DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 vs EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition

Ratings Comparison

Strength

DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 5/10
EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition 5/10

Corrosion Resistance

DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 7/10
EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition 3/10

Lightweight

DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 5/10
EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition 5/10

Machinability

DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 4/10
EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition 4/10

Cost Efficiency

DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 6/10
EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition 9/10

Temperature Resistance

DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 7/10
EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition 7/10

Properties Comparison

Property DIN EN 1.4057 Stainless Steel X17CrNi16-2 Material QT800 QT900 EN 1.0122 Steel S235JRC+C, S235JR+AR, S235JR+N Material Meaning & Definition
Metal Base Stainless Steel Steel
Tensile Strength 470.0 MPa
Yield Strength
Elongation 8.0 %
Hardness (Brinell) 8211.0 HB
Elastic Modulus
Density
Melting Point
Thermal Conductivity
Weldable
Heat Treatable
Magnetic