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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Achieving excellent dispersion and electrical conductivity of olefin block copolymer/MWCNTs composites efficiently via high-shear processing
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Achieving excellent dispersion and electrical conductivity of olefin block copolymer/MWCNTs composites efficiently via high-shear processing

机译:通过高剪切处理有效地实现烯烃嵌段共聚物/ MWCNTS复合材料的优异分散和导电性

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摘要

Abstract Melt blending is a promising and practical method to prepare electrical conductive polymer composites containing multiwalled carbon nanotubes (MWCNTs). The key is to achieve a good dispersion of MWCNTs in polymer matrix. In this study, olefin block copolymer (OBC)/MWCNTs composites were prepared using co-rotating twin-screw extruder with high rotation speed and the influence of screw rotation speed on the dispersion, shortening of MWCNTs and the macro-properties of composites was systematically investigated. It was found that the entangled agglomerates of MWCNTs could be easily destroyed by using high rotation speed and an improved dispersion of MWCNTs was observed as increasing of rotation speed from 50 to 500?rpm. However, with further increasing of rotation speed from 500 to 1000?rpm, no better dispersion was evidenced but a reduction of nanotubes length was detected. As a result, the best electrical conductivity and mechanical properties of OBC/MWCNTs composites were achieved via using the rotation speed of 500?rpm. And the electrical percolation threshold obtained was about 1.5?wt%. This study provides significant guidance for large-scale preparation of conductive composites materials by using co-rotating twin-screw extruder with high rotation speed. Graphical abstract
机译:<![CDATA [ 抽象 熔融混合是一种准备含有多壁碳纳米管(MWCNT)的导电聚合物复合材料的有前途和实用的方法。关键是在聚合物基质中实现MWCNT的良好分散。在该研究中,使用具有高转速的共旋转双螺杆挤出机制备烯烃嵌段共聚物(OBC)/ MWCNTs复合材料,以及螺杆转速对分散体的影响,系统地缩短了MWCNT的缩短和复合材料的宏观性质调查。发现通过使用高旋转速度可以容易地破坏MWCNT的缠结凝聚,并且观察到MWCNT的改善的分散体作为从50至500℃的转速增加。然而,通过从500至1000℃的进一步增加旋转速度Δrpm,不证明更好的分散体,但检测到纳米管长度的减少。结果,通过使用500℃的转速来实现OBC / MWCNTS复合材料的最佳导电性和机械性能。获得的电渗透阈值约为1.5℃%。该研究通过使用高旋转速度的共旋转双螺杆挤出机提供了大规模制备导电复合材料材料的显着指导。 图形抽象 < CE:简单 - 段落

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