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Assessment on hybrid jute/coir fibers reinforced polyester composite with hybrid fillers under different environmental conditions

机译:不同环境条件下用杂交填料的杂交黄麻/椰壳纤维增强聚酯复合材料的评估

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In this work, synergistic impact of hybrid fibers and hybrid fillers on mechanical, moisture absorption and morphological properties of polyester matrix composites at dry and wet conditions was examined. The hybrid composite laminates were fabricated by compression molding technique, using new combinations of jute and coir fibers as primary reinforcements as well as waste eggshell powder (ESP) and montmorillonite nanoclay (MMTK10-NC) as secondary reinforcements in a polyester matrix. The fillers, ESP and NC were added to the jute and coir fiber blended hybrid composite in different amounts. Maximum tensile strengths of the hybrid composites were estimated to be 24.57, 21.77 and 22.63 MPa when fillers were added at equal weight percent (wt.%) of 1.5 for dry, river and sea water (wet) conditions, respectively. Under same dry, river and sea water conditions, flexural strengths of 46.97, 44.85 and 42.36 MPa as well as impact strengths of 2.697, 2.572 and 2.607 J were obtained, respectively. Occurrence of swelling, agglomeration and porosity on the hybrid composites were observed to be crucial factors, which caused their strength reduction. It was evident from the results obtained that addition of hybrid fillers to the hybrid composites in different weight proportions increased their mechanical performances higher than that of non-filler hybrid composites. Mechanical properties diminished with wet condition, due to deterioration between the fibers and matrix interface. Also, scanning electron microscopy (SEM) images indicated that it was due to weak fiber-matrix adhesion. With addition of hybrid filler to the hybrid composites, the moisture absorption rate was reduced. Importantly, the optimal/best hybrid composite sample S4 with equal filler content of 1.5 wt% can be used as an alternative sustainable material for low load bearing structural components in building construction industries, such as trusses and frames, wooden flooring and scaffold.
机译:在这项工作中,研究了杂化纤维和杂化填料对干燥和湿法条件下聚酯基质复合材料的机械,吸湿和形态特性的协同影响。通过压缩模塑技术制造杂化复合层压材料,使用舌和益叶纤维作为初级增强物以及废蛋壳粉末(ESP)和蒙脱石纳米铬(MMTK10-NC)作为次级增强剂作为聚酯基质中的次级增强剂。将填料,ESP和Nc加入黄麻和基准纤维混合杂化复合材料中以不同的量。当干燥的,河水和海水(湿)条件的相等重量百分比(重量%)加入填料时,杂交复合材料的最大拉伸强度估计为24.57,21.77和22.63MPa。在相同的干燥,河流和海水条件下,弯曲强度为46.97,44.85和42.36MPa以及2.697,2.572和2.607 j的冲击强度。观察到杂交复合材料上的溶胀,附聚和孔隙率为至关重要的因素,这导致其强度降低。从得到的结果中显而易见,以不同重量比例的杂化复合材料加入杂化填料的增加,其机械性能高于非填充混合复合材料的机械性能。由于纤维和矩阵界面之间的劣化,湿条件减小了机械性能。此外,扫描电子显微镜(SEM)图像表明它是由于纤维 - 基质粘附弱。随着杂交复合材料的加入杂交填料,减少了吸湿率。重要的是,具有相等填料含量为1.5wt%的最佳/最佳杂化复合样品S4可用作建筑工业中的低负荷结构部件的替代可持续材料,例如桁架和框架,木地板和脚手架。

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