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0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production

0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production

Ονομασία μάρκας: DLX
Αριθμός μοντέλου: Σύρμα κραμάτων FeCrAl 0Cr27Al7Mo2
Μούβ: 10 κιλά
Όροι πληρωμής: L/C,D/A,D/P,T/T,Western Union
Ικανότητα εφοδιασμού: 500 τόνοι το μήνα
Λεπτομέρειες
Τόπος καταγωγής:
Κίνα, Jiangsu
Πιστοποίηση:
Ce,Rohs
Δυνατότητα προσφοράς:
500 τόνοι το μήνα
Επισημαίνω:

0Cr27Al7Mo2 alloy resistance wire

,

electrolysis hydrogen production wire

,

durable resistance wire with warranty

Περιγραφή προϊόντων
0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 0
Hydrogen production through water electrolysis is gaining traction as a key method for generating clean, sustainable energy. As the world transitions to renewable energy sources, the need for efficient, long-lasting electrolysis systems has become critical. A crucial component of these systems is the resistance wire, and the 0Cr27Al7Mo2 Alloy Wire stands out as a top choice for high-efficiency hydrogen production. Designed to perform under demanding conditions, this alloy wire delivers exceptional durability, high-temperature stability, and resistance to both oxidation and corrosion, making it ideal for long-term use in electrolysis systems.
Product Overview
The 0Cr27Al7Mo2 Alloy Wire is a high-performance resistance wire made from a carefully balanced mixture of iron (Fe), chromium (Cr), aluminum (Al), and molybdenum (Mo). This unique composition provides excellent protection against oxidative and corrosive environments, allowing the wire to maintain optimal performance even under high-temperature conditions. The wire is engineered to enhance the efficiency and longevity of electrolysis systems, making it a perfect fit for green hydrogen production, industrial energy storage, and various other applications where high reliability and minimal downtime are essential.
As the demand for clean hydrogen increases, this wire plays an essential role in ensuring electrolysis systems remain efficient and cost-effective over time, thus supporting the global transition to renewable energy.
Technical Specifications Comparison
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
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 & Advantages
Superior Oxidation Resistance
The 0Cr27Al7Mo2 Alloy Wire excels in resisting oxidation, even under extreme temperatures of up to 1100°C. This feature is critical for maintaining the integrity of the wire in electrolysis systems, where high temperatures and oxidative conditions can lead to material degradation in less durable wires.
Exceptional Corrosion Resistance
In electrolysis, the wire is exposed to aggressive electrolytic fluids, which can cause corrosion over time. The 0Cr27Al7Mo2 Alloy Wire is engineered to withstand corrosion, ensuring the longevity of the system and reducing the frequency of repairs or replacements.
High-Temperature Durability
With a maximum operating temperature of 1100°C, the 0Cr27Al7Mo2 Alloy Wire is designed to perform in high-temperature electrolysis systems, ensuring consistent performance over extended periods of use. The wire's high melting point of 1600°C further supports its ability to operate in harsh thermal environments.
Mechanical Strength and Stability
Offering a tensile strength between 500-850 MPa, the 0Cr27Al7Mo2 Alloy Wire is highly resistant to mechanical stress, making it ideal for continuous electrolysis processes. Its high mechanical strength ensures that the wire can handle the physical demands of long-term operation.
Customizable for Diverse Applications
DLX offers a wide range of customization options, including wire diameter, tensile strength, and other specifications, to ensure the 0Cr27Al7Mo2 Alloy Wire is tailored to meet your specific needs, whether for small-scale or industrial electrolysis systems.
Cost-Effective Long-Term Performance
The 0Cr27Al7Mo2 Alloy Wire is a cost-effective solution for hydrogen production due to its long lifespan and high resistance to wear and corrosion. This durability leads to fewer replacements, lower maintenance costs, and improved overall system efficiency, making it a great investment for hydrogen production operations.
0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 1 0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 2
Industry Trends & Market Insights
The demand for green hydrogen is growing rapidly as industries seek to reduce their carbon footprints and transition to cleaner energy solutions. Hydrogen, when produced using renewable energy through electrolysis, is an important tool in decarbonizing heavy industries, transportation, and energy storage. As the hydrogen economy expands, the need for reliable materials in electrolysis systems will continue to rise.
