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首页> 外文期刊>Chemical Engineering Science >In situ assembly using a continuous chaotic advection blending process of electrically conducting networks in carbon black-thermoplastic extrusions
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In situ assembly using a continuous chaotic advection blending process of electrically conducting networks in carbon black-thermoplastic extrusions

机译:在炭黑-热塑性挤出物中使用导电网络的连续混沌对流混合过程进行原位组装

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An industrially relevant continuous flow blending process has been developed that controllably forms in the melt various structured distributions of carbon black particles to impart uniform or directional conductivities to extrusions such as film, sheet, or tubing. A range of electrical properties was selectable on line via process parameter specification. Process control also made possible production of extrusions with graduated or periodic properties such that functional materials and devices can be extracted from extrusions. The process was enabled by chaotic advection, a recent sub-field of fluid mechanics, and was previously demonstrated in part for particulate additives with batch devices. Unlike conventional mixing where the focus is on attaining uniform particle dispersions, chaotic advection inherently promoted structure formation in melts at increasingly smaller length scales such that percolation thresholds can be reduced. Because conducting conditions are attained at low solid additive loadings, a reverse percolation effect was also induced via controlled structure breakdown. Progressive structure formation is related to electrical properties and processing conditions. Methods are applicable to other melt-processable materials and additives. (c) 2004 Elsevier Ltd. All rights reserved.
机译:已经开发出一种工业上相关的连续流混合工艺,该工艺可在熔体中可控地形成炭黑颗粒的各种结构分布,以使挤出物(如薄膜,片材或管材)具有均匀或定向的导电性。可以通过工艺参数规格在线选择一系列电性能。过程控制还使得具有渐变或周期性特性的挤压件的生产成为可能,从而可以从挤压件中提取功能材料和设备。该过程是通过混沌对流实现的,混沌对流是流体力学的一个新领域,先前已通过批处理设备部分证明了颗粒添加剂。与传统的混合方法着重于获得均匀的颗粒分散体不同,混沌平流固有地以越来越小的长度尺度促进了熔体中结构的形成,从而可以降低渗透阈值。因为在低固体添加剂负载下可以达到导电条件,所以还可以通过控制结构分解来诱导反向渗透作用。渐进结构的形成与电性能和加工条件有关。方法适用于其他可熔融加工的材料和添加剂。 (c)2004 Elsevier Ltd.保留所有权利。

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