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Banana Fiber Strands–Reinforced Polymer Matrix Composites

机译:香蕉纤维绞合增强聚合物基复合材料

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摘要

Banana fiber (BF)-reinforced low-density polyethylene (LDPE) unidirectional composites were fabricated by the compression molding process with 40 wt% fiber loading. The fibers were modified with methylacrylate (MA) mixed with methanol (MeOH) along with 2% benzyl peroxide under thermal curing method at different temperatures (50–90 °C) for different curing times (10–50 min) in order to have better compatibility with the matrix. The effect of fiber surface modification on the mechanical properties (tensile and impact properties) of the composites were evaluated. Monomer concentration, curing temperature, and curing time were optimized in terms of polymer loading and mechanical properties. The mechanical properties were found to be improved based on the improved interaction between the reinforcement and the matrix. Optimized BFs were again treated with 2–5 wt% starch solutions and composites made of 4% starch treated BF showed the highest mechanical properties than that of MA treated composites. Scanning electron microscopy (SEM) was performed to get an insight into the morphology of the composites. Water uptake and soil degradation test of the composites were also investigated.
机译:香蕉纤维(BF)增强的低密度聚乙烯(LDPE)单向复合材料是通过压缩成型工艺制造的,纤维含量为40 wt%。在不同温度(50–90°C),不同固化时间(10–50分钟)的热固化方法下,将丙烯酸甲酯(MA)与甲醇(MeOH)以及2%的过氧化苄混合,对纤维进行改性。与矩阵的兼容性。评估了纤维表面改性对复合材料机械性能(拉伸性能和冲击性能)的影响。就聚合物的负载量和机械性能而言,对单体浓度,固化温度和固化时间进行了优化。发现基于增强物与基体之间改善的相互作用,机械性能得到改善。优化的高炉再次用2-5 wt%的淀粉溶液处理,由4%淀粉处理的高炉制成的复合材料显示出比MA处理的复合材料最高的机械性能。进行扫描电子显微镜(SEM)以了解复合材料的形态。还研究了复合材料的吸水率和土壤降解试验。

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