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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Corrosion mechanism and process of hardware of disc suspension type Insulators on ±800 kV transmission lines
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Corrosion mechanism and process of hardware of disc suspension type Insulators on ±800 kV transmission lines

机译:盘式悬挂式绝缘子在±800 kV输电线路上的腐蚀机理及过程

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Hardware corrosion on porcelain and glass insulators has occurred on ±800 kV UHVDC transmission lines in China. Iron cap corroded insulators all located at the negative polarity and pin corroded insulators concentrated in positive polarity. The corrosion mechanism is analyzed from the aspect of electrochemistry and the corrosion process is researched by means of spray water simulation tests. Mechanical and electrical characteristics tests and simulation calculation have been done. Test and calculation results indicate that iron cap corrosion can aggravate the contamination accumulation on insulator???s surface and decrease the flashover voltage. Pin corrosion can decrease the mechanical strength of insulators. XP-4C type porcelain insulator and electrolytic cell are used to research the influence factors of corrosion rate of hardware. The test results show that the contamination degree on insulators' surface and its component have considerable influence on the corrosion rate. The more serious the degree of contamination is, the faster the corrosion rate is. The sequence of cation that lead to the corrosion rate from fast to slow is K>Na>Ca>Mg, the sequence for anion is Cl>SO>NO.
机译:在中国,±800 kV特高压直流输电线路发生了瓷器和玻璃绝缘子的硬件腐蚀。铁帽腐蚀的绝缘子全部位于负极,针腐蚀的绝缘子全部集中在正极。从电化学角度分析了腐蚀机理,并通过喷水模拟试验研究了腐蚀过程。机械和电气特性测试和仿真计算已经完成。测试和计算结果表明,铁帽腐蚀会加剧绝缘子表面的污染物堆积并降低闪络电压。针脚腐蚀会降低绝缘子的机械强度。 XP-4C型瓷绝缘子和电解槽用于研究硬件腐蚀速率的影响因素。试验结果表明,绝缘子表面及其成分的污染程度对腐蚀速率有较大影响。污染程度越严重,腐蚀速度越快。导致腐蚀速率从快到慢的阳离子顺序为K> Na> Ca> Mg,阴离子顺序为Cl> SO> NO。

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