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Product Details

Nickel-Chromium Alloys

   
Packing:  Packed in Plywood Boxes
Productivity:  100tons Per Month
Unit Price:  Negotiable
Shipment Terms:  FOB
Payment Terms:  T/T
Minimum Order:  10 kgs
Price Valid Time:  From Jan 16,2012 To Sep 26,2025
HS Code:  7502200000
Trademark:  Yunlai
Origin:  China
Material:  Nichrome
Carbon Content:  Low Carbon
Product Type:  Wire
Export Markets:  North America, South America, Eastern Europe, Southeast Asia, Africa, Oceania, Mid East, Eastern Asia, Western Europe
Product Description

NIckel Resistance Wires
Electric Resistance Heating wires or strips,
Electro-thermal wires or strips,
Heating Wires

Nickel-chromium Alloys

Those are alloys of chemical composition Ni + Cr + Fe with some additional elements so as Silicium (Si) and manganese (Mn) in order to confer them an excellent behaviour when hot and an addition of rare earth in order to increase their life time.

Alloys in question are:

Resistohm 80 -70 -60 -40 -30 - 20

Their metallurgical structure confers them a very good plasticity when cold. There is a growth of the grain under heat during utilisation of the element without inducing embrittlement of it when cold. They are used for the manufacture of electric resistances for appliances (insulated elements type tubular resistances or for example opened elements on micanit plate) or for application of industrial furnaces. In addition of a relatively high specific resistance, Ni-Cr alloys join all the necessary properties for good performances in use of furnaces:

Resistance to oxidation (they are not sensitive to aggressions of humid air)
Low embrittlement at high temperature
Good plasticity - Easier to give them a shape compared with FeCrAl (lower mechanical characteristics allow indeed a good control of elasticity of the product during shaping (coiling, folding, drawing)
Good resistance to creeping (more important than ferritic alloys) which is important during conception of a resistance presenting big heights of waves. Maximal temperature recommended in the furnace: 1050 / 1100 ° C in order to obtain a reasonable life time of the elements.

Constraints:
Nevertheless, it is to be rejected in presence of a sulphurous or chlorinated atmosphere. The sulphur causes indeed breaking on nickel alloys at higher temperatures of 650 ° C ("green rot" phenomenon). For carbonaceous atmospheres, at some temperatures between 600 and 900 ° C, Ni-Cr prove less resistant than FeCrAl.

Alloy Nomenclature Performance Cr20Ni80 Cr30Ni70 Cr15Ni60 Cr20Ni35 Cr20Ni30
Main Chemical composition Ni Rest Rest 55.0-61.0 34.0-37.0 30.0-34.0
Cr 20.0-23.0 28.0-31.0 15.0-18.0 18.0-21.0 18.0-21.0
Fe ≤ 1.0 ≤ 1.0 Rest Rest Rest
Max. continuous service temp. of element(º C) 1200 1250 1150 1100 1100
Resistivity at 20º C (μ Ω · m) 1.09 1.18 1.12 1.0 1.04
Density(g/cm3) 8.40 8.10 8.20 7.90 7.90
Thermal conductivity (KJ/m· h· º C) 60.3 45.2 45.2 43.8 43.8
Coefficient of lines expansion(α × 10-6/º C) 18.0 17.0 17.0 19.0 19.0
Melting point approx. ( º C) 1400 1380 1390 1390 1390
Elongation at rupture(%) > 20 > 20 > 20 > 20 > 20
Micrographic structure austenite austenite austenite austenite austenite
Magnetic properties nonmagnetic nonmagnetic Weak magnetic Weak magnetic Weak magnetic

 
 

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