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Resistance Heating Wire Nichrome Nicr 35/20 Ni35Cr20 Nickel Chromium Wire For Heater Device
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xDelivery Time | 7-20 Days | Material | Nickel, Chromium |
---|---|---|---|
Nickel(Min) | 32% | Resistivity | 1.00+/-0.05 |
Tensile Strength | 637MPA | Elongtation | ≥20% |
Application | Heating, Resistivity | Condition | Hard / Soft |
Sureface | Bright, Oxided, Acide | Name | Resistance Heating Wire |
Highlight | Nicr 35/20 Resistance Heating Wire,Ni35Cr20 Resistance Heating Wire,Nichrome Resistance Heating Wire |
- Ni35Cr20 Heating Resistance Wire
Ni35Cr20 is an austenitic nickel-chromium alloy suitable for temperature applications up to 1100°C. This alloy is characterized by high resistivity, good oxidation resistance, good ductility after use and excellent weldability.
In heating devices, Ni35Cr20 resistance wires play a crucial role. This type of alloy resistance wire has been widely used in various heating equipment due to its excellent performance and stability.
- Electric Furnace
Ni35Cr20 resistance wire is commonly used as heating elements in electric furnaces. Its high temperature stability and low resistance temperature coefficient enable it to provide stable heating effect in high temperature environments, thus meeting the heating requirements of different materials.
- Electric Water Heater
Ni35Cr20 resistance wire is also widely used in electric water heaters. By heating the resistance wire to a certain temperature, water can be heated quickly and efficiently, providing hot water for residential and commercial premises.
- Hot Air Gun
The hot air gun is a common industrial heating equipment, and Ni35Cr20 resistance wire is commonly used in its heating elements. It can generate high-temperature hot air for drying, baking, and heat treatment processes.
- Heating Tube
Ni35Cr20 resistance wire is also commonly used in heating tubes for heating liquids, gases, or solids. Its stable performance and corrosion resistance enable it to reliably operate in various industrial heating processes.
- 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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