[Oral Presentation]Study on the Effect of NiO Addition on the Current Carrying Performance of ZnO varistors

Study on the Effect of NiO Addition on the Current Carrying Performance of ZnO varistors
ID:99 Submission ID:120 View Protection:ATTENDEE Updated Time:2022-08-11 14:08:10 Hits:233 Oral Presentation

Start Time:2022-11-05 08:30 (Asia/Shanghai)

Duration:20min

Session:[H] High Voltage and Insulation Technology » [OS20] Oral Session 20

Video No Permission Presentation File

Tips: The file permissions under this presentation are only for participants. You have not logged in yet and cannot view it temporarily.

Abstract
 In this paper, the effects of different NiO content doping on the comprehensive electrical properties of ZnO varistors, especially the current carrying capability, were investigated. The results show that the comprehensive electrical properties are better when the NiO content is 0.96 mol%, with a voltage gradient of 260.18 V/mm, a leakage current of 0.86 µA/cm2, a nonlinear coefficient of 64.42, a residual voltage ratio of 1.63, a 42 mm sample in diameter can pass an 450 A 2 ms square impulse for 18 times, a current carrying capacity of 32.5 A/cm2, and an energy The energy absorption capacity of  276.9 J/cm3. The relationship between the microstructure and macroscopic electrical properties of ZnO varistor under different NiO doping was investigated and analyzed by measuring the phase composition, microstructure, grain boundary parameters and impedance spectrum of ZnO varistor samples. It is indicated that appropriate NiO doping improves the nonlinearity and residual voltage ratio. Because NiO enters the ZnO grains to form substitution defects, releases the compressive stress generated by interstitial Al3+ ions, and allows more Al3+ ions to enter the ZnO grains, lowering the grain resistance and the donor concentration of the grain boundary, and raising the grain boundary barrier. Macroscopically, it improves the current carrying capability of the ZnO varistor.
Keywords
ZnO vairstor; current carrying performance; NiO doping
Speaker
Zhiyao Fu
engineer State Grid Hunan Electric Power Company Disaster Prevention and Reduction Center

Submission Author
Zhiyao Fu State Grid Hunan Electric Power Company Disaster Prevention and Reduction Center
Comment submit
Verification code Change another
All comments
Log in Sign up Registration Submit