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1. Strongly economic.
Copper and aluminum materials have excellent thermal conductivity, with far superior heat dissipation capabilities compared to other materials. The thermal efficiency of copper-aluminum composite radiators is also significantly higher than that of radiators made from other materials. Moreover, as both copper and aluminum are non-ferrous metals, their value increases over time, making the copper-aluminum composite radiators highly valuable and retaining their worth.
2. Excellent comprehensive mechanical properties.
Aluminum alloy profiles are widely used in the construction industry in our country due to their high strength, good water and air tightness, excellent thermal conductivity, exquisite appearance, and ease of processing. Particularly, their superior thermal conductivity has been recognized by many radiator manufacturers in recent years.
3. Excellent resistance to alkaline water corrosion, long lifespan.
High-quality copper-aluminum composite radiators, manufactured using internal flange hydraulic expansion technology, feature all copper joints and radiating tubes for strong corrosion resistance and no need for internal anti-corrosion treatment. Consequently, they exhibit excellent resistance to alkaline water corrosion. The copper-aluminum composite column fin radiators currently promoted and produced in our country can have a service life of up to 50 years under high alkalinity water conditions, assuming an annual corrosion rate of 0.005mm/year. This provides ample room for a lifespan of over 30 years.
4. Wide applicability.
Copper-aluminum composite panel radiators are formed by bonding copper tubes with aluminum profiles, which are tightly sealed through high-pressure expansion using specialized equipment. They feature a compact structure, attractive appearance, ease of cleaning, light weight, high pressure-bearing capacity, and excellent heat dissipation performance (radiation and convection), ensuring durability and suitability for all heating systems.































