W Shape Finned Resistances Element

(1) Voltage & Power: 110V-240V, 200W-10000W(Non-standard)
(2) The pipe material available include SUS304, SUS316, SUS321, incoloy800, incoloy 840.
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Product Details

Specifications

(1) Voltage & Power: 110V-240V, 200W-10000W(Non-standard)

(2) The pipe material available include SUS304, SUS316, SUS321, incoloy800, incoloy 840.

(3) Pipe diameter are 6.6mm, 8.0mm and 11.0mm. If there is any special requirements, just let us know.

(4) The surface load of the heating pipe is 4.5W/cm2


Material:Incoloy800,Incoloy840,SUS304,SUS316,SUS321
Radiator fin:stainless steel
Heating wire:Cr20Ni80
Lead wire:3122
Pressure:> 1.5k/5s
Insulation:> 50mΩ
Linner error:≤ 10mm
Diameter error:≤ 0.05mm
Length error:≤ 2mm
High-temperature:High-temperature Oxidation Magnesium powder is used

Advantages

(1) Low capital costs

(2) Easy control of heater output

(3) High thermal efficiency

(4) Long service life

(5) Safe to operate

(6) Extensive use

(7) Customized to meet your need


Features

(1) Single-ended electric heating pipe

(2) Air heating

(3) Nickel chrome resistance wire


Product Details

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NOTE

Please consider the following factors to select the ideal tubular elements/tubular heating elements for your application:

1. Heating element watt density

2. Sheath material (corrosive or non corrosive)

3. Temperature of the product

4. Degree of aeration of the application

5. Air velocity within your application

6. Ambient temperature


Finned Tubular Heating Application

•Radiant Heating

•Ovens

•Dryers

•Sealing

•Convection — Air and Gas

•Shrink Tunnels

•Dies and Manifolds

•Immersion Heating

•Load Banks


Delivery&Package

1. Lead time: 7-15 days after payment

2. Delivery Term: DDU, FOB,CIF

3. Shipping Mode:Air, Sea, Express

4. Package: Carton box/wooden case

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A corrugated metal fin is helically wound on a tubular element to improve heat transfer in air applications. Depending on the sheath and fin material selected, the fins are either permanently attached, mechanically or via furnace brazing. The entire assembly then goes through a computer controlled atmosphere furnace. This process prepares the element to be bent into a variety of configurations. Standard fin density is five fins per inch, while eight fins per inch can be furnished when specified for lower sheath temperatures.

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