EN 573-3:2026
(Main)Aluminium and aluminium alloys - Chemical composition and form of wrought products - Part 3: Chemical composition and form of products
Aluminium and aluminium alloys - Chemical composition and form of wrought products - Part 3: Chemical composition and form of products
This document specifies the chemical composition limits of wrought aluminium and wrought aluminium alloys and form of products.
NOTE The chemical composition limits of aluminium and aluminium alloys specified herein are completely identical with those registered with the Aluminium Association, 1525, Wilson Boulevard, Suite 600, Arlington, VA 22209, USA, for the corresponding alloys.
Aluminium und Aluminiumlegierungen - Chemische Zusammensetzung und Form von Halbzeug - Teil 3: Chemische Zusammensetzung und Erzeugnisformen
Dieses Dokument legt die Grenzwerte für die chemische Zusammensetzung von Aluminium und Aluminium-Knetlegierungen und die Erzeugnisformen fest.
ANMERKUNG Die hier festgelegten Grenzwerte für die chemische Zusammensetzung von Aluminium und Aluminiumlegierungen stimmen völlig mit den entsprechenden Legierungen überein, die bei der Aluminium Association, 1525, Wilson Boulevard, Suite 600, Arlington, VA 22209, USA, registriert sind.
Aluminium et alliages d'aluminium - Composition chimique et forme des produits corroyés - Partie 3 : Composition chimique et forme des produits
Le présent document spécifie les limites de composition chimique des aluminiums et alliages d’aluminium corroyés et les formes de produits.
NOTE Les limites de composition chimique de l’aluminium et des alliages d’aluminium spécifiées ici sont strictement identiques à celles enregistrées auprès de l’Aluminium Association, 1525 Wilson Boulevard, Suite 600, Arlington, VA 22209, États-Unis, pour les alliages correspondants.
Aluminij in aluminijeve zlitine - Kemična sestava in oblika gnetenih izdelkov - 3. del: Kemična sestava in oblika izdelkov
Ta dokument določa mejne vrednosti kemijske sestave kovanega aluminija in kovanih aluminijevih zlitin ter obliko izdelkov.
OPOMBA Mejni vrednosti kemijske sestave aluminija in aluminijevih zlitin, določene v tem dokumentu, so popolnoma enake tistim, ki so registrirane pri Aluminium Association, 1525, Wilson Boulevard, Suite 600, Arlington, VA 22209, ZDA, za ustrezne zlitine.
General Information
- Status
- Published
- Publication Date
- 17-Mar-2026
- Technical Committee
- CEN/TC 132 - Aluminium and aluminium alloys
- Drafting Committee
- WG 31 - Terminology and general support
- Current Stage
- 6060 - Definitive text made available (DAV) - Publishing
- Start Date
- 18-Mar-2026
- Due Date
- 02-Jun-2026
- Completion Date
- 18-Mar-2026
Relations
- Effective Date
- 31-Jul-2024
- Effective Date
- 29-Apr-2026
- Effective Date
- 29-Apr-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
- Effective Date
- 25-Mar-2026
Overview
EN 573-3:2026 is a European Standard developed by CEN (European Committee for Standardization) that defines the chemical composition limits and permitted forms of wrought aluminium and wrought aluminium alloys. This standard plays a critical role in ensuring the quality and consistency of aluminium products across industries in Europe and aligns with international registration practices, as the chemical composition limits specified are identical to those registered with the Aluminium Association in the United States.
EN 573-3:2026 is part of a wider family of standards under EN 573, addressing various aspects such as designation systems and product forms, enabling uniformity and reliability in aluminium and aluminium alloy products throughout supply chains and applications.
Key Topics
- Chemical Composition Limits: The standard specifies precise maximum and minimum values for alloying elements and impurities in wrought aluminium and its alloys. Values are expressed as a percentage by mass and cover a wide range of elements, ensuring end products meet stringent quality requirements.
- Wrought Product Forms: EN 573-3:2026 addresses the allowable forms of wrought aluminium products, supporting a variety of manufacturing and application needs.
- Designation Systems: The standard reflects both the numerical designation system (as in EN 573-1) and chemical symbol-based system (as in EN 573-2), which are internationally recognized and help streamline alloy identification and selection.
