| Marchio: | DLX |
| Numero di modello: | Filo in lega FeCrAl 1Cr13Al4 |
| Moq: | 10kg |
| Condizioni di pagamento: | L/C,D/A,D/P,T/T,Western Union |
| Capacità di approvvigionamento: | 500 tonnellate al mese |
Hydrogen production through electrolysis represents one of the most promising methods for generating green energy. For optimal electrolysis performance, selecting the right materials is crucial to ensure high efficiency, durability, and reliability. 1Cr13Al4 Alloy Wire has emerged as a preferred material for these applications due to its unique combination of properties that make it ideal for electrolysis systems aimed at producing hydrogen gas.
At DLX Corporation, we offer specialized 1Cr13Al4 FeCrAl Wire tailored for electrolysis hydrogen production, ensuring optimal efficiency and long-lasting performance in demanding applications. Our wire is engineered to withstand high temperatures, resist corrosion, and maintain stable electrical resistance, making it the ideal choice for next-generation hydrogen production technologies.
1Cr13Al4 FeCrAl Wire is a specialized alloy wire designed for high-temperature and high-stress environments. Composed of iron, chromium, and aluminum, this wire exhibits excellent resistance to oxidation and corrosion, even in aggressive electrolysis conditions. Its superior electrical resistance and thermal properties enable stable and efficient performance in water splitting processes, which are fundamental to hydrogen production.
The wire is specifically engineered for use as electrodes in electrolysis cells. When electric current passes through the electrolyte solution, the wire facilitates the splitting of water molecules into hydrogen and oxygen. This reaction, powered by electrical energy, generates hydrogen gas for various energy applications including fuel cells, industrial processes, and renewable energy systems.
| Alloy Nomenclature Performance | 1Cr13Al4 | 0Cr25Al5 | 0Cr21Al6 | 0Cr23Al5 | 0Cr21Al4 | 0Cr21Al6Nb | 0Cr27Al7Mo2 |
|---|---|---|---|---|---|---|---|
| Chemical Composition (%) - Cr | 12.0-15.0 | 23.0-26.0 | 19.0-22.0 | 20.5-23.5 | 18.0-21.0 | 21.0-23.0 | 26.5-27.8 |
| Chemical Composition (%) - Al | 4.0-6.0 | 4.5-6.5 | 5.0-7.0 | 4.2-5.3 | 3.0-4.2 | 5.0-7.0 | 6.0-7.0 |
| Chemical Composition (%) - Re | Opportune | Opportune | Opportune | Opportune | Opportune | Opportune | Opportune |
| Chemical Composition (%) - Fe | Rest | Rest | Rest | Rest | Rest | Rest | Rest |
| Max. Continuous Service Temp. of Element (°C) | 950 | 1250 | 1250 | 1250 | 1100 | 1350 | 1400 |
| Resistivity at 20°C (μΩ.m) | 1.25 | 1.42 | 1.42 | 1.35 | 1.23 | 1.45 | 1.53 |
| Density (g/cm³) | 7.4 | 7.1 | 7.16 | 7.25 | 7.35 | 7.1 | 7.1 |
| Tensile Strength (N/mm²) | 580-680 | 630-780 | 630-780 | 630-780 | 600-700 | 650-800 | 680-830 |
| Elongation at Rupture (%) | >16 | >12 | >12 | >12 | >12 | >12 | >10 |
| Shape | Size (mm) |
|---|---|
| Wire | 0.05-7.5 |
| Rod | 8-50 |
| Ribbon | (0.05-0.35)×(0.5-6.0) |
| Strip | (0.5-2.5)×(5-180) |
DLX Corporation stands out in the alloy industry with our commitment to delivering high-quality, reliable materials tailored to evolving hydrogen production demands. Our 1Cr13Al4 FeCrAl Wire is engineered for superior performance and longevity in electrolysis cells.