首页> 外文会议>IEEE Conference on Electrical Insulation and Dielectric Phenomena (CEIDP '09) >Deterioration mechanism of paper base phenolic insulators for power distribution equipment
【24h】

Deterioration mechanism of paper base phenolic insulators for power distribution equipment

机译:配电设备用纸基酚醛绝缘子的劣化机理

获取原文

摘要

We verified by analyses of new and used paper base phenolic insulators and an acceleration test that the main reason for surface resistivity reduction in paper base phenolic insulators was the permeation of deliquescent ion compounds into the insulators. The main elements were Na and Cl, which were detected by element mapping analysis both on the cross section and surface of insulators, though Al and Si were detected only on the insulators'' surface. The mechanism was presumed from the results of these analyses as follows. (1) Deliquescent ion compounds such as sodium chloride, calcium sulfúrate, etc. adhere to the insulators'' surface. (2) They absorb water in the air. (3) Aqueous solutions of sodium chloride, calcium sulfúrate, etc. permeate into the insulators. (4) Though the deliquescent ion compounds adhering to insulators can be removed by cleaning, it is difficult to remove the permeated compounds. Therefore, the insulators deteriorate progressively over time. To verify this mechanism, a deliquescent ion compound (ex. sodium bromide) was put on the used insulators and a composite temperature/humidity cyclic test was executed. The above mechanism could be verified because Na and Br elements were detected by element mapping analyses on the cross section of the accelerated test samples and the permeated Na and Br elements could not be removed by cleaning.
机译:通过对新旧纸基酚醛绝缘子的分析和加速试验的验证,纸基酚醛绝缘子表面电阻率降低的主要原因是潮解性离子化合物渗透到绝缘子中。主要元素为Na和Cl,通过元素映射分析可在绝缘子的横截面和表面上检测到这些元素,而Al和Si仅在绝缘子的表面上检测到。从这些分析的结果推测该机理如下。 (1)潮气离子化合物如氯化钠,硫酸钙等粘附在绝缘子的表面上。 (2)它们吸收空气中的水。 (3)氯化钠,硫酸钙等的水溶液渗透到绝缘子中。 (4)虽然可以通过清洗除去附着在绝缘体上的潮解性离子化合物,但是难以除去透过的化合物。因此,绝缘体随着时间而逐渐劣化。为了验证该机理,将潮解性离子化合物(例如溴化钠)放在使用过的绝缘体上,并进行了温度/湿度复合循环测试。可以通过在加速测试样品的横截面上通过元素映射分析检测到Na和Br元素,并且无法通过清洗除去渗透的Na和Br元素来验证上述机理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号