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Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems

Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems

Markenbezeichnung: DLX
Modellnummer: Chromnickeldraht Cr20Ni30
MOQ: 10kg
Zahlungsbedingungen: L/C, D/A, D/P, T/T, Western Union
Versorgungsfähigkeit: 500 Tonnen pro Monat
Einzelheiten
Herkunftsort:
China, Jiangsu
Zertifizierung:
Ce,Rohs
Versorgungsmaterial-Fähigkeit:
500 Tonnen pro Monat
Hervorheben:

Cr20Ni30 Nichrome resistance wire

,

Nichrome wire for electrolysis systems

,

high-temperature resistance wire with warranty

Produkt-Beschreibung
Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems
Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 0
The demand for clean energy is driving industries to find more efficient and sustainable methods for hydrogen production. Electrolysis water splitting, which uses electricity to separate water into hydrogen and oxygen, represents one of the most promising approaches for generating green hydrogen. The success of this process heavily depends on the materials used in electrolyzers. DLX's Cr20Ni30 Nichrome Wire provides a high-performance solution that ensures durability, efficiency, and reliability in electrolysis water splitting systems. This specialized wire, composed of 20% chromium and 30% nickel, is engineered to withstand the demanding conditions of electrolysis, helping industries achieve higher yields and reduced operating costs.
Product Overview
DLX's Cr20Ni30 Nichrome Wire is an advanced alloy that delivers exceptional performance in electrolysis water splitting applications. Specifically designed for electrolyzer use, this wire offers excellent oxidation resistance, high temperature tolerance, and efficient electrical conductivity, making it a reliable choice for industrial applications. As industries increasingly adopt greener alternatives, the demand for efficient and reliable electrolyzers becomes more critical. Cr20Ni30 Nichrome Wire plays a vital role in meeting this demand by providing superior corrosion resistance, excellent thermal stability, and enhanced conductivity to optimize the electrolysis process and improve overall system efficiency.
Material Specifications Comparison
Performance / Material Cr10Ni90 Cr20Ni80 Cr30Ni70 Cr15Ni60 Cr20Ni35 Cr20Ni30
Composition Ni 90 Rest Rest 55.0~61.0 34.0~37.0 30.0~34.0
Composition Cr 10 20.0~23.0 28.0~31.0 15.0~18.0 18.0~21.0 18.0~21.0
Composition Fe -- ≤1.0 ≤1.0 Rest Rest Rest
Maximum Temperature ℃ 1300 1200 1250 1150 1100 1100
Melting Point ℃ 1400 1400 1380 1390 1390 1390
Density g/cm³ 8.7 8.4 8.1 8.2 7.9 7.9
Resistivity at 20℃ (μΩ*m) -- 1.09±0.05 1.18±0.05 1.12±0.05 1.00±0.05 1.04±0.05
Elongation at Rupture ≥20 ≥20 ≥20 ≥20 ≥20 ≥20
Specific Heat (J/g.℃) -- 0.44 0.461 0.494 0.5 0.5
Thermal Conductivity (KJ/m.h℃) -- 60.3 45.2 45.2 43.8 43.8
Coefficient of Linear Expansion a×10⁻⁶/(20~1000℃) -- 18 17 17 19 19
Micrographic Structure -- Austenite Austenite Austenite Austenite Austenite
Magnetic Properties -- Non-magnetic Non-magnetic Non-magnetic Weak magnetic Weak 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)*(5-40)
Key Features & Benefits
  • Superior Corrosion Resistance - Cr20Ni30 offers exceptional resistance to oxidation and corrosion, even in highly alkaline or acidic environments. In electrolyzers exposed to harsh conditions including constant high temperatures and electrolytic solutions, this resistance ensures extended wire lifespan without degradation.
  • Efficient Electrical Conductivity - The unique alloy composition ensures high electrical conductivity while minimizing energy loss. This characteristic optimizes electrolysis efficiency, ensuring more energy is effectively utilized for hydrogen production, which is critical for reducing overall hydrogen generation costs.
  • Thermal Stability for High-Temperature Environments - With a high melting point (1400°C) and excellent thermal stability, Cr20Ni30 maintains integrity and efficiency under extreme heat conditions, contributing to long-term performance and reliability in electrolysis systems.
  • Durability in Harsh Electrochemical Conditions - The wire excels in electrochemical environments due to its resilience to thermal cycling, corrosion, and wear, extending electrolyzer lifespan and reducing the need for frequent replacements.
  • Customizable for Various Applications - Available in a wide range of diameters, Cr20Ni30 Nichrome Wire can be tailored to meet specific requirements of different electrolysis systems, from small-scale to industrial-scale hydrogen production.
Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 1 Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 2
Advantages of DLX's Cr20Ni30 Nichrome Wire
