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NCHW-2 Nichrome Ni60cr15 Heating Resistance Wire For Heater
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xDelivery Time | 7-20 Days | Material | Nickel, Chromium |
---|---|---|---|
Nickel(Min) | 55% | Resistivity | 1.12+/-0.05 |
Tensile Strength | 637MPA | Elongtation | ≥20% |
Application | Heating, Resistivity | Condition | Hard / Soft |
Sureface | Bright, Oxided, Acide | Name | Resistance Heating Wire |
Highlight | Heater Heating Resistance Wire,Ni60cr15 Heating Resistance Wire,NCHW-2 Heating Resistance Wire |
- Cr15Ni60 Heating Resistance Wire
Ni60Cr15 is kind of high resistivity nicr alloy, which working temperture up to 1150°C. This kind of alloy is characterized by high resistivity, good oxidation resistance, very good form stability, good ductility after use and excellent weldabilit. Ni60Cr15 NiCr alloy wire is used for electric heating elements in industrial appliances.
- Household Heaters
Ni60Cr15 resistance wire is extensively used in household heaters such as electric kettles, fan heaters, and electric radiators. It provides rapid and uniform heating, suitable for heating water, air, or solid objects.
- Industrial Heaters
In industrial settings, Ni60Cr15 resistance wire is used in various types of heaters such as electric furnaces, heating ovens, and heating tubes. They provide stable heating performance in high-temperature environments, suitable for heating fluids, gases, or solid materials.
- Vehicle Heaters
Ni60Cr15 resistance wire is also used in vehicle heaters such as car seat heaters, engine heaters, and cabin heating systems. They provide a comfortable interior environment and additional heating in cold weather.
- Medical Heaters
In medical equipment, Ni60Cr15 resistance wire is used in heater devices such as laboratory heaters and medical imaging equipment. They provide precise temperature control, ensuring the safety and effectiveness of medical procedures.
- Nickel-chromium alloy performance tables
Performance material | Cr10Ni90 | Cr20Ni80 | Cr30Ni70 | Cr15Ni60 | Cr20Ni35 | Cr20Ni30 | |
Composition | Ni | 90 | Rest | Rest | 55.0~61.0 | 34.0~37.0 | 30.0~34.0 |
Cr | 10 | 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 | |
Maximum temperature℃ | 1300 | 1200 | 1250 | 1150 | 1100 | 1100 | |
Meltiing point ℃ | 1400 | 1400 | 1380 | 1390 | 1390 | 1390 | |
Density g/cm3 | 8.7 | 8.4 | 8.1 | 8.2 | 7.9 | 7.9 | |
Resistivity | -- | 1.09±0.05 | 1.18±0.05 | 1.12±0.05 | 1.00±0.05 | 1.04±0.05 | |
μΩ·m,20℃ | |||||||
Elongation at rupture | ≥20 | ≥20 | ≥20 | ≥20 | ≥20 | ≥20 | |
Specific heat | -- | 0.44 | 0.461 | 0.494 | 0.5 | 0.5 | |
J/g.℃ | |||||||
Thermal conductivity | -- | 60.3 | 45.2 | 45.2 | 43.8 | 43.8 | |
KJ/m.h℃ | |||||||
Coefficient of lines expansion | -- | 18 | 17 | 17 | 19 | 19 | |
a×10-6/ | |||||||
(20~1000℃) | |||||||
Micrographic structure | -- | Austenite | Austenite | Austenite | Austenite | Austenite | |
Magnetic properties | -- | Nonmagnetic | Nonmagnetic | Nonmagnetic | Weak magnetic | Weak magnetic |
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