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Effect of cooling rate on the properties of high density polyethylene/multi-walled carbon nanotube composites

机译:冷却速率对高密度聚乙烯/多壁碳纳米管复合材料性能的影响

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High density polyethylene (HDPE)/multi-walled carbon nanotube (MWCNT) nanocomposites were prepared by melt mixing using twin-screw extrusion. The extruded pellets were compression moulded at 200°C for 5min followed by cooling at different cooling rates (20°C/min and 300°C/min respectively) to produce sheets for characterization. Scanning electron microscopy (SEM) shows that the MWCNTs are uniformly dispersed in the HDPE. At 4 wt% addition of MWCNTs composite modulus increased by over 110% compared with the unfilled HDPE (regardless of the cooling rate). The yield strength of both unfilled and filled HDPE decreased after rapid cooling by about 10% due to a lower crystallinity and imperfect crystallites. The electrical percolation threshold of composites, irrespective of the cooling rate, is between a MWCNT concentration of 1~2 wt%. Interestingly, the electrical resistivity of the rapidly cooled composite with 2 wt% MWCNTs is lower than that of the slowly cooled composites with the same MWCNT loading. This may be due to the lower crystallinity and smaller crystallites facilitating the formation of conductive pathways. This result may have significant implications for both process control and the tailoring of electrical conductivity in the manufacture of conductive HDPE/MWCNT nanocomposites.
机译:采用双螺杆挤出熔融混合制备高密度聚乙烯(HDPE)/多壁碳纳米管(MWCNT)纳米复合材料。将挤出的粒料在200℃下压缩成型5米,然后以不同的冷却速率(分别为20℃/ min和300℃/ min)以产生表征的薄片。扫描电子显微镜(SEM)表明MWCNT均匀地分散在HDPE中。与未填充的HDPE相比,4wt%的MWCNTS复合模量增加超过110%(无论冷却速度)。由于较低的结晶度和不完美的微晶,在快速冷却后,未填充和填充的HDPE的屈服强度降低了约10%。复合材料的电渗透阈值,无论冷却速率如何,都在1〜2wt%的MWCNT浓度之间。有趣的是,用2wt%MWCNT的快速冷却复合材料的电阻率低于具有相同MWCNT负载的缓慢冷却复合材料的电阻率。这可能是由于促进形成导电途径的下结晶度和更小的微晶。该结果可能对过程控制和导电HDPE / MWCNT纳米复合材料的制造中的过程控制和剪裁导电性具有显着意义。

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