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Inconel 825 is a special alloy that is widely used for its ability to resist corrosion in a range of settings, including exposure to acids, alkalis, and seawater. This nickel-iron-chromium alloy also contains molybdenum and copper to improve its performance in oxidizing and reducing conditions.
The chemical composition table provides vital insight into the chemical makeup of Inconel 825 Channel.
Grade | Ni | C | Fe | Si | Mn | S | Al | Ti | Cu | Cr | Mb |
Inconel 825 | 38.0 – 46.0 | 0.05 max | 22.0 min | 0.5 max | 1.0 max | 0.03 max | 0.2 max | 0.6 – 1.2 | 1.5 – 3.0 | 19.5 – 23.5 | 2.5 – 3.5 |
Thus, this table helps to understand the materials used in this channel and enables informed decisions regarding their suitability for various industrial operations.
The table below serves as a valuable reference point for understanding the performance characteristics of the Inconel 825 Channel.
Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
8.14 g/cm3 | 1400 °C (2550 °F) | Psi - 32,000 , MPa - 220 | Psi - 80,000 , MPa -550 | 30 % |
Thus, one can assess the channel's structural integrity and suitability for demanding industrial applications.
Inconel 825 channels exhibit several notable features that make them highly suitable for demanding industrial applications:
Thus, Inconel 825 channels are appreciated for their durability and performance in extreme conditions and therefore are crucial in several sensitive industrial processes.
Inconel 825 channels are used in various industries due to their versatility. Some of the key applications include:Some of the key applications include:
Therefore, Inconel 825 channels are very useful in industries that use strong materials.
Inconel 825 is a special alloy that is widely used for its ability to resist corrosion in a range of settings, including exposure to acids, alkalis, and seawater. This nickel-iron-chromium alloy also contains molybdenum and copper to improve its performance in oxidizing and reducing conditions.
The chemical composition table provides vital insight into the chemical makeup of Inconel 825 Channel.
Grade | Ni | C | Fe | Si | Mn | S | Al | Ti | Cu | Cr | Mb |
Inconel 825 | 38.0 – 46.0 | 0.05 max | 22.0 min | 0.5 max | 1.0 max | 0.03 max | 0.2 max | 0.6 – 1.2 | 1.5 – 3.0 | 19.5 – 23.5 | 2.5 – 3.5 |
Thus, this table helps to understand the materials used in this channel and enables informed decisions regarding their suitability for various industrial operations.
The table below serves as a valuable reference point for understanding the performance characteristics of the Inconel 825 Channel.
Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
8.14 g/cm3 | 1400 °C (2550 °F) | Psi - 32,000 , MPa - 220 | Psi - 80,000 , MPa -550 | 30 % |
Thus, one can assess the channel's structural integrity and suitability for demanding industrial applications.
Inconel 825 channels exhibit several notable features that make them highly suitable for demanding industrial applications:
Thus, Inconel 825 channels are appreciated for their durability and performance in extreme conditions and therefore are crucial in several sensitive industrial processes.
Inconel 825 channels are used in various industries due to their versatility. Some of the key applications include:Some of the key applications include:
Therefore, Inconel 825 channels are very useful in industries that use strong materials.
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