Gold Member Since 2008
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Shanghai Tankii Alloy Material Co., Ltd.

Heater Wire, Heater Ribbon, Heat Element manufacturer / supplier in China, offering Heater Wire/Heater Ribbon, D560R bimetal strip 13.7 Than bending, Thermocouple cable with PVC insulation (Type K, J, T, E, S. R. B) and so on.

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Heater Wire/Heater Ribbon

FOB Price: US $6 / kg
Min. Order: 20 kg
Min. Order FOB Price
20 kg US $6/ kg
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Production Capacity: 500 Mt/Month
Transport Package: Spool, Carton, Wooden Case
Payment Terms: L/C, T/T, Paypal, Western Union

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Basic Info
  • Model NO.: Resistohm 140
  • Conductor Type: Solid
  • Conductor Material: Alloy
  • Certification: ISO9001, RoHS
  • Specification: GB/T 1234
  • HS Code: 72230000
  • Type: Bare
  • Application: Heating
  • Insulation Material: Bare
  • Trademark: TANKII
  • Origin: Shanghai, China
Product Description

Heater Wire/Heater Ribbon
1) Material available:

Cr20Ni80, Cr30Ni70, Cr15Ni60, Cr20Ni35, Cr20Ni30, Cr20Ni25, NiCr25FeAlY, Cr13Al4, Cr21Al4, Cr14Al4, Cr20Al4, Cr21Al6, Cr23Al5, Cr25Al5, Cr21Al6Nb, Cr25Al5SE.


2) Shape:

Wire, strip, ribbon, sheet, coil


3) About us

We can also design and manufacture according to your request. Shanghai Tankii Alloy Material Co., Ltd. is specialized in production of Ni-Cr Alloy, Cu-Ni Alloy, Fechral, thermocouple wire, pure nickel and other precision alloy materials in the form of wire, strip, rod, bar and plate.

4) Alloy character:

Ferritic alloys allow to reach process temperatures of 2192 to 2282F,
Corresponding to a resistance temperature of 2372F. All ferritic alloys have approximatively the same basis composition: 20 to 25 % of chromium, 4.5 to 6 % of aluminium, balance being iron. Some of them contain in addition rare earth, as yttrium or silicium. Those alloys having a ferritic structure, we observe, after a maintenance at high operating temperature, an important growth of the grain and a precipitation of chromium carbides at the grain joints level. This induces an increased embrittlement of the resistance, especially when it is come again at ambient temperature.

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Mr. Martin Lee
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