Inflection Point Effect of Interturn Insulation for Transformer under Preload Stress
Abstract
:1. Introduction
2. Experimental Methods
2.1. Experimental Platform
2.2. Experimental Materials
2.3. Experimental Preprocessing
2.4. Pressurization Method
2.5. Post-Experimental Processing
3. Experimental Result
3.1. Statistical Parameters of Partial Discharge for Interturn Insulation under Preload and Electrical Stress
3.2. Changes in Microstructure of Interturn Insulation Paper after Breakdown
3.2.1. Microscopic Morphology Analysis
3.2.2. Fourier Transform Infrared (FTIR) Spectroscopy Analysis
3.2.3. X-ray Diffraction (XRD) Analysis
3.2.4. Energy-Dispersive Spectroscopy Analysis
4. Effect Mechanism of Preload and Electrical Stress Synergism on Interturn Insulation Discharge
4.1. Influence Mechanism of Preload on Turn Insulation Discharge
4.2. Influence Mechanism of Electrical Stress on Interturn Insulation Discharge
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Experimental Materials | Material Type | Set Size |
---|---|---|
Flat copper strip | copper | 250 × 20 × 2 mm |
Insulating paper | Kraft paper | 0.13 mm |
Insulating oil | 25# transformer oil | / |
Applying Voltage | Interstage Increment | Duration |
---|---|---|
U ≤ 5 kV | 0.2 kV | 2 min |
5 kV < U ≤ 15 kV | 2 kV | |
U > 15 kV | 1 kV |
Absorption Peak Wave Number/cm−1 | Corresponding Chemical Bonds |
---|---|
3550~3200 1100~1000 | hydroxyl |
1200~1100 Around 895 | Glycosidic bond |
Preload Force/N | Iam/(points · s−1) | I002/(points · s−1) | 2θ002/(°) | FWHM002/rad | Dhkl/10−10 m |
---|---|---|---|---|---|
Not tested | 0.53 | 32 | 23.3 | 0.0323 | 45.808 |
0 | 0.7 | 93 | 23.3 | 0.0331 | 44.700 |
1000 | 0.46 | 70 | 23.6 | 0.0389 | 38.056 |
2000 | 0.38 | 50 | 23.56 | 0.0387 | 38.250 |
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Zhou, X.; Bai, J.; Zhu, L.; Tian, T.; Zhao, X.; Wang, Y.; Li, X. Inflection Point Effect of Interturn Insulation for Transformer under Preload Stress. Electronics 2024, 13, 3185. https://doi.org/10.3390/electronics13163185
Zhou X, Bai J, Zhu L, Tian T, Zhao X, Wang Y, Li X. Inflection Point Effect of Interturn Insulation for Transformer under Preload Stress. Electronics. 2024; 13(16):3185. https://doi.org/10.3390/electronics13163185
Chicago/Turabian StyleZhou, Xiu, Jin Bai, Lin Zhu, Tian Tian, Xinyang Zhao, Yibo Wang, and Xiaonan Li. 2024. "Inflection Point Effect of Interturn Insulation for Transformer under Preload Stress" Electronics 13, no. 16: 3185. https://doi.org/10.3390/electronics13163185
APA StyleZhou, X., Bai, J., Zhu, L., Tian, T., Zhao, X., Wang, Y., & Li, X. (2024). Inflection Point Effect of Interturn Insulation for Transformer under Preload Stress. Electronics, 13(16), 3185. https://doi.org/10.3390/electronics13163185