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DC Electrical Tree Growth in Epoxy Resin and the Influence of the Size of Inceptive AC Trees

机译:环氧树脂中直流电树的生长及吸收aC树大小的影响

摘要

Electrical tree propagation is a precursor to dielectric failure in high voltage polymeric insulation. Tree growth has been widely studied under AC conditions, but its behavior under DC is not well understood. The aim of this work was to examine the importance of polarity and initiating defect size on DC tree propagation. Electrical tree propagation in epoxy resin under constant DC voltages of +60 kV and −60 kV was measured in samples with classical needle-plane electrodes, but with small initial trees ( 100 μm) incepted under lower AC voltages before the DC tests. Experimental results showed strong polarity dependence. In either polarity, the length of the initial AC tree had a major influence on the inception of the subsequent DC tree. The effect was attributed to the defect being influential if it is larger than the space charge injection region. As a consequence, there is a critical defect size that will accelerate failure of DC insulation dependent on space charge injection behavior of the polymer/electrode system in question — a critical finding for high voltage asset management.
机译:电气树的传播是高压聚合物绝缘中介电失效的先兆。在交流条件下,树木的生长已被广泛研究,但在直流条件下其行为尚不十分清楚。这项工作的目的是检查极性和初始化缺陷大小对DC树传播的重要性。在带有经典针状平面电极的样品中,在+60 kV和-60 kV恒定DC电压下,测量了环氧树脂在环氧树脂中的电树传播,但是在DC测试之前,在较低的AC电压下,初始树很小(<100μm)。实验结果表明强烈的极性依赖性。无论哪种极性,初始AC树的长度都会对后续DC树的开始产生重大影响。该影响归因于如果缺陷大于空间电荷注入区域,则该缺陷具有影响力。结果,存在一个关键的缺陷尺寸,该尺寸将取决于所讨论的聚合物/电极系统的空间电荷注入行​​为而加速直流绝缘的失效-这是高压资产管理的一个关键发现。

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