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Inconel 690 Angle is a structural component made from Inconel 690, a nickel-chromium alloy known for its excellent resistance to oxidation and corrosion, particularly in high-temperature environments. This alloy is designed to enhance durability in aggressive conditions, making it suitable for various industrial applications, especially in the nuclear and power generation sectors.
The composition of the Inconel 690 Angle is crucial for understanding its properties and performance in various industrial applications.
Ni | Cr | Fe | Cu | C | Si | Mn | S |
Rest | 27.0~31.0 | 7.0~11.0 | ≤0.05 | ≤0.05 | ≤0.5 | ≤0.5 | ≤0.015 |
Thus, this table provides valuable insight into the chemical composition of these angles, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of the Inconel 690 Angle in demanding environments.
Temper | Annealed | |
---|---|---|
Tensile Rm | 86 | ksi (min) |
Tensile Rm | 590 | MPa (min) |
R.p. 0.2% Yield | 35 | ksi (min) |
R.p. 0.2% Yield | 240 | MPa (min) |
Elongation (2” or 4D gl) | ≥30 | % (min) |
Thus, this valuable data on the Inconel 690 Angle's strength, flexibility, and resilience is crucial for ensuring reliability and longevity.
These flexible Angles offer numerous benefits for various industrial applications.
Inconel 690 Angle offers several advantages that make it suitable for industrial and commercial applications.
Due to its excellent features, the Inconel 690 Angle is preferred in various industrial applications. Some of the main applications include.
Inconel 690 Angles are applied across various industries due to their valuable features, which make them versatile.
Inconel 690 Angle is a structural component made from Inconel 690, a nickel-chromium alloy known for its excellent resistance to oxidation and corrosion, particularly in high-temperature environments. This alloy is designed to enhance durability in aggressive conditions, making it suitable for various industrial applications, especially in the nuclear and power generation sectors.
The composition of the Inconel 690 Angle is crucial for understanding its properties and performance in various industrial applications.
Ni | Cr | Fe | Cu | C | Si | Mn | S |
Rest | 27.0~31.0 | 7.0~11.0 | ≤0.05 | ≤0.05 | ≤0.5 | ≤0.5 | ≤0.015 |
Thus, this table provides valuable insight into the chemical composition of these angles, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of the Inconel 690 Angle in demanding environments.
Temper | Annealed | |
---|---|---|
Tensile Rm | 86 | ksi (min) |
Tensile Rm | 590 | MPa (min) |
R.p. 0.2% Yield | 35 | ksi (min) |
R.p. 0.2% Yield | 240 | MPa (min) |
Elongation (2” or 4D gl) | ≥30 | % (min) |
Thus, this valuable data on the Inconel 690 Angle's strength, flexibility, and resilience is crucial for ensuring reliability and longevity.
These flexible Angles offer numerous benefits for various industrial applications.
Inconel 690 Angle offers several advantages that make it suitable for industrial and commercial applications.
Due to its excellent features, the Inconel 690 Angle is preferred in various industrial applications. Some of the main applications include.
Inconel 690 Angles are applied across various industries due to their valuable features, which make them versatile.
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