- Rounding and Compliance Rules: Provides transparent rules for expressing and rounding the results of chemical analysis, improving consistency in material certification and regulatory compliance.
- International Alignment: The limits are fully harmonized with the international records maintained by the Aluminium Association, facilitating global trade and specification.
Practical Applications
EN 573-3:2026 is relevant across numerous sectors that depend on the precise composition of aluminium and aluminium alloys:
- Manufacturing and Fabrication: Industries producing sheet, plate, extrusions, and other wrought aluminium forms rely on this standard to ensure starting materials meet necessary specifications for strength, corrosion resistance, and workability.
- Automotive and Aerospace: Structural and body materials must meet strict alloy chemical requirements for safety and performance. EN 573-3:2026 provides the assurance needed for critical applications.
- Construction: Aluminium used in building façades, window frames, and roofing must comply with compositional standards to guarantee durability and integrity.
- Electrical Engineering: Aluminium conductors and cables depend on defined impurity limits for optimal conductivity and long-term performance.
- Product Certification and Procurement: Suppliers, manufacturers, and purchasers reference this standard to verify and certify that aluminium products meet European and international expectations, facilitating clear communication and reliable sourcing.
Related Standards
EN 573-3:2026 is supported and complemented by several other key standards:
- EN 573-1: Aluminium and aluminium alloys - Numerical designation system
- EN 573-2: Aluminium and aluminium alloys - Chemical symbol based designation system
- EN 573-4: Specifies forms of products in greater detail
- EN 573-5: Codification of standardized wrought products
- ISO standards for aluminium alloys: For organizations operating on a global scale, alignment with similar ISO documents may also be required
By utilizing EN 573-3:2026, organizations benefit from standardized specifications for aluminium chemical composition and form, supporting quality assurance, international trade, efficient procurement, and manufacturing excellence across the aluminium industry.
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Frequently Asked Questions
EN 573-3:2026 is a standard published by the European Committee for Standardization (CEN). Its full title is "Aluminium and aluminium alloys - Chemical composition and form of wrought products - Part 3: Chemical composition and form of products". This standard covers: This document specifies the chemical composition limits of wrought aluminium and wrought aluminium alloys and form of products. NOTE The chemical composition limits of aluminium and aluminium alloys specified herein are completely identical with those registered with the Aluminium Association, 1525, Wilson Boulevard, Suite 600, Arlington, VA 22209, USA, for the corresponding alloys.
This document specifies the chemical composition limits of wrought aluminium and wrought aluminium alloys and form of products. NOTE The chemical composition limits of aluminium and aluminium alloys specified herein are completely identical with those registered with the Aluminium Association, 1525, Wilson Boulevard, Suite 600, Arlington, VA 22209, USA, for the corresponding alloys.
EN 573-3:2026 is classified under the following ICS (International Classification for Standards) categories: 77.120.10 - Aluminium and aluminium alloys; 77.150.10 - Aluminium products. The ICS classification helps identify the subject area and facilitates finding related standards.
EN 573-3:2026 has the following relationships with other standards: It is inter standard links to EN 573-3:2019+A2:2023, EN 573-1:2004, EN 573-2:1994, EN 1386:2007, EN 13763-15:2004, EN 3719:2018, EN 12206-1:2004, EN 13814:2004, EN 1715-2:2008, EN 17878-2:2024, EN 16282-3:2016+A1:2021, EN 15632-2:2022, EN 14420-8:2013+A1:2016, EN 14121:2009, EN 13630-7:2002. Understanding these relationships helps ensure you are using the most current and applicable version of the standard.
EN 573-3:2026 is available in PDF format for immediate download after purchase. The document can be added to your cart and obtained through the secure checkout process. Digital delivery ensures instant access to the complete standard document.
