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Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production

Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production

브랜드 이름: DLX
모델 번호: Cr30Ni70
모크: 10kg
지불 조건: L/C,D/A,D/P,T/T,웨스턴 유니온,MoneyGram
공급 능력: 한 달에 500 톤
자세한 정보
원래 장소:
중국, Jiangsu
인증:
Ce,Rohs
공급 능력:
한 달에 500 톤
강조하다:

Cr30Ni70 NiCr alloy strips

,

NiCr alloy electrolytic hydrogen production

,

high-efficiency NiCr alloy strips

제품 설명
Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production
Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 0
Introduction
As global demand for clean hydrogen energy increases, high-efficiency electrolyzers become essential for sustainable hydrogen production. The performance of electrolyzers critically depends on material quality, particularly Cr30Ni70 NiCr Alloy Strips. Manufactured from premium nickel-chromium alloy (Cr30Ni70), these strips are engineered to maximize efficiency and extend the operational lifespan of electrolysis systems. With outstanding electrical conductivity, corrosion resistance, and thermal stability, Cr30Ni70 alloy strips provide reliable, long-term performance for electrolytic hydrogen production. Suitable for both industrial-scale hydrogen plants and renewable energy systems, these strips offer a cost-effective solution for clean hydrogen generation.
Product Specifications
Performance / Material Cr10Ni90 Cr20Ni80 Cr30Ni70 Cr15Ni60 Cr20Ni35 Cr20Ni30
Ni Composition 90 Rest Rest 55.0~61.0 34.0~37.0 30.0~34.0
Cr Composition 10 20.0~23.0 28.0~31.0 15.0~18.0 18.0~21.0 18.0~21.0
Fe Composition -- ≤1.0 ≤1.0 Rest Rest Rest
Maximum Temperature (°C) 1300 1200 1250 1150 1100 1100
Melting Point (°C) 1400 1400 1380 1390 1390 1390
Density (g/cm³) 8.7 8.4 8.1 8.2 7.9 7.9
Resistivity at 20°C (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·°C) -- 0.44 0.461 0.494 0.5 0.5
Thermal Conductivity (KJ/m·h°C) -- 60.3 45.2 45.2 43.8 43.8
Coefficient of Linear Expansion a×10⁻⁶/(20~1000°C) -- 18 17 17 19 19
Micrographic Structure -- Austenite Austenite Austenite Austenite Austenite
Magnetic Properties -- Non-magnetic Non-magnetic Non-magnetic Weak magnetic Weak 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)×(5-40)
Key Features
  • High Electrical Conductivity – Minimizes energy loss and maximizes hydrogen production efficiency in electrolysis cells
  • Excellent Corrosion Resistance – Withstands harsh electrolytic environments for long-term durability and reliability
  • Thermal Stability – Operates reliably at temperatures up to 800°C, ideal for high-performance electrolyzers
  • Customizable Sizes – Available in various thicknesses, widths, and lengths to meet specific application requirements
  • Extended Lifespan – Superior durability reduces maintenance frequency and replacement costs
Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 1 Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 2
Advantages of Cr30Ni70 NiCr Alloy Strips
  • Maximized Electrolyzer Efficiency – High conductivity and low resistance ensure peak performance and enhanced hydrogen production
  • Prolonged Durability – Exceptional corrosion and thermal resistance minimize operational interruptions and downtime
  • Cost-Effective Solution – Reduced maintenance and replacement needs lower overall hydrogen production costs
  • Consistent High Performance – Engineered for reliability in both small-scale and industrial electrolysis systems
  • Global Availability – Robust supply chain ensures worldwide access to meet growing demand for electrolysis materials
Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 3 Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 4
Industry Analysis
As the global hydrogen economy expands, demand for clean hydrogen production technologies continues to grow. Water electrolysis represents one of the most promising methods for producing hydrogen from renewable energy sources, positioning it as a key technology for future energy storage and decarbonization initiatives. Electrolysis system performance heavily depends on material quality, and Cr30Ni70 NiCr Alloy Strips are recognized as a reliable solution for achieving high-efficiency electrolysis.
The hydrogen production market is experiencing rapid growth, driven by the global transition to renewable energy and the urgent need for carbon-neutral energy sources. Cr30Ni70 NiCr alloy strips are in high demand due to their ability to enhance performance and reliability in electrolysis systems, supporting growing hydrogen needs across multiple industries.
Applications in Electrolysis Cells
  • Water Electrolysis for Hydrogen Production – Serve as electrodes in both alkaline and PEM electrolyzers for efficient water splitting
  • Renewable Energy Storage – Enable hydrogen storage from solar or wind-powered electrolysis systems
  • Fuel Cell Technology – Play essential roles in converting stored hydrogen into clean electricity
  • Industrial Hydrogen Production – Widely used in large-scale applications across chemical manufacturing, refining, and steel production
Comparison to Other Brands
  • Strict Quality Control – Comprehensive batch testing ensures highest standards of conductivity, corrosion resistance, and overall quality
  • Customization Options – Tailored sizes and specifications optimize performance for specific electrolysis systems
  • Continuous Innovation – Commitment to advancing electrolysis materials keeps products at industry forefront
  • Reliable Supply Chain – Global network ensures consistent availability to meet worldwide demand
Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 5 Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 6 Superior Cr30Ni70 NiCr Alloy Strips for High-Efficiency Electrolytic Hydrogen Production 7
FAQ
Why are Cr30Ni70 NiCr alloy strips used in electrolysis cells?
Cr30Ni70 alloys are ideal due to their excellent electrical conductivity, high corrosion resistance, and thermal stability, making them perfect for demanding electrolysis environments.
How do Cr30Ni70 NiCr strips enhance hydrogen production efficiency?
These strips optimize current flow, reduce energy loss, and ensure efficient electrolysis operation, leading to higher hydrogen production rates.
How long do Cr30Ni70 NiCr alloy strips last in electrolysis systems?
Designed for long-term durability, Cr30Ni70 NiCr strips typically last several years without significant performance degradation.
Can I order custom sizes of Cr30Ni70 NiCr strips?
Yes, DLX offers customized sizes to meet specific electrolysis system requirements, ensuring optimal fit and efficiency.
What is the maximum temperature Cr30Ni70 NiCr strips can withstand?
Cr30Ni70 NiCr alloy strips can operate at temperatures up to 800°C, suitable for high-temperature electrolysis applications.
Are Cr30Ni70 NiCr strips compatible with both alkaline and PEM electrolyzers?
Yes, these alloy strips are designed for compatibility with both alkaline and PEM electrolyzers, providing versatility across hydrogen production technologies.
How do Cr30Ni70 NiCr strips help reduce operational costs?
Their extended lifespan, superior corrosion resistance, and high-temperature tolerance significantly reduce maintenance costs for electrolysis systems.
How can I determine if Cr30Ni70 NiCr strips are right for my system?
DLX's expert team can assess your electrolysis system requirements and recommend optimal materials for hydrogen production.