ASTM B407 N08810 Seamless and Welded Alloy Tubes
1. Brief Introduction
ASTM B407 N08810 (UNS N08810) is a high-performance nickel-iron-chromium alloy designed for high temperature and highly corrosive environments.
Its excellent oxidation, carburization, and sulfidation resistance make it a core material for the petrochemical, nuclear power, and heat treatment industries.
The alloy achieves high-temperature strength through solid solution strengthening and can be used stably for a long time below 650°C.
2. Chemical composition
| Element | Content range | Element | Content range |
| Ni | 30.0-35.0 | Cu | ≤0.75 |
| Cr | 19.0-23.0 | Al | ≤0.15-0.60 |
| Fe | Margin | Ti | ≤0.15-0.60 |
| Mo | ≤1.0 | C | ≤0.10 |
| Mn | ≤1.50 | Si | ≤1.0 |
| S | ≤0.015 | P | ≤0.030 |
3. Mechanical properties (annealed state)
- Tensile strength (Rm): ≥550 MPa
- Yield strength (Rp0.2): ≥240 MPa
- Elongation (A50mm): ≥30%
- Hardness (HBW): ≤200
Note: Mechanical properties can be optimized by solution annealing (1050-1150°C water cooling).
4. Physical properties
| Parameter | Value |
| Density | 8.0 g/cm³ |
| Melting point range | 1350-1400°C |
| Thermal expansion coefficient | 14.2 μm/m·°C (20-100°C) |
| Thermal conductivity | 12.1 W/m·K (100°C) |
| Specific heat capacity | 500 J/kg·K (20°C) |
| Resistivity | 1.05 μΩ·m (20°C) |
5. Key advantages
- High temperature performance: Maintains high strength in the range of 600-800°C, and has excellent creep resistance.
- Corrosion resistance: Resistant to H₂S, Cl⁻, sulfuric acid and nitric acid environments, and resists chloride stress corrosion cracking (Cl-SCC).
- Oxidation resistance: A dense Cr₂O₃ oxide film is formed on the surface, and the oxidation resistance temperature reaches 1100°C.
- Processing performance: Can be cold/hot formed, and welding is compatible with TIG, MIG and arc welding (ERNiCr-3 welding materials are recommended).
6. Application fields
- Petroleum and natural gas: cracking furnace tubes, hydrogenation reactors, sulfur recovery units.
- Chemical equipment: acid regeneration systems, high-temperature reactors, nitric acid condensers.
- Nuclear power: nuclear waste treatment containers, heat exchanger pipes.
- Heat treatment industry: radiation tubes, carburizing furnace internals.
- Marine engineering: seawater desalination evaporators, deep-sea pipelines.
- Environmental protection equipment: flue gas desulfurization (FGD) systems, waste incinerator components.
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