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首页> 外文期刊>Journal of intelligent material systems and structures >Comparing the elasticity of the melt and electrical conductivity of the solid of PP-HDPE copolymer CNT composites obtained by direct compounding versus dilution of a PP masterbatch
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Comparing the elasticity of the melt and electrical conductivity of the solid of PP-HDPE copolymer CNT composites obtained by direct compounding versus dilution of a PP masterbatch

机译:通过直接复合与PP母料稀释的PP-HDPE共聚物CNT复合材料的固体熔体和导电性的弹性进行比较

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摘要

Composites of multiwall carbon nanotubes (CNT) at 1, 2, and 3 wt.% on a polypropylene–polyethylene random copolymer matrix were prepared by melt compounding CNT powder and by dilution of a commercial polypropylene masterbatch (PMB). While the shear viscosity shows similar behavior for both dilution modes, the differences in their elastic properties clearly show the effect of the addition method and the presence of the PMB. This also indicates the relevance of having a difficult to mix masterbatch to enhance the elongational viscosity of the composites for free wall applications such as fiber spinning and blown film. On the other hand, the 2 and 3 wt.% CNT composites from both addition modes have similar electrical conductive behavior, with values near the semiconductors’ range. TEM and SEM images show different states of dispersion for each source of CNT. The immiscibility observed in those images is the simplest explanation for the differences in the molten composites’ elastic properties due to direct CNT addition versus CNT addition by dilution of a PMB.
机译:通过熔融配合CNT粉末制备多壁碳纳米管(CNT)的多壁碳纳米管(CNT)的复合物,在聚丙烯 - 聚乙烯无规共聚物基质上并通过稀释商业聚丙烯母料(PMB)制备。虽然剪切粘度显示出稀释模式的类似行为,但它们的弹性性质的差异清楚地显示了添加方法和PMB的存在的效果。这也表明难以混合母料难以混合以增强复合材料的伸长粘度,例如纤维纺丝和吹塑膜的复合材料的伸长粘度。另一方面,来自两个附加模式的2和3重量%的CNT复合材料具有相似的导电行为,附近半导体范围附近的值。 TEM和SEM图像显示CNT的每个来源的不同分散状态。在这些图像中观察到的不混溶性是由于通过稀释PMB的直接CNT添加而不是CNT加入的熔融复合材料的弹性性能的差异最简单的解释。

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