Finned pipes

Finned pipes are a specialized type of rolled metal product characterized by external fins located along the entire pipe surface or on specific sections. The primary purpose of the fins is to significantly increase the heat exchange area between the pipe wall and the surrounding environment, thereby improving heat transfer efficiency. Such pipes are widely used in various thermal systems, including heat exchangers, heating radiators, and cooling systems.

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Name Additional material Alloy composition Diameter Peculiarities Properties Properties II Purpose Section Thickness Type of coating
Alloy steel pipe 8x1 mm 08x18N10T aluminum nickel-containing 8 finned stainless steel heat-resistant for heat exchangers round 1 uncoated
Alloy steel pipe 8x1 mm 08x18N10 aluminum 8 finned stainless steel heat-resistant for heat exchangers round 1 uncoated
Alloy steel pipe 8 x1 mm 10G2 aluminum 8 finned structural for heat exchangers round 1 uncoated
Alloy steel pipe 6x1 mm 10G2 aluminum 6 finned structural for heat exchangers round 1 uncoated
Alloy steel pipe 6x1 mm 08x18N10T aluminum nickel-containing 6 finned stainless steel heat-resistant for heat exchangers round 1 uncoated
Alloy steel pipe 6x1 mm 08x18N10 aluminum 6 finned stainless steel heat-resistant for heat exchangers round 1 uncoated
Alloy steel pipe 60x3.5 mm 10G2 aluminum 60 finned structural for heat exchangers round 3.5 uncoated
Alloy steel pipe 60x3.5 mm 08x18N10T aluminum nickel-containing 60 finned stainless steel heat-resistant for heat exchangers round 3.5 uncoated
Alloy steel pipe 60x3.5 mm 08x18N10 aluminum 60 finned stainless steel heat-resistant for heat exchangers round 3.5 uncoated
Alloy steel pipe 45x2.5 mm 10G2 aluminum 45 finned structural for heat exchangers round 2.5 uncoated
Order finned tubes for gas and oil refining installations. Selection and supply according to technical requirements with delivery to the destination point. ASME finned tubes are used in heat exchange systems, power equipment, and technological installations where high heat transfer efficiency is required. The finned design increases the surface area and improves the heat transfer coefficient, allowing equipment dimensions to be reduced and operational parameters to be optimized. Nickel-containing alloys and stainless steels with high resistance to corrosion and thermal loads are used in manufacturing. The products are certified in accordance with international standards such as ASME B31.1, ASME B31.3, and ASTM, making them suitable for operation in demanding industrial environments.

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