2.4632 (NiCr20Co18Ti)
Classification
Country | Section | Category |
---|---|---|
Germany | Alloy DIN 17007−4 | Ni Alloys with Co, Cr and Mo Co Alloys with Cr, Ni and Mo |
Chemical composition
Standard | Fe, % | Si, % | B, % | Mn, % | Co, % | Cr, % | Ti, % | Cu, % | Ni, % | Zr, % | Al, % | P, % | C, % | S, % |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
DIN EN 10302:2008 | < 1.5 | < 1 | < 0.02 | < 1 | 15–21 | 18–21 | 2–3 | < 0.2 | 48.965–64 | < 0.15 | 1–2 | < 0.02 | < 0.13 | < 0.015 |
Information on suppliers
Mechanical properties at 20 °C
Analogues
USA | CIS, Russia, Ukraine |
---|---|
N07263 | NiCr20Co18Ti3 |
Standards
Standard | Description |
---|---|
DIN EN 10302:2008 |
Description of chemical elements
Element | Units of measurement | Description |
---|---|---|
Fe | % | Iron |
Si | % | Silicon |
B | % | Bor |
Mn | % | Manganese |
Co | % | Cobalt |
Cr | % | Chrome |
Ti | % | Titan |
Cu | % | Copper |
Ni | % | Nickel |
Zr | % | Zirconium |
Al | % | Aluminium |
P | % | Phosphorus |
C | % | Carbon |
S | % | Sulfur |
Description of mechanical properties
Parameter | Units of measurement | Description |
---|---|---|
$$\sigma_{0.2}$$ | $$MPa$$ | Tensile stress required to produce a total elongation of 0.2% |
$$\sigma _{U}$$ | $$MPa$$ | Ultimate tensile strength |
$$\epsilon_L$$ | % | Elongation at break (longitudinal) |