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Effect of fiber surface treatments on the fiber-matrix interaction in banana fiber reinforced polyester composites

机译:纤维表面处理对香蕉纤维增强聚酯复合材料中纤维与基质相互作用的影响

摘要

Cellulosic fibers have been used as cost-cutting fillers in plastic industry. Among the various factors, the final performance of the composite materials depends to a large extent on the adhesion between the polymer matrix and the reinforcement and therefore on the quality of the interface. To achieve optimum performance of the end product, sufficient interaction between the matrix resin and the cellulosic material is desired. This is often achieved by surface modification of the resin or the filler. Banana fiber, the cellulosic fibers obtained from the pseudo-stem of banana plant (Musa sepientum) is a bast fiber with relatively good mechanical properties. The fiber surface was modified chemically to bring about improved interfacial interaction between the fiber and the polyester matrix. Various silanes and alkali were used to modify the fiber surface. Modified surfaces were characterized by SEM and FTIR. The polarity parameters of the chemically modified fibers were investigated using the solvatochromic technique. The results were further confirmed by electrokinetic measurements. Chemical modification was found to have a profound effect on the fiber-matrix interactions. The improved fiber-matrix interaction is evident from the enhanced tensile and flexural properties. The lower impact properties of the treated composites compared to the untreated composites further point to the improved fiber-matrix adhesion. In order to know more about the fiber-matrix adhesion, fractured surfaces of the failed composites where further investigated by SEM. Of the various chemical treatments, simple alkali treatment with NaOH of 1% concentration was found to be the most effective. The fiber-matrix interactions were found to be dependent on the polarity of the modified fiber surface
机译:纤维素纤维已在塑料工业中用作降低成本的填料。在各种因素中,复合材料的最终性能在很大程度上取决于聚合物基体和增强材料之间的粘附力,并因此取决于界面的质量。为了获得最终产品的最佳性能,需要基质树脂和纤维素材料之间充分的相互作用。这通常是通过对树脂或填料进行表面改性来实现的。香蕉纤维是从香蕉植物的假茎(Musa sepientum)获得的纤维素纤维,是具有相对良好机械性能的韧皮纤维。纤维表面经过化学修饰,以改善纤维与聚酯基质之间的界面相互作用。各种硅烷和碱用于改性纤维表面。通过SEM和FTIR表征改性的表面。使用溶剂变色技术研究了化学改性纤维的极性参数。通过电动测量进一步证实了该结果。发现化学改性对纤维-基质相互作用具有深远的影响。从增强的拉伸和挠曲性能中可以明显看出改善的纤维-基体相互作用。与未处理的复合材料相比,处理后的复合材料的冲击性能更低,这进一步表明了纤维基质的粘合性得到了改善。为了进一步了解纤维与基体之间的粘合力,对失效复合材料的断裂表面进行了SEM进一步研究。在各种化学处理中,发现用浓度为1%的NaOH进行简单的碱处理最为有效。发现纤维-基质相互作用取决于改性纤维表面的极性

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