Two test methods for obtaining activation energy of epoxy resin and their effectiveness analysis

Q. Tang, Xue Li, Wei Yan, Q. Liu, Honglei Liu, P. Ren
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引用次数: 1

Abstract

Activation energy, as an intrinsic property to characterize the insulation state of materials, has important applications in the aging state and life assessment of insulating materials. How to calculate the activation energy of epoxy resin accurately and how to grasp the applicability of different calculation methods are the hot issues in current research. At present, the main methods of calculating activation energy include thermogravimetric method and dielectric spectrum method. there are some differences in the physicochemical connotation of activation energy obtained by these two methods. This paper introduces the method of obtaining activation energy and its applicability. With epoxy resin as an example, analysis of the two kinds of activation energy of the physical and chemical process, studies the thermogravimetric method of chemical activation energy and the dielectric spectrum method to calculate the relaxation activation energy, the results show that chemical activation energy on behalf of the energy required to overcome the barrier of the chemical reaction, relaxation activation energy represents the micro motion unit under the effect of electric field to move the energy to overcome. The activation energies measured by the two methods are obviously different, and their application ranges are also obviously different.
环氧树脂活化能的两种测试方法及其有效性分析
活化能作为表征材料绝缘状态的一种内在属性,在绝缘材料的老化状态和寿命评估中有着重要的应用。如何准确计算环氧树脂的活化能,如何把握不同计算方法的适用性,是当前研究的热点问题。目前,计算活化能的主要方法有热重法和介电谱法。这两种方法得到的活化能的物理化学内涵有所不同。本文介绍了活化能的求取方法及其适用性。以环氧树脂为例,分析了两种活化能的物理化学过程,研究了用热重法计算化学活化能和用介电谱法计算弛豫活化能,结果表明,化学活化能代表克服化学反应势垒所需的能量;松弛激活能表示微运动单元在电场作用下运动所克服的能量。两种方法测得的活化能有明显差异,适用范围也有明显不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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