α106
K1
ϰ
WmK
ρ
kgm3
c103
JkgK
R106
Ωm
σU
MPa
σ0.2
MPa
ϵL

1.4835 (X9CrNiSiNCe21-11-2)

Classification

Country Section Category
Germany Stainless and Heat Resisting Steels Heat Resistant Steels with Ni > = 2.5%

Chemical composition

Standard Fe, % Si, % Mn, % Cr, % Ni, % Ce, % P, % C, % S, % N, %
62.04–68.4 1.4–2.5 < 1 20–22 10–12 0.03–0.08 < 0.045 0.05–0.12 < 0.015 0.12–0.2

Information on suppliers

Physical characteristics

Temperature, °C \alpha\cdot 10^{6}α106, K^{-1}K1 \varkappaϰ, \frac{W}{m\cdot K}WmK \rhoρ, \frac{kg}{m^3}kgm3 c\cdot 10^{-3}c103, \frac{J}{kg\cdot K}JkgK R\cdot 10^{-6}R106, \Omega\cdot mΩm
20 15 7800 0.5 0.85
400 18
800 19
1000 19.5

Mechanical properties at 20 °C

Rolling Standard Size, mm Tension Classifiers \sigma _{U}σU, MPaMPa \sigma_{0.2}σ0.2, MPaMPa \epsilon_LϵL, % Treatment
solution annealing 650–850 310 37–40

Brinell hardness number

Rolling Standard Classifiers Value, HBW
solution annealing 210

Description of chemical elements

Element Units of measurement Description
Fe % Iron
Si % Silicon
Mn % Manganese
Cr % Chrome
Ni % Nickel
Ce % Cerium
P % Phosphorus
C % Carbon
S % Sulfur
N % Nitrogen

Description of physical characteristics

Parameter Units of measurement Description
\alpha\cdot 10^{6}α106 K^{-1}K1 Coefficient of thermal (linear) expansion (range 20°C–T)
\varkappaϰ \frac{W}{m\cdot K}WmK Coefficient of thermal conductivity (the heat capacity of the material)
\rhoρ \frac{kg}{m^3}kgm3 The density of the material
c\cdot 10^{-3}c103 \frac{J}{kg\cdot K}JkgK The specific heat of the material (range 20°C–T)
R\cdot 10^{-6}R106 \Omega\cdot mΩm Electrical resistivity

Description of mechanical properties

Parameter Units of measurement Description
\sigma_{0.2}σ0.2 MPaMPa Tensile stress required to produce a total elongation of 0.2%
\sigma _{U}σU MPaMPa Ultimate tensile strength
\epsilon_LϵL % Elongation at break (longitudinal)