Suppliers ND Steel Cold Finished H Type Finned Tube Heat Exchanger GB-09CrCuSb Standard
Details for China ND Steel Cold Finished H Type Finned Tube Heat Exchanger GB-09CrCuSb Standard

ND Steel Cold Finished H Type Finned Tube Heat Exchanger GB-09CrCuSb Standard

ND Steel Cold Finished H Type Finned Tube Heat Exchanger GB-09CrCuSb Standard
Product Type:

Fabric >> Other fabric

Keyword: spiral fin tube,heat exchanger fin tube
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FOB price: Negotiable
Payment Terms: L/C
Packing: Iron Frame Packing
Delivery Time: 30 - 60 Days
Detailed Product Description
Specifications:

ND Steel Diameter 38 thickness 4 or 5 cold finished H type finned tube GB-09CrCuSb standard

 

Product Description

 

1.Finned Tube Heat Exchangers consist of a shell and finned tubes assembly.

2.Fins are used to increase the effective surface area of heat exchanger tubing.

3.Finned tubes are used when the heat transfer coefficient on the outside of the tubes is appreciably lower than that on the inside;as in heat transfer from a liquid to a gas,vapor to a gas ,such as steam to air heat exchanger, thermic fluid to air heat exchanger, when an extended surface is needed on only one fluid side or when the operating pressure needs to be contained on one fluid side.

 

Details

 

1.Our products can be modified according to our customers' needs and the situation.
2.we design and manufacture safe,reliable and efficient H-fin tubes.HD BOILER has also completed stand-alone product quality assurance systems.
3.Production of H-fin tubes are with high heat transfer efficiency, they have flue gas resistance and are designed for a small space.
 

Technical parameter

 

Medium air, flue gas, thermal oil, water, brine, refrigerant, etc.
Temperature standard heat exchanger to 560 ° C by special materials can be higher
Pipe materials carbon steel, stainless steel, alloy or special materials
Ribs materials carbon steel, stainless steel, non-ferrous metal, alloy or special materials
Thermal insulation &Surface treatment according to customers specification

 

Features

 

1. The equipment body can be designed into many modules to ensure the long term and stable running;

2. Compact structure which can enlarge the heat exchanging area in order to add the heat transfer area and less leakage

3. Improve the heat transfer efficiency

4. Structure arrangement: In line or staggered arrangement

 

 

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