  • Consistent and High-Quality Production - DLX ensures every batch meets strict quality control standards, guaranteeing reliable performance and long-term durability in electrolysis systems.
  • Cost-Effective Solution - While initially more expensive than some alternatives, the long-lasting durability and efficiency of Cr20Ni30 wire provide significant cost savings by reducing maintenance and operational expenses over time.
  • Tailored Support - DLX works directly with clients to adapt the wire to specific electrolysis system requirements, offering customized solutions for maximum efficiency.
  • Global Availability - With an established distribution network, DLX ensures global product availability, supporting industries worldwide in meeting the growing demand for green hydrogen.
Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 3 Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 4
Industry Analysis
Hydrogen demand as a clean fuel source is rapidly increasing as industries and governments push for low-carbon economies. Hydrogen serves as a versatile and sustainable energy carrier, with electrolysis production representing one of the most promising methods for achieving a clean hydrogen economy. However, electrolysis remains energy-intensive, and improving its efficiency is a priority for researchers and industry leaders. Materials like Cr20Ni30 Nichrome Wire play a crucial role in enhancing efficiency by minimizing energy loss, increasing system durability, and reducing maintenance costs. As the global hydrogen market expands, industries in energy, chemicals, transportation, and heavy manufacturing will require more efficient and cost-effective electrolysis systems. This growing demand for electrolyzers will drive the need for high-performance materials like Cr20Ni30, ensuring the hydrogen economy can meet scalability and efficiency challenges.
Applications
DLX's Cr20Ni30 Nichrome Wire is widely used in various applications, particularly in water splitting and hydrogen production systems:
  • Electrolytic Hydrogen Production - Integral to electrolyzer functionality, contributing to efficient hydrogen production in green energy systems.
  • Industrial Heating Elements - Used in electric heating elements for furnaces, ovens, and industrial heating applications due to high resistance and thermal stability.
  • Chemical Processing - Ideal for electrochemical cells, metal extraction, and other chemical processes requiring high resistance materials due to durability and corrosion resistance.
  • Thermal Management Systems - Used in applications requiring precise heat and electricity control, ensuring stability and efficiency in high-temperature systems.
Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 5 Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 6 Cr20Ni30 Nichrome Wire for Reliable Electrolysis Water Splitting Systems 7
Frequently Asked Questions (FAQ)
1. Why is Cr20Ni30 Nichrome Wire used for electrolysis water splitting systems?
The wire offers exceptional resistance to corrosion, high electrical conductivity, and thermal stability, making it perfect for use in the harsh conditions of electrolyzers used in water splitting for hydrogen production.
2. How does Cr20Ni30 Nichrome Wire contribute to improved efficiency in electrolysis?
Its high electrical resistance reduces energy loss during the electrolysis process, ensuring that more energy is effectively converted into hydrogen, which is key for improving the efficiency of the system.
3. What is the maximum temperature Cr20Ni30 wire can withstand?
Cr20Ni30 Nichrome Wire can safely operate at temperatures up to 1200°C, making it suitable for high-temperature electrolysis applications.
4. Can Cr20Ni30 Nichrome Wire be used in applications other than hydrogen production?
Yes, Cr20Ni30 is also used in heating elements, industrial ovens, and other high-temperature electrochemical applications, offering versatility across industries.
5. How long does Cr20Ni30 wire last in electrolytic hydrogen production systems?
Due to its excellent corrosion resistance and thermal stability, Cr20Ni30 wire has a long operational life, reducing the need for frequent replacements and maintenance.
6. How do I choose the right diameter for my electrolysis system?
DLX offers a range of diameters for Cr20Ni30 wire, and we can assist you in selecting the optimal size based on your specific electrolysis system requirements.
7. Is Cr20Ni30 Nichrome Wire environmentally friendly?
Yes, Cr20Ni30 wire is part of the growing green hydrogen production market, which plays a critical role in reducing carbon emissions and contributing to a cleaner, more sustainable energy future.
8. Can DLX customize Cr20Ni30 Nichrome Wire for specific needs?
Absolutely. DLX provides customized solutions tailored to your specific electrolysis system, ensuring that the wire fits your unique operational requirements.