FXUW dead-end composite insulator with silicone rubber housing and FRP core rod.
Available from 10kV to 500kV with high tensile strength, superior pollution resistance, and long service life for overhead transmission and distribution lines.
FXUW Dead-End Composite Insulator is a high-performance polymer tension insulator designed for overhead transmission and distribution lines.
It is primarily used at dead-end, angle, and tension positions where the conductor is subjected to significant mechanical loads.
The insulator consists of a fiberglass reinforced epoxy (FRP) core rod, high-temperature vulcanized (HTV) silicone rubber housing, and hot-dip galvanized forged steel end fittings, ensuring excellent electrical insulation and mechanical performance.
1. Forte resistência à erosão e à colisão.
2. Alta resistência mecânica.
3. Estrutura compacta e peso leve.
| Tipo | Tensão nominal
(KV) |
Carga mecânica especificada | Section length
(mm) |
Min Arc distance
(mm) |
Leakage distance
(mm) |
Relâmpagos
impulse withstand BIL (KV) |
Potência
frequência resistir (úmido) (KV) |
| FXUW-12/70 | 12 | 70 | 330 | 203 | 430 | 95 | 45 |
| FXUW-24/70 | 24 | 70 | 440 | 300 | 660 | 125 | 60 |
| FXUW-35/70 | 36 | 70 | 530 | 405 | 990 | 180 | 95 |
The silicone rubber sheds provide excellent hydrophobicity, pollution resistance, and leakage current suppression, ensuring stable insulation performance under wet and contaminated conditions.
The FRP rod serves as the load-bearing component, offering high tensile strength, low weight, and excellent resistance to fatigue and corrosion.
Hot-dip galvanized steel fittings provide reliable mechanical connections and excellent corrosion resistance for long-term outdoor service.
Designed specifically for tension applications, FXUW insulators can withstand high conductor loads, wind loads, and ice loads encountered in transmission systems.
The hydrophobic silicone rubber surface minimizes contamination effects and reduces flashover risks in coastal, industrial, and desert environments.
Up to 80% lighter than equivalent porcelain insulators, reducing transportation, handling, and installation costs.
Outstanding performance under UV exposure, ozone, salt fog, acid rain, and extreme temperature conditions.
Unlike porcelain insulators, composite insulators do not shatter, reducing maintenance risks and improving network reliability.
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