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Electric Heating Element Resistance Heaters 0.1mm 0.32mm Cr20ni80 Heating Resistance Wire
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xDelivery Time | 7-20 Days | Material | Nickel, Chromium |
---|---|---|---|
Nickel(Min) | 76% | Resistivity | 1.09+/-0.05 |
Tensile Strength | 637MPA | Elongtation | ≥20% |
Application | Heating, Resistivity | Condition | Hard / Soft |
Sureface | Bright, Oxided, Acide | Name | Resistance Heating Wire |
Highlight | 0.32mm Heating Element Resistance Heaters,Cr20ni80 Heating Element Resistance Heaters,0.1mm Cr20ni80 Heating Resistance Wire |
- Cr20ni80 Heating Resistance Wire
In resistance heaters, Cr20Ni80 resistance wire is a commonly used heating element material. It is composed of 20% chromium and 80% nickel, with excellent electrical resistance characteristics and high temperature stability, suitable for various heating applications.
- Material Characteristics
1. Cr20Ni80 resistance wire possesses excellent resistivity and resistance temperature coefficient, capable of rapidly generating high temperatures while maintaining stability.
2. Its high-temperature stability makes it an ideal heating element, suitable for various applications in resistance heaters.
- Heating Efficiency
1. Resistance heaters utilizing Cr20Ni80 resistance wire can achieve rapid and uniform heating effects.
2. The Cr20Ni80 resistance wire inside the heater quickly converts electrical energy into heat, rapidly increasing the internal temperature of the heater and enhancing heating efficiency.
- Application Areas
1. Cr20Ni80 resistance wire is widely used in various resistance heaters, including household electric heaters, industrial baking equipment, and chemical processing equipment.
2. Whether it's clothes dryers, ovens, or industrial baking furnaces, Cr20Ni80 resistance wire can be found, providing stable and reliable solutions for various heating needs.
- 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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