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Rheological behavior of polypropylene/carbon quantum dot nanocomposites: the effects of particles size, particles/matrix interface adhesion, and particles loading

机译:聚丙烯/碳量子点纳米复合材料的流变行为:颗粒尺寸,粒子/基质界面粘附和粒子载荷的影响

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摘要

The effects of nanoparticles size, nanoparticles/matrix interface adhesion, and nanoparticles loading on the rheological properties of polypropylene (PP)/carbon quantum dot (CQD) nanocomposites were investigated. The storage modulus of the samples was found to be raised with an increase in the volume fraction of CQDs up to 1wt%. The addition of the compatibilizer had no significant effect on the storage and loss modulus of the samples; however, it resulted in the reduction in the viscosity at the lower frequencies. With increasing the CQDs size, the rise in the loss modulus was found to be greater than that of the storage modulus. The damping factor of the samples was lower for the smaller size nanoparticles at the lower frequencies. Also, the size of the nanoparticles had no significant effect on the complex viscosity of the samples. The storage modulus obtained from the Cohan model deviated the most from the experimental results for the samples containing various loadings of CQDs.
机译:研究了纳米颗粒尺寸,纳米颗粒/基质界面粘附和纳米颗粒对聚丙烯(PP)/碳量子点(CQD)纳米复合材料的流变性质的影响。 发现样品的储存模量随着CQD的体积分数的增加,高达1wt%。 添加增容剂对样品的储存和损耗模量没有显着影响; 然而,它导致较低频率下的粘度降低。 随着CQDS尺寸的增加,发现损耗模量的上升大于存储模量的升高。 对于较低频率的较小型纳米颗粒,样品的阻尼因子较低。 而且,纳米颗粒的尺寸对样品的复杂粘度没有显着影响。 从柯汉模型获得的储存模量偏离了含有CQD各种载荷的样品的实验结果。

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