首页> 外文期刊>Iranian polymer journal >Effect of carbon nanotube on cured shape of cross-ply polymer matrix nanocomposite laminates: analytical and experimental study
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Effect of carbon nanotube on cured shape of cross-ply polymer matrix nanocomposite laminates: analytical and experimental study

机译:碳纳米管对交联聚合物基纳米复合材料层压板固化形状的影响:分析和实验研究

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摘要

Cured shape of cross-ply [0(2)/90(2)](T) fiber-reinforced composite laminates and the effect of multi-wall carbon nanotubes (MWCNTs) on the mechanical and thermal properties of laminates have been investigated. The nanocomposite laminate used in this study is composed of three phases: carbon fiber, polymer matrix and MWCNT. The volume fractions of 0%, 1%, 2% and 3% MWCNT were used to prepare nanocomposites. The mechanical and thermal properties of nanocomposites and fiber-reinforced nanocomposite laminates have been calculated by using analytical micromechanical models. Analytical micromechanical models were applied to determine the mechanical and thermal properties for two-phase nanocomposite composed of MWCNT and polymer matrix. The obtained mechanical and thermal data were considered as matrix properties and used in properties calculation of three-phase fiber-reinforced nanocomposite laminates. A developed model was used to determine curvature and the effect of MWCNT on the curvature in different specimens. Nonlinear relations have been considered for non-mid-plane strain equations. The addition of 1% volume fraction of MWCNT led to decreasing curvature and increasing critical size almost 14% and 9%, respectively, in different directions. The results were used to develop model and to compare with those calculated by Hyer model. Finally, unsymmetrical cross-ply [0(2)/90(2)](T) laminates with different weight fractions of 0, 0.1%, 0.25% and 0.5% MWCNT were fabricated. The curvature of cured composite laminates, obtained by experimental study, was compared with that developed as Hyer models and good agreements were observed between the predicted model and experimental data. The experimentally predicted and developed model for the curvature of cross-ply [0(2)/90(2)](T) fiber-reinforced nanocomposite laminates is better than the Hyer model.
机译:研究了交叉层[0(2)/ 90(2)](T)纤维增强复合层压板的固化形状以及多层碳纳米管(MWCNT)对层压板的机械和热性能的影响。本研究中使用的纳米复合材料层压板由三个阶段组成:碳纤维,聚合物基质和MWCNT。使用0%,1%,2%和3%MWCNT的体积分数来制备纳米复合材料。纳米复合材料和纤维增强的纳米复合材料层压板的机械和热性能已经通过使用分析微机械模型进行了计算。应用微力学分析模型确定了由碳纳米管和聚合物基体组成的两相纳米复合材料的力学和热学性质。所获得的机械和热学数据被认为是基体性能,并用于三相纤维增强纳米复合材料层压板的性能计算。使用已开发的模型确定曲率以及MWCNT对不同样品的曲率的影响。对于非中平面应变方程,已经考虑了非线性关系。 MWCNT体积分数的1%添加导致曲率减小,临界尺寸增加,分别在不同方向上分别达到14%和9%。结果用于建立模型,并与Hyer模型计算的结果进行比较。最后,制造了具有0、0.1%,0.25%和0.5%MWCNT的不同重量分数的不对称交叉[0(2)/ 90(2)](T)层压板。通过实验研究获得的固化复合材料层压板的曲率与通过Hyer模型得到的曲率进行了比较,并且在预测模型和实验数据之间观察到了良好的一致性。 [0(2)/ 90(2)](T)纤维增强纳米复合材料层压板曲率的实验预测和开发模型优于Hyer模型。

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