AlloyC
AlloyCChemical composition:
Ni | Cr | Mo | W | Fe | C | Si | Mn | P | S | V | |
Min | Bal | 14.5 | 15 | 3 | 4 | ≤ | |||||
Max | 16.5 | 17 | 4 | 7 | 0.08 | 1 | 1 | 0.04 | 0.003 | 0.35 |
AlloyCPhysical properties:
Density | Resistivity/μΩ·m(25℃) | Melting point/℃ | Coefficient of linear expansion/×10-6·℃-1 | ||||||||
15~200℃ | 15~300℃ | 15~500℃ | 15~700℃ | ||||||||
8.94 | 1.30 | 1350 | 12.0 | 12.3 | 12.6 | 13.2 | |||||
Elastic modulus/MPa | Thermal conductivity/W·(m·K)-1 | Specific heat capacity/×103J · (kg·K)-1 | |||||||||
28℃ | 200℃ | 400℃ | 25℃ | 200℃ | 300℃ | 400℃ | |||||
210000 | 205000 | 193000 | 29.3 | —- | 0.385 |
AlloyCMechanical properties:
Specimen status | Test temperature/℃ | σb/MPa | σp0.2/MPa | δ/% | p/% |
Forging, 1200°C water cooling | room temperature | 900 | 43.4 | 52.9 | |
0.5mm strip, 1200°C water cooling after 5%~10% flattening | room temperature | 1076~1167 | 696~735 | 33~38 | |
Forging, 1200°C water cooling | 550 | 743 | 59.2 | 57.8 | |
Forging, 1200°C water cooling | 650 | 654 | 53.0 | 44.5 | |
Forging, 1200°C water cooling | 900 | 313 | 80.2 | 55.4 | |
Forging, 1200°C water cooling | 1000 | 178 | 53.2 | 52.3 | |
Forging, 1200°C water cooling | 1050 | 54.9 | 57.3 | ||
Forging, 1200°C water cooling | 1100 | 89.2 | 71.9 | 56.3 | |
Forging, 1200°C water cooling | 1150 | 66.6 | 53.5 | ||
Forging, 1200°C water cooling | 1200 | 47.1 | 86.6 | 57.0 |
AlloyCAlloy properties:
In sulphuric acid: AlloyCalloy has good corrosion resistance (≤ 0.025 mm/a) in various concentrations of H₂SO₄ at room temperature, and air filling has no effect on its corrosion resistance.
Media | Corrosion rate/mm·a-1 | ||
at room temperature | 170~310℃ | boiling temperature | |
99%H₂SO₄ :liquid phase
Gas phase |
0.013
—— |
0.725
一 |
2.025
5.80 |
75%H₂SO₄+25%SO₃ :liquid phase
Gas phase |
0.0075 | 0.650 | 1.80
1.25 |
AlloyCUses of alloys:
AlloyCalloys can be made into plates, rods, strips, wires, welded pipes and castings. It can also manufacture various containers, pipes, valves, towers, tanks, etc. that are resistant to the corrosion of these media.
AlloyCProcess performance:
Welding process: AlloyCalloy has good welding performance, it can be welded by various general welding methods, such as TIG, MIG, arc welding, resistance welding, etc., without special difficulties. The wire filler and core used in welding are generally the same as those used in the base metal.
Heat treatment: Appropriate heat treatment is an indispensable link to make AlloyCalloy obtain good corrosion resistance, especially intergranular corrosion resistance. Tests have shown that in order for AlloyCalloy to have good corrosion resistance, plasticity and toughness, quenching after heating at about 1218°C is required, both after welding and after hot forming. However, for castings, it is recommended to quench or air cool after heating at 1177°C.
Relevant standards:
GB/T 15007-2017