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Application of Surface Functionally Graded Materials for Solid Insulator in Gas Insulated Power Apparatus

机译:固体绝缘子的表面功能梯度材料在气体绝缘电力设备中的应用

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To uniform the electric field distributions and thus improve the flashover characteristics of insulators in AC gas insulated power apparatus, the concept of surface functionally graded material (SFGM) with a layer of designed permittivity ( ε) distribution along the insulator surface is proposed in this paper. The magnetron sputtering technique was used to fabricate the ε-uniform insulator and the ε-SFGM insulator by depositing BaTiO3layers. Finite element simulations were employed to investigate the electric field distributions and leakage currents of different insulators. The results show that for the ε-uniform insulator, a larger thickness of the sputtering layer results in a more uniform electric field distribution but a higher leakage current. With the application of the ε-SFGM insulator, the maximum electric field strength and leakage current are both reduced compared to the ε-uniform insulator. Finally, experimental tests were conducted to verify the feasibility of SFGM. The AC flashover voltage of the ε-SFGM insulator is much higher than those of the conventional insulator and the ε-uniform insulator. Therefore, the ε-SFGM insulator has great potential for improving the reliability of AC gas insulated power apparatus.
机译:为了使电场分布均匀,从而改善交流气体绝缘电力设备中绝缘子的闪络特性,提出了沿绝缘子表面具有设计介电常数(ε)分布层的表面功能梯度材料(SFGM)的概念。 。磁控溅射技术通过沉积BaTiO 3来制备ε-均匀绝缘体和ε-SFGM绝缘体 3 层。有限元模拟被用来研究不同绝缘子的电场分布和漏电流。结果表明,对于ε-均匀绝缘体,较大的溅射层厚度会导致更均匀的电场分布,但会产生较大的泄漏电流。通过使用ε-SFGM绝缘子,与ε-均匀绝缘子相比,最大电场强度和泄漏电流都降低了。最后,进行了实验测试以验证SFGM的可行性。 ε-SFGM绝缘子的交流闪络电压比常规绝缘子和ε-均匀绝缘子的交流闪络电压高得多。因此,ε-SFGM绝缘子具有提高交流气体绝缘电力设备可靠性的巨大潜力。

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