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MERCERIZATION PARAMETERS EFFECT ON NATURAL FIBER REINFORCED POLYMER MATRIX COMPOSITE: A REVIEW

机译:天然纤维增强聚合物基复合材料的丝化参数影响研究进展

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Environmental awareness and depletion of the petroleum resources are among vital factors that motivate a number of researchers to explore the potential of reusing natural fiber as an alternative composite material in industries such as packaging, automotive and building constructions. Natural fibers are available in abundance, low cost, lightweight polymer composite and most importance its biodegradability features, which often called “eco-friendly” materials. However, their applications are still limited due to several factors like moisture absorption, poor wettability and large scattering in mechanical properties. Among the main challenges on natural fibers reinforced matrices composite is their inclination to entangle and form fibers agglomerates during processing due to fiber-fiber interaction. This tends to prevent better dispersion of the fibers into the matrix, resulting in poor interfacial adhesion between the hydrophobic matrix and the hydrophilic reinforced natural fiber. Therefore, to overcome this challenge, fiber treatment process is one common alternative that can be use to modify the fiber surface topology by chemically, physically or mechanically technique. Nevertheless, this paper attempt to focus on the effect of mercerization treatment on mechanical properties enhancement of natural fiber reinforced composite or so-called bio composite. It specifically discussed on mercerization conditions, and natural fiber reinforced composite mechanical properties enhancement.
机译:环保意识和石油资源枯竭是促使许多研究人员探索在包装,汽车和建筑等行业中重用天然纤维作为替代复合材料的潜力的重要因素。天然纤维有很多,低成本,轻质的聚合物复合材料,最重要的是其生物降解特性,通常被称为“生态友好型”材料。但是,由于诸如吸湿,差的润湿性和机械性能的大分散等多种因素,它们的应用仍然受到限制。天然纤维增强基质复合材料的主要挑战之一是由于纤维与纤维的相互作用,它们倾向于在加工过程中缠结并形成纤维团聚物。这倾向于防止纤维更好地分散到基质中,从而导致疏水性基质和亲水性增强天然纤维之间的不良界面粘合。因此,为了克服这一挑战,纤维处理工艺是一种常见的替代方法,可用于通过化学,物理或机械技术改变纤维表面拓扑。然而,本文试图集中于丝光处理对天然纤维增强复合材料或所谓的生物复合材料的机械性能增强的影响。它专门讨论了丝光化条件,以及天然纤维增强复合材料机械性能的提高。

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