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Outstanding Corrosion in Nickel205/N02205 Pure Nickel Wire for Acidic and Alkaline Conditions
Ni205 pure nickel wires are high-performance materials renowned for their exceptional purity, electrical conductivity, and corrosion resistance. Comprising a minimum of 99.5% nickel, Ni205 wires are specifically designed for demanding applications in industries such as electronics, aerospace, chemical processing, and power generation.
Key features of Ni205 wires include excellent resistance to oxidation, especially in high-temperature environments, and superior resistance to chemicals, acids, and alkalis. These properties make them highly reliable in harsh operational conditions. Ni205 wires also exhibit excellent ductility and mechanical strength, enabling easy fabrication into complex shapes.
Applications of Ni205 wires span a wide range of uses, including electrical resistance components, battery connectors, lead wires, and heating elements. They are also employed in electroplating, welding, and instrumentation due to their outstanding conductivity and stability. With consistent performance and versatility, Ni205 pure nickel wires are a preferred choice for critical applications requiring high reliability and longevity.
Nominal Chemical Composition (%)
Alloy | Ni | Mn | Fe | Si | Cu | C | Ti |
Ni205 | ≥ 99.6 | ≤ 0.20 | ≤ 0.20 | ≤ 0.10 | ≤ 0.10 | ≤ 0.05 | ≤ 0.05 |
Size Range
Type | Dia. (mm) | Width (mm) | Thickness (mm) |
Wire | 0.04 - 12.0 | - | - |
Ribbon | - | 2.0 | ≥ 0.08 |
Physical Properties (at room temperature)
Alloy | Density (g/cm3) | Thermal Conductivity (W/m K) | Thermal Linear Expansion Coeff. (20-95 ℃) (10-6/K) | Electrical Resistivity at 20 ℃ (μΩ-cm) |
Ni205 | 8.89 | 75.00 | 13.3 | 8.9 |
Mechanical Properties (for cold drawn annealed wire)
Alloy | Tensile strength (N/mm2) | Elongation (% at L0=100mm) | ||
Min | Max | Min | Max | |
Ni205 | 400 | 530 | 20 | 30 |
Some key features of Ni205 (also known as UNS N02205) include:
These features make Ni205 pure nickel wires a premium material for critical industries like aerospace, electronics, and chemical processing.
Application:
Manufacturing of lead wires for lamps, cathode ray tubes, and electronic vacuum devices.
Ideal for electrical resistance components due to its excellent conductivity.
Used in battery connectors and terminals for reliable performance in energy storage systems.
Serves as filler material for welding nickel-based alloys and joining dissimilar metals.
Ensures high-strength, corrosion-resistant joints.
Base material for electroplating to achieve superior surface finishes and enhanced durability.
Components for equipment exposed to corrosive chemicals, such as electrodes and conductive connectors.
Used in industrial and domestic heating systems due to its excellent thermal stability.
High-performance parts requiring resistance to oxidation and corrosion at elevated temperatures.
Precision components in scientific instruments and measurement devices.
Resistant components for marine environments, such as connectors and fittings exposed to seawater.
Magnetic shielding and other uses leveraging its magnetic properties.
The versatility, reliability, and corrosion resistance of Nickel 205 make it a critical material in diverse industrial and technological fields.