GH4093
GH4093 Chemical composition:
Ni | Cr | Co | AI | Ti | C | Fe | B | Si | Mn | P | S | Cu | |
Min | Bal | 18 | 15 | 1 | 2 | ≤ | |||||||
Max | 21 | 21 | 2 | 3 | 0.13 | 1 | 0.02 | 1 | 1 | 0.015 | 0.012 | 0.2 |
GH4093 Physical properties:
Density | 8.19g/cm³ |
Melting point | 1360℃~1390℃ |
Magnetic properties | not |
Specific heat capacity
θ/℃ | 20 | 100 | 200 | 300 | 400 | 500 |
c/[J/(kg·℃)] | 446 | 467 | 494 | 520 | 547 | 572 |
θ/℃ | 600 | 700 | 800 | 900 | 1000 | |
c/[J/(kg·℃)] | 600 | 626 | 652 | 679 | 706 |
Coefficient of linear expansion
θ/℃ | 20~100 | 20~200 | 20~300 | 20~400 |
α/(10~6℃-1) | 11.91 | 12.97 | 13.52 | 14.10 |
θ/℃ | 20~500 | 20~600 | 20~700 | |
α/(10-6℃-I) | 14.49 | 14.99 | 15.61 |
Resilient performance
θ/℃ | 20 | 100 | 200 | 300 |
Ed/GPa | 226 | 222 | 217 | 210 |
θ/℃ | 400 | 500 | 600 | 700 |
Ed/GPa | 203 | 199 | 190 | 183 |
GH4093 Mechanical properties:
Standard number | Variety | Heat treatment | Room temperature performance | Long-lasting performance | |||||||
σb/MPa | σp0.2/MPa | δ₅/% | ψ/% | HB | θ/℃ | σ/MPa | τ/h | δ₅/% | |||
C3S 593 |
Rolled products | Standard heat treatment | ≥1080 | ≥690 | ≥20 | ≥290 | 815 | 294 | ≥30 | ≥7 | |
Forgings | ≥108C | ≥690 | ≥20 | — | ≥290 | 700 | 588 | ≥30 | Measured | ||
C3S 164 | Cold-rolled sheet | Standard heat treatment | ≥1078 | ≥686 | ≥20 | ≥290 | — | 一 | — | — |
GH4093 Alloy properties:
Alloy forgings are notnotnot-notch-sensitive under both 650°C and 750°C long-lasting test conditions. After the alloy has been aged for a long time at 800°C, the M₂₃C₆ type carbide part on the grain boundary is a continuous film.
GH4093 Uses of alloys:
HuaNickel GH4093 alloy is widely used in oil refining, chemical industry, aerospace, nuclear energy and other fields in high temperature, high pressure and corrosive mixed gas environment.
GH4093 Process performance:
Welding process: The plate can be connected by argon arc welding. If solution welding is adopted, the stress should be relieved and aging treatment should be carried out subsequently.
The heat-treated turbine disc blank can be solution treated first, machined and then aged under the protection of argon. It is also possible to machine the cake blank after it has been completely heat treated. During heat treatment, the blank should be placed in a single layer in the furnace average temperature zone to slowly heat up, and then dispersed and cooled after being released from the furnace.
Relevant standards:
GB/T14992、HB/Z 140 、C3S164 GH93、C3S 593 GH93