Standards Content (Sample)
SLOVENSKI STANDARD
01-maj-2026
Aluminij in aluminijeve zlitine - Kemična sestava in oblika gnetenih izdelkov - 3.
del: Kemična sestava in oblika izdelkov
Aluminium and aluminium alloys - Chemical composition and form of wrought products -
Part 3: Chemical composition and form of products
Aluminium und Aluminiumlegierungen - Chemische Zusammensetzung und Form von
Halbzeug - Teil 3: Chemische Zusammensetzung und Erzeugnisformen
Aluminium et alliages d'aluminium - Composition chimique et forme des produits
corroyés - Partie 3 : Composition chimique et forme des produits
Ta slovenski standard je istoveten z: EN 573-3:2026
ICS:
77.040.30 Kemijska analiza kovin Chemical analysis of metals
77.150.10 Aluminijski izdelki Aluminium products
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.
EN 573-3
EUROPEAN STANDARD
NORME EUROPÉENNE
March 2026
EUROPÄISCHE NORM
ICS 77.150.10 Supersedes EN 573-3:2019+A2:2023
English Version
Aluminium and aluminium alloys - Chemical composition
and form of wrought products - Part 3: Chemical
composition and form of products
Aluminium et alliages d'aluminium - Composition Aluminium und Aluminiumlegierungen - Chemische
chimique et forme des produits corroyés - Partie 3 : Zusammensetzung und Form von Halbzeug - Teil 3:
Composition chimique et forme des produits Chemische Zusammensetzung und Erzeugnisformen
This European Standard was approved by CEN on 2 February 2026.
CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this
European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references
concerning such national standards may be obtained on application to the CEN-CENELEC Management Centre or to any CEN
member.
This European Standard exists in three official versions (English, French, German). A version in any other language made by
translation under the responsibility of a CEN member into its own language and notified to the CEN-CENELEC Management
Centre has the same status as the official versions.
CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia,
Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway,
Poland, Portugal, Republic of North Macedonia, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Türkiye and
United Kingdom.
EUROPEAN COMMITTEE FOR STANDARDIZATION
COMITÉ EUROPÉEN DE NORMALISATION
EUROPÄISCHES KOMITEE FÜR NORMUNG
CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels
© 2026 CEN All rights of exploitation in any form and by any means reserved Ref. No. EN 573-3:2026 E
worldwide for CEN national Members.
Contents Page
European foreword . 3
1 Scope . 4
2 Normative references. 4
3 Terms and definitions . 4
4 Chemical composition limits . 4
5 Writing rules . 5
6 Alloy designations . 5
7 Sequence of elements . 5
8 Rounding rules for determination of compliance. 6
Annex A (informative) Form of products . 32
A.1 General . 32
A.2 European Standards . 32
Annex B (normative) Guidelines for the introduction of new wrought aluminium and
wrought aluminium alloys in CEN/TC 132 standards . 51
B.1 General principles . 51
B.2 Rules for introduction of new alloys . 51
B.3 Procedure for introduction of new alloys . 51
Bibliography . 52
European foreword
This document (EN 573-3:2026) has been prepared by Technical Committee CEN/TC 132 “Aluminium
and aluminium alloys”, the secretariat of which is held by AFNOR.
This European Standard shall be given the status of a national standard, either by publication of an
identical text or by endorsement, at the latest by September 2026, and conflicting national standards shall
be withdrawn at the latest by September 2026.
Attention is drawn to the possibility that some of the elements of this document may be the subject of
patent rights. CEN shall not be held responsible for identifying any or all such patent rights.
This document supersedes EN 573-3:2019+A2:2023.
EN 573-3:2019+A2:2023:
— addition of the alloy EN AW-2007C in Tables 2 and A.2;
— addition of the alloy EN AW-2079 in Tables 2 and A.2;
— addition of the alloy EN AW-4115A in Tables 4 and A.4;
— addition of the alloy EN AW-6084 in Tables 6 and A.6;
— modification of the order of alloys to conform with Aluminium Association System.
EN 573 comprises the following parts under the general title Aluminium and aluminium alloys — Chemical
composition and form of wrought products:
— Part 1: Numerical designation system;
— Part 2: Chemical symbol based designation system;
— Part 3: Chemical composition and form of products;
— Part 4: Forms of products;
— Part 5: Codification of standardized wrought products.
Any feedback and questions on this document should be directed to the users’ national standards body.
A complete listing of these bodies can be found on the CEN website.
