Trap Characteristic and Potential Trap Model of Water Trees in XLPE

Xiantao Tao, Hua Li, Jiandong Rao, Jingyun Tu, Gen Yan, Qin Zhang, Yi Liu, Fuchang Lin
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引用次数: 3

Abstract

Water trees were generally considered to develop in amorphous regions of Cross-linked Polyethylene (XLPE) material, however the present work proved that the growth of water trees might cause the damage in the amorphous regions as well as the crystalline ones in XLPE. Meanwhile, the trap and physical characteristics of water trees in XLPE samples were discussed in the present work. XLPE samples with a thickness of 5 mm were made by the hot-pressing method, and the samples were aged by the water-needle method with the voltage of 6 kV/5 kHz. After aging for 600 hours, the cultivated water trees with the average branch length of 159.88 μm were observed in the anatomical sections of the samples. In order to study the density and crystallinity, the Raman Spectroscopy (RS) was used to analyze the XLPE sample with/without the water trees. The average density and crystallinity of new samples, the regions without/with water trees of Aged samples were 0.9145 g/cm3and 40.12%, 0.9095 g/cm3and 36.67%, 0.8999 g/cm3and 30.04%, respectively. Meanwhile, the Thermal Stimulus Depolarization Current (TSDC) test was employed to analyze the trap level of samples. And the trap level of the new samples and samples without/with water trees 0.6458 eV, 0.6812 eV and 0.8715 eV, respectively. The densities and crystallinity of regions with water trees were lower than that of the non-defective regions, which indicated that the growth of water tree defects might cause the destruction of both the amorphous and the crystalline region, thus the trap level of the water tree samples increases.
XLPE中水树的圈闭特征及潜在圈闭模型
一般认为水树生长在交联聚乙烯(XLPE)材料的非晶态区,但本研究证明了水树的生长不仅会对交联聚乙烯的晶态区造成损伤,也会对非晶态区造成损伤。同时,对XLPE样品中水树的圈闭和物理特性进行了探讨。采用热压法制备厚度为5mm的XLPE试样,用水针法在6 kV/5 kHz电压下时效。经600 h老化后,在解剖切片上观察到平均枝长为159.88 μm的栽培水树。为了研究XLPE样品的密度和结晶度,采用拉曼光谱(RS)对有/无水树的XLPE样品进行了分析。新样品的平均密度和结晶度分别为0.9145 g/cm3、40.12%、0.9095 g/cm3、36.67%、0.8999 g/cm3、30.04%。同时,采用热刺激去极化电流(TSDC)测试对样品的陷阱能级进行分析。新样和无/有水树样的捕获水平分别为0.6458 eV、0.6812 eV和0.8715 eV。水树缺陷区密度和结晶度均低于非缺陷区,说明水树缺陷的生长可能导致非晶区和结晶区同时被破坏,从而提高了水树样品的陷阱能级。
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