Carbon Steel ASME SA209 T1a Boiler Tube For Power Plants Boilers
Product Specifications
Attribute | Value |
Material Grade | T1a |
Standard | ASTM A209, ASME SA209 |
External Diameter | >38.1 |
Ends | PE, BE |
Tube Material | Nickel Alloy, Alloy, Stainless Steel, Duplex Stainless Steel, Carbon |
Application | Boiler |
Product Description
Carbon Steel ASME SA209 T1a Boiler Tube is engineered for superior performance in high-temperature environments, making it the ideal choice for power plant boilers and superheaters.
The chromium-enhanced composition provides exceptional oxidation resistance, ensuring long-term durability in demanding heat applications. These tubes maintain structural integrity under high-pressure conditions, making them perfect for steam generation systems and other pressurized industrial processes.
With excellent heat transfer properties, SA209 T1a tubes optimize efficiency in boilers, heat exchangers, and economizers, delivering reliable performance in critical industrial applications.
Chemical Composition
- Carbon: 0.30% - 0.40%
- Manganese: 0.60% - 0.90%
- Phosphorus: ≤ 0.035%
- Sulfur: ≤ 0.035%
- Silicon: 0.20% - 0.40%
- Copper: ≤ 0.35%
- Chromium: 0.80% - 1.25%
- Nickel: ≤ 0.50%
Mechanical Properties
- Tensile Strength: 485 - 620 MPa (70 - 90 ksi)
- Yield Strength: 275 MPa (40 ksi) min.
- Elongation: 20% min. (in 8 inches)
- Hardness: 170 HB (Brinell Hardness) max.
- Impact Toughness: Designed for good toughness at elevated temperatures
Key Applications
Power Generation Plants: Essential for superheaters, reheaters, and boiler drums where high-temperature steam is generated, offering reliable performance under continuous thermal stress.
Heat Exchangers: Ideal for high-efficiency heat transfer systems due to superior thermal conductivity and structural strength.
Marine Boilers: Provides dependable performance in shipboard boiler systems, withstanding the unique challenges of marine environments.
Industrial Furnaces: Used in high-temperature furnaces and kilns where efficient heat transfer and mechanical durability are critical.
