When it comes to extreme conditions, GX25CrNiSi20-14 (1.4832, comparable in analysis to 1.4828) is the right choice. This high-alloy steel offers excellent heat resistance up to 1,050°C, combined with good corrosion resistance and heat strength. It is ideal for use in environments with high temperatures and aggressive media.
GX25CrNiSi20-14 (1.4832 / 1.4828) SAE/AISI 309
Heat-resistant steel for extreme challenges
Material designations and standards
Material number:
1.4832 / 1.4828
Standard designation (EN):
GX25CrNiSi20-14
Standards:
EN 10295 (Heat-resistant cast steels)
AISI/SAE:
309
Similar materials:
1.4848 (GX40CrNiSi25-20, higher temperature resistance)
Specifications and details
Die Vorteile von GX25CrNiSi20-14 (1.4832 / 1.4828)
Areas of application
GX25CrNiSi20-14 properties at a glance
Special feature
GX25CrNiSi20-14 is resistant to oxidation and scaling at high temperatures.
Versatility
The material is resistant to many corrosive media, especially at high temperatures.
Resistance
The steel retains its strength even at high temperatures and can therefore bear loads even under the influence of heat.
Chemical composition and mechanical properties.
C (Kohlenstoff):
≤ 0,20 %
Si (Silizium):
1,50 - 2,50 %
Mn (Mangan):
≤ 2,00 %
P (Phosphor):
≤ 0,04 %
S (Schwefel):
≤ 0,03 %
Cr (Chrom):
19,0 - 22,0 %
Ni (Nickel):
12,0 - 15,0 %
Tensile strength (Rm):
≥ 500 MPa
Yield strength (Rp0.2):
≥ 250 MPa
Elongation at break (A5):
≥ 20 %
Hardness (HB):
≤ 270 HB
Solution annealing:
1050 - 1150 °C, followed by slow cooling to reduce stress
Stress relief annealing:
200 - 300 °C to minimise internal stresses
Warum GX25CrNiSi20-14?
Cost-effectiveness
Thanks to their high load-bearing capacity, components made from GX25CrNiSi20-14 have a long service life and reduced maintenance costs.
Processing
Despite its high alloy content, the steel can be readily welded or cast into moulds.
Areas of use
The material is used, for example, in furnace construction, the chemical industry and power plant engineering.