X10CrAlSi18 | 1.4742 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 AccessMaterial Description
Material Number | Material Number (single) | Standard | Range of Application | Standard Status | Country | Predecessor | Successor | Remark |
---|---|---|---|---|---|---|---|---|
1.4742 (DIN EN 10088-1 : 2014-12) | 1.4742 | DIN EN 10088-1 : 2014-12 | DIN EN 10088-1 : 2014-12 replaced by DIN EN 10088-1 : 2024-04 | Replaced | Germany | X10CrAlSi18 | X10CrAlSi18 | Ferritic heat-resisting steel. |
Chemical Composition
Al [%] | C [%] | Cr [%] | Mn [%] | P [%] | S [%] | Si [%] | Source |
---|---|---|---|---|---|---|---|
blur | blur | blur | blur | blur | blur | blur | blur |
Physical Properties
Temperature [°C] | Density [g/cm³] | Young's Modulus [GPa] | Mean Coefficient of Thermal Expansion (reference 20°C) [10^-6*K^-1] | Differential Coefficient of Thermal Expansion [10^-6*K^-1] | Thermal Conductivity [W/(m*K)] | Thermal Diffusivity [10^-6 m²/s] | Specific Electrical Resistance [µΩm] | Mean Specific Heat Capacity [kJ/(kg*K)] | True Specific Heat Capacity [kJ/(kg*K)] | Magnetizeability | 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 | 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 |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
Young's Modulus [GPa] vs Temperature [°C]
Exclusive Insight Locked!
This premium diagram is currently blurred. Gain full access to detailed insights and stay ahead with exclusive content.
Unlock NowMean Coefficient of Thermal Expansion (reference 20°C) [10^-6*K^-1] vs Temperature [°C]
Exclusive Insight Locked!
This premium diagram is currently blurred. Gain full access to detailed insights and stay ahead with exclusive content.
Unlock NowDifferential Coefficient of Thermal Expansion [10^-6*K^-1] vs Temperature [°C]
Exclusive Insight Locked!
This premium diagram is currently blurred. Gain full access to detailed insights and stay ahead with exclusive content.
Unlock NowCross Reference
Material Name | Country | Standard | Source |
---|---|---|---|
X10CrAlSi18 | Europe | EN 10088-1 | |
X10CrAlSi18 | International | ISO 15510 | |
4742-430-77-I | International | ISO 15510 | EN 10088-1 : 2014-10 |
FP18N | International | ISO 15510 | Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach |
SUH21 | Japan | JIS G 4312 | Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach |
15Ch18SJu | Russia | GOST 5632 | Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach |
15Х18СЮ | Russia | ГОСТ 5632 | Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach |
STR21 | South Korea | KS D 3732 | Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach |
X10CrAl18 | Europe | Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach |
Producer/Supplier/Trade names
Tradename | Supplier |
---|---|
1.4742 | Walzwerke Einsal GmbH, Nachrodt |
1.4742 | ZAPP AG, Ratingen |
1.4742 | NIRONIT Edelstahlhandel GmbH, Rosengarten |
1.4742 | H. Kleineberg GmbH, Stelle |
1.4742 | INOX SERVICE CENTER GmbH, Krefeld |
1.4742 | STAPPERT Deutschland GmbH, Düsseldorf |
1.4742 | INTERSTAHL Service GmbH, Wetter |
1.4742 | Imet Industriemetall Handelsgesellschaft mbH, Hamburg |
1.4742 | Eisen-Heinzl GmbH, Selb-Erkersreuth |
4742 | Swiss Steel International GmbH, Düsseldorf |
4742 | Edelstahlservice GmbH, Frankfurt/M. |
BGH 4742 | BGH Edelstahl Siegen GmbH |
BÖHLER H 120 | voestalpine High Perfomance Metals Deutschland GmbH, Düsseldorf |
BÖHLER H120 | voestalpine BÖHLER Edelstahl GmbH & Co.KG, Kapfenberg |
Coracid 4742 | Chr. Höver & Sohn GmbH & Co. KG, Lindlar |
Edel 1.4742 | ET Edelstahl-Trading GmbH, Willich |
Eternos 1.4742 | Remystahl GmbH & Co. KG, Hagen |
FERROTHERM 4742 | Deutsche Edelstahlwerke Specialty Steel GmbH & Co. KG, Witten |
Hacotherm HB 742 | Hagenkötter GmbH & Co., Solingen |
HAFESTA NF 88 | Hagener Feinstahl GmbH, Hagen |
HC 22 | Dörrenberg Edelstahl GmbH, Engelskirchen |
Hi 3 | Edelstahlwerk W. Ossenberg & Cie. GmbH, Altena |
Inox 1.4742 | INOX-Stahlgesellschaft mbH, Nürtingen |
Klöckner 1.4742 | Klöckner & Co SE, Duisburg |
Koro 4742 | Koring + Rottsieper Edelstahl GmbH + Co.KG, Remscheid |
Tepaz 1050 | Willy Haecker GmbH, Hückeswagen |
THERMAX 4742 | Deutsche Edelstahlwerke Specialty Steel GmbH & Co. KG, Witten |
THERMAX 4742 | Outokumpu Nirosta GmbH, Krefeld |
TS 4742 | ThyssenKrupp Schulte GmbH, Essen |
UGINE 4742 | Ugitech SA, Ugine |
X10CrAl18 | Hoesch Hohenlimburg GmbH, Hagen |
X10CrAl18 | Haage Anagramm Technologien GmbH, Mülheim a. d. Ruhr |
X10CrAl18 | F.W. Hempel & Co. Gesellschaft für Spezial-Rostfrei-Metalle mbH, Oberhausen |
X10CrAl18 | HEINE + BEISSWENGER Stiftung + Co.KG, Fellbach |
X10CrAl18 | EZM Edelstahlzieherei Mark GmbH, Wetter |
X10CrAlSi18 | EZM Edelstahlzieherei Mark GmbH, Wetter |
X10CrAlSi18 | pauly STAHLHANDEL, Essen |
Material Compliance
REACh | RoHS |
---|---|
blur | blur |
X10CrAlSi18 (1.4742; DIN EN 10088-1 : 2014-12)
Linear-elastic
Temperature [°C] | Young's 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 | blur | blur |
Electrical resistivity
Temperature [°C] | Specific electrical resistance [µΩm] |
---|---|
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 |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
Specific heat
Temperature [°C] | Specific heat [kJ/(kg*K)] |
---|---|
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 |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
Classification
WIAM Material | Source description |
---|---|
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 |
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 |