首页> 外文期刊>Journal of Applied Polymer Science >Influence of Processing Conditions in Small-Scale Melt Mixing and Compression Molding on the Resistivity and Morphology of Polycarbonate–MWNT Composites
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Influence of Processing Conditions in Small-Scale Melt Mixing and Compression Molding on the Resistivity and Morphology of Polycarbonate–MWNT Composites

机译:小型熔融混合和压缩成型工艺条件对聚碳酸酯-MWNT复合材料电阻率和形貌的影响

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Polycarbonate (PC) composites containing 1 wt % multiwalled carbon nanotubes (MWNT) were produced in a small-scale DACA microcompounder under variation of mixing temperature and mixing speed at fixed mixing time according to a two-factor and threelevel factorial design. The extruded strands were compression molded under comparable conditions, and their volume resistivity values indicated differences of about 14 orders of magnitude as well as big differences in the state of MWNT agglomerate dispersion (evaluated as macrodispersion index) are observed. The results indicate that mixing at high melt temperature and high speed can lead to the composites having low resistivity and high dispersion index at low mixing energy input. The influence of compression molding parameters was investigated on precompounded PC composites containing 1 and 2 wt % MWNT. Compression molding parameters such as temperature, time, and speed were varied according to a three-level and three-factor factorial design. By adjusting compression molding parameters, the volume resistivity of PC with 1 wt % MWNT composites can be varied over eight orders of magnitude, whereas for 2 wt % MWNT, the variation was within one decade. The electrical volume resistivity results indicate the highest influence of the compression molding temperature followed by time.
机译:根据二元和三级因子设计,在固定混合时间和混合温度和混合速度变化的条件下,在小型DACA微粉碎机中生产包含1 wt%多壁碳纳米管(MWNT)的聚碳酸酯(PC)复合材料。在相当的条件下对挤出的线进行压塑,其体积电阻率值表明约有14个数量级的差异,并且观察到MWNT团聚体分散状态的差异也很大(评估为大分散指数)。结果表明,在高熔融温度和高速下混合可导致在低混合能量输入下复合材料具有低电阻率和高分散指数。研究了压缩模塑参数对包含1和2 wt%MWNT的预混合PC复合材料的影响。压缩成型参数(例如温度,时间和速度)根据三级和三因素因子设计而变化。通过调整压缩成型参数,具有1 wt%MWNT复合材料的PC的体积电阻率可以在八个数量级上变化,而对于2 wt%MWNT的PC,其变化率在十年之内。体积电阻率结果表明压缩成型温度的影响最大,其次是时间。

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