8367
8367 Chemical composition:
Ni | Mo | Cr | N | C | Si | Mn | Cu | S | P | |
Min | 23.5 | 6 | 20 | 0.18 | – | ≤ | ||||
Max | 25.5 | 7 | 22 | 0.25 | 0.03 | 0.1 | 2 | 0.75 | 0.03 | 0.04 |
8367 Physical properties:
Density/g·cm-3 | Coefficient of thermal expansion/℃×10-6 | Specific heat capacity/J·(kg·K)-1 | Magnetic permeability/Oe(Oerst) | Young’s modulus of elasticity/GPa | |
8.06 | 100℃ | 500℃ | 461 | 1.003 | 195 |
15.3 | 17.2 |
8367 Mechanical properties:
σb/MPa | σp0.2/MPa | δ/% | Hardness ( H R B ) |
≥690 | ≥310 | ≥30 | <240 |
8367 Alloy properties:
The solid solution state of super austenitic stainless steel of this composition has a single austenite, and there is no intermetallic phase, but if it is ≥ to 540 °C, there will be carbon, nitride and σ phase precipitation, for which the amount of chromium and molybdenum is at the upper limit of chemical composition will be more sensitive.
8367 Uses of alloys:
thin-walled tubes for seawater condensers; At the same time, it can also be used for important equipment and pipelines resistant to chloride local corrosion in paper and thermal power plants, FGD and offshore oil production platforms.
8367 Process performance:
Welding process: HuaNickel 8367 has good welding performance, and can be welded by the general process method of austenitic stainless steel. Since this steel is mostly used as a tube for heat exchangers, automatic welding or manual welding is recommended for the welding of pipes and tube sheets.
Heat treatment: HuaNickel 8367 composition upper and lower limit test, short-term heating at 1065 °C can make the σ in 8367 steel containing 22% Cr, 7% Mo soluble in the matrix. The solution treatment temperature of this steel is 1065~1105 °C.
Relevant standards:ASTM B 564-2004