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首页> 外文期刊>Journal of Applied Polymer Science >The influence of melt-mixing process conditions on electrical conductivity of polypropylene/multiwall carbon nanotubes composites
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The influence of melt-mixing process conditions on electrical conductivity of polypropylene/multiwall carbon nanotubes composites

机译:熔融混合工艺条件对聚丙烯/多壁碳纳米管复合材料电导率的影响

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摘要

The influence of melt-mixing parameters on the development of "network-like" structure of multiwall carbon nanotubes (MWNTs) in injection-molded polypropylene (PP)/MWNTs composites was assessed through AC electrical conductivity measurements. A higher melt-mixing temperature (260°C as compared to 200, 220, and 240°C) at a fixed rotational speed of the screws (150 rpm) and at a fixed mixing time (15 min) has yielded maximum improvement in electrical conductivity in PP/MWNTs composites of 3 wt % MWNTs content. Next to higher melt-mixing temperature, a variation in the melt-mixing time has also led to a variation in electrical conductivity of the composites. Raman spectroscopic analysis revealed an increase in the ratio of intensity due to G-band over that of D-band (I _G/I _D) of the MWNTs in the "skin" region as compared to the "core" region of the injection-molded composites irrespective of the melt-mixing conditions. Microscopic observations could not provide much insight into the variation of MWNTs network-like structure in various PP/MWNTs composites. An attempt has been made to understand the variation of network-like structure of MWNTs in PP/MWNTs composites as a function of melt-mixing parameters through electrical conductivity measurements, Raman spectroscopic analysis, and morphological investigations.
机译:通过交流电导率测量评估了熔融混合参数对注塑聚丙烯(PP)/ MWNTs复合材料中多壁碳纳米管(MWNTs)“网状”结构发展的影响。在螺杆的固定转速(150 rpm)和固定的混合时间(15 min)下,较高的熔融混合温度(与200、220和240°C相比,为260°C)在电气性能上有最大的改善MWNTs含量为3 wt%的PP / MWNTs复合材料的电导率。在较高的熔融混合温度之后,熔融混合时间的变化也导致了复合材料的电导率的变化。拉曼光谱分析显示,与注射的“核心”区域相比,“皮肤”区域中MWNT的G波段强度比D波段强度强度比例增加(I _G / I _D),模塑复合材料,与熔融混合条件无关。显微镜观察无法提供各种PP / MWNTs复合材料中MWNTs网络状结构变化的深刻见解。已尝试通过电导率测量,拉曼光谱分析和形态学研究来了解PP / MWNTs复合材料中MWNTs的网络状结构随熔体混合参数的变化。

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