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Modeling the tensile stress-strain response of carbon nanotube/polypropylene nanocomposites using nonlinear representative volume element

机译:使用非线性代表体积元建模碳纳米管/聚丙烯纳米复合材料的拉伸应力-应变响应

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摘要

This paper presents a finite element model for predicting the mechanical behavior of polypropylene (PP) composites reinforced with carbon nanotubes (CNTs) at large deformation scale. Existing numerical models cannot predict composite behavior at large strains due to using simplified material properties and inefficient interfaces between CNT and polymer. In this work, nonlinear representative volume elements (RVE) of composite are prepared. These RVEs consist of CNT, PP matrix and non-bonded interface. The nonlinear material properties for CNT and polymer are adopted to solid elements. For the first time, the interface between CNT and matrix is simulated using contact elements. This interfacial model is capable enough to simulate wide range of interactions between CNT and polymer in large strains. The influence of adding CNT with different aspect ratio into PP is studied. The mechanical behavior of composites with different interfacial shear strength (ISS) is discussed. The success of this new model was verified by comparing the simulation results for RVEs with conducted experimental results. The results shows that the length of CNT and ISS values significantly affect the reinforcement phenomenon.
机译:本文提出了一个有限元模型,用于预测在大变形规模下碳纳米管(CNTs)增强的聚丙烯(PP)复合材料的力学行为。由于使用简化的材料特性以及CNT和聚合物之间的界面效率低下,现有的数值模型无法预测大应变下的复合材料行为。在这项工作中,制备了复合材料的非线性代表体积元素(RVE)。这些RVE由CNT,PP基质和非键合界面组成。碳纳米管和聚合物的非线性材料特性被用于固体元素。首次使用接触元件模拟了CNT与基质之间的界面。这种界面模型足以模拟大应变下CNT与聚合物之间的广泛相互作用。研究了将不同长径比的CNT添加到PP中的影响。讨论了具有不同界面剪切强度(ISS)的复合材料的力学行为。通过将RVE的仿真结果与进行的实验结果进行比较,验证了该新模型的成功。结果表明,CNT和ISS值的长度显着影响增强现象。

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