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aluminum alloy flat tube microchannel heat exchanger

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Product name : aluminum alloy flat tube microchannel heat exchanger

PRODUCT DESCRIPTION

NO.

ITEM

DESCRIPTION

1

Material

AA6061,   AA6063, AA3003

2

Temper

H14

3

Length

Up   to 6 meters

4

Width

Up   to 1 meter

5

Thickness

At   least 0.5mm

6

Surface   finish

Powder coating, oxidation,   painting, etc

7

Color

Black, white, grey,   silver, etc

7

Application

Typically used in   heat transfer fields

aluminum alloy flat tube microchannel heat exchanger

▲Multiple microchannel flat tubes

metalli’s microchannel tube applications

aluminum alloy flat tube microchannel heat exchanger

metalli’s microchannel tube features

microchannel tube features

● Low weight

The low weight, compact size and reduced internal volume of an all-aluminum microchannel tube were key factors in its dramatic increase in popularity in the automobile industry. Their reduced size and weight lead not only to the lower transport and handling costs but also to the reduced cost of labour.

● Good corrosion resistance

The use of special long-life aluminium alloys and non-corrosive fluxes in the manufacturing process of microchannel heat exchangers provides significant corrosion resistance.

● High Heat Transfer Ratios

The contact between the tubes and fins of a traditional finned tube heat exchanger is mechanical, while the manufacture of the microchannel heat exchanger involves brazing, which provides the metallurgical bond between tubes and fins, eliminates contact resistance, and thus ensures higher heat transfer.

● Smaller Sizes, Compact Design

Microchannel heat exchangers with 32-mm tube width provide the almost equal performance as 6-row finned tube heat exchanger with the same face area. To replace a traditional heat exchanger with the lower number of rows, a smaller and therefore less costly microchannel heat exchanger can be used. Depending on the application, this may also permit to increase the heat exchanging surface.

● Lower Equipment Cost

The advantages of microchannel heat exchangers have led to a reduction in the overall cost of the equipment, which benefits from smaller heat exchanger size, and a reduction in the number of parts used in the construction.

Experience shows that the end cost of equipment that uses microchannel heat exchangers is at least 10% lower than that of equipment based on traditional heat exchangers.


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