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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Comparative Studies of Mechanical and Interfacial Properties between Jute and Bamboo Fiber-Reinforced Polypropylene-Based Composites
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Comparative Studies of Mechanical and Interfacial Properties between Jute and Bamboo Fiber-Reinforced Polypropylene-Based Composites

机译:黄麻与竹纤维增强聚丙烯基复合材料的力学和界面性能比较研究

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摘要

Jute and bamboo fiber-reinforced polypropylene (PP) based composites (50wt% fiber) were fabricated by compression molding. Tensile strength (TS), bending strength (BS), tensile modulus (TM), and bending modulus (BM) of the jute-reinforced PP composite were found to be 48, 56, 900, and 1500MPa, respectively. Then, bamboo fiber-reinforced PP-based composites (50 wt% fiber) were fabricated and the mechanical properties evaluated. The TS, BS, TM, and BM of bamboo-reinforced PP composites were found to be 60, 76,4210, and 6210 MPa, respectively. It was revealed that bamboo fiber-based composites had higher TS, BS, TM, and BM compared to jute-based composites. Degradation tests of the composites (jute fiber/PP and bamboo fiber/PP) were performed in soil at ambient conditions for up to 24 weeks. It was revealed that bamboo fiber/PP composite retained its original mechanical properties higher than that of jute fiber/PP composite. The interfacial shear strength of the jute and bamboo fiber-based composites was investigated using the single-fiber fragmentation test and it was found to be 2.14 and 4.91 MPa, respectively. Fracture sides of the composites were studied by scanning electron microscope, and the results revealed poor fiber matrix adhesion for jute fiber-based composites compared to that of the bamboo fiber-based composites.
机译:黄麻和竹纤维增强聚丙烯(PP)基复合材料(纤维含量为50wt%)是通过压缩成型制成的。黄麻增强PP复合材料的拉伸强度(TS),弯曲强度(BS),拉伸模量(TM)和弯曲模量(BM)分别为48、56、900和1500MPa。然后,制造竹纤维增强的PP基复合材料(纤维的50wt%)并评估机械性能。竹增强PP复合材料的TS,BS,TM和BM分别为60、76、4210和6210 MPa。结果表明,与黄麻基复合材料相比,竹纤维基复合材料的TS,BS,TM和BM更高。复合材料(黄麻纤维/ PP和竹纤维/ PP)的降解试验在土壤中于环境条件下进行长达24周。结果表明,竹纤维/ PP复合材料的原始力学性能高于黄麻纤维/ PP复合材料。使用单纤维断裂试验研究了黄麻和竹纤维基复合材料的界面剪切强度,结果分别为2.14和4.91 MPa。用扫描电子显微镜研究了复合材料的断裂面,结果表明,与竹纤维基复合材料相比,黄麻纤维基复合材料的纤维基质粘附性较差。

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