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Effect of temperature on space charge characteristics in epoxy resin

机译:温度对环氧树脂空间电荷特性的影响

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Epoxy resin has been widely used as the dry-type insulation in high voltage direct current bushing. The temperature of the central conductor can go up to 90-105°C when working at the rated power flow. Thus, the inner insulation made of epoxy resin sustains these high temperatures. In order to study the effect of temperature on the dielectric performance, the space charge characteristics of epoxy resin at different temperatures (21, 40, 60, 80 and 100°C) have been studied with an improved pulsed electro-acoustic set-up. Moreover, the temperature dependence of the volume resistivity has also been measured. Only homocharge close to the electrodes can be found in all tests. The higher the temperature, the more serious the electric field distortion is in the bulk of a sample. The threshold for space charge accumulation decreases remarkably with increasing temperature. Both the apparent trap-controlled charge mobility and the dc conductivity show similar positive temperature dependence, which increases with the elevation of temperature, resulting in different charge decay characteristics at different temperatures. The apparent trap depths corresponding to different temperatures have also been obtained.
机译:环氧树脂已被广泛用作高压直流套管中的干式绝缘。在额定功率下工作时,中心导体的温度可高达90-105°C。因此,由环氧树脂制成的内部绝缘体承受这些高温。为了研究温度对介电性能的影响,通过改进的脉冲电声设置,研究了环氧树脂在不同温度(21、40、60、80和100°C)下的空间电荷特性。此外,还测量了体积电阻率的温度依赖性。在所有测试中只能发现靠近电极的均电荷。温度越高,样品主体中的电场畸变就越严重。随着温度的升高,空间电荷积累的阈值显着降低。表观陷阱控制的电荷迁移率和直流电导率都显示出相似的正温度依赖性,其随温度升高而增加,从而导致在不同温度下具有不同的电荷衰减特性。还获得了对应于不同温度的表观陷阱深度。

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