EN AW-Al 99,6 | EN AW-1060 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
EN AW-1060 (DIN EN 573-3 : 2003-10) EN AW-Al 99,6 EN AW-1060 DIN EN 573-3 : 2003-10 DIN EN 573-3 : 2003-10 replaced by DIN EN 573-3 : 2007-11 Replaced Germany EN AW-Al 99,6 2.1 1)
1) Remark: Material EN AW-Al 99,6n is produced in limited quantities for sheets, bands and plates, for rolled and pressed bars as well as for foil and pressed and drawing products. It is food-safe.

Chemical Composition

Cu [%] Fe [%] Mg [%] Mn [%] Si [%] Ti [%] V [%] Zn [%] Remainder
blur blur blur blur blur blur blur blur blur 1)2)
1) Source: blur
2) Remark: blur

Material Compliance

REACh RoHS
blur blur

Cross Reference

Material Name Country Standard
A6 Russia GOST 11069
EN AW-Al 99,6 USA AA 1060
Al99,6 International ISO 209-1
A1060PB Japan JIS H 4180
A1060SB Japan JIS H 4180
A1060SBC Japan JIS H 4180
A91060 USA UNS
A91060 USA ASME SB -209
A91060 USA ASME SB-210
A91060 USA ASME SB-221
A91060 USA ASME SB-234
A91060 USA ASME SB-241
1060 USA ASTM B 209
1060 USA ASTM B 210
1060 USA ASTM B 211
1060 USA ASTM B 221
1060 USA ASTM B 234
1060 USA ASTM B 241
A91060 USA ASTM B 275
1060 USA ASTM B 345
WP 1060 USA ASTM B 361
1060 USA ASTM B 404
1060 USA ASTM B 483
1060 USA ASTM B 548
1060 USA ASTM B 736

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

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