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Nickel Alloy 20 foil is a thin and soft metal foil or sheet that is composed of Nickel Alloy 20,which, a material largely used for its ability to withstand corrosion or rust,, particularly in contexts where it is in contact with sulfuric acid. Such use of Nickel Alloy 20 foil includes gasketing, thermal insulation and as a protective layer where the material's properties will be stressed in various applications.
The following chemical composition tables highlight the precise elemental makeup of Nickel Alloy 20, ensuring that it meets industry standards and performance expectations.
Element | Content (%) |
---|---|
Iron, Fe | 35 |
Nickel, Ni | 32-38 |
Chromium, Cr | 19-21 |
Copper, Cu | 3-4 |
Manganese, Mn | ≤2 |
Molybdenum, Mo | 2-3 |
Niobium, Nb | ≤1 |
Silicon, Si | ≤1 |
Carbon, C | ≤0.07 |
Phosphorous, P | ≤0.045 |
Sulfur, S | ≤0.035 |
The chemical composition of Nickel Nickel Alloy 20 Foil plays a pivotal role in its effectiveness and resilience in demanding environments.
The mechanical properties tables for Nickel Alloy 20 Foil detailed insights into these characteristics, helping engineers assess its performance capabilities and determine its suitability for specific industrial requirements.
Properties | Metric | Imperial |
---|---|---|
Tensile strength (annealed) | 620 MPa | 89900 psi |
Yield strength (annealed) | 300 MPa | 43500 psi |
Elongation at break (annealed) | 41% | 41% |
The mechanical properties of Nickel Alloy 20 Foil play a crucial role in its effectiveness and reliability in challenging applications.
Nickel Alloy 20 foil made from nickel-chromium-molybdenum may deliver advantages in thin, corrosion-purpose uses.
Nickel Alloy 20 foil is far superior to other materials because of its greater and improved corrosion resistance, flexibility, and high-temperature capabilities.
Due to their excellent features, Nickel Alloy 20 Foil are preferred for various industrial applications.
Nickel Alloy 20 foil is instrumental in the longevity and optimization of various industrial structures and parts, making the material suitable for high-pressure applications.
Nickel Alloy 20 foil is a thin and soft metal foil or sheet that is composed of Nickel Alloy 20,which, a material largely used for its ability to withstand corrosion or rust,, particularly in contexts where it is in contact with sulfuric acid. Such use of Nickel Alloy 20 foil includes gasketing, thermal insulation and as a protective layer where the material's properties will be stressed in various applications.
The following chemical composition tables highlight the precise elemental makeup of Nickel Alloy 20, ensuring that it meets industry standards and performance expectations.
Element | Content (%) |
---|---|
Iron, Fe | 35 |
Nickel, Ni | 32-38 |
Chromium, Cr | 19-21 |
Copper, Cu | 3-4 |
Manganese, Mn | ≤2 |
Molybdenum, Mo | 2-3 |
Niobium, Nb | ≤1 |
Silicon, Si | ≤1 |
Carbon, C | ≤0.07 |
Phosphorous, P | ≤0.045 |
Sulfur, S | ≤0.035 |
The chemical composition of Nickel Nickel Alloy 20 Foil plays a pivotal role in its effectiveness and resilience in demanding environments.
The mechanical properties tables for Nickel Alloy 20 Foil detailed insights into these characteristics, helping engineers assess its performance capabilities and determine its suitability for specific industrial requirements.
Properties | Metric | Imperial |
---|---|---|
Tensile strength (annealed) | 620 MPa | 89900 psi |
Yield strength (annealed) | 300 MPa | 43500 psi |
Elongation at break (annealed) | 41% | 41% |
The mechanical properties of Nickel Alloy 20 Foil play a crucial role in its effectiveness and reliability in challenging applications.
Nickel Alloy 20 foil made from nickel-chromium-molybdenum may deliver advantages in thin, corrosion-purpose uses.
Nickel Alloy 20 foil is far superior to other materials because of its greater and improved corrosion resistance, flexibility, and high-temperature capabilities.
Due to their excellent features, Nickel Alloy 20 Foil are preferred for various industrial applications.
Nickel Alloy 20 foil is instrumental in the longevity and optimization of various industrial structures and parts, making the material suitable for high-pressure applications.
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