The 0Cr27Al7Mo2 Alloy Wire is perfectly positioned to meet this demand. Its resistance to high temperatures and aggressive electrolytic conditions makes it an ideal material for hydrogen production. As hydrogen production systems continue to evolve and scale up, the demand for durable and efficient materials like this alloy wire will grow.
Applications
The 0Cr27Al7Mo2 Alloy Wire is used in a variety of applications within the hydrogen production and energy sectors:
Hydrogen Fuel Cells
The wire is used in hydrogen fuel cell systems, which are crucial for powering fuel-cell vehicles, providing backup power, and generating stationary electricity. The wire's durability ensures long-term operation and high performance.
Green Hydrogen Production
Electrolysis systems that produce hydrogen from water are increasingly powered by renewable energy sources such as solar and wind. The 0Cr27Al7Mo2 Alloy Wire ensures that these systems can produce green hydrogen reliably and efficiently.
Energy Storage
Hydrogen produced through electrolysis can be stored and used later as a clean energy source. The wire contributes to the stability and efficiency of the electrolysis process, enabling efficient energy storage and release.
Industrial Hydrogen Applications
Hydrogen is also used in industrial processes such as steel production, ammonia synthesis, and petroleum refining. The 0Cr27Al7Mo2 Alloy Wire ensures that hydrogen production systems in these industries remain efficient and reliable.
0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 3 0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 4
Why Choose DLX?
High-Quality Standards
DLX ensures that each batch of 0Cr27Al7Mo2 Alloy Wire is produced to the highest quality standards, ensuring maximum reliability and performance for your electrolysis system.
Tailored Solutions
We understand that every electrolysis system has unique requirements. That's why we offer customization options, allowing you to choose the wire diameter, tensile strength, and other specifications that best suit your system's needs.
Expert Technical Support
With years of experience in the hydrogen production sector, DLX offers expert guidance to help you choose the ideal materials for your electrolysis applications.
Global Reach and Fast Delivery
DLX serves clients worldwide, offering fast and reliable delivery to ensure your project stays on schedule.
Commitment to Sustainability
DLX is committed to supporting the global transition to sustainable energy by providing high-performance materials for green hydrogen production and energy storage systems.
0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 5 0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 6 0Cr27Al7Mo2 Alloy Wire for Durable Electrolysis Hydrogen Production 7
Frequently Asked Questions
What is 0Cr27Al7Mo2 Alloy Wire used for?
The 0Cr27Al7Mo2 Alloy Wire is primarily used in electrolysis systems for hydrogen production. It is designed to resist high temperatures, oxidation, and corrosion, making it ideal for use in aggressive electrolytic environments.
Can this wire handle high temperatures?
Yes, the 0Cr27Al7Mo2 Alloy Wire is designed to operate at temperatures up to 1100°C, making it suitable for high-temperature electrolysis systems.
How does 0Cr27Al7Mo2 Alloy Wire improve electrolysis efficiency?
The wire's resistance to oxidation and corrosion ensures consistent performance, reducing energy losses and extending the lifespan of the electrolysis system.
Is the 0Cr27Al7Mo2 Alloy Wire customizable?
Yes, DLX offers custom sizes, wire diameters, and tensile strengths to meet the specific needs of your electrolysis system.
How long does the 0Cr27Al7Mo2 Alloy Wire last?
Thanks to its excellent resistance to oxidation and corrosion, the 0Cr27Al7Mo2 Alloy Wire has a long service life, reducing the need for frequent replacements.
Is 0Cr27Al7Mo2 Alloy Wire cost-effective?
Yes, the wire's long lifespan and resistance to wear and corrosion make it a cost-effective solution for long-term hydrogen production systems.
What industries use 0Cr27Al7Mo2 Alloy Wire?
Industries involved in hydrogen fuel cells, green hydrogen production, energy storage, and industrial hydrogen applications benefit from the wire's superior performance.
How does DLX support customers?
DLX provides expert technical support and customized solutions to ensure that our materials meet the specific needs of your electrolysis system.
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