-roll mill. Tensile, flexural and impact test samples were punched out from sheets and tested to study the mechanical and dynamic mechanical properties. It was found mat the tensile properties, flexural properties and impact strength increased with the fibre content up to 1 wt.%, above which there was a significant deterioration in the properties. The fibre surface was further modified by alkali treatment and a reactive compatibiliser based on maleic anhydride-grafted-polystyrene (MA-g-PS) was used in an effort to improve the performance of the composites. The treated Nylon fibre in conjunction with the compatibiliser improved the tensile properties, flexural properties and impact strength. Dynamic mechanical analysis showed that by using the modified fibre and the compatibiliser, the storage modulus of the composite could be significantiy improved. The fibre-matrix morphology was studied by SEM analysis of the tensile fractured specimens. Examination of the fibre extracted from the treated fibre composites revealed that some fraction of the matrix was bonded to the fibre surface. These results suggest that a combination of hydrolysed fibre and MA-g-PS increases the interfacial adhesion between the fibre and the matrix.
机译:尼龙6短纤维用于制备基于85/15聚苯乙烯(PS)/天然橡胶(NR)的混合物的复合材料,以研究纤维的表面改性效果以及基于PS的增容剂。最初,在85/15 PS / NR共混物中,切成6毫米长的纤维负载量从0到3 wt。%变化。在170°C的Thermo Haake Rheocord混合机上制备复合材料,并在两辊磨机上压成薄片。从片材上冲压出拉伸,弯曲和冲击测试样品,并进行测试以研究机械和动态机械性能。发现随着纤维含量高达1重量%,拉伸性能,挠曲性能和冲击强度增加,在此之上,性能显着劣化。纤维表面通过碱处理进一步改性,并使用基于马来酸酐接枝的聚苯乙烯(MA-g-PS)的反应性增容剂来改善复合材料的性能。经处理的尼龙纤维与相容剂一起改善了拉伸性能,弯曲性能和冲击强度。动态力学分析表明,通过使用改性纤维和增容剂,可以明显提高复合材料的储能模量。通过拉伸断裂试样的SEM分析研究了纤维-基质形态。对从处理过的纤维复合材料中提取的纤维的检查表明,基质的某些部分已结合到纤维表面。这些结果表明,水解纤维和MA-g-PS的组合增加了纤维与基质之间的界面粘合力。

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