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Using Ultrasound Wave Propagation to Estimate the Dispersion of Nanostructures in Polymers with Complex Molecular Architectures

机译:利用超声波传播来估计纳米结构在复杂分子架构的聚合物中的分散

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One of the key points for the successful development of nanocomposites is to obtain a good dispersion of the nanofillers in the polymer matrix. However, because of complex polymer-polymer and polymer-nanostructure interactions, the estimation of the dispersion is far from trivial. Dynamic rheological functions are mostly used to estimate the quality of dispersion. However, these rheological functions are sensitive to complex molecular architectures such as branching; thus, the accuracy of these rheological functions is limited for nanocomposites obtained using polymer matrices with these molecular architectures. Therefore, an estimation of the dispersion using other approaches needs to be explored. In this work, carbon nanotubes (CNTs) are firstly dispersed in a polyamide matrix by a low-frequency ultrasound-assisted extrusion process (kHz range). Then, high-frequency ultrasound wave propagation (MHz range) is used to estimate the dispersion of CNTs in polyamide matrices with different branching architectures. The quality of dispersion observed through the ultrasonic attenuation coefficient of the material matches with optical microscopy studies, in contrast with results obtained using dynamic rheological functions. Dynamic mechanical deformation induced by high-frequency ultrasound seems to be less sensitive to branching architectures, thus giving a better estimation of the quality of dispersion.
机译:成功开发纳米复合材料的关键点之一是在聚合物基质中获得纳米填料的良好分散。然而,由于复合聚合物 - 聚合物和聚合物 - 纳米结构相互作用,分散体的估计远远不均匀。动态流变功能主要用于估计分散质量。然而,这些流变功能对复杂的分子架构(如分支)敏感;因此,这些流变函数的准确性限于使用具有这些分子架构获得的聚合物基质获得的纳米复合材料。因此,需要探索使用其他方法的分散估计。在这项工作中,首先通过低频超声辅助挤出方法(KHZ范围)首先分散在聚酰胺基质中的碳纳米管(CNT)。然后,使用高频超声波传播(MHz范围)来估算CNT在具有不同分支架构中的聚酰胺基质中的分散。通过使用动态流变功能获得的结果,通过与光学显微镜研究的材料匹配的超声衰减系数观察到的分散质量。高频超声引起的动态机械变形似乎对分支架构不太敏感,从而更好地估计色散质量。

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