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Investigating the mechanical properties of epoxy resin composites modified by polyamide and nano‐Al2O3

机译:聚酰胺和纳米Al2O3改性环氧树脂复合材料的力学性能研究

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摘要

Abstract This work aims to evaluate the effects of polyamide (PA) and nano‐Al2O3 on the mechanical properties of epoxy resin (EP) and obtain the optimal addition content of PA and nano‐Al2O3. Epoxy matrix composite (EMC) is prepared via the solution blending method using the PA as the curing agent, toughening agent, and the nano‐Al2O3 modified with the silane coupling agent as the filler. Then it is tested for tensile, hardness, impact and wear resistance performances. The results show that when the ratio of PA to EP varies in the range of 40 wt. to 80 wt., increasing the PA content can improve the impact toughness and plasticity of EMC but reduce its hardness, tensile strength and wear resistance. When the content of PA is 60 wt. of EP, the elongation at break and impact strength of EMC are increased by 66.4 and 12.9, respectively. The mechanical performances of EMC can be enhanced by loading nano‐Al2O3 fillers in a specific range. When the content of nano‐Al2O3 is 2 wt. of EP, the elastic modulus, the tensile strength and the wear resistance of EMC are increased by 27.9, 20.8 and 49, respectively. The research can provide a valid technical reference for the industrial application of EMC materials.
机译:摘要 本研究旨在评价聚酰胺(PA)和纳米Al2O3对环氧树脂(EP)力学性能的影响,获得PA和纳米Al2O3的最佳添加量。以PA为固化剂、增韧剂,以硅烷偶联剂改性的纳米Al2O3为填料,采用溶液共混法制备环氧基复合材料(EMC)。然后对其进行拉伸、硬度、冲击和耐磨性能测试。结果表明,当PA与EP的比例在40 wt.%-80 wt.%范围内变化时,增加PA含量可以提高EMC的冲击韧性和塑性,但会降低其硬度、抗拉强度和耐磨性。当PA含量为EP的60 wt.%时,EMC的断裂伸长率和冲击强度分别提高了66.4%和12.9%。通过在特定范围内加载纳米Al2O3填料,可以提高EMC的机械性能。当纳米Al2O3含量为EP的2 wt.%时,EMC的弹性模量、拉伸强度和耐磨性分别提高了27.9%、20.8%和49%。研究结果可为EMC材料的工业化应用提供有效的技术参考。

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