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Moisture absorption studies of sisal fibre reinforced polypropylene composites

机译:剑麻纤维增强聚丙烯复合材料的吸湿研究

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In this research, sisal fibre reinforced polypropylene (SF/PP) composites were prepared by injection moulding using a pre-coating technique that we have developed earlier. The composite specimens were subjected to hot water immersion treatment at 90 deg C for different durations. The effects of the immersion treatment on the tensile and impact fracture characteristics were investigated. The apparent weight gain and weight loss curves were constructed. From the weight loss curves for the individual composites, the weight loss within the induction period was negligible. At the end of the induction period, the weight loss increased sharply. Due to the weight loss and the formation of additional moisture diffusion paths as immersion treatment proceeds, the apparent weight gain was non-Fickian. Both the tensile modulus and tensile strength of the SF/PP composites decreased continuously with increasing water immersion time. On the contrary, the Izod impact strength increased initially with immersion treatment. After reaching the maximum impact strength, the impact strength was found to decrease with further increase in immersion time. These contradictory behaviours between the tensile and impact properties were explained by the plasticization of the SF/PP interface and the swelling of the reinforcing sisal fibres.
机译:在这项研究中,剑麻纤维增强聚丙烯(SF / PP)复合材料是使用我们之前开发的预涂层技术通过注塑成型制备的。将复合材料样品在90摄氏度下进行不同时间的热水浸泡处理。研究了浸渍处理对拉伸和冲击断裂特性的影响。绘制了表观的体重增加和体重减轻曲线。从各个复合材料的重量损失曲线,诱导期间的重量损失可以忽略不计。在诱导期结束时,体重减轻急剧增加。由于重量减轻以及在浸入处理过程中形成额外的水分扩散路径,因此表观重量增加是非菲克式的。 SF / PP复合材料的拉伸模量和拉伸强度都随着浸水时间的增加而连续降低。相反,伊佐德冲击强度最初通过浸渍处理而增加。达到最大冲击强度后,发现冲击强度随着浸入时间的进一步增加而降低。 SF / PP界面的增塑和增强的剑麻纤维的膨胀解释了拉伸性能和冲击性能之间的这些矛盾行为。

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