聚合物中树形起始机理研究

K. Kao, D. Tu, L. Wu, X. Wu, C. K. Cheng
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引用次数: 12

摘要

在直流和交流电压条件下,分别采用针板和针针电极结构测量了聚乙烯、交联聚乙烯和掺苯乙酮(1%)聚乙烯的起始电压、起始穿透长度和击穿电压。结果表明,所有这些高场介电性能都强烈依赖于针尖处施加电压的极性、聚乙烯交联或杂质掺杂产生的缺陷、电极的几何排列以及施加到样品上的初始电场的对称性。介电性能对这些参数的强烈依赖性表明,树形起始与电极的电子和空穴注入以及电子在具有自由体积或机械开裂的高场区域的冲击电离有关。后者可能是在材料的制造过程中产生的(预先存在的缺陷)或由高。场效应(引入缺陷后)。在本文中,我们将给出我们的树起始模型,一些新的结果和一个简短的讨论。
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On the mechanism of tree initiation in polymers
The tree initiation voltage, the initial tree penetration length and breakdown voltage in polyethylene, cross-linked polyethylene and acetophenone (1%) doped polyethylene have been measured under dc and ac voltage conditions using both the needle-plate and the needle-needle electrode configurations. The results show that all these high-field dielectric properties are strongly dependent on the polarity of the applied voltage at the needle, the defects created by cross-linking or impurity-doping in polyethylene, the geometric arrangement of the electrodes and the symmetry of the initial electric fields applied to the samples. The strong dependence of the dielectric properties on these parameters indicates that tree initiation is associated with electron and hole injection from electrodes and impact ionization by electrons in high-field regions with free volumes or mechanical cracking. The latter may be created during the manufacturing process of the materials (pre-existing defects) or by the high. field effects (post-introducing defects). In this paper we shall present our model for tree initiation, some new results and a brief discussion.
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