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Wet tracking and erosion evaluation of non-ceramic insulation for outdoor use

机译:湿跟踪和侵蚀户外用途陶瓷绝缘的侵蚀评价

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This paper is a further report on a continuing project at the Westinghouse R&D Laboratory. Studies of insulation surface conduction and tracking at this laboratory using small specimens, a fog chamber, etc. had been proceeding for more than two decades prior to the initiation in 1965 of an outdoor testing rack at the R&D Center, which is in the Pittsburgh area. Experience with various tracking tests1 including the Dust and Fog Test (ASTM D2132) and modifications thereof which were initiated at Westinghouse, the Differential Wet Tracking Test (ASTM D2302), which was developed at Westinghouse R&D, and the Liquid-Contaminant Inclined Plane Tracking and Erosion Test (ASTM D2303) which was developed at the General Electric Co. Laboratories. All were extensively tried on many resin materials, particularly mineral filled epoxy resins. These tests indicated that there were a number of materials which were essentially nontracking under the most severe levels of each test.
机译:本文是关于在Westinghouse研发实验室的持续项目的进一步报告。使用小标本,雾室等在该实验室的绝缘表面传导和跟踪的研究已经在1965年在研发中心在匹兹堡地区进行了户外测试架之前进行了两十多年了。 。各种跟踪测试的经验包括在Westinghouse的灰度和雾试验(ASTM D2132)和修改,差动湿跟踪试验(ASTM D2302),该试验(ASTM D2302)是在Westinghouse R&D和液体污染倾斜平面跟踪和液体污染物倾斜平面跟踪和侵蚀测试(ASTM D2303)是在通用电气公司的实验室开发的。所有这些都在许多树脂材料上进行了广泛的尝试,特别是矿物填充环氧树脂。这些测试表明,存在许多材料基本上在每种测试中最严重的水平下非触发。

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