首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Electrically conductive carbon black (CB) filled in situ microfibrillar poly(ethylene terephthalate) (PET)/polyethylene (PE) composite with a selective CB distribution
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Electrically conductive carbon black (CB) filled in situ microfibrillar poly(ethylene terephthalate) (PET)/polyethylene (PE) composite with a selective CB distribution

机译:具有选择性CB分布的导电碳黑(CB)填充原位微纤维状聚对苯二甲酸乙二酯(PET)/聚乙烯(PE)复合材料

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In the present study, it was attempted to fabricate a new conductive carbon black (CB) filled poly(ethylene terephthalate) (PET)/polyethylene (PE) in situ microfibrillar composite with a lower percolation threshold through selectively localizing CB particles in the surfaces of the PET microfibrils. The CB particles were first mixed with PE matrix, and then PET was added into CB/PE compound. Subsequently, the CB/PET/PE composite was subjected to a slit die extrusion, hot stretch and quenching process to generate in Situ PET microfibrils, in which CB particles moved to the surfaces of the PET microfibrils simultaneously. The morphological observation showed that the PET phases formed well-defined microfibrils, and CB particles did overwhelminaly localize in the surfaces of the PET microfibrils, which led to a very low percolation threshold, i.e., 3.8 vol%, and a good conductivity. The conductive network was built by the contact and overlapping of the CB particles coated PET microfibrils. In addition, the CB particles remaining in the PE matrix also contributed to the conductive paths, especially for the high CB loading filled microfibrillar composites. Because of the complexity of the distribution of CB particles, a high critical resistance exponent t (t = 6.4) exists in this conductive composite. To reveal the possibility of the migration of CB particles from PE to PET, the morphology of the CB/PET/PE composite mixed for different times was examined. It was found that, depending on the mixing, time, the CB particles gradually migrated from the PE matrix to the surfaces at first, and then to the center of the PET phases. The preferable distribution of CB particles was originated from several factors including interfacial tension, viscosity, molecule polarity, and mixing process. Furthermore, during the mixing process of the CB/PET/PE composite, the migration of CB particles to PET phase from PE matrix led to the increase of both the viscosity ratio of the dispersed phase to the matrix and the volume of the dispersed phases, thus resulting in larger dispersed CB/PET composite phase particles. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在本研究中,试图通过选择性地将CB颗粒定位在碳纳米管的表面来制造具有较低渗透阈值的新型导电炭黑(CB)填充聚对苯二甲酸乙二酯(PET)/聚乙烯(PE)原位微纤丝复合材料。 PET微纤维。首先将CB颗粒与PE基体混合,然后将PET添加到CB / PE化合物中。随后,对CB / PET / PE复合材料进行狭缝模头挤压,热拉伸和淬火过程以生成原位PET微纤维,其中CB颗粒同时移动到PET微纤维的表面。形态学观察表明,PET相形成了明确的微纤维,并且CB颗粒确实在PET微纤维的表面中过多地定位,这导致非常低的渗透阈值,即3.8vol%,和良好的导电性。导电网络是通过涂覆CB颗粒的PET微纤维的接触和重叠建立的。此外,残留在PE基质中的CB颗粒也有助于导电路径,特别是对于高CB填充微纤维复合材料而言。由于CB颗粒分布的复杂性,该导电复合材料中存在很高的临界电阻指数t(t = 6.4)。为了揭示CB颗粒从PE迁移到PET的可能性,研究了在不同时间混合的CB / PET / PE复合材料的形态。发现,根据混合时间,CB颗粒首先从PE基质逐渐迁移到表面,然后再迁移到PET相的中心。 CB颗粒的优选分布是由几个因素引起的,包括界面张力,粘度,分子极性和混合过程。此外,在CB / PET / PE复合材料的混合过程中,CB颗粒从PE基质向PET相的迁移导致分散相与基质的粘度比以及分散相体积的增加,因此产生较大的分散的CB / PET复合相颗粒。 (c)2006 Elsevier Ltd.保留所有权利。

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