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DC induced streamers in n-hexane

机译:直流诱导正己烷中的飘带

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The use of high speed photography has facilitated the capture of events that immediately precede electrical breakdown in insulating liquids. The events have been rendered visible by schlieren, shadowgraph, and scattered light systems [1–3]. In these studies, an impulse voltage was first applied, and then the camera or light source was triggered: thus enabling the event to be temporally located between voltage onset and the possible ensuing breakdown. For a continuously stressed dielectric it is difficult to predict when the breakdown process will begin. For such cases, prebreakdown studies are normally limited to the measurement of conduction current, light, and acoustic emissions [4–6]. If needle electrodes are used, a spraying process can sometimes be observed in the high field region. The spray has been identified as a field of bubbles streaming away from the electrode tip [4]. It has been postulated that the bubbles originate in a plasma, which acts as an extension of the needle tip, and that an instability can occur on its surface resulting in the development of a breakdown channel [7]. A recent study in this laboratory has revealed the dynamic nature of this process [8]: for a negative point polarity, the region has been identified as the formation and decay of discrete prebreakdown streamers. The work described here presents results for the positive point case, with additional negative point data to enable polarity effects to be delineated.
机译:使用高速摄影的使用促进了捕获的事件,即在绝缘液体中立即在电击穿之前。这些事件已通过Schlieren,ShadowGraph和散射光系统可见[1-3]。在这些研究中,首先施加脉冲电压,然后触发相机或光源:从而使事件能够在电压发作和可能的断开之间时暂时位于。对于连续强调的电介质,难以预测击穿过程将开始。对于这种情况,预爆地研究通常限于导通电流,光线和声发射的测量[4-6]。如果使用针电极,有时可以在高场区域观察喷射过程。喷雾已被识别为远离电极尖端的气泡领域[4]。已经假设气泡源自等离子体,其用作针尖的延伸,并且不稳定性可以在其表面上发生,从而导致击穿通道的开发[7]。该实验室最近的一项研究揭示了该过程的动态性质[8]:对于负点极性,该区域已被识别为离散预折杂飘带的形成和衰减。这里描述的工作提出了正点案例的结果,具有额外的负点数据,以使极性效应能够删除。

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