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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Broadband Complex Permittivity and Electric Modulus Spectra for Dielectric Materials Research
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Broadband Complex Permittivity and Electric Modulus Spectra for Dielectric Materials Research

机译:用于介电材料研究的宽带复杂介电常数和电气模谱

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摘要

Measurement of the complex permittivity of a substance in a wide frequency range, for example, from 10 mHz to 100 kHz, provides useful information on the dielectric properties of the substance. In this regard, some of such dielectric properties can be analyzed more clearly if we pay attention to the frequency spectra of electric modulus, which is a reciprocal of complex relative permittivity. Especially, the imaginary part of the electric modulus can be a powerful tool for dielectric materials research. In this paper, this fact is demonstrated clearly by showing abundant examples acquired by the author's laboratory. First, the equations of electric modulus that hold for various dielectric relaxation processes, including their derivation, are shown in an easy-to-understand manner. After that, for several insulating polymers, actual measurement examples of broadband complex permittivity spectra are shown, up to frequencies of about 100 kHz and a much broader range up to several THz. In the first example of showing permittivity spectra, polyamide exhibits an incredibly high relative permittivity value of 10(6) at high temperatures such as 200 degrees C at a frequency as low as 10 mHz. This is a result of the phenomenon often called electrode polarization. In other words, if electric charge carriers accumulate in an insulator facing a nearby electrode and have the polarity opposite to that of the electrode, the permittivity of the insulator goes up. In such a case, the dielectric loss factor usually shows a very high value in the low-frequency range and decreases in inverse proportion to the frequency. This reflects the fact that the charge carriers are transported, and the conductivity can be derived from this frequency dependence much more easily with apparently higher reliability than measuring the dc leakage current. Furthermore, it is shown that the coefficient of thermal expansion can be estimated from the permittivity spectra relatively accurately for several polymers that satisfy the necessary condition. Next, taking examples in electric modulus spectra measured in important insulating polymers such as engineering ones, it is demonstrated that the processes of dielectric polarization and relaxation, which are difficult to see in permittivity spectra, can be recognized obviously. Moreover, the effects of the addition of nanosized or microsized fillers to epoxy resin on its thermal property and filler-induced inhomogeneity are analyzed using the electric modulus spectra measured in these samples. The effects of thermal aging treatment and simultaneous aging treatment with heat and radiation on the degradation of cross-linked polyethylene are also analyzed by paying attention to the frequency spectra of its imaginary electric modulus. (c) 2022 Institute of Electrical Engineers of Japan. Published by Wiley Periodicals LLC.
机译:测量物质在较​​大频率范围内的复杂介电常数,例如从10 MHz到100 kHz,提供了有关该物质介电特性的有用信息。在这方面,如果我们注意电气模量的频谱,这是复杂的相对介电性的互惠,可以更清楚地分析某些此类介电特性。特别是,电气模量的虚构部分可以成为介电材料研究的强大工具。在本文中,通过显示作者实验室获得的大量例子,可以清楚地证明这一事实。首先,以易于理解的方式显示了用于各种介电松弛过程(包括其推导)的电气模量的方程。之后,对于几种绝缘聚合物,显示了宽带复杂介电常数光谱的实际测量示例,直至约100 kHz的频率,并且范围更大,直至几个THz。在显示介电常数光谱的第一个示例中,聚酰胺在高温下(例如200度C)在低至10 MHz的频率下表现出非常高的相对介电常数为10(6)。这是这种现象通常称为电极极化的结果。换句话说,如果电荷载体积聚在面向附近电极并与电极相反的绝缘体中,则绝缘体的介电性会上升。在这种情况下,介电损耗因子通常在低频范围内显示出很高的值,并且与频率相反。这反映了一个事实,即荷载流子是运输的,并且与测量直流泄漏电流相比,可以从该频率依赖性得出的电导率更容易得多。此外,可以证明,对于满足必要条件的几种聚合物,可以从介电常数光谱相对准确地估算热膨胀系数。接下来,以在重要的绝缘聚合物(例如工程化合物)中测量的电气模谱中以示例为例,可以显然可以识别出介电偏振和放松的过程,在介电特性光谱中很难看到。此外,使用这些样品中测得的电气模谱分析了在环氧树脂中添加纳米化或微溶质填充物对其热性质和填充物诱导的不均匀性的影响。还要通过注意其假想电气模量的频谱来分析热老化处理和同时使用热和辐射同时衰老处理对交联聚乙烯降解的影响。 (c)2022日本电气工程师研究所。由Wiley Wendericals LLC出版。

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