Effect of plasma polymer coating on the dielectric strength of polyethylene

T. Nakano, T. Kihira, Y. Ohki
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Abstract

The authors have shown previously (1987) that a thin layer of plasma-polymerized ethylene deposited on the surface of high-density polyethylene suppresses the injection of carriers from the electrodes. Here they report the effect of this coating on the dielectric strength of high-density polyethylene. The polyethylene used is additive-free blown film with a density of 0.950 g/cm/sup 3/ and a melt flow rate of 0.9 g/10 min. The plasma-polymer coated sample studied is shown to have a higher breakdown strength than one without plasma-coating. The plasma-polymerized ethylene is amorphous, with many localized states in the forbidden band. These states act as trapping sites for electrons injected from the cathode. The trapped electrons, in turn, suppress the succeeding carrier injection from the cathode. The trapping centers seem to have an injection-suppressing effect even for the application of short-duration voltages such as impulse voltages. It is concluded that the suppression of electron injection by the coating brings about an increase in breakdown voltage.<>
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等离子体聚合物涂层对聚乙烯介电强度的影响
作者先前(1987年)表明,高密度聚乙烯表面沉积的等离子体聚合乙烯薄层抑制了从电极注入载流子。在这里,他们报告了这种涂层对高密度聚乙烯介电强度的影响。所用的聚乙烯为无添加剂吹膜,密度为0.950 g/cm/sup 3/,熔体流动速率为0.9 g/10 min。所研究的等离子体聚合物包覆样品比未包覆的样品具有更高的击穿强度。等离子体聚合的乙烯是无定形的,在禁带内有许多局域态。这些态充当了从阴极注入的电子的捕获点。被捕获的电子反过来又抑制了随后从阴极注入的载流子。即使在短时间电压(如脉冲电压)的作用下,捕获中心似乎也有抑制注入的作用。结果表明,涂层对电子注入的抑制使击穿电压升高。
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