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Preparation and characterization of CNTs/UHMWPE nanocomposites via a novel mixer under synergy of ultrasonic wave and extensional deformation

机译:超声波和延伸变形中的新型混合器制备和表征CNTS / UHMWPE纳米复合材料

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摘要

In this work, design and development of anew melt mixing, method and corresponding mixer for polymer materials were reported. Effects of ultrasonic power and sonication time on the carbon nanotubes (CNTs) filled ultra high molecular weight polyethylene (UHMWPE) nanocomposites were experimentally studied. Transmission Electron Microscopy images showed that homogeneous dispersion of CNTs in intractable UHMWPE matrix is successfully realized due to the synergetic effect of ultrasonic wave and extensional deformation without any aid of other additives or solvents. Differential scanning calorimetry results revealed an increase in crystallinity and crystallization rate due to the finer dispersion of the CNTs in the matrix which act as nucleating point. Composites' complex viscosity and storage modulus decreased sharply at first and then leveled off with the increase of sonication time or the ultrasonic power. The thermal stability and the tensile strength of the CNTs/UHMWPE nanocomposites improved by using this novel mixing method. This is the first method that combined the ultrasonic wave and the extensional deformation in which the elongation rate, sonication time and ultrasonic power can be adjusted simultaneously during mixing. The novel mixer offers several advantages such as environment-friendly, high mixing efficiency, self-cleaning and wide adaptability to materials.
机译:在这项工作中,报道了重组熔融混合,方法和相应的聚合物材料混合器的设计和开发。实验研究超声波功率和超声波时间对碳纳米管(CNT)填充的超高分子量聚乙烯(UHMWPE)纳米复合材料的影响。透射电子显微镜图像显示,由于超声波和延伸变形的协同效果而无需其他添加剂或溶剂的辅助,成功地实现了CNT在顽固的UHMWPE基质中的均匀分散。差分扫描量热法结果表明,由于CNT在基质中的较细分散的结晶度和结晶速率的增加,其作用作为成核点的基质。复合材料的复杂粘度和储存模量首先急剧下降,然后随着超声波的增加或超声波电流调平。通过使用这种新的混合方法改善了CNT / UHMWPE纳米复合材料的热稳定性和拉伸强度。这是组合超声波和延伸变形的第一方法,其中可以在混合期间同时调节伸长率,超声处理时间和超声波功率。新型混合器提供了几种优点,如环保,高混合效率,自清洁和对材料的广泛适应性。

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