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A New Surface Treatment Method for Improving Surface Flashover Performance of Polymers in Vacuum

机译:一种新的表面处理方法,用于改善真空中聚合物的表面闪络性能

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In this paper, Low density polyethylene (LDPE) films were surface treated in ozone atmosphere for different times (Oh, 1h, 2h, 4h, and 6h) to investigate the effect of surface oxidation on DC surface flashover characteristics in vacuum. Infrared (IR) was used to characterize surface chemical structure of specimens before and after ozone treatment. IR results show that oxygen atoms (O) are introduced into LDPE surface layer and carbonyl groups (C=O) are formed after surface treatment. Surface conductivity of specimens was tested and the results show surface conductivity increases with the extending of surface ozone treatment time. For untreated LDPE, surface conductivity is 4.39× 10−18S, and it increases to 1.01×10−15Swhen LDPE specimen is surface treated for 6h with ozone. Surface potential decay (SPD) was used to characterize surface trap distribution of specimens, and the results show surface potential decays faster and faster with the increasing treatment time, which is resulted from the shallower trap centers introduced into LDPE surface layers after ozone treatment. Surface flashover performance measurement results show that surface flashover voltage of LDPE specimens is improved by surface ozone treatment, and the optimum value of flashover voltage for treated 4 hours specimen is improved by 25.59% compared with untreated LDPE. Finally, the mechanism of surface flashover is discussed and it concludes that the change of surface chemical structure resulting from surface ozone treatment leads to the variation of surface trap distribution and surface conductivity which influences the surface charge accumulation properties, and then improves surface flashover performance of LDPE in vacuum.
机译:在本文中,低密度聚乙烯(LDPE)膜在臭氧气氛中处理不同的时间(OH,1H,2H,4H和6H),以研究表面氧化对真空DC表面闪络特性的影响。红外(IR)用于在臭氧处理前后表征样品的表面化学结构。 IR结果表明,在表面处理后,将氧原子(O)引入LDPE表面层和羰基(C = O)中。测试样品的表面电导率,结果显示表面电导率随表面臭氧处理时间的延伸而增加。对于未处理的LDPE,表面电导率为4.39×10 -18 S,它增加到1.01×10 -15 SWHEN LDPE样本用臭氧处理6小时。表面电位衰减(SPD)用于表征样品的表面捕集分布,结果表明表面电位衰减得更快,并且随着臭氧处理后的较浅的陷阱中心引入LDPE表面层的较浅陷阱中心导致。表面闪络性能测量结果表明,通过表面臭氧处理改善了LDPE样品的表面闪络电压,与未处理的LDPE相比,对处理4小时的闪络电压的最佳值提高了25.59%。最后,讨论了表面闪络机构,结论是,由表面臭氧处理产生的表面化学结构的变化导致表面捕集分布和表面电导率的变化,这影响了表面电荷累积特性,然后提高了表面闪络性能LDPE真空。

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