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A combined micromechanical-numerical model to simulate shear behavior of carbon nanofiber/epoxy nanocomposites

机译:组合的微机械-数值模型来模拟碳纳米纤维/环氧树脂纳米复合材料的剪切行为

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摘要

In the present research a method was developed that by having the stress-strain behavior of the neat epoxy, the stress strain behavior of carbon nano fibers/epoxy nanocomposites under tensile and torsional loadings were simulated. First, a micromechanical method was used to simulate the tensile stress-strain curve of nano phased polymer composites. Then, using the tensile stress-strain curve of the nano phased polymer and using a finite element method, the shear properties of nanocomposites are predicted. Three weight fractions 0.15, 0.25 and 0.40 wt.% of carbon nano fibers (CNFs) were considered and an experimental program was conducted to validate the present approach. The experimental results indicated that employing carbon nano fibers improves tensile and shear mechanical properties of the neat epoxy. The maximum improvements in tensile and shear mechanical properties of the neat epoxy are achieved by adding 0.40% and 0.25 wt.% of the CNF, respectively. Moreover, a comparison between predicted and experimental results shows a good agreement.
机译:在本研究中,开发了一种方法,该方法通过具有纯环氧树脂的应力-应变行为,来模拟碳纳米纤维/环氧纳米复合材料在拉伸和扭转载荷下的应力应变行为。首先,采用微机械方法模拟了纳米相聚合物复合材料的拉伸应力-应变曲线。然后,使用纳米相聚合物的拉伸应力-应变曲线并使用有限元方法,预测了纳米复合材料的剪切性能。考虑了重量百分比为0.15、0.25和0.40%的碳纳米纤维(CNF)的三个部分,并进行了实验程序以验证本方法。实验结果表明,采用碳纳米纤维可改善纯环氧树脂的拉伸和剪切机械性能。通过分别添加0.40%和0.25 wt。%的CNF,可以最大程度地提高纯环氧树脂的拉伸和剪切机械性能。此外,预测结果与实验结果之间的比较显示出很好的一致性。

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  • 来源
    《Materials & design》 |2015年第2期|531-537|共7页
  • 作者单位

    Composites Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Narmak, Tehran 16846-13114, Iran;

    Composites Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Narmak, Tehran 16846-13114, Iran;

    Composites Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Narmak, Tehran 16846-13114, Iran;

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