Air heat exchanger (also known as radiator or heat sink) is the main equipment in the heat exchanger device that cools or heats the air with hot or cold media. Passing high-temperature water, steam or high-temperature heat-conducting oil can heat the air, and passing brine or low-temperature water can cool the air.
PRODUCT
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TYPE
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TUBE MATERIAL
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FIN MATERIAL
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TUBE SIZE
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FIN SIZE
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Heat Exchanger Finned Tube
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Extruded Fin Tube
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All Kind of Material can be applied
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Aluminum A1100
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15.88~50.8
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7~11.5FPI
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Fin Height Max 16mmH
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L-Foot Fin Tube
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All Kind of Material can be applied
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Copper C1100, C1220
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12.70~50.8
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7~11.5FPI
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(Wrap On Type)
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Fin Height Max 16mmH
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G-Fin Tube (Embedded Type)
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Aluminum A1100, A1050, A1060
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High Frequency Welded Finned Tube
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A179 Carbon Steel Tube
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Carbon Steel Tube
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12.70~160
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1.5~7FPI
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Stainless Steel Tube
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Stainless Steel Tube
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0.8~3.2mm. Thickness
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Alloy Steel Material
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Alloy Steel Material
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Integral Copper & Copper Alloy High Finned Tube
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C12200, C11000, C70600
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C12200, C11000, C70600
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15.88~22.23
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5~9FPI
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Max 12mm. H
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Oval Finned Tube
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Carbon Steel Tube
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Carbon Steel Tube
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All Size Available
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5~15FPI
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Stainless Steel Tube
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Stainless Steel Tube
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Alloy Steel Material
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Alloy Steel Material
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Copper & Copper Alloy Tube
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Copper & Copper Alloy Tube
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Monometallic Fin Tube
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Low Fin Tube
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Carbon Steel, stainless steel, titanium, copper, brass, nickel alloy, etc.
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—
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9.52~40
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12, 16, 19 28 FPI, etc.
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Turbo-C Tube
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Turbo-E Tube
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Corrugated Tube
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All Kind of Material
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—
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6.35~40
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2~9FPI
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Therefore, it can be widely used in light industry, construction, machinery, textile, printing and dyeing, electronics, food, starch, medicine, metallurgy, painting and other industries in the hot air heating, air conditioning, cooling, condensing, dehumidification, drying and so on.
SRZ type air heat exchanger product structure description
For the use of different tube sizes and different materials of the spiral finned heat pipe processing molded industrial finned tube heat exchanger series of products in the process, for the product’s pressure-bearing properties and the inner wall of the corrosion resistance of different media as the basic conditions to ensure that the subsequent heat dissipation and heat exchange work to better maintain the stability of the heat and the reliability of the performance of sustained!
For the external fins of the heat pipe material application categories and processing methods are required to use the stability of the corresponding choice, at the same time, this type of industrial radiator commonly used cooling fins material aluminum and steel two, aluminum metal material cooling fins, although higher than the price of steel, but its normal use of the process of the corrosion resistance and more rapid heat distribution, are Steel fins are not comparable.
For the need to use more layers of heat pipe arrangement to get the demand for heat and air heating temperature standard use, we should choose to use for multi-combination installation applications, to better ensure that the product can be used in a stable process to achieve the expected demand for heat dissipation, we are more is to choose to use the rolled steel-aluminum composite fins heat pipe for all kinds of industrial heat exchanger Product processing and production.
The internal seamless tube of the rolled steel tube and aluminum finned heat pipe is of six-part diameter, and the flow rate of the medium inside the steel tube of this size can satisfy the source of heat dissipation of the fins on the external surface.
The internal application of the seamless tube size is too large, it will cause a certain amount of heat loss, a lot of circulation of the media brought about by the heat is not completely distributed in the case of the outlet discharge, which is a kind of media waste.
1, Provide us completely drawing and we produce according to your drawing.2, Provide us some necessary data then we design the
heat exchangers as per your request
Air heat exchnager ( Steam/heat source to air)
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Heating load
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KW
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temperature of the heat source
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℃
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Heat source flow
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m3/h
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outlet air temperature
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℃
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Air flow
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m3/h
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Hot air circulation
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Yes/No
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heat exchanger (water to water )
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Heating load
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KW
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Cold side outlet temperature
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℃
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Cold side inlet temperature
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℃
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Hot side outlet temperature
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℃
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Hot side inlet temperature
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℃
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flow
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m3/h
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