ASTM A213 TP316H Stainless Steel Seamless Tube, Heat Exchanger, Superheater
| Attribute | Value |
|---|---|
| Material | TP316H |
| Standard | ASTM A213, ASME SA213 |
| ENDS | PE, BE |
| NDT | ET, HT, UT, PMI |
ASTM A213 TP316H Stainless Steel Seamless Tube for Heat Exchanger, Superheater
TP316H is a high-temperature grade of stainless steel, specifically formulated for use in boiler, superheater, and heat exchanger tubes. The "H" in TP316H denotes a higher carbon content compared to standard TP316, which enhances the material's strength at elevated temperatures. This makes it suitable for high-temperature applications where TP316 or TP316L may not provide sufficient strength. TP316H maintains good corrosion resistance in a variety of environments, especially those containing chlorides and acidic substances. The addition of molybdenum enhances its resistance to pitting and crevice corrosion in chloride environments, which is beneficial in high-temperature, corrosive applications.
- Chromium (Cr): 16 - 18%
- Nickel (Ni): 10 - 14%
- Molybdenum (Mo): 2 - 3%
- Carbon (C): 0.04 - 0.10% (higher than 316 or 316L for improved high-temperature strength)
- Manganese (Mn): 2% max
- Silicon (Si): 1% max
- Phosphorus (P): 0.045% max
- Sulfur (S): 0.03% max
- Iron (Fe): Balance
| Grade | Tensile Str (MPa) min | Yield Str 0.2% Proof (MPa) min | Elong (% in 50mm) min | Hardness Rockwell B (HR B) max | Brinell (HB) max |
|---|---|---|---|---|---|
| 316H | 515 | 205 | 40 | 95 | 217 |
| Grade | Density (kg/m3) | Elastic Modulus (GPa) | Mean Co-eff of Thermal Expansion (µm/m/°C) | Thermal Conductivity (W/m.K) | Specific Heat 0-100°C (J/kg.K) | Elec Resistivity (nΩ.m) |
|---|---|---|---|---|---|---|
| 316H | 8000 | 193 | 15.9 | 16.3 | 500 | 740 |
- High-Temperature and High-Pressure Environments such as boilers, heat exchangers, superheater tubes, and furnace parts where elevated temperature strength is required
- Petrochemical and Chemical Processing where resistance to acidic and chloride-containing environments is needed along with high-temperature capabilities
- Nuclear Power Plants which require high-temperature performance and resistance to corrosive cooling agents
- Oil and Gas Industry where equipment is subject to corrosive substances, high temperatures, and high pressures
- Heat Exchangers which handle corrosive fluids at elevated temperatures
- Furnace Parts and Equipment used in incinerators, burners, and heating elements that operate at elevated temperatures
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