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Feasibility of using a flat bottom electrode for PEA space charge measurement on mini-cables under high temperatures

机译:使用平底电极在高温下对微型电缆进行PEA空间电荷测量的可行性

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摘要

Pulsed Electro-Acoustic (PEA) apparatus has been developed to measure the space charge distribution inside XLPE based mini-cable insulation. The technique relies on the acoustic contact between the cylindrical cable surface and a flat aluminium plate to couple the acoustic waves to the sensor. This work addresses the feasibility of using this technique over a temperature range of 25°C to 70°C. The results demonstrate that increasing the temperature under constant clamping force causes the cable insulation to soften and distort increasing the contact area and signal from the PEA apparatus. However on subsequent cooling to 25°C the mechanical distortion remains frozen-in with little change to the contact area. For reproducible space charge measurements it is necessary to first condition the cable sample by taking the cable and PEA through a temperature cycle before application of the applied voltage.
机译:已经开发了脉冲电声(PEA)装置来测量基于XLPE的微型电缆绝缘内的空间电荷分布。该技术依靠圆柱形电缆表面和平坦的铝板之间的声接触将声波耦合到传感器。这项工作解决了在25°C至70°C的温度范围内使用此技术的可行性。结果表明,在恒定夹紧力下提高温度会使电缆绝缘软化并变形,从而增加接触面积和来自PEA设备的信号。但是,在随后冷却至25°C时,机械变形仍然冻结,接触面积几乎没有变化。为了进行可重复的空间电荷测量,必须在施加外加电压之前,先将电缆和PEA经过一个温度循环,然后对电缆样品进行预处理。

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