Material differentiation by water treeing tests

J. Jow
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引用次数: 4

Abstract

Because of the importance of water treeing in underground medium voltage cables and the interest in preventing it, many accelerated material test methods and tree retardant materials have been developed. In this paper, several accelerated material water tree tests are reviewed. Three commercially introduced tree retardant materials were evaluated by the ASTM D6097 water treeing test under various conditions. The test parameters included aging time, temperature, water conductivity, applied voltage level, and frequency. As expected, the length of water tree increases with these factors, except temperature. Temperatures, higher than end use conditions should not be used as an acceleration factor. Not all tree retardant materials have the same water tree retardance, since each tree retardant material shows different response to the test parameters. A good tree retardant material should be very effective at various aging conditions. A higher water conductivity or longer aging time is recommended for better material differentiation in the ASTM D6097 test.
通过水树试验区分材料
由于地下中压电缆遇水变树的重要性和防止遇水变树的兴趣,许多加速材料试验方法和遇水变树阻燃材料被开发出来。本文综述了几种加速材料水树试验。通过ASTM D6097在不同条件下对三种商业引进的树木阻燃材料进行了评估。测试参数包括老化时间、温度、水电导率、施加电压水平和频率。正如预期的那样,除温度外,水树的长度随这些因素的增加而增加。高于最终使用条件的温度不应作为加速因素。并非所有的树木缓水性材料都具有相同的缓水性,因为每种树木缓水性材料对测试参数的响应不同。一种好的树木阻燃材料应该在各种老化条件下都非常有效。在ASTM D6097测试中,为了更好地区分材料,建议使用更高的水电导率或更长的老化时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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