X210Cr12 | 1.2080 Material Datasheet

Unlock Exclusive Materials Data

Gain access to a wealth of materials data by joining our Materials Portal.

Register for Free or Upgrade for Full Access

Material Description

Material Number Material Number (single) Standard Range of Application Standard Status Country Predecessor Application temperature [°C]
1.2080 (DIN EN ISO 4957 : 2018-11) 1.2080 DIN EN ISO 4957 : 2018-11 Supersedes DIN EN ISO 4957 : 2001-02 Valid Germany X210Cr12 ≤ 200 1)
1) Remark: X210Cr12 is an oil-hardening tool steel. It achieves in hardened condition at least 62 HRC. The steel is highly wear resistant and shows high hardness penetrability at favorable dimensional stability. Application: high-performance cutting and diecutting tools for sheet thicknesses up to approx. 3 mm, roll and plate shear cutter for sheet thicknesses up to 2 mm, drawing tools, deep-drawing tools, broaches, jaws for wire brad production, tools for cold production of nuts and rivets, die typing coining dies and cold extrusion tools flanging, beading and bending rolls, forming and sizing rolls for continuous profile and tube making of steel strip, forming tools in ceramic industry and powder metallurgy and similar tools.

Chemical Composition

C [%] Cr [%] Mn [%] P [%] S [%] Si [%]
blur blur blur blur blur blur 1)
1) Source: blur

Mechanical Properties

Condition Temperature [°C] Hardness HB | HBW Hardness HRC
blur blur blur blur 1)
blur blur blur blur 1)
blur blur blur blur 1)
1) Source: blur

Physical Properties

Temperature [°C] Density [g/cm³] Mean Coefficient of Thermal Expansion (reference 20°C) [10^-6*K^-1] Thermal Conductivity [W/(m*K)]
blur blur blur blur 1)
blur blur blur blur 2)
blur blur blur blur 2)
blur blur blur blur 2)
blur blur blur blur 2)
blur blur blur blur 2)
blur blur blur blur 2)
blur blur blur blur 2)
blur blur blur blur 2)
1) Source: blur
2) Source: blur

Heat Treatment

Heat Treatment Step Temperature [°C] Medium
blur blur blur blur 1)
blur blur blur blur 1)
1) Source: blur

Cross Reference

Material Name Country Standard
Cr12 China GB/T 1299 1)
T21200 China GB/T 1299 1)
Cr12 China GB/T 24594 1)
T21200 China GB/T 24594 1)
X210Cr12 Europe EN ISO 4957
XT215Cr12 India IS 1570 : Part 6 1)
TAC22 India IS 1570 : Part 6 1)
XT215Cr12 India IS 4430 1)
T210Cr54 India IS 13387 1)
X210Cr12 International ISO 4957
SKD1 Japan JIS G 4404 1)
STD1 South Korea KS D 3753 1)
Ch Russia GOST 5950 1)
Х Russia ГОСТ 5950 1)
A681 Type D3 USA ASTM A681 1)
D3 USA SAE 1)
T30403 USA UNS 1)
210Cr46 Germany TGL 4393 2)
1) Source: Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach
2) Source: DIN EN ISO 18265 : 2014-02

Material Compliance

REACh RoHS
blur blur

Fracture Toughness

Temperature [°C] Hardness HV Plane-Strain Fracture Toughness KIc [MPa*m^½]
blur blur blur 1)2)
blur blur blur 1)2)
blur blur blur 1)2)
blur blur blur 1)2)
blur blur blur 1)2)
1) Source: blur
2) Remark: blur

Linear-elastic

Temperature [°C] Young's modulus [GPa] Bulk modulus [GPa] Shear modulus [GPa] Poisson's ratio
blur blur blur blur blur
blur blur blur blur blur
blur blur blur blur blur
blur blur blur blur blur
blur blur blur blur blur

Coefficient thermal expansion

Related Temperature [°C] Temperature [°C] Coefficient thermal expansion [10^-6*K^-1]
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur

Density

Temperature [°C] Density [g/cm³]
blur blur

Thermal conductivity

Temperature [°C] Thermal conductivity [W/(m*K)]
blur blur
blur blur
blur blur

Classification

WIAM Material Treatment Semi-finished product Dimension [mm] Load type Failure criteria Rolling direction Maximum stress [MPa] Strain at maximum stress [%] Source description
blur blur blur blur blur blur blur blur blur blur

Designation

Designation Material number Source
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur
blur blur blur