| Payment Terms | L/C,D/A,D/P,T/T,Western Union |
| Supply Ability | 500 tons per month |
| Delivery Time | 7-10 work days |
| Brand Name | DLX |
| Model Number | FeCrAl Alloy Wire 0Cr25Al5 |
| Certification | Ce,Rohs |
| Place of Origin | China,Jiangsu |
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Product Specification
| Payment Terms | L/C,D/A,D/P,T/T,Western Union | Supply Ability | 500 tons per month |
| Delivery Time | 7-10 work days | Brand Name | DLX |
| Model Number | FeCrAl Alloy Wire 0Cr25Al5 | Certification | Ce,Rohs |
| Place of Origin | China,Jiangsu | ||
| High Light | FeCrAl resistance wire for electrolysis ,0Cr25Al5 hydrogen production wire ,high-temperature FeCrAl resistance wire | ||
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Hydrogen production through water electrolysis is increasingly recognized as a vital process in the transition to clean energy. By splitting water into hydrogen and oxygen using electricity, electrolysis offers a sustainable method to produce hydrogen, especially when powered by renewable energy sources. A key component in electrolysis systems is the resistance wire, which must withstand extreme conditions and ensure consistent performance over time. The 0Cr25Al5 FeCrAl Wire is specifically designed to meet the demands of advanced hydrogen production, offering exceptional durability, high temperature resistance, and long-lasting efficiency in electrolysis applications.
The 0Cr25Al5 FeCrAl Wire is a high-performance alloy composed of iron (Fe), chromium (Cr), and aluminum (Al), known for its superior resistance to oxidation and corrosion under extreme conditions. This wire is engineered for use in electrolysis systems that require reliable, long-term performance. Its unique properties make it an ideal material for high-efficiency hydrogen production, ensuring that electrolysis cells can operate at optimal performance, even in the harshest environments. Whether you’re producing green hydrogen from renewable energy sources or optimizing an industrial electrolyzer, the 0Cr25Al5 FeCrAl Wire offers the performance and durability needed to enhance system efficiency.
| 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 |
| Thermal Conductivity (KJ/m.h) | 52.7 | 46.1 | 63.2 | 60.2 | 46.9 | 46.1 | -- |
| Coefficient of Linear Expansion (αx10⁻⁶/℃) | 15.4 | 16 | 14.7 | 15 | 13.5 | 16 | 16 |
| Melting Point Approx (°C) | 1450 | 1500 | 1500 | 1500 | 1500 | 1510 | 1520 |
| 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 |
| Variation of Area (%) | 65-75 | 60-75 | 65-75 | 65-75 | 65-75 | 65-75 | 65-75 |
| Repeat Bending Frequency (F/R) | >5 | >5 | >5 | >5 | >5 | >5 | >5 |
| Hardness (H.B.) | 200-260 | 200-260 | 200-260 | 200-260 | 200-260 | 200-260 | 200-260 |
| Continuous Service Time (Hours/°C) | -- | ≥80/1300 | ≥80/1300 | ≥80/1300 | ≥80/1250 | ≥80/1350 | ≥80/1350 |
| Micrographic Structure | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite |
| Magnetic Properties | Magnetic | Magnetic | Magnetic | Magnetic | Magnetic | Magnetic | Magnetic |
| 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) |
Superior Oxidation Resistance
The 0Cr25Al5 FeCrAl Wire excels in environments where high temperatures and oxidative stress are common. This allows it to maintain its structural integrity, even after prolonged exposure to extreme conditions, ensuring a longer lifespan for your electrolysis system.
Outstanding Corrosion Resistance
The alloy’s high resistance to corrosion ensures that the wire can function efficiently in electrolytic solutions without degrading over time. This feature significantly reduces the maintenance requirements and operational downtime in hydrogen production systems.
High Temperature Stability
Capable of withstanding temperatures up to 1000°C, the 0Cr25Al5 FeCrAl Wire is ideal for advanced electrolysis processes that operate at high temperatures, providing stability and consistent performance.
Enhanced Mechanical Strength
With tensile strengths ranging from 500 to 850 MPa, the wire offers robust mechanical properties. This makes it suitable for high-stress applications in large-scale hydrogen production systems, ensuring reliability under the physical demands of electrolysis.
Customizable to Your Needs
We offer a variety of wire diameters and tolerance options to suit the specific requirements of your electrolysis system. Whether you need thinner wires for precise applications or thicker wires for industrial-scale operations, DLX can provide the perfect solution.
