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Iron-Chrome-aluminum FeCrAl wire metallic heating elements
Max continuous working temperature: 1400 C.
Melting Temperature: 1500 C
Electric Resistivity: 1.42 ohm mm2/m
Diameter: 0.01mm-10mm
FeCrAl wire Metallic heating elements Fe-Cr-Al Iron-Chromium-Aluminum alloys Has been used extensively as heating elements in industrial furnaces and electrical kilns and has less hot strength than Tophet alloys but much higher melting point.
Our high metallic heating elements have a wide range of temperatures. The highest temperature can reach 1,400°C.Besides, we have eleven different kinds of alloys, each type has its own temperature range and resistivity. So our products have various applications.
FeCrAl wire Fe-Cr-Al Iron-Chromium-Aluminum alloys are available as wire, strip, welded and seamless tubes; All these product forms are available from stock for fast deliveries. The high aluminum content, in combination with the high chromium content causes the scaling temperature to increase up to 1425 C (2600F );
Over a long period of time, our products FeCrAl wire metallic heating elements (Fe-Cr-Al/Ni-Cr) high resistance and heating alloy materials are salable and widely used in various industries, such as metallurgical, chemical, glass, ceramic, and electrics for instance, they can be used for industrial and civil heating-furnace, infrared equipment, liquefied gas infrared heat-resisting net, different kinds of igniting and radiating electrodes and voltage-regulating resistors for motors and so on.
FeCrAl wire Main Technical Performance
| 1Cr1 | 1Cr2 | 0Cr2 | 0Cr2 | 0Cr2 | 0Cr21 | 0Cr27 | |
Main Chemical Elements % | Cr | 12.0 | 17.0 | 19.0 | 20.5 | 23.0 | 21.0 | 26.5 |
Al | 4.0-- | 2.0--4.0 | 5.0--7.0 | 4.2--5.3 | 4.5--6.5 | 5.0--7.0 | 6.0--7.0 | |
Fe | ALW | ALW | ALW | ALW | ALW | ALW | ALW | |
Re | ALW | ALW | ALW | ALW | ALW | ALW | ALW | |
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| Add-on | Add-on Mo:1.8 --2.2 | |
Highest Temperature °C | 950 | 1100 | 1250 | 1250 | 1250 | 1350 | 1400 | |
Melting Point °C | 1450 | 1500 | 1500 | 1500 | 1500 | 1510 | 1520 | |
Density g/cm3 | 7.40 | 7.35 | 7.16 | 7.25 | 7.10 | 7.10 | 7.10 | |
Resistivity μΩ.m,20°C | 1.25 | 1.23 | 1.42 | 1.35 | 1.42 | 1.45 | 1.53 | |
Tensile Strength | 588-- | 637--784 | 637--784 | 637--784 | 637--784 | 637--784 | 686--784 | |
Expansion % | ≥16 | ≥12 | ≥12 | ≥12 | ≥12 | ≥12 | ≥10 | |
bend degree | ≥5 | ≥5 | ≥5 | ≥5 | ≥5 | ≥5 | ≥5 | |
celerity life h/°C | _ | ≥80/ | ≥80/ | ≥80/ | ≥80/ | ≥50/ | ≥50/ | |
Specific Heat | 0.490 | 0.490 | 0.520 | 0.460 | 0.494 | 0.494 | 0.494 | |
Thermal Conductivity | 52.7 | 46.9 | 63.2 | 60.2 | 46.1 | 46.1 | 45.2 | |
Coefficient Of Linear Extensibility ( COLE) (20-1000°C) | 15.4 | 13.5 | 14.7 | 15.0 | 16.0 | 16.0 | 16.0 | |
rigidity HB | 200--260 | 200--260 | 200--260 | 200--260 | 200--260 | 200--260 | 200--260 | |
Emerg eorganise | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite | |
Magnetism | Magn | Magn | Magn | Magn | Magn | Magn | Magn | |



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