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A novel way of enhancing the electrical and thermal stability of conductive epoxy resin-carbon black composites via the joule heating effect for heating-element applications

机译:一种通过焦耳热效应增强导电环氧树脂-炭黑复合材料电和热稳定性的新颖方法,用于加热元件应用

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The influence of Joule heating treatments and carbon black (CB) on the electrical and thermal behavior of epoxy resin composites is well described in this article. The effect of CB and Joule heating on network structure characteristics, such as shrinkability, interparticle distance between conductive particles, crosslinking density, hardness, thermoelectric power, thermal conductivity, the thermal expansion coefficient, and scanning electron microscopy, of epoxy composites was investigated. The electrical conductivity (sigma) of epoxy resin correlated with the volume fraction of CB and Joule heating treatment. sigma, increased continuously with increasing CB content, and Joule heating increased the level of sigma, which makes it attractive for electronic utilization. The sigma, for fresh and Joule heating samples was recorded during heating-cooling cycles. The conduction mechanism of sigma, for epoxy composites was identified. The activation energy and hopping energy for two batches of epoxy as a function of CB content were estimated. The hopping distance, the state density at the Fermi level, and the radius of localized wave function versus CB content were evaluated. The current-voltage-temperature characteristics of fresh and Joule heating samples of epoxy composites were demonstrated. The thermal reliability was tested by means of temperature-time characteristics when certain applied power was on and off for several cycles. The specific heat and amount of heat transfer by radiation and convection were calculated based on the energy balance model for two batches. The results indicate that the Joule heating effect is a very effective and prospective way of enhancing the electrical and thermal stability of epoxy-CB composites for consumer use as heaters and in other electronic areas such as electromagnetic shielding effectiveness. (C) 2002 Wiley Periodicals, Inc. [References: 16]
机译:本文充分描述了焦耳热处理和炭黑(CB)对环氧树脂复合材料电学和热学性能的影响。研究了CB和焦耳加热对环氧树脂复合材料的网络结构特征(如收缩性,导电粒子之间的粒子间距离,交联密度,硬度,热电功率,导热系数,热膨胀系数和扫描电子显微镜)的影响。环氧树脂的电导率(sigma)与CB的体积分数和焦耳热处理相关。 sigma随着CB含量的增加而持续增加,焦耳加热提高了sigma的水平,这使其对电子应用具有吸引力。在加热-冷却循环期间记录新鲜和焦耳加热样品的sigma。确定了sigma用于环氧复合材料的导电机理。估算了两批环氧树脂的活化能和跳跃能随CB含量的变化。评估了跳跃距离,费米能级的状态密度以及局域波函数半径与CB含量的关系。证明了环氧复合材料新鲜和焦耳加热样品的电流-电压-温度特性。当某些施加的电源开启和关闭几个周期时,通过温度-时间特性测试热可靠性。基于能量平衡模型,计算了两个批次的比热以及通过辐射和对流进行的热传递量。结果表明,焦耳热效应是增强环氧-CB复合材料的电和热稳定性的非常有效和前瞻性的方法,该复合材料可作为消费者用作加热器以及用于其他电子领域,例如电磁屏蔽效果。 (C)2002 Wiley Periodicals,Inc. [参考:16]

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