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The Effect of Epoxide on Molecular Chain Relaxation on Bisphenol A Epoxy Resin after Curing

机译:环氧化物对固化后双酚A环氧树脂的分子链松弛的影响

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Epoxy resin is widely used as insulating materials in the electric power equipment; however, these properties are affected by the dielectric relaxation greatly. In this paper, three kinds of E51 bisphenol A epoxy resin with different epoxides were used to make samples for differential scanning calorimetry experiment, fourier transform infrared spectroscopy test and broadband dielectric spectroscopy experiment to research the effect of epoxide on molecular chain relaxation. The results demonstrate the relaxation of molecular chain determines the complex permittivity at high frequency when the temperature is over glass transition temperature ($T_{g}$). Through fitting the complex permittivity, it is found the molecular chain relaxation of epoxy is dipole relaxation polarization. Epoxy resin with higher epoxide has stronger polarization intensity.
机译:环氧树脂广泛用作电力设备中的绝缘材料; 然而,这些性质受到介电弛豫的影响。 本文采用三种E51双酚A具有不同环氧化物的环氧树脂进行差示扫描量热法试验,傅里叶变换红外光谱试验和宽带介电光谱试验研究环氧化物对分子链松弛的影响。 结果表明,当温度超过玻璃化转变温度时,分子链的松弛决定了高频的复杂介电常数( $ t_ {g} $ < / tex> )。 通过拟合复杂的介电常数,发现环氧树脂的分子链松弛是偶极松弛极化。 环氧树脂具有更高的环氧化物具有较强的极化强度。

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