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Mechanical property characterization of carbon nanotube modified polymeric nanocomposites by computer modeling

机译:碳纳米管改性聚合物纳米复合材料的力学性能表征

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This paper reports a two-step modeling approach for predicting the effective mechanical properties of polymeric nanocomposites modified with single walled carbon nanotube (SWNT). In step one, the nano-heterostructures of the nanocomposites were represented by 3-D nanoscale cylindrical, square, or hexagonal prismatic representative volume elements (RVEs). Each RVE contained a long or a short carbon nanotube (CNT) and consisted of three phases, i.e., CNT, matrix, and interphase. The mechanical properties of each RVE were extracted from the modeling results of the RVE undergone three load tests, i.e., uniaxial tensile test, lateral expansion test, and axial torsional test, using appropriately derived formulae. The effects of the volume fraction of CNTs on the mechanical properties of the RVEs were studied. The equivalent mechanical properties of the nano-heterostructures were obtained by averaging the mechanical properties extracted from each RVE. In step two, micro/macroscale nanocomposites were represented by a 3-D microscale unit cell which was discretized into cubic elements. Using Monte Carlo method, each element was assigned the averaged mechanical properties of the RVEs with random CNT orientation and length type. The overall effective mechanical properties of the nanocomposites were predicted by a tensile test on the unit cell. The modeling results by this proposed approach was compared with and validated by the experimental data of the SWNT modified epoxy nanocomposites.
机译:本文报告了一种两步建模方法,用于预测用单壁碳纳米管(SWNT)改性的聚合物纳米复合材料的有效机械性能。在第一步中,纳米复合材料的纳米异质结构由3-D纳米级圆柱,正方形或六边形棱柱形代表体积元素(RVE)表示。每个RVE包含长或短的碳纳米管(CNT),并且由三相即CNT,基质和中间相组成。从RVE的建模结果中提取每个RVE的机械性能,并使用适当推导的公式进行了三项载荷测试,即单轴拉伸测试,横向膨胀测试和轴向扭转测试。研究了碳纳米管的体积分数对RVEs力学性能的影响。通过平均从每个RVE中提取的机械性能,可以获得纳米异质结构的等效机械性能。在第二步中,以3D微尺度晶胞表示微/宏观纳米复合材料,该3D微晶胞离散为立方元素。使用蒙特卡洛方法,为每个元素分配具有随机CNT方向和长度类型的RVE的平均机械性能。纳米复合材料的总体有效机械性能是通过在晶胞上的拉伸试验预测的。将该方法的建模结果与SWNT改性环氧纳米复合材料的实验数据进行了比较并得到了验证。

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