HS18-0-1 | 1.3355 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 Name Material Number (single) Standard Scope Standard Status Country Successor VDA 231-106 classification
1.3355 (DIN EN ISO 4957 : 2001-02) HS18-0-1 1.3355 DIN EN ISO 4957 : 2001-02 DIN EN ISO 4957 : 2001-02 replaced by DIN EN ISO 4957 : 2018-11 Replaced Germany HS18-0-1 1.1.2 1)
1) Remark: Non-sensitive very ductile highly tungsten-alloyed high-speed steel. Application: spiral drills, screw cutting tools, cutter, file cutting chisels and similar tools which have to be highly ductile.

Chemical Composition

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

Material Compliance

REACh RoHS
blur blur

Mechanical Properties

Semi-finished Product Condition Temperature [°C] Hardness HB | HBW Hardness HRC
blur blur blur blur blur 1)2)
blur blur blur blur blur 1)3)
1) Source: blur
2) Remark: blur
3) Remark: blur

Physical Properties

Temperature [°C] Density [g/cm³]
blur blur 1)
1) Source: blur

Heat Treatment

Heat Treatment Step Temperature [°C] Holding Time [h] Medium
blur blur blur blur blur 1)
blur blur blur blur blur 1)
blur blur blur blur blur 1)
blur blur blur blur blur 1)
blur blur blur blur blur 1)
blur blur blur blur blur 1)
blur blur blur blur blur 1)2)
1) Source: blur
2) Remark: blur

Cross Reference

Material Name Country Standard
W18Cr4V China GB/T 9943 1)
T51841 China GB/T 9943 1)
HS18-0-1 Europe EN ISO 4957
XT78W18Cr4V1 India IS 5651 1)
THS1 India IS 5651 1)
XT78W18Cr4V1 India IS 7291 1)
HS 18-0-1 International ISO 4957
SKH2 Japan JIS G 4403 1)
R18 Russia GOST 19265 1)
P18 Russia ГОСТ 19265 1)
SKH2 South Korea KS D 3522 1)
A600 Type T1 USA ASTM A600 1)
T1 USA SAE 1)
T12001 USA UNS 1)
S 18-0-1 1)
1) Source: Stahlschlüssel 2016, Verlag Stahlschlüssel Wegst GmbH, Marbach

Producer/Supplier/Trade names

Tradename Supplier
3355 Chr. Höver & Sohn GmbH & Co KG, Lindlar
3355 COGNE Edelstahl GmbH, Neuss
3355.0 BÖHLER S 200 voestalpine High Perfomance Metals Deutschland GmbH, Düsseldorf
Almenit 3355 Almenit, Mittelberg
BGH 3355 BGH Edelstahl Siegen GmbH
CHRONIMO 1.3355 Chronimo Edelstahl GmbH, Barsbüttel
Dux 3355 Swiss Steel International GmbH, Düsseldorf
EH 0018 Edelstahlwerk W. Ossenberg & Cie. GmbH, Altena
Eschmann 3355 EschmannStahl GmbH, Reichshof-Wehnrath
FSPSA Friedrich Schulte Edelstahl, Essen
Garant Extra Willy Haecker GmbH, Hückeswagen
GWV 112 B Gustav Grimm Edelstahlwerk GmbH & Co. KG, Remscheid
HS18-0-1 ThyssenKrupp Steel Europe AG, Duisburg
HS18-0-1 Saarstahl AG, Völklingen
MÄRKER SS 19 Schmidt + Clemens GmbH + Co. KG, Edelstahlwerk Kaiserau, Lindlar
Rasant Extra F Hagenkötter GmbH & Co., Solingen
RAVENE 3355 ArcelorMittal Stahlhandel GmbH, Niederlassung Ravené, Berlin
S 18-0-1 Edelstahl Service Center Burg GmbH, Burg
S 200 voestalpine BÖHLER Edelstahl GmbH & Co.KG, Kapfenberg
Spezial zäh Aubert&Duval Special Steel GmbH, Mönchengladbach
SSW 180 ZAPP AG, Ratingen
SVX 360 Platestahl Umformtechnik GmbH, Lüdenscheid
SW 18 Sona BLW Präzisionsschmiede GmbH, Remscheid
THYRAPID 3355 Deutsche Edelstahlwerke Specialty Steel GmbH & Co. KG, Witten
VERONICA Extra Kind & Co., Edelstahlwerk, Wiehl
Visto Rekord Dörrenberg Edelstahl GmbH, Engelskirchen

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

Density

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