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Properties of Bio-Based Polymer Nylon 11 Reinforced With Short Carbon Fiber Composites

机译:短碳纤维复合材料增强生物基聚合物尼龙11的性能

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In this work, micro-composite materials were produced by incorporating 3-mm long reclaimed short carbon fibers into bio-based nylon 11 via melt compounding. A systematic fiber length distribution analysis was performed after the masterbatching, compounding and an injection moulding processes using optical microscopy images. It was found that the large majority of the fibers were within the 200-300 m in length range after the injection moulding process. The mechanical (flexural and tensile), thermo-mechanical, and creep properties of the injection moulded materials are reported. We found that an enhancement in flexural and Young's modulus of 25% and 14%, respectively, could be attained with 2 wt% carbon fiber loading whilst no significant drawback on the ductility and toughness of the matrix was observed. The creep resistance and recovery of the nylon 11, tested using dynamic mechanical thermal analysis at room temperature and 65 degrees C, was significantly improved by up to 30% and 14%, respectively, after loading with carbon fiber. This work provides an insight into the property improvement of the bio-based polymer nylon 11 using a small amount of a reclaimed engineered material. POLYM. COMPOS., 36:668-674, 2015. (c) 2014 Society of Plastics Engineers
机译:在这项工作中,通过将3毫米长的再生短碳纤维通过熔融混炼掺入生物基尼龙11中来生产微复合材料。使用光学显微镜图像在母料,混纺和注塑工艺后进行了系统的纤维长度分布分析。发现在注射成型工艺之后,大部分纤维的长度在200-300m内。报告了注塑材料的机械(弯曲和拉伸),热机械和蠕变性能。我们发现,当碳纤维负载量为2 wt%时,弯曲模量和杨氏模量分别提高25%和14%,而对基体的延展性和韧性没有明显的影响。在室温和65摄氏度下使用动态机械热分析测试的尼龙11的抗蠕变性和恢复能力,在装载碳纤维后分别分别显着提高了30%和14%。这项工作提供了使用少量再生工程材料改善生物基聚合物尼龙11性能的见解。 POLYM。 COMPOS。,36:668-674,2015.(c)2014年塑料工程师学会

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