According to the CEN-CENELEC Internal Regulations, the national standards organisations of the
following countries are bound to implement this European Standard: Austria, Belgium, Bulgaria, Croatia,
Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland,
Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Republic of North
Macedonia, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Türkiye and the United
Kingdom.
1 Scope
This document specifies the chemical composition limits of wrought aluminium and wrought aluminium
alloys and form of products.
NOTE The chemical composition limits of aluminium and aluminium alloys specified herein are completely
identical with those registered with the Aluminium Association, 1525, Wilson Boulevard, Suite 600, Arlington,
VA 22209, USA, for the corresponding alloys.
2 Normative references
The following documents are referred to in the text in such a way that some or all of their content
constitutes requirements of this document. For dated references, only the edition cited applies. For
undated references, the latest edition of the referenced document (including any amendments) applies.
EN 573-1, Aluminium and aluminium alloys — Chemical composition and form of wrought products — Part
1: Numerical designation system
EN 573-2, Aluminium and aluminium alloys — Chemical composition and form of wrought products — Part
2: Chemical symbol based designation system
3 Terms and definitions
No terms and definitions are listed in this document.
ISO and IEC maintain terminology databases for use in standardization at the following addresses:
— ISO Online browsing platform: available at https://www.iso.org/obp
— IEC Electropedia: available at https://www.electropedia.org/
4 Chemical composition limits
The chemical composition of aluminium and aluminium alloys is specified in percentage by mass in
Table 1 to Table 8. Limits of impurities are expressed as a maximum; limits of alloying elements shown
as a range. Aluminium is specified as a minimum for unalloyed aluminium, and as a remainder for
aluminium alloys.
The chemical composition of internationally registered wrought aluminium and wrought aluminium
alloys not listed in this document can be found in Teal sheets [2] or their Addendum [3].
Analysis shall be made for elements which are specified, for example Pb, Sn, Bi, Sb, Zr.
5 Writing rules
5.1 Standard limits for alloying elements and impurities are expressed in percentage by mass to the
following decimal places:
— less than 0,001 % 0,000X;
— 0,001 % but less than 0,01 % 0,00X;
— 0,01 % but less than 0,10 %:
— unalloyed aluminium made by a refining 0,0XX;
process
— others 0,0X;
— 0,10 % to 0,55 % 0,XX;
— over 0,55 % 0,X; X,X; XX,X.
Exception: combined Si + Fe limits for 1xxx designations shall be expressed as 0,XX or 1,XX.
5.2 The aluminium content for unalloyed aluminium made by a refining process is the difference
between 100,00 % and the sum of all other metallic elements present in amounts of 0,001 0 % or more
each, expressed to the third decimal place before determining the sum, which is rounded to the second
decimal place before subtracting.
For unalloyed aluminium not made by a refining process, the aluminium content is the difference
between 100,00 % and the sum of all other metallic elements present in amounts of 0,010 % or more each
expressed to the second decimal place before determining the sum.
6 Alloy designations
To introduce new wrought aluminium and wrought aluminium alloys in standards, Annex B shall be
followed.
The numerical designation systems used in Teal sheets and European Standards for wrought aluminium
alloys are identical. As specified in EN 573-1 the prefix “EN AW-“ shall be added to the 4-digits designation
of the alloy.
The alternative chemical symbol based alloy designation system shall be based on EN 573-2.
Both the numerical and the chemical symbol based designations are indicated in Table 1 to Table 8. The
list of applicable form(s) of products for a specific alloy is provided at Annex A.
The International numerical system is the preferred one. The chemical symbol based designations are
indicated for reference only.
7 Sequence of elements
Standard limits for alloying elements and impurities are expressed in the following sequence: silicon, iron,
copper, manganese, magnesium, chromium, nickel, zinc, titanium, gallium, vanadium, remarks, other
elements - each, other elements - total, aluminium.
Limits of additional specified elements are inserted in alphabetical order of their chemical symbols under
“Remarks”.
8 Rounding rules for determination of compliance
In recording chemical analysis test results, the number representing the result for any element specified
in this document shall be expressed to the same number of decimal places as the corresponding number
in this document. For unalloyed aluminium, the aluminium content is derived as described in 5.2.
