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Nichrome 90 Heating Wire Coils Ni90cr10 Ni90 Wire In Temperature Sensors
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xDelivery Time | 7-20 Days | Material | Nickel, Chromium |
---|---|---|---|
Nickel(Min) | 89% | Resistivity | 0.78+/-0.05 |
Tensile Strength | 637MPA | Elongtation | ≥20% |
Application | Heating, Resistivity | Condition | Hard / Soft |
Sureface | Bright, Oxided, Acide | Name | Resistance Heating Wire |
Highlight | Temperature Sensors Heating Wire Coils,Ni90cr10 Heating Wire Coils,Temperature Sensors Ni90 Wire |
- Ni90Cr10 Heating Resistance Wire
Ni90Cr10 is kind of nickel-chromium alloy products, it is suitable for temperature applications up to 1250°C. Chromium content provides very good life time, it is usually used as a vape heating element.
Ni90Cr10 is characterized by high resistivity, good oxidation resistance, good ductility after use and excellent weldability. NiCr Alloy is a good material for heating industry.
- Thermistors
Ni90Cr10 resistance wire is widely used as a thermistor material, employed in the sensitive elements of temperature sensors. By measuring the resistance change of the wire, temperature variations in the environment can be accurately reflected.
- High Precision Measurement
Ni90Cr10 resistance wire exhibits a low temperature coefficient of resistance and good linearity, enabling temperature sensors to achieve high-precision temperature measurements, especially in industrial and scientific applications that require high accuracy.
- Stability
Due to its excellent temperature stability, Ni90Cr10 resistance wire temperature sensors can provide long-term stable and reliable performance, unaffected by external environmental factors.
- Industrial and Laboratory Applications
Ni90Cr10 resistance wire temperature sensors are widely used in industrial process monitoring, laboratory research, and temperature control systems. They can measure temperature variations ranging from very low to high temperatures and provide accurate temperature data.
- 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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