Insulators are a special insulation control that can play an important role in overhead transmission lines. In the early years, insulators were mostly used for telegraph poles. Slowly, a lot of disk-shaped insulators were hung on one end of the high-voltage wire connection tower. It was used to increase the creepage distance. It was usually made of glass or ceramics and was called an insulator. Insulators should not fail due to various electromechanical stresses caused by changes in the environment and electrical load conditions, otherwise the insulators will not have a significant effect and will damage the use and operating life of the entire line.
The main function of insulators is to achieve electrical insulation and mechanical fixation, for which various electrical and mechanical performance requirements are specified. If under the specified operating voltage, lightning overvoltage and internal overvoltage, no breakdown or flashover along the surface; under the specified long-term and short-term mechanical load, no damage and damage; under the specified machine , After long-term operation under electrical load and various environmental conditions, no obvious deterioration will occur; the fittings of insulators will not produce obvious corona discharge under the operating voltage, so as not to interfere with radio or television reception. Because insulators are widely used devices, their connection fittings are also required to be interchangeable. In addition, the technical standards of insulators also require various electrical, mechanical, physical, and environmental conditions to test the performance and quality of the insulators according to different types and conditions of use.
Summary
1) Material:porcelain
2) Class BS: Pw-11-Y Pw-22-Y Pw-33-Y
3)pin type insualators for high voltage
4)safe usage
5)various desigins available
6)fast shipping and great service
7)good quality and reasonable price
Main dimensions and standard particulars | |||||
Fig | 1 | 2 | 3 | ||
Class BS | Pw-11-Y | Pw-22-Y | Pw-33-Y | ||
Main Dimensions (mm) | H | 185 | 255 | 320 | |
h | 32.65 | 32.65 | 32.65 | ||
D | 170 | 205 | 240 | ||
d | 76 | 76 | 76 | ||
d1 | 27.78 | 27.78 | 27.78 | ||
R1 | 16 | 16 | 16 | ||
R2 | 16 | 16 | 16 | ||
Nominal Voltage (kV) | 15 | 22 | 33 | ||
Creepage Distance (mm) | 432 | 673 | 851 | ||
Minimum Flashover Voltage | Power-frequency | Dry (kV) | 100 | 125 | 140 |
Wet (kV) | 65 | 95 | 110 | ||
50% Impulse Positive | 150 | 190 | 210 | ||
Withstand Voltage | One minute power- frequency | Dry (kV) | 90 | 110 | 125 |
Wet (kV) | 60 | 90 | 100 | ||
impulse (kV) | 140 | 180 | 200 | ||
Radio- Influence- Voltage Data | Test Voltage to Ground (kV) | 22 | 30 | 44 | |
Maximum RIV at 1000kHz (uV) | 12000 | 16000 | 25000 | ||
Cantilever Failing Load(kN) | 11 | 11 | 11 | ||
Weight (kg) | 5 | 10 | 13 |
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