The following rounding rules shall be used for determination of compliance with this document:
a) when the figure immediately after the last figure to be retained is less than 5, the last figure to be
retained remains unchanged;
b) when the figure immediately after the last figure to be retained is greater than 5, or equal to 5 and
followed by at least one figure other than 0, the last figure to be retained is increased by 1;
c) when the figure immediately after the last figure to be retained is equal to 5 and followed by zeros
only, the last figure to be retained remains unchanged if even and is increased by 1 if odd.
Table 1 — Aluminium — 1000 series
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
c
EN AW-1050A EN AW-Al 99,5 0,25 0,40 0,05 0,05 0,05 - - 0,07 0,05 - - - 0,03 -
99,50
c
EN AW-1060 EN AW-Al 99,6 0,25 0,35 0,05 0,03 0,03 - - 0,05 0,03 - 0,05 - 0,03 -
99,60
c
EN AW-1070A EN AW-Al 99,7 0,20 0,25 0,03 0,03 0,03 - - 0,07 0,03 - - - 0,03 -
99,70
EN AW-Al
c
e
EN AW-1080A 0,15 0,15 0,03 0,02 0,02 - - 0,06 0,02 0,03 - 0,02 -
99,80
99,8(A)
EN AW-Al
c
EN AW-1085 0,10 0,12 0,03 0,02 0,02 - - 0,03 0,02 0,03 0,05 - 0,01 -
99,85
99,85
EN AW-Al
c
EN AW-1090 0,07 0,07 0,02 0,01 0,01 - - 0,03 0,01 0,03 0,05 - 0,01 -
99,90
99,90
EN AW-Al
d
EN AW-1098 0,010 0,006 0,003 - - - - 0,015 0,003 - - - 0,003 -
99,98
99,98
EN AW-Al 0,05–
c
EN AW-1100 0,95 Si + Fe 0,05 - - - 0,10 - - - e 0,05 0,15
99,00
99,0Cu 0,20
e c
EN AW-1200 EN AW-Al 99,0 1,00 Si + Fe 0,05 0,05 - - - 0,10 0,05 - - 0,05 0,15
99,00
EN AW-Al
c
EN AW-1200A 1,00 Si + Fe 0,10 0,30 0,30 0,10 - 0,10 - - - - 0,05 0,15
99,00
99,0(A)
0,02B;
c
EN AW-1110 EN AW-Al 99,1 0,30 0,8 0,04 0,01 0,25 0,01 – – – – – 0,03 0,15
99,10
0,03V + Ti
EN AW-Al
c
EN AW-1235 0,65 Si + Fe 0,05 0,05 0,05 - - 0,10 0,06 - 0,05 - 0,03 -
99,35
99,35
0,05 B;
c
EN AW-1350 EN AW-Al 99,5 0,10 0,40 0,05 0,01 - 0,01 - 0,05 - 0,03 - 0,03 0,10
99,50
0,02 V + Ti
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
EN AW-Al 0,03 Cr + Mn
c
EN AW-1350A 0,25 0,40 0,02 - 0,05 - - 0,05 - - - 0,03 -
99,50
99,5(A) + Ti + V
EN AW-Al 0,10–
c
EN AW-1450 0,25 0,40 0,05 0,05 0,05 - - 0,07 - - e 0,03 -
99,50
99,5Ti 0,20
0,02 B;
c
EN AW-1370 EN AW-Al 99,7 0,10 0,25 0,02 0,01 0,02 0,01 - 0,04 - 0,03 - 0,02 0,10
99,70
0,02 V + Ti
EN AW-Al
d
EN AW-1198 0,010 0,006 0,006 0,006 - - - 0,010 0,006 0,006 - - 0,003 -
99,98
99,98(A)
EN AW-Al
d
EN AW-1199 0,006 0,006 0,006 0,002 0,006 - - 0,006 0,002 0,005 0,005 - 0,002 -
99,99
99,99
a
“Others” includes listed elements for which no specific limit is shown as well as unlisted metallic elements. The producer may analyse samples for trace elements not specified in the registration
or specification. However, such analysis is not required and might not cover all metallic “Other” elements. Should any analysis by the producer or the purchaser establish that an “Others” element
exceeds the limit of “Each” or that the aggregate of several “Others” elements exceeds the limit of “Total”, the material shall be considered non-conforming.
