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Hastelloy N wire is a specialised nickel-molybdenum alloy renowned for its exceptional resistance to high-temperature environments and corrosion in aggressive chemical conditions. Designed to endure extreme operational challenges, this wire exhibits outstanding mechanical strength, oxidation resistance and stability in fluoride-bearing environments and molten salts. Hastelloy N wire is widely used in the engineering industry due to its outstanding weldability and superior resistance to wear.
The composition of Hastelloy N wires is crucial for understanding its properties and performance in various industrial applications.
Element | Content (%) |
---|---|
Nickel, Ni | 71 |
Molybdenum, Mo | 16 |
Chromium, Cr | 7 |
Iron, Fe | ≤ 5 |
Silicon, Si | ≤ 1 |
Manganese, Mn | ≤ 0.80 |
Tungsten, W | ≤ 0.50 |
Aluminum, Al + Titanium, Ti | ≤ 0.50 |
Copper, Cu | ≤ 0.35 |
Cobalt, Co | ≤ 0.20 |
Carbon, C | ≤ 0.080 |
Thus, this table provides valuable insights into the chemical composition of these wires, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of Hastelloy N wires in demanding environments.
Properties | Metric | Imperial |
---|---|---|
Tensile strength | 800 MPa | 116000 psi |
Elongation at break (in 25.4 mm) | 39.3% | 39.3% |
Modulus of elasticity (@14°C) | 219 GPa | 31800 ksi |
Therefore, having this valuable data about the strength, flexibility and resilience of the Hastelloy N wire guarantees reliability and longevity.
Hastelloy N wires are known for their exceptional properties that suit demanding environments. Key features include:
Such characteristics make hastelloy N wire suitable for operations where resistance is important and operations with high-performance demands.
Hastelloy N wires are suitable for a wide range of demanding applications. Here are some of its key applications:
These applications take advantage of the reliability of hastelloy N wire in extreme conditions, making this product crucial in industries that require stability.
Hastelloy N wire is a specialised nickel-molybdenum alloy renowned for its exceptional resistance to high-temperature environments and corrosion in aggressive chemical conditions. Designed to endure extreme operational challenges, this wire exhibits outstanding mechanical strength, oxidation resistance and stability in fluoride-bearing environments and molten salts. Hastelloy N wire is widely used in the engineering industry due to its outstanding weldability and superior resistance to wear.
The composition of Hastelloy N wires is crucial for understanding its properties and performance in various industrial applications.
Element | Content (%) |
---|---|
Nickel, Ni | 71 |
Molybdenum, Mo | 16 |
Chromium, Cr | 7 |
Iron, Fe | ≤ 5 |
Silicon, Si | ≤ 1 |
Manganese, Mn | ≤ 0.80 |
Tungsten, W | ≤ 0.50 |
Aluminum, Al + Titanium, Ti | ≤ 0.50 |
Copper, Cu | ≤ 0.35 |
Cobalt, Co | ≤ 0.20 |
Carbon, C | ≤ 0.080 |
Thus, this table provides valuable insights into the chemical composition of these wires, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of Hastelloy N wires in demanding environments.
Properties | Metric | Imperial |
---|---|---|
Tensile strength | 800 MPa | 116000 psi |
Elongation at break (in 25.4 mm) | 39.3% | 39.3% |
Modulus of elasticity (@14°C) | 219 GPa | 31800 ksi |
Therefore, having this valuable data about the strength, flexibility and resilience of the Hastelloy N wire guarantees reliability and longevity.
Hastelloy N wires are known for their exceptional properties that suit demanding environments. Key features include:
Such characteristics make hastelloy N wire suitable for operations where resistance is important and operations with high-performance demands.
Hastelloy N wires are suitable for a wide range of demanding applications. Here are some of its key applications:
These applications take advantage of the reliability of hastelloy N wire in extreme conditions, making this product crucial in industries that require stability.
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