Changzhou Aidear Refrigeration Technology Co., Ltd.

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Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol

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Changzhou Aidear Refrigeration Technology Co., Ltd.
City:changzhou
Province/State:jiangsu
Country/Region:china
Contact Person:MrMichael
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Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol

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Brand Name :OEM/ODM
Model Number :Customized
Certification :CE,ROHS ,ISO9001,ISO14001,
Place of Origin :CHINA
MOQ :Negotiable
Price :Negotiable
Payment Terms :L/C, T/T
Supply Ability :300 pcs one day
Delivery Time :3-15 days for 1-5 sets
Packaging Details :wooden packing
Name :Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol
Type :heat exchanger
Structure :fin-tube type
Tube material :aluminum
Composition :up and down water pipe air filter hose silicone pipe
Process :elbow, punching, expansion, stringing, drying,
Pressure :Low pressure
Application :Heating System
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Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol

Specification

Tube Size Fin (OD) Fin Height Fin Thickness Fins Distance
Φ18x2 mm Φ38 mm 10 mm 0.3 mm 4-5 mm
Φ21x2 mm Φ45 mm 12 mm 0.3 mm 5-8 mm
Φ21x2 mm Φ51 mm 15 mm 0.3 mm 5-8 mm
Φ25x2 mm Φ50 mm 12.5 mm 0.3 mm 5-8 mm
Φ25x2 mm Φ55 mm 15 mm 0.3 mm 5-8 mm
Φ32x3 mm Φ62 mm 15 mm 0.3 mm 8-10 mm

Other finned tube size can be customized.

(Materials S/S 201, S/S 304, S/S 316 are optional)

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Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol

Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol

Low Pressure Brazed Aluminum Fin Type Heat Exchanger for Ethylene glycol

Application


Finned tube heat exchanger is applied and equipped with fins on one side to increase the heat transfer area, improve the degree of turbulence in the fluid and the convection heat transfer coefficient when two fluid convection heat transfer coefficient has large difference.

Tube Fin Heat Exchangers, also called finned coil heat exchangers, consist of tubes that pass through a dense fin stack that is mechanically supported by a mounting frame. Fluid passes through the tube coils, conducts heat to the fins and dissipates heat to air forced through the heat exchanger.

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