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Simulation of Electrical and Thermal Behavior of Conductive Polymer Composites Heating Elements

机译:导电聚合物复合材料加热元件电和热行为的模拟

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摘要

Experimental and modeling studies were performed to describe the electrical and thermal behavior of two diphasic conductive polymer composites when subjected to electrical potential difference. The evolution of effective thermal conductivity of the conductive phase, poly(ethylene-co-ethyl acrylate)-carbon black or poly(amide12-b-tetramethyleneglycol)—carbon black, have been measured and compared to existing empirical models as a function of filler content. The diphasic materials were obtained by blending a conductive phase with an insulating polymer, poly(butylene terephthalate). The thermophysical characteristics of the diphasic materials were measured as a function of temperature. Ohmic heating experiments were performed on extruded tapes. A two-dimensional finite element model has been developed to determine the thermal and electrical behavior of these devices. The numerical and experimental results were in good agreement. This original use of diphasic material shows their interest in achieving heating elements.
机译:进行了实验和建模研究,以描述两种两相导电聚合物复合材料在受到电势差时的电和热行为。已测量了导电相(聚(乙烯-丙烯酸乙酯)-炭黑或聚(酰胺12-b-丁二醇)-炭黑)的有效导热率,并将其与现有的经验模型作为填料的函数进行了比较内容。通过将导电相与绝缘聚合物(聚对苯二甲酸丁二醇酯)共混来获得两相材料。测量了两相材料的热物理特性随温度的变化。在挤压带上进行欧姆加热实验。已经开发出二维有限元模型来确定这些设备的热和电性能。数值和实验结果吻合良好。双相材料的最初用途显示了它们对获得加热元件的兴趣。

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