Certified Company
ISO 9001:2005Nitro Metals is a trusted brand offering high-quality copper finned tubes designed for efficient heat transfer and long-lasting performance. Our copper finned tubes provide excellent corrosion resistance, enhanced surface area, and versatility for various applications. Whether you need finned tubes for heat exchangers, boilers, radiators, or any other thermal system, Nitro Metals delivers superior quality and reliability. With our commitment to efficiency and energy savings, we unleash the power of copper finned tubes for optimal heat transfer and reduced operating costs. Choose Nitro Metals for unmatched performance and reliability.
Explore the outstanding features of our Copper Finned Tubes
Copper finned tubes provide excellent heat transfer capabilities due to the high thermal conductivity of copper, allowing for efficient heat exchange.
Copper finned tubes are highly resistant to corrosion, making them suitable for use in various environments, including those with high humidity or corrosive elements.
Finned tubes have extended surface areas due to the fins attached to the tube, increasing the heat transfer efficiency and providing a compact design.
Copper finned tubes can be customized to fit specific applications and requirements, making them versatile for use in various industries and systems.
Copper finned tubes have a long lifespan, as copper is a durable and reliable material that can withstand high temperatures and harsh conditions.
The efficient heat transfer and enhanced surface area of copper finned tubes contribute to energy savings and reduced operating costs.
Property | Value |
---|---|
Material | Copper |
Tube Diameter | Varies (e.g., 5/8", 3/4", 1") |
Fin Thickness | Varies (e.g., 0.006", 0.008", 0.010") |
Fin Height | Varies (e.g., 3/8", 1/2", 5/8") |
Fin Density | Varies (e.g., fins per inch) |
Corrosion Resistance | Excellent |
Thermal Conductivity | High |
Fins are integrally embedded into the tube surface, offering enhanced heat transfer performance.
Fins are attached to the outer surface of the tube in the shape of "L," providing increased surface area and improved heat transfer efficiency.
Fins are attached to the outer surface of the tube in the shape of "G," creating a larger surface area for better heat transfer.
Fins are attached to the outer surface of the tube in the shape of "H," offering maximum heat transfer efficiency and surface area.
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