The Aasxsn Ccx-Al3 Wk 12/20 (24) kV XLPE insulated medium voltage overhead line stands as a high-performance solution for reliable power transmission in medium-voltage networks, engineered to bridge substation outputs and distribution systems. Designed to operate at 12/20 (24) kV, this overhead line combines robust construction with advanced insulation technology, making it suitable for diverse environments from urban centers to rural landscapes.
At its core, the line features Aluminum Conductors (Ccx-Al3 designation), crafted from high-grade aluminum alloy to balance conductivity and mechanical strength. The Aluminum Conductors offer a lightweight profile, reducing strain on support structures and enabling longer spans between poles—ideal for areas where installation efficiency and structural economy are priorities. The stranded design of the conductors enhances Flexibility, minimizing fatigue from wind-induced movement and simplifying handling during installation. A defining feature is its XLPE (cross-linked polyethylene) insulation, which delivers exceptional dielectric performance at medium voltages. This insulation layer resists thermal degradation, withstanding continuous operating temperatures up to 90°C and short-term overloads up to 130°C, ensuring stability even under fluctuating loads. It also provides robust protection against UV radiation, moisture, and chemical exposure, extending the line’s lifespan in outdoor conditions.
The overhead line’s construction integrates the Insulated Conductors with a durable outer sheath or protective layer, enhancing resistance to abrasion, impact, and environmental stressors. Compliant with international standards such as IEC 60502 and EN 50525, it meets stringent criteria for electrical safety, mechanical resilience, and flame retardancy. Suitable for applications including urban distribution networks, industrial power feeds, and rural electrification projects, the Aasxsn Ccx-Al3 Wk 12/20 (24) kV line delivers consistent power transmission with minimal losses. Its combination of efficiency, durability, and adaptability solidifies its role as a reliable component in modern medium-voltage infrastructure.
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