Investigation of Plasticizer Evaporation of Local Electrical Cable Insulations

D. Egodage, Roshan Dodampola, S. Weragoda, D. Amarasinghe, D. Attygalle
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引用次数: 4

Abstract

Though insulation is critical to the performance of an electrical cable the assessment of the status of an insulation is still a major challenge. Since the root cause of most electrical cable failures is due to insulation deterioration, if the rate of aging can be predicted, properly scheduled, appropriate maintenance programs can nearly eliminate cable failures. The kinetics of plasticizer evaporation of polyvinyl chloride based locally manufactured electrical cable insulations were investigated. Plasticizer evaporation is a slow process under low temperatures and would take years to study under such conditions. Therefore, accelerated conditions were used to get readings within the limited timeframe. Nevertheless, data obtained under accelerated conditions was mapped to normal conditions through Arrhenius approach. Deconvoluted derivative thermograms were used to identify the initial plasticizer percentages and Arrhenius approach was used to map accelerated condition measurements to ambient temperature evaporation rates.
局部电缆绝缘增塑剂蒸发的研究
尽管绝缘对电缆的性能至关重要,但绝缘状态的评估仍然是一个重大挑战。由于大多数电缆故障的根本原因是由于绝缘劣化,如果老化速度可以预测,适当安排,适当的维护计划可以几乎消除电缆故障。研究了国产聚氯乙烯基电缆绝缘增塑剂蒸发动力学。增塑剂的蒸发在低温下是一个缓慢的过程,在这种条件下进行研究需要数年时间。因此,使用加速条件在有限的时间范围内获得读数。然而,在加速条件下获得的数据通过Arrhenius方法映射到正常条件下。反卷积导数热图用于确定初始增塑剂百分比,并使用阿伦尼乌斯方法将加速条件测量映射到环境温度蒸发速率。
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