Effect of Interfacial Pressure on Electrical Tree between XLPE and Silicone Rubber

被引:0
|
作者
Su, Yu [1 ]
Liu, Ying [1 ]
Xie, Dongri [1 ]
Zhong, Lisheng [1 ]
机构
[1] Xi An Jiao Tong Univ, State Key Lab Elect Insulat & Power Equipment, Xian, Shaanxi, Peoples R China
关键词
XLPE cable accessory; silicone rubber; interfacial pressure; electrical tree; INSULATION; FAILURE;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
XLPE and silicone rubber (SIR) have been widely used in power cables and accessories for their excellent mechanical and electrical performance. However, the interface between them in accessories remains one of the weakest parts in the cable system. Electrical treeing is an important destructive factor for HV insulation structures, and it always leads to final breakdown. Therefore, it is essential to investigate the effects of interfacial pressure on electrical tree. In this paper, tests were carried out by pressing XLPE and SIR samples together under different interfacial pressures with a specific pressing device. AC voltage was applied on a pair of pin-plane electrodes placed at the interface. The pin-plane distance was 2 mm. The needle diameter was 0.25 mm and the tip curvature radius was (10 +/- 1) mu m. Under different interfacial pressures, the voltages for electrical trees to initiate were recorded and statistically analyzed. Meanwhile, the tree morphology and breakdown channel were also captured by using a digital micro-imaging system. The results show that at a low interfacial pressure of 50 kPa, no electrical trees can be observed. Instead, discharge light can be seen at the interface. As the interfacial pressure increases, electrical tree begins to appear. It is found that at 75 kPa, electrical tree initiates and grows, which finally leads to a severe breakdown along the interface. While at pressures above 100 kPa, electrical tree tends to grow into SIR side, and the breakdown channel is slender, only observed in the SIR. Besides, the electrical tree initiation voltage increases with the increase of the interfacial pressure. It indicates that a high interfacial pressure can effectively delay the initiation of electrical trees, and for the two materials that constitute the interface, XLPE seems to have a better electrical treeing endurance than the SIR.
引用
收藏
页数:4
相关论文
共 50 条
  • [41] First Stage of 2-D Electrical Tree in Silicone Rubber
    Ogawa, Yuu
    Sugimoto, Fumihiko
    Ihori, Haruo
    Fujii, Masaharu
    ISEIM 2008: PROCEEDINGS OF 2008 INTERNATIONAL SYMPOSIUM ON ELECTRICAL INSULATING, 2008, : 202 - 202
  • [42] Effect of ZnO Nanofiller in the XLPE Matrix on Electrical Tree Characteristics
    Mansor, Noor Syazwani
    Nazar, Nazatul Shiema Moh
    Azmi, Muhammad Afiq
    Hashim, Nur Zatil Ismah
    Ishak, Dahaman
    Jaafar, Mariatti
    Abd Halim, Huzainie Shafi
    Abd Ghani, Ahmad Basri
    Jamil, Mohamaad Kamarol Mohd
    IEEE ACCESS, 2020, 8 : 117574 - 117581
  • [43] An Interface Pressure Detection Method of Cable Silicone Rubber-XLPE Based on Nonlinear Ultrasound
    Fang, Chunhua
    Liu, Jianben
    Sun, Aoqi
    Wu, Junxiong
    Xia, Rong
    Ouyang, Benhong
    Zhang, Yilin
    Li, Fang
    APPLIED SCIENCES-BASEL, 2023, 13 (09):
  • [44] The effect of nanofiller on electrical and mechanical properties of silicone rubber
    Gharavi N.
    Kashani M.R.
    International Journal of Nanomanufacturing, 2010, 5 (3-4) : 335 - 340
  • [45] ELECTRICAL TREE GROWTH IN THE XLPE INSULATION
    Kolcunova, Iraida
    Kurimsky, Juraj
    PROCEEDINGS OF THE IVTH INTERNATIONAL SCIENTIFIC SYMPOSIUM ON ELECTRIC POWER ENGINEERING - ELEKTROENERGETIKA 2007, 2007, : 393 - 395
  • [46] Electrical tree initiation in silicone rubber under DC and polarity reversal voltages
    Zhang, Yunxiao
    Zhou, Yuanxiang
    Chen, Ming
    Zhang, Ling
    Zhang, Xu
    Sha, Yanchao
    JOURNAL OF ELECTROSTATICS, 2017, 88 : 207 - 213
  • [47] Macromolecular Voltage Stabilizer for Enhanced Initiation Characteristics of Electrical Tree in Silicone Rubber
    Zhou, Yuanxiang
    Gesang, Quzong
    Zhang, Ling
    Tian, Jihuan
    Chen, Jianning
    Cui, Xiaoyang
    IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION, 2022, 29 (01) : 111 - 118
  • [48] The Relationship Between Electrical Tree Growth and Partial Discharge Characteristics in XLPE
    Wu, Shiyou
    Zheng, Shusheng
    Zhang, Zongheng
    Zhong, Aixu
    Cao, Reniie
    Wang, Cong
    2021 IEEE ELECTRICAL INSULATION CONFERENCE (EIC), 2021, : 461 - 464
  • [49] Effects of Gradient Magnetic Field on Electrical Tree Growth Characteristics in Silicone Rubber
    Du, Boxue
    Liu, Haoliang
    Li, Fan
    Liang, Hucheng
    Du, Haosen
    Kong, Xiaoxiao
    IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION, 2023, 30 (02) : 617 - 624
  • [50] Influence of partial air pressure on the growth characteristics of electrical tree in XLPE cable
    Zhou, Lijun
    Cheng, Rui
    Jiang, Junfei
    Peng, Qian
    Wang, Dongyang
    Zeng, Yuantao
    Gaodianya Jishu/High Voltage Engineering, 2015, 41 (08): : 2650 - 2656