Cost-Effective for Long-Term Use
The wire’s durability and resistance to wear and tear minimize the need for replacements, helping you save on maintenance and operational costs over time, making it a highly cost-effective material for large-scale operations.
The global shift towards hydrogen as a clean energy carrier is accelerating, and water electrolysis is at the heart of this transformation. Electrolysis, particularly when powered by renewable energy, is emerging as one of the most promising methods for producing green hydrogen, which plays a key role in decarbonizing sectors like transportation, power generation, and industry.
As the hydrogen economy expands, so does the demand for reliable, efficient materials for electrolysis systems. The 0Cr25Al5 FeCrAl Wire is designed to meet these needs, offering exceptional performance in high-efficiency electrolysis applications. This wire is ideal for both small-scale operations and large industrial systems, making it a versatile material for a range of hydrogen production processes.
The 0Cr25Al5 FeCrAl Wire is essential for electrolysis systems, which are widely used in a variety of hydrogen production and energy storage applications:
Hydrogen Fuel Cells: The wire is an important component of hydrogen fuel cell systems, providing the resistance element necessary for efficient hydrogen production, which powers vehicles and stationary energy systems.
Green Hydrogen Production: Used in systems that produce hydrogen via water electrolysis powered by renewable energy sources such as solar, wind, and hydropower, the wire ensures the efficient and sustainable production of hydrogen.
Energy Storage: Electrolysis is a key technology in energy storage systems that convert excess renewable energy into hydrogen, allowing for the storage and later use of energy in the form of hydrogen.
Industrial Applications: Hydrogen produced through electrolysis can replace traditional fossil fuels in industries like steel manufacturing, refining, and chemical production, contributing to cleaner industrial processes.
DLX stands out as a leading provider of high-performance materials for the energy sector. Our 0Cr25Al5 FeCrAl Wire is the optimal choice for advanced electrolysis hydrogen production, and here's why:
Exceptional Quality: Our alloy wire is manufactured to the highest standards, ensuring reliable performance and longevity for your electrolysis systems.
Customized Solutions: DLX offers tailored solutions, including custom wire diameters and other specifications, to meet the unique needs of your electrolysis system.
Industry Expertise: With years of experience in the alloy and energy sectors, DLX provides expert advice to help you choose the best material for your hydrogen production system.
Global Reach: DLX serves customers worldwide, offering fast, reliable shipping and responsive customer service to ensure the success of your projects.
Commitment to Sustainability: As part of our mission to support clean energy solutions, DLX provides materials that help reduce carbon emissions and promote the widespread adoption of green hydrogen.
The 0Cr25Al5 FeCrAl Wire is used in electrolysis systems to produce hydrogen. It provides resistance to oxidation and corrosion, ensuring long-lasting performance in high-temperature electrolytic environments.
Yes, this wire can withstand temperatures up to 1000°C, making it ideal for high-temperature electrolysis processes.
The wire’s superior oxidation and corrosion resistance help maintain the efficiency of the electrolysis process by preventing degradation, reducing energy losses, and improving system longevity.
Yes, DLX offers a range of customization options for wire diameter, tensile strength, and other specifications to meet your specific system requirements.
Thanks to its excellent oxidation and corrosion resistance, the wire offers a long service life, reducing the need for frequent replacements and minimizing operational downtime.
Yes, the wire’s durability and high performance reduce maintenance and replacement costs, making it an economical choice for large-scale hydrogen production projects.
The 0Cr25Al5 FeCrAl Wire is used in industries such as hydrogen fuel cells, green hydrogen production, energy storage, and various industrial applications that rely on hydrogen for decarbonization.
DLX provides expert consultation, helping you choose the best materials for your hydrogen production system and offering ongoing support throughout your project.
Company Details
Business Type:
Manufacturer,Seller
Year Established:
2002
Total Annual:
1000000-120000000+
Employee Number:
100~150
Ecer Certification:
Verified Supplier
Changzhou DLX Alloy Co., Ltd. was established in 2002 and has passed ISO9001 international quality management system certification and SGS certification.We initially focused on the production of resistance alloys. Over the past 20 years, we have continued to conduct research and development and now ... Changzhou DLX Alloy Co., Ltd. was established in 2002 and has passed ISO9001 international quality management system certification and SGS certification.We initially focused on the production of resistance alloys. Over the past 20 years, we have continued to conduct research and development and now ...
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