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1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis

1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis

Наименование марки: DLX
Номер модели: Проволока из сплава FeCrAl 1Cr13Al4
МОК: 10 кг
Условия оплаты: Л/К, Д/А, Д/П, Т/Т, западное соединение
Способность к поставкам: 500 тонн в месяц
Подробная информация
Место происхождения:
Китай, Цзянсу
Сертификация:
Ce,Rohs
Поставка способности:
500 тонн в месяц
Выделить:

1Cr13Al4 FeCrAl resistance wire

,

industrial hydrogen electrolysis wire

,

FeCrAl resistance wire with warranty

Характер продукции
1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis
1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 0
In the growing field of hydrogen production, the demand for efficient and durable electrolysis systems has increased significantly. The 1Cr13Al4 FeCrAl Resistance Wire is a cutting-edge material designed to withstand the harsh conditions of industrial hydrogen electrolysis. This high-performance wire, made from a unique combination of iron, chromium, and aluminum, offers exceptional corrosion resistance, high thermal stability, and mechanical strength, making it a key component in the successful operation of electrolyzers.
The 1Cr13Al4 FeCrAl Resistance Wire is specifically engineered for use in industrial-scale electrolysis applications, where it is subjected to extreme conditions including high temperatures, high electrical currents, and aggressive electrolytes. Whether used in alkaline or high-temperature electrolysis systems, this wire ensures maximum performance, contributing to the efficient and cost-effective production of green hydrogen.
Parameter Comparison Table
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
Available Shapes and Sizes
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)
Key Features of 1Cr13Al4 FeCrAl Resistance Wire
  • Superior Corrosion Resistance: Designed to resist oxidation and corrosion in highly alkaline or acidic electrolytes, significantly extending the lifespan of electrolysis systems and reducing maintenance costs.
  • High-Temperature Stability: With a melting point of 1,450°C, the FeCrAl Resistance Wire can withstand extreme temperatures encountered in industrial electrolysis applications, ensuring consistent and reliable performance.
  • Excellent Mechanical Strength: The wire's tensile and yield strength provide the necessary structural integrity to resist mechanical stresses, vibrations, and pressure commonly experienced in industrial electrolyzers.
  • Outstanding Thermal Conductivity: The wire's thermal conductivity helps to evenly distribute heat during electrolysis, reducing thermal stress and improving the overall efficiency of hydrogen production.
  • Customizable Sizes: Available in various diameters and lengths, ensuring compatibility with a wide range of industrial electrolysis systems and applications.
1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 1 1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 2
Applications of 1Cr13Al4 FeCrAl Resistance Wire
  • Industrial Hydrogen Electrolysis: Primary use in industrial hydrogen electrolysis systems as key material for electrolysis electrodes, efficiently splitting water into hydrogen and oxygen.
  • Alkaline Electrolysis Systems: Highly resistant to corrosion in alkaline electrolytes, making it perfect for alkaline electrolysis systems that produce hydrogen through water splitting.
  • High-Temperature Electrolysis: Suitable for high-temperature electrolysis applications, performing reliably in environments with elevated temperatures to optimize hydrogen production.
  • Hydrogen Production for Fuel Cells: Used in hydrogen production for fuel cells, where its high resistance to corrosion and durability are critical for efficient energy conversion.
  • Renewable Energy Applications: Plays a significant role in renewable energy systems by improving the efficiency and sustainability of hydrogen generation.
1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 3 1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 4
Industry Trends and Applications
The hydrogen economy is rapidly gaining momentum as industries look for cleaner energy solutions. Electrolysis has become a central technology for producing green hydrogen, which is seen as a key fuel for decarbonizing sectors such as transportation, power generation, and industry. The 1Cr13Al4 FeCrAl Resistance Wire is a critical component in the efficiency and longevity of electrolysis systems, helping to meet the increasing demand for green hydrogen.
The growing demand for hydrogen is directly tied to the global shift towards renewable energy. As electrolyzers are scaled up to meet this demand, the need for durable, high-performance materials like the 1Cr13Al4 FeCrAl Resistance Wire will continue to rise, ensuring that industrial electrolysis systems can operate at maximum efficiency and with minimal maintenance.
The increasing adoption of hydrogen in sectors such as transportation (fuel cell vehicles), energy storage, and industrial heating further highlights the importance of reliable and high-performance materials in electrolysis systems. As hydrogen production scales, the FeCrAl Resistance Wire will be integral to supporting these technologies and driving the transition to a low-carbon economy.
Why Choose 1Cr13Al4 FeCrAl Resistance Wire?
  1. Long-Term Durability: Superior corrosion resistance and high thermal stability ensure reliable performance over long periods, reducing the need for frequent replacements and lowering maintenance costs.
  2. Improved Efficiency: Excellent mechanical properties and thermal conductivity contribute to overall efficiency of electrolysis systems, improving hydrogen yield and reducing energy consumption.
  3. Adaptable to Various Electrolysis Systems: Available in a variety of sizes and specifications, can be tailored to meet the unique needs of industrial electrolysis setups, ensuring compatibility with diverse systems.
  4. Cost-Effective Solution: Despite higher initial investment, minimizes downtime and replacement needs, ensuring a high return on investment in the long term.
  5. Supporting Clean Energy Goals: Enables efficient and reliable hydrogen production, contributing to the global transition towards renewable, low-carbon energy sources and aiding in climate change mitigation.
1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 5 1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 6 1Cr13Al4 FeCrAl Resistance Wire for Industrial Hydrogen Electrolysis 7
Frequently Asked Questions
  • What is 1Cr13Al4 FeCrAl Resistance Wire made of?
    Composed of iron (Fe), chromium (Cr), and aluminum (Al), making it highly resistant to corrosion and capable of withstanding high temperatures.
  • How does the wire perform in industrial electrolysis systems?
    Provides excellent corrosion resistance and high-temperature stability, ensuring long-term performance and efficiency in industrial electrolysis systems.
  • Can the wire be used in high-temperature electrolysis?
    Yes, with a melting point of 1,450°C, ideal for high-temperature electrolysis applications, maintaining reliable performance under extreme conditions.
  • How does the 1Cr13Al4 Alloy Wire enhance hydrogen production?
    Excellent resistance to oxidation and high mechanical strength improve hydrogen production efficiency by ensuring consistent performance and reducing downtime.
  • Is the 1Cr13Al4 FeCrAl Resistance Wire customizable?
    Yes, available in various sizes and can be tailored to meet specific requirements of different electrolysis systems.
  • What industries use 1Cr13Al4 FeCrAl Resistance Wire?
    Primarily used in industrial hydrogen production, fuel cell technologies, energy storage, and alkaline electrolysis systems.
  • How does the 1Cr13Al4 FeCrAl Resistance Wire support sustainable energy?
    Contributes to efficient and reliable hydrogen production, helping to scale up green hydrogen production and supporting the transition to clean energy.
  • What is the lifespan of 1Cr13Al4 FeCrAl Resistance Wire in electrolysis systems?
    Corrosion resistance and thermal stability provide a long lifespan, reducing replacement frequency and lowering overall maintenance costs.