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Compatibility between C4F7N/CO2and Epoxy Resin in Electro-thermal Environment

机译:C4F7N / CO2AND环氧树脂在电热环境中的相容性

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Fluorinated nitrile (C4F7N) is a potential SF6-alternative gas in Gas-Insulated Transmission Line (GIL) due to its lower impact to global warming and excellent dielectric strength. To ensure the long-term physical and chemical stability between C4F7N/CO2gas and epoxy resin assembling in GIL, laboratory tests on the material compatibility under electro-thermal stresses were done. In the tests, a platform of electro-thermal acceleration test in a gas closed high pressure chamber was used. The conditions of the electro-thermal acceleration were set to the maximum allowable values (70°C-5kV/mm) which are commensurate to the normal operation conditions of GIL. The tests lasted for 1000 hours. Moreover, the conditions of the thermal acceleration tests under 70°C were also set up. The compatibility between the gas and solid insulating materials in contact is evaluated in terms of the changes of insulation performance after long tests. The changes of gas compositions and solid contents were also assessed. It was found that the surface flashover voltages decreased after electro-thermal acceleration tests. In contrast, the surface flashover voltages increased after only thermal acceleration tests, indicating that the deterioration of insulation was affected by the electric field. Results showed that there was no evidence of reaction between the epoxy resin and C4F7N/CO2under the experimental conditions.
机译:氟化腈(C4F7N)是潜在的SF 6 - 气体绝缘传输线(GIL)中的替代气体由于其对全球变暖的较低影响和优异的介电强度。确保C之间的长期物理和化学稳定性 4 F 7 n / co. 2 在GIL中组装GIL的气体和环氧树脂,进行了对电热应力下的材料相容性的实验室测试。在测试中,使用了气体封闭的高压室中的电热加速试验平台。电热加速的条件被设定为最大允许值(70°C-5kV / mm),其与GIL的正常操作条件相称。测试持续了1000小时。此外,还设立了70°C下的热加速试验的条件。在长时间测试后的绝缘性能的变化方面,评估气体和固体绝缘材料之间的兼容性。还评估了气体组合物和固体内容物的变化。发现电热加速试验后表面闪络电压降低。相反,表面闪络电压仅在热加速试验之后增加,表明绝缘的劣化受电场的影响。结果表明,环氧树脂和C之间没有反应的证据 4 F 7 n / co. 2 在实验条件下。

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