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Influence of processing parameters during ultrasound assisted extrusion on the properties of polycarbonate/carbon nanotubes composites

机译:超声辅助挤压工艺参数对聚碳酸酯/碳纳米管复合材料性能的影响

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Polycarbonate (PC)/carbon nanotube (CNT) composites containing 0.4 to 3 wt% CNT were prepared using an ultrasound assisted twin screw extruder at two different flow rates. The CNTs used in this study were multi-walled carbon nanotubes with trade name Baytubes C150P, a material which had relatively high bulk density and therefore was easy to handle in industrial production. The effects of flow rate and ultrasonic amplitude on the thermal stability of PC extrudates and PC/CNT composites were studied. The electrical, morphological, rheological and mechanical properties of the untreated and ultrasonically treated composites were characterized. Results showed that the difference of thermal stability between different PC extrudates was very small, while the incorporation of CNT significantly decreased the thermal stability of PC. During the extrusion of PC/CNT composites, both the shearing forces caused by rotating screws and the bubble cavitation caused by ultrasound helped dispersing CNT into the polymer matrix. At low flow rate, CNT can be well dispersed, but this induced more degradation of polymer matrix. At high flow rate, the dispersion of CNT was not as good as that at low flow rate. With respect to this observation, ultrasonic treatment showed superior capability and efficiency in improving the dispersion and distribution of CNT in a short treatment time and increasing the throughput at the same time which is especially important and beneficial for industrial production of polymeranofiller composites. At high flow rate with increasing ultrasonic amplitude, the electrical percolation threshold of the composites decreased, while the storage modulus and complex viscosity generally increased. At low flow rate, ultrasonic treatment showed an improvement of the Young's modulus, yield stress and elongation at break. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用超声辅助双螺杆挤出机以两种不同的流速制备包含0.4至3 wt%CNT的聚碳酸酯(PC)/碳纳米管(CNT)复合材料。在这项研究中使用的CNT是商品名为Baytubes C150P的多壁碳纳米管,这种材料具有相对较高的堆积密度,因此在工业生产中易于处理。研究了流速和超声振幅对PC挤出物和PC / CNT复合材料热稳定性的影响。表征了未处理和超声处理的复合材料的电学,形态学,流变学和机械性能。结果表明,不同PC挤出物之间的热稳定性差异很小,而CNT的掺入则显着降低PC的热稳定性。在PC / CNT复合材料的挤出过程中,由旋转螺杆引起的剪切力和由超声引起的气泡空化都有助于将CNT分散到聚合物基质中。在低流速下,CNT可以很好地分散,但这会引起聚合物基质的更多降解。在高流速下,CNT的分散性不如在低流速下好。关于这一观察,超声处理在短时间内改善CNT的分散和分布并同时增加产量方面显示出优异的能力和效率,这对于聚合物/纳米复合材料的工业生产特别重要和有益。在高流速下,随着超声振幅的增加,复合材料的电渗阈值降低,而储能模量和复数粘度通常增加。在低流速下,超声处理显示出杨氏模量,屈服应力和断裂伸长率的改善。 (C)2017 Elsevier Ltd.保留所有权利。

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