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Mechanical properties of single-walled carbon nanotube reinforced polymer composites with varied interphase's modulus and thickness: A finite element analysis study

机译:具有不同相间模量和厚度的单壁碳纳米管增强聚合物复合材料的力学性能:有限元分析研究

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The role of the interphase on mechanical performance of glassy polymer/single-walled carbon nanotube composites has been investigated by finite element (FE) method. The matrix and the interphase are modeled using continuum elements and the nanotube is analyzed by Timoshenko beam elements. Stress distribution and mechanical property of the nanocomposites are quantified as a function of the interphase's modulus and thickness. For composites that include an interphase, the predicted moduli are comparable to the values calculated by the rule of mixtures, but are much lower than those of an interphase-free composite. For composites consisting of only the CNT and the matrix, the predicted modulus values are in good agreement with those computed by the rule of mixtures and with theoretical data reported in the literature, although the predicted values are considerably higher than those of real polymer/CNT composites. Using Griffin's fracture analysis for dissimilar materials, we have proved that fracture stress of the weak boundary layer in the CNT/polymer interphase is lower than that of the CNT/polymer interface or of the matrix. The weak boundary layer, which is always existing in a CNT/polymer's three dimensional interphase, is proposed as the main reason for the large discrepancy between Young's moduli predicted by the model observed in this study and reported in the literature and those measured experimentally from real-world polymer/SWCNT composites. Published by Elsevier B.V.
机译:通过有限元(FE)方法研究了相间对玻璃态聚合物/单壁碳纳米管复合材料力学性能的影响。使用连续体元素对基质和中间相进行建模,并用Timoshenko束元素对纳米管进行分析。纳米复合材料的应力分布和机械性能被量化为界面相模量和厚度的函数。对于包含中间相的复合材料,预测模量与通过混合规则计算的值相当,但远低于不含中间相的复合材料的模量。对于仅由CNT和基体组成的复合材料,预测模量值与通过混合规则计算的模量值和文献中报道的理论数据非常吻合,尽管预测值明显高于真实聚合物/ CNT的模量复合材料。使用Griffin对不同材料的断裂分析,我们证明了CNT /聚合物界面中的弱边界层的断裂应力低于CNT /聚合物界面或基体的断裂应力。提出了弱边界层,该边界层始终存在于CNT /聚合物的三维相中,这是造成本研究中观察到的模型预测的杨氏模量与文献报道的杨氏模量与实测值相差较大的主要原因。 -world聚合物/ SWCNT复合材料。由Elsevier B.V.发布

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