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Processing, structure and properties of semi-crystalline polymer nanocomposites.

机译:半结晶聚合物纳米复合材料的加工,结构和性能。

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Semi-crystalline polymers are of technological and commercial interest in areas ranging from aerospace materials to biomedical applications to sensors and actuators. In many cases researchers are seeking to add various nanoparticles to impart multifunctionality and enhanced properties to the polymer system. However, the addition of carbon nanotubes (CNTs) and other nanoparticles can greatly alter the resulting crystallization kinetics and crystalline morphology of semi-crystalline polymer nanocomposites. For example, when melt-processing semi-crystalline polymer nanocomposites, the nanoparticles can act as nucleating agents and can significantly alter (and in many cases accelerate) the processing-induced crystallization behavior of the nanocomposite samples. Here such changes were found to be a function of a number of parameters including the polymer type, the size and shape of the nanoparticle, the chemistry of the nanoparticle surface, and the processing parameters. Alternatively, when working with solutions of semi-crystalline polymers in the presence of CNTs, it was found that CNTs can be coated (functionalized) with small polymer crystals, with the crystal size found to depend on the polymer concentration. Here under certain processing conditions the resulting polymer morphology shows a periodicity resembling the nano-hybrid shish-kebabs (NHSKs) microstructure. Lastly, solution crystallization was utilized to prepare nylon-11 nanocomposites in order to study the influence of processing (uniaxial drawing) and resulting microstructure on nanocomposite effective properties. The results obtained suggest that enhancements in functional properties of semi-crystalline polymer nanocomposites depend not only on addition of nanoparticles but can also be achieved by control of the processing parameters and the resulting changes in nanocomposite microstructure.
机译:从航空航天材料到生物医学应用再到传感器和致动器,半结晶聚合物在技术和商业上都受到关注。在许多情况下,研究人员正在寻求添加各种纳米颗粒,以赋予聚合物系统以多功能性和增强的性能。但是,添加碳纳米管(CNT)和其他纳米颗粒可以大大改变半结晶聚合物纳米复合材料的结晶动力学和结晶形态。例如,当熔融加工半结晶聚合物纳米复合材料时,纳米颗粒可以充当成核剂,并且可以显着改变(并且在许多情况下加速)纳米复合材料样品的加工诱导的结晶行为。在此发现这种变化是许多参数的函数,包括聚合物类型,纳米颗粒的尺寸和形状,纳米颗粒表面的化学性质以及加工参数。可替代地,发现当在CNT存在下使用半结晶聚合物的溶液时,发现CNT可以用小的聚合物晶体涂覆(官能化),发现晶体尺寸取决于聚合物浓度。在某些加工条件下,所得的聚合物形态表现出类似于纳米杂化烤肉串(NHSK)微观结构的周期性。最后,利用溶液结晶法制备尼龙11纳米复合材料,以研究加工(单轴拉伸)和所得微观结构对纳米复合材料有效性能的影响。获得的结果表明,半结晶聚合物纳米复合材料的功能特性的增强不仅取决于纳米颗粒的添加,而且还可以通过控制加工参数和纳米复合材料微观结构的变化来实现。

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