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Karma 6J22 Nicr Alloy Resistance Wire For Electrical Heating Elements

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Karma 6J22 Nicr Alloy Resistance Wire For Electrical Heating Elements

Brand Name : TANKII

Model Number : karma

Certification : JIS,GB,DIN,BS,ASTM,AISI,CTI

Place of Origin : Shanghai,China

MOQ : 100KG

Price : $10~$25/KG

Payment Terms : L/C, D/P, T/T, Western Union, MoneyGram

Supply Ability : 600T per moth

Delivery Time : 30days

Packaging Details : on spool,paper box,wooden case/pallet,in coil

Port : Shanghai,China

Brand : TANKII

Ni : BAL

max continuous operating temperature(℃) : 300

resistivity(Ω/cmf,20℃) : 1.33

resisitivity(μΩ/m,60℉) : 800

density(g/cm³) : 8.1

thermal conductivity(KJ/m·h·℃) : 46.0

linear expansion coefficient(x10﹣6/℃)20-1000℃ : -

tensile strength(N/m㎡) : 1400

melting point (℃) : 180

hardness(Hv) : 780

Elongation(%) : 10-20

Micrographic structure : austenite

Magnetic property : non

fast life(h/℃) : -

grade : NiCr alloy

application : aviation,electronics,industrial,medical,chemical

type : Nickel Chrome wire

ultimate strength( ≧mpa) : as standard

surface : bright

shape : wire

Material : nickel chrome

condition : hard/soft/half hard

color : bright

feature : good form stability

MOQ : 100kg

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NiCrAlFe alloy karma 6J22 resistance heating wire used in electrical heating elements

1. Karma alloy

Karma alloy is made up of copper, nickel, Aluminum and Iron as the main components. The resistivity is 2~3 times higher than MENTONG. It has lower temperature coefficient of resistance(TCR), lower thermal EMF versus copper, good permanence of resistance for a long period of time and strong anti-oxidation. Its working temperature range is wider than MENTONG (-60~300℃). It is suitable for making fine precision resistance elements and strain.

2. Karma size

Wire: 0.018mm-10mm
Ribbon: 0.05*0.2mm-2.0*6.0mm
Strip: 0.5*5.0mm-5.0*250mm
Bar: 10-100mm

3. Chemical Content(%)

Grade C Si Mn P S Ni Al Fe Cr
Karma 0.04 0.20 0.5~1.05 0.010 0.010 Bal. 2.7~3.2 2.0~3.0 19.0~21.5

Physical Properties

Grade Density(g/cm3) EMF vs
Pt(0-100)μv/
Max using
Temp ()
Volume
resistivity(μΩ.m)
PPM value
(×10-6/)
Karma 8.1 ≤2.5 ≤300 1.33±8%(20)

≤±30(20)

Port Shanghai,China fast life(h/℃) -
Brand tankii grade NiCr alloy
Ni bal application heating element and resistor
max continuous operating temperature(℃) 300 powder or not not powder
resistivity(Ω/cmf,20℃) 1.33 ltimate strength( ≧mpa) as standard
resisitivity(μΩ/m,60℉) 800 type Nickel Chrome strip
density(g/cm³) 8.1 surface bright
thermal conductivity(KJ/m·h·℃) 46 shape strip
linear expansion coefficient(x10﹣6/℃)20-1000℃ - Material nickel chrome
melting point (℃) 1400 condition bright
hardness(Hv) 180 color silvery white
Elongation(%) 10-20 density 8.1 g/cm3
Micrographic structure austenite feature good form stability
Magnetic property non MOQ 100kg

4. Distinctive features of Karma resistance wire

1) Starting with Nickel Chromium electric heat wire Class 1, we replaced some of the Ni with Al and other elements, and thus achieved a precision resistance material with improved resistance temperature coefficient and heat electromotive force against copper. With the addition of Al, we have succeeded in making volume resistivity 1.2 times greater than Nickel Chromium electric heat wire Class 1 and the tensile strength 1.3 times greater.

2) The secondary temperature coefficient β of Karmalloy wire KMW is very small, - 0.03 × 106/ K2, and the resistance temperature curve turns out to be almost a straight line within a wide emperature range.

Therefore, the temperature coefficient is set to be the average temperature coefficient between23 ~ 53 °C, but 1 × 10-6/K, the average temperature coefficient between 0 ~ 100 °C, also may be adopted for

the temperature coefficient.

3) Electromotive force against copper between 1 ~ 100 °C is also small, below + 2 μV/K, and exhibits

excellent stability over a period of many years.

4) If this is to be used as a precision resistance material, low temperature heat treatment is required

to eliminate processing distortions just as in the case of Manganin wire CMW.

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