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Effect of charge injection on DC surface flashover performance of polyimide

机译:电荷注入对聚酰亚胺直流表面闪络性能的影响

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Polymers such as polyimide (PI) are easy to initiate surface flashover phenomenon in space environment. The surface flashover phenomenon in an extremely low DC electric field of PI material is a key factor restricting the spacecraft power system insulation strength, which is also a bottleneck problem for developing the spacecraft with high voltage and high power. In order to reveal the charge injection effect on surface flashover performance, the PI/ZnO composite sample was prepared by blending physical-chemical method and the DC surface flashover testing system was established. The charge injection was obtained by pulsed electro-acoustic (PEA) method. Experimental result showed that the DC surface flashover voltage of PI/ZnO nano-composite is enhanced and the flashover voltage of PI/ZnO micro-composite is reduced compared to that of pure PI. The results show that the space charge accumulation in the bulk of nano-composite is suppressed. The experiments results can be explained as that the PI/ZnO nano-composite material has an excellent space charge suppression characteristic which owned less positive space charge packet near the cathode compared to the pure PI material, causing the reduction of the local electrical field at the cathode triple junction (CTJ). In addition, electrons and positive ions due to impurities ionization are limited in the interface regions as a result of low carriers mobility and kinetic energy. Thus the surface flashover voltage of nano-composite is promoted. The PI/ZnO micro-composite has a definite space charge suppression characteristic, whereas has macroscopic defect for introducing larger particles of ZnO inorganic additives. This will promote the distortion of the electric field near the particles and further reduce the flashover voltage.
机译:诸如聚酰亚胺(PI)的聚合物在太空环境中容易引发表面闪络现象。 PI材料在极低的直流电场下的表面闪络现象是限制航天器动力系统绝缘强度的关键因素,这也是开发高电压大功率航天器的瓶颈问题。为了揭示电荷注入对表面闪络性能的影响,采用物理化学混合法制备了PI / ZnO复合材料样品,建立了直流表面闪络测试系统。通过脉冲电声(PEA)方法获得电荷注入。实验结果表明,与纯PI相比,PI / ZnO纳米复合材料的直流表面闪络电压提高,PI / ZnO纳米复合材料的闪络电压降低。结果表明,大部分纳米复合材料中的空间电荷积累得到抑制。实验结果可以解释为PI / ZnO纳米复合材料具有优异的空间电荷抑制特性,与纯PI材料相比,阴极附近具有较少的正空间电荷包,从而导致了PI / ZnO纳米复合材料在阴极处的局部电场减小。阴极三结(CTJ)。另外,由于低的载流子迁移率和动能,由于杂质离子化引起的电子和正离子在界面区域受到限制。因此,促进了纳米复合材料的表面闪络电压。 PI / ZnO微复合材料具有确定的空间电荷抑制特性,而在引入较大颗粒的ZnO无机添加剂方面存在宏观缺陷。这将促进粒子附近电场的畸变,并进一步降低闪络电压。

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