石墨基填料导电硅酸盐复合材料的微观结构研究

S. Baranek, L. Mészárošová, R. Drochytka, G. Yakovlev
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引用次数: 0

摘要

导电复合材料目前广泛应用于包括建筑材料在内的许多工业领域。其中一个可能的应用是作为电阻探头。这些探针被设计用来监测建筑材料的内部结构变化,并预测它们的耐久性、过载或缺陷。常用的复合材料多为硅酸盐或生物聚合物基和碳基填料。本文主要研究了含石墨基填料的硅酸盐基导电复合材料的微观结构。选择填料的微观结构形状是为了尽可能地保持高导电性。此外,还监测了水分对硅酸盐复合材料导电性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Microstructure of Electrically Conductive Silicate Composites with Graphite-Based Fillers
Electrical conductive composite materials are nowadays widely used in many industrial applications include building materials. One of the possible applications is as a resistance probe. Those probes were designed to monitor internal structural changes of building materials built into construction and to predict their durability, over-load, or defects. Mostly used composite materials are silicate or biopolymer-based with carbon-based filler. This article is dedicated to the study of the microstructure of silicate-based electrically conductive composites with graphite-based fillers. The microstructural shape of fillers was chosen concerning preserving as high conductivity as possible. Furthermore, the effect of moisture on the electrically conductive properties of the silicate composite was monitored.
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