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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >N-tridecane as a model system for polyethylene: comparison of pre-breakdown phenomena in liquid and solid phase stressed by a fast transient
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N-tridecane as a model system for polyethylene: comparison of pre-breakdown phenomena in liquid and solid phase stressed by a fast transient

机译:N-十三烷作为聚乙烯的模型系统:快速瞬态应力作用下液相和固相中的预分解现象比较

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摘要

Pre-breakdown phenomena in pure n-tridecane in liquid and solid state have been investigated experimentally in a needle-plane geometry with impulse voltage. Light emission and charge injection from the high-field electrode were measured. Pre-inception currents in liquid and solid state were recorded and compared to finite element calculations to find plausible high-field conduction models for n-tridecane and cyclohexane. n-tridecane was chosen as a model system for polyethylene based on the known similarities in energy bands for polyethylene and alkanes. The results obtained in pure n-tridecane were compared to similar experiments on cyclohexane and polymer systems. High-field conduction in liquid n-tridecane was found to have a similar field dependence as previously reported for cross linked polyethylene (XLPE). Conduction currents and inception probabilities were found to be almost independent of polarity in frozen and liquid n-tridecane, which is also in line with results obtained for XLPE. Conduction currents were observed at lower voltages in n-tridecane than in cyclohexane, reflecting the lower space charge limited field (SCLF) in n-tridecane. Inception of streamers in liquid cyclohexane occurs at lower voltages than in liquid n-tridecane, and a stronger polarity dependence for all phenomena was observed in cyclohexane compared with n-tridecane. A possible explanation for the differences between n-tridecane and cyclohexane is given based on the field needed for electron avalanches and the SCLF in the two liquids. Inception voltages, light emission and charge injection were found to be similar in liquid and solid n-tridecane. This indicates that the same processes are responsible for inception and propagation of electrical trees in solids and streamers in liquids when the material is stressed by a fast transient. The similarity between the measured properties in solid and liquid phases leads to the conclusion that electrical treeing mainly takes place in the am-n-norphous regions of the solid phase.
机译:在具有脉冲电压的针平面几何结构中,已通过实验研究了液态和固态纯正十三烷中的预分解现象。测量了来自高场电极的发光和电荷注入。记录液态和固态的盗前电流并将其与有限元计算进行比较,以找到正十三烷和环己烷的合理的高场传导模型。基于聚乙烯和烷烃能带的已知相似性,正十三烷被选作聚乙烯的模型系统。将在纯正十三烷中获得的结果与在环己烷和聚合物体系上的类似实验进行比较。发现液态正十三烷中的高场传导具有与先前报道的交联聚乙烯(XLPE)类似的场依赖性。发现在冷冻和液态正十三烷中,导电电流和起始概率几乎与极性无关,这也与XLPE的结果一致。在正十三烷中观察到的导电电流低于在环己烷中的电压,这反映出正十三烷中较低的空间电荷限制场(SCLF)。与液态正十三烷相比,液态环己烷中流光的起始电压更低,与正十三烷相比,环己烷中所有现象的极性依赖性更强。根据两种液体中电子雪崩和SCLF所需的电场,给出了正十三烷与环己烷之间差异的可能解释。发现液体和固体正十三烷的起始电压,发光和电荷注入相似。这表明当材料因快速瞬变而受力时,相同的过程负责固体中电树的产生和液体中流光的传播。在固相和液相中测量的性质之间的相似性得出这样的结论,即电树主要发生在固相的am-n-北峰区域。

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