首页> 外文会议>Proceedings: Electrical electronics insulation conference and electrical manufacturing amp; coil winding conference >The Assessment of the Degree of Paper Aging and Remaining Life of Fluid-Filled Paper-Insulated High Voltage Underground Transmission Cables Through Wet-Tensile Strength
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The Assessment of the Degree of Paper Aging and Remaining Life of Fluid-Filled Paper-Insulated High Voltage Underground Transmission Cables Through Wet-Tensile Strength

机译:湿法抗拉强度评估充液式纸绝缘高压地下输电电缆的纸张老化程度和剩余寿命

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摘要

The assessment of the degree of paper aging and remaining life of installed fluid-filled paper-insulated high voltage cables, which constitute considerable utility investment, has received a great deal of attention. The traditional methods consist of the determination of the mechanical properties of paper as it ages with time. Such properties include tensile, folding, burst and tear strengths as well as elongation. The proper application of this approach requires a knowledge of the initial mechanical properties, but this is not readily available. However the application of wet-tensile strength, which is extensively used in the paper and pulp industries but has never been considered in the electrical industry, does not require such prior knowledge. Unlike the traditional mechanical properties that gradually decrease with aging, wet-tensile strength initially increases to a peak and then decreases as aging occurs. This peak, which is characteristic of wet-tensile strength for all cellulosic paper, is singularly governed by temperature and time. The wet-tensile strength results relating to investigations performed on fluid-impregnated paper tapes thermally aged under laboratory conditions are presented, including wet-tensile strength data on cable pieces removed from service. Laboratory and field studies indicate the potential of this novel physical property as a cable aging marker.
机译:对已安装的填充流体的纸绝缘高压电缆的纸张老化程度和剩余寿命的评估已构成相当大的公用事业投资,受到了广泛的关注。传统方法包括确定随时间老化的纸张的机械性能。这些性质包括拉伸强度,折叠强度,破裂强度和撕裂强度以及伸长率。这种方法的正确应用需要了解初始机械性能,但这并不容易获得。但是,湿抗张强度的应用并不需要这种先验知识,所述湿抗张强度在造纸和纸浆工业中被广泛使用,但是在电气工业中从未被考虑过。不同于传统的机械性能会随着老化而逐渐降低,湿拉伸强度最初会增加到峰值,然后随着老化的发生而降低。该峰是所有纤维素纸的湿拉伸强度的特征,它仅由温度和时间决定。给出了与在实验室条件下热老化的浸有液体的纸带上进行的研究有关的湿抗张强度结果,包括停止使用的电缆件的湿抗张强度数据。实验室和现场研究表明,这种新的物理性能具有潜在的电缆老化标记作用。

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