FZS high voltage polymer line post insulator with HTV silicone rubber housing and FRP core rod.
Available from 10kV to 220kV for overhead distribution and transmission line applications.
FZS High Voltage Polymer Line Post Insulator is a composite line post insulator designed for overhead distribution and transmission lines.
Manufactured with a fiberglass reinforced epoxy (FRP) core rod, high-temperature vulcanized (HTV) silicone rubber housing, and corrosion-resistant metal fittings, it provides reliable insulation and mechanical support for conductors in various environmental conditions.
1. Excelentes características eléctricas.
2. Buena resistencia a los golpes y las colisiones.
3. Buen rendimiento de sellado.
| Tipo | FZS-38 | FZS -69 | FZS -115 | FZS -138 |
| Tensión nominal | 38kV | 69 kV | 115 kV | 138 kV |
| Carga mecánica especificada | 12,5kN | 11kN | 9,5kN | 6,6 kN |
| Sección Longitud H | 630 mm | 860 mm | 1115 mm | 1510 mm |
| Distancia de arco seco h | 380 mm | 556 mm | 848 mm | 1250 mm |
| Distancia de fuga | 1330 mm | 1420 mm | 2130 mm | 3150 mm |
| BIL | 260 kV | 340 kV | 620 kV | 760 kV |
| Potencia Frecuencia Flashover húmedo | 130 kV | 195 kV | 295kv | 430 kV |
| Número de cobertizos | 7 | 8 | 12 | 18 |
The housing and sheds are made of premium HTV silicone rubber, providing excellent hydrophobic performance and resistance to contamination, moisture, and UV exposure.
The fiberglass reinforced epoxy rod serves as the main load-bearing component, ensuring high mechanical strength and reliable insulation performance.
Hot-dip galvanized steel fittings provide excellent corrosion resistance and secure mounting for long-term outdoor operation.
The silicone rubber surface maintains long-term hydrophobicity, significantly reducing leakage currents and flashover risks in polluted environments.
Compared with porcelain insulators, polymer line post insulators are significantly lighter, reducing transportation and installation costs.
Designed to withstand conductor loads, wind pressure, vibration, and environmental stresses encountered in power networks.
Provides outstanding performance under UV radiation, ozone, acid rain, salt fog, and extreme temperature conditions.
Composite construction eliminates the risk of porcelain breakage and improves system reliability.
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