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Fatigue fracture of composite insulator sheds utilized in strong wind areas

机译:强风区复合绝缘子棚的疲劳断裂

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This paper presents the fracture failure mechanism of composite insulators that have been deployed for only one year on 750 kV transmission lines in strong wind areas. Investigations indicate that the flexible shed structure was vulnerable to flow-induced oscillation, which further brought cracking to the shed root. The interactive process of fatigue and fracture was reviewed by inspecting the failed samples to gain insight into the cracking mechanism. The fatigue theory of silicone rubber was introduced to illustrate the fatigue resistance of the material. Simulations of wind load and stress distribution were performed to demonstrate the load condition and stress concentration at the root area on sheds. Wind tunnel tests show the oscillation of two types of 750 kV insulators under strong winds of up to 60 m/s. Four samples of silicone rubber from major insulator manufacturers were tested to investigate the fatigue resistance property, and withstand limit of high- and lowperformance silicone rubbers. Results indicate that, composite insulators without specific design and wind tunnel tests were risky to apply on transmission lines in strong wind areas, which is common type of climate in northwestern China.
机译:本文介绍了在强风地区在750 kV输电线路上部署仅一年的复合绝缘子的断裂破坏机理。研究表明,柔性棚屋结构易受流动引起的振荡的影响,从而进一步使棚屋根部开裂。通过检查失败的样品来审查疲劳和断裂的相互作用过程,以深入了解开裂机理。介绍了硅橡胶的疲劳理论,以说明材料的抗疲劳性。进行风荷载和应力分布的仿真,以证明棚屋根部区域的荷载条件和应力集中。风洞测试显示两种类型的75​​0 kV绝缘子在高达60 m / s的强风下的振荡。对来自主要绝缘子制造商的四个硅橡胶样品进行了测试,以研究其抗疲劳性能以及高,低性能硅橡胶的极限值。结果表明,未经特殊设计和风洞测试的复合绝缘子在大风地区(这是中国西北地区的常见气候类型)的输电线路上使用存在风险。

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