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ASTM D3638:電絕緣材料的比較留痕跡指數(shù)的測(cè)試方法

放大字體  縮小字體 發(fā)布日期:2010-09-30   來(lái)源:ASTM   瀏覽次數(shù):853  分享到: 分享到騰訊微博
ASTM D3638:電絕緣材料的比較留痕跡指數(shù)的測(cè)試方法
ASTM D 3638:電絕緣材料的比較留痕跡指數(shù)的測(cè)試方法
ASTM D 3638Standard Test Method for Comparative Tracking Index of Electrical Insulating Materials

Abstract 摘要
Electrical equipment can fail as a result of electrical tracking of insulating material that is exposed to various contaminating environments and surface conditions. There are a number of ASTM and other tests designed to quantify behavior of materials, especially at relatively high voltages. This method is an accelerated test which at relatively low test voltages, provides a comparison of the performance of insulating materials under wet and contaminated conditions. The comparative tracking index is not related directly to the suitable operating voltage in service.

When organic electrical insulating materials are subjected to conduction currents between electrodes on their surfaces, many minute tree-like carbonaceous paths or tracks are developed near the electrodes. These tracks are oriented randomly, but generally propagate between the electrodes under the influence of the applied potential difference. Eventually a series of tracks spans the electrode gap, and failure occurs by shorting of the electrodes.

The conditions specified herein are intended, as in other tracking test methods, to produce a condition conducive to the formation of surface discharges and possible subsequent tracking. Test conditions are chosen to reproducibly and conveniently accelerate a process; for this reason, they rarely reproduce the varied conditions found in actual service. Therefore, while tracking tests serve to differentiate materials under given conditions, results of tracking tests cannot be used to infer either direct or comparative service behavior of an application design. Rather, tracking test results provide a tool for judging the suitability of materials for a given application. The suitability can only be verified through testing the design in actual end use or under conditions which simulate end use as closely as possible.

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