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EN 10217-7 1.4301 Extruded Fin Tube With Aluminum 1060 Fin For Air Heaters

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EN 10217-7 1.4301 Extruded Fin Tube With Aluminum 1060 Fin For Air Heaters

Brand Name : YUHONG

Model Number : EXTRUDED FIN TUEB

Certification : ISO , PED, API , CE

Place of Origin : CHINA

MOQ : 1PC

Price : 0~ 10000 usd

Payment Terms : T/T, L/C

Supply Ability : 50000m/month

Delivery Time : 15--45days

Packaging Details : Ply wooden case

Base Tube Material : Carbon Steel, Stainless Steel, Duplex & Super Duplex Steel, Alloy Steels (P5,P9,P11, P22), Inconel, High Chrome High Nickle & Incolloy

Fin Material : Aluminum 1060

Fin Type : Extruded Fin Tube

Fin Hight : 0~17mm

Diameter : 10-38mm

Fin thickness : 0.2mm ~ 0.4mm

Fin qty : Depend on client request

Fin Length : Customized

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EN 10217-7 1.4301 Extruded Fin Tube With Aluminum 1060 Fin For Air Heaters

This high-efficiency bimetallic finned tube is primarily used in heat exchangers. The core tube is made of stainless steel, and the fins are made of aluminum. An aluminum sleeve (future fin) is pulled over the stainless steel core tube. The assembly is pulled through a machine with a set of rotating disks or rollers. These tools squeeze (press and form) the aluminum outward from the tube, forming the fins, while simultaneously deforming the aluminum inward under high pressure, forming a metallurgical bond with the outer wall of the steel tube.
European standard EN 10217-7 specifies the technical delivery conditions for welded steel tubes for pressure purposes.
1.4301 stainless steel is equivalent to AISI 304 or UNS S30400 in the US system. It offers excellent corrosion resistance in a wide range of environments and good mechanical properties over a wide temperature range.
It provides a strong, corrosion-resistant base for heat exchanger tubes and is suitable for use with a variety of industrial fluids (water, steam, certain chemicals, and oils).
1060 aluminum fins have a thermal conductivity of ~235 W/m·K, significantly higher than steel (stainless steel is approximately 16 W/m·K). This is the primary reason for using aluminum – it efficiently absorbs heat from the tube and dissipates it to the air or other gas. It is highly machinable and ductile.





EN 10217-7 1.4404 Chemical Composition Tables

DesignationChemical composition (% by mass – max unless stated)
Steel nameSteel No.CSiMnPSCrMoNiCuNOther
Austenitic steel
X2CrNi18-91.43070.031.002.00.0450.01517.50
/19.5
8.0
/10.0
0.11
X2CrNi19-111.43060.031.002.00.0450.01518.00
/20.0
10.0
/12.0
0.11
X2CrNiN18-101.43110.031.002.00.0450.01517.00
/19.5
8.50
/11.5
0.12
/0.22
X5CrNi18-101.43010.071.002.00.0450.01517.00
/19.5
8.00
/10.5
0.11
X6CrNiTi18-101.45410.081.002.00.0450.01517.00
/19.0
9.00
/12.0
Ti
5xC
/0.70
X6CrNiNb18-101.45500.081.002.00.0450.01517.00
/19.0
9.00
/12.0
Nb
10xC
/1.00
X2CrNiMo17-12-21.44040.031.002.00.0450.01516.50
/18.5
2.0
/2.5
10.00
/13.0
0.11
X5CrNiMo17-12-21.44010.071.002.00.0450.01516.50
/18.5
2.0
/2.5
10.00
/13.0
0.11
XCrNiMoTi17-12-21.45710.081.002.00.0450.01516.50
/18.5
2.0
/2.5
10.50
/13.5
Ti
5xC
/0.70





The advantages of Extruded Fin Tube


The primary advantage of extruded finned tubes lies in their unparalleled heat transfer efficiency, achieved through a seamless bond and superior mechanical strength. While their initial cost is higher than simple finned tubes, they offer

higher thermal performance, enabling smaller and more compact heat exchangers for the same load.

Higher reliability and a longer service life reduce downtime and maintenance costs.

They are durable in demanding applications.

This makes them a top choice for critical applications such as power plants, refineries, HVAC systems, and industrial process cooling, where performance, reliability, and service life are paramount.



Applications


Air-cooled steam condenser (ACSC)
Generator hydrogen cooler
Radiant cooler
HVAC&R
Heating coils
Cooling/evaporator coils
Condenser coils





EN 10217-7 1.4301 Extruded Fin Tube With Aluminum 1060 Fin For Air Heaters


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