高压高开启速度下真空断流波纹管力学耐久性试验研究

Xue Liu, L. Hong, X. Yao, Liqiong Sun, Zhiyuan Liu, Jianhua Wang, Yingsan Geng
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引用次数: 1

摘要

真空灭弧器(VI)在高开启速度的高压绝缘气体中使用时,可达到较高的电绝缘等级。但是,经过多次机械操作后,会增加波纹管疲劳失效的风险。通过经验公式和仿真计算,可以得到真空断流器波纹管的应力和机械耐久性,但没有实验揭示在高气压和高开启速度下波纹管的机械耐久性。本文的目的是通过实验确定高气体压力和高开启速度下VI波纹管的机械耐久性。采用40.5 kV电磁斥力作动器驱动波纹管元件实现高速,采用半密封罐体作为气体调压单元。实验研究了波纹管内表面和外表面分别承受高压的两种情况。第一种情况下,内表面气体压力为0.5MPa,外表面气体压力为0.1 MPa,开启速度为2.8 m/s。第二种情况下,内表面气体压力为0.1MPa,外表面气体压力为0.6 MPa。开启速度分别为3.5 m/s、5 m/s和6.5 m/s。试验结果表明,第一种情况下的力学耐久性为1410次。当开启速度为3.5、5和6.5 m/s时,第二种壳体的机械寿命分别为705、437和288次。
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Experimental Study on the Mechanical Endurance of Vacuum Interrupter Bellows Subjected to High Gas Pressure and High Opening Velocity
When a vacuum interrupter (VI) is used in a high pressure of insulating gas with a high opening velocity, a high electrical insulation level can be achieved. However, it will increase the risk of the bellows fatigue failure after a number of mechanical operations. Through empirical formulas and simulation calculation, one can get the stress and mechanical endurance of the vacuum interrupter bellows, however, there is no experiments revealing the mechanical endurance of the bellows when it is subjected to high gas pressure and high opening velocity. The objective of this paper is to experimentally determine the mechanical endurance of the VI bellows subjected to high gas pressure and high opening velocity. A 40.5 kV electromagnetic repulsion actuator is used to drive a bellows component to achieve a high velocity, and a semi-sealed tank is used as the gas pressure regulating unit. Two cases were experimentally investigated, in which the inner surface and the outer surface of the bellows suffered the high gas pressure, respectively. In the first case, the gas pressure subjected to the inner surface was 0.5MPa, and that of the outer surface was 0.1 MPa, respectively, the opening velocity was 2.8 m/s. In the second case, the gas pressure subjected to the inner surface was 0.1MPa, and that of the outer surface was 0.6 MPa, respectively. The opening velocity was 3.5 m/s, 5 m/s and 6.5 m/s, respectively. The experiments results showed that the mechanical endurance of the first case was 1410 cycles. The mechanical endurance of the second case was 705, 437, and 288 cycles when the opening velocity was 3.5, 5 and 6.5 m/s, respectively.
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