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Study on Mechanical Characteristics of GIL Three Post Insulator Under Different Loads

机译:不同载荷下GIL三岗位绝缘子力学特性研究

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Stress concentration will cause mechanical strength deterioration of three-post insulators in GIL, which may threaten the safe and stable operation of GIL. In this paper, the simulation model of a 550 kV GIL three-post insulator is established, and the stress and strain simulation of three post insulator under horizontal and vertical installation conditions are carried out. The stress and strain development laws of the insulator under different radial pressures and axial tensions are studied. The results show that the maximum radial pressure is 9197.1 N in horizontal installation and 2975.2 N in vertical installation. Regardless of the loading mode, the maximum stress of the insulator is at the interface between the epoxy and the grounding insert. With the in-crease of load, the maximum stress and strain of the three-post insulator increase linearly.
机译:应力浓度将导致吉尔三柱绝缘子的机械强度劣化,这可能威胁到吉尔的安全稳定。 在本文中,建立了550 kV GIL三柱绝缘子的仿真模型,进行了水平和垂直安装条件下三个绝缘子的应力和应变模拟。 研究了不同径向压力和轴向张力下绝缘体的应力和应变发育规律。 结果表明,在横向安装中最大径向压力为9197.1n,垂直安装中的2975.2 n。 无论加载模式如何,绝缘体的最大应力位于环氧树脂和接地插入件之间的界面处。 随着负荷的折痕,三柱绝缘体的最大应力和应变线性地增加。

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