b
The sum of those “Others” metallic elements 0,010 % or more each, expressed to the second decimal place before determining the sum.
c
The aluminium content for unalloyed aluminium not made by a refining process is the difference between 100,00 % and the sum of all other metallic elements present in amounts of 0,010 % or
more each, expressed to the second decimal place before determining the sum.
d
The aluminium content for unalloyed aluminium made by a refining process is the difference between 100,00 % and the sum of all other metallic elements present in amounts of 0,001 0 % or more
each, expressed to the third decimal before determining the sum, which is rounded to the second decimal place before subtracting.
e
0,000 3 max. Be for welding electrode, welding rod and filler wire only.
Table 2 — Aluminium alloys — 2000 series — Al Cu
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
EN AW-Al 5,2– 0,15 – 0,20 –
c
EN AW-2001 0,20 0,20 0,10 0,05 0,10 0,20 - - 0,05 0,15 Remainder
0,05 Zr
Cu5,5MgMn 6,0 0,50 0,45
EN AW-Al 3,3– 0,50 – 0,40 –
EN AW-2007 0,8 0,8 0,10 0,20 0,8 0,20 - - d 0,10 0,30 Remainder
Cu4PbMgMn 4,6 1,0 1,8
0,10 – 1,0 Bi
EN AW-Al 3,3 – 0,20 – 0,40 –
EN AW-2007C 0,8 0,8 0,10 0,20 0,8 0,20 - - 0,05 0,15 Remainder
Cu4MgMnBi(C) 4,6 1,0 1,8
0,10 Pb
EN AW-Al 5,0 –
EN AW-2011 0,40 0,7 - - - - 0,30 - - - e 0,05 0,15 Remainder
Cu6BiPb 6,0
EN AW-Al 4,5 –
e
EN AW-2011A 0,40 0,50 - - - - 0,30 - - - 0,05 0,15 Remainder
Cu6BiPb(A) 6,0
EN AW-Al 3,9 – 0,40 – 0,20 –
f
EN AW-2014 0,50 – 1,2 0,7 0,10 - 0,25 0,15 - - 0,05 0,15 Remainder
Cu4SiMg 5,0 1,2 0,8
EN AW-Al 3,9 – 0,40 – 0,20 –
EN AW-2014A 0,50 – 0,9 0,50 0,10 0,10 0,25 0,15 - - 0,20 Zr+Ti 0,05 0,15 Remainder
Cu4SiMg(A) 5,0 1,2 0,8
EN AW-Al 3,9 – 0,40 – 0,20 –
f
EN AW-2214 0,50 – 1,2 0,30 0,10 - 0,25 0,15 - - 0,05 0,15 Remainder
Cu4SiMg(B) 5,0 1,2 0,8
Ag 0,30 – 0,7
EN AW-Al 3,5 – 0,10 – 0,30 – 0,05 –
EN AW-2016 0,30 – 0,7 0,15 - - - - - 0,05 0,15 Remainder
Cu4SiMgAg 4,5 0,50 0,8 0,15
Zr 0,10 – 0,25
EN AW-Al 3,5 – 0,40 – 0,40 –
EN AW-2017A 0,20 – 0,8 0,7 0,10 - 0,25 - - - 0,25 Zr+Ti 0,05 0,15 Remainder
Cu4MgSi(A) 4,5 1,0 1,0
EN AW-Al 2,2 – 0,20 –
EN AW-2117 0,8 0,7 0,20 0,10 - 0,25 - - - - 0,05 0,15 Remainder
Cu2,5Mg 3,0 0,50
EN AW-Al 0,15 – 1,8 – 0,8 –
EN AW-2618A 0,9 – 1,4 0,25 1,2 – 1,8 - 0,15 0,20 - - 0,25 Zr+Ti 0,05 0,15 Remainder
Cu2Mg1,5Ni 0,25 2,7 1,4
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
5,8 – 0,20 – 0,02 – 0,05–
EN AW-2219 EN AW-Al Cu6Mn 0,20 0,30 0,02 - - 0,10 - 0,10 – 0,25 Zr 0,05 0,15 Remainder
6,8 0,40 0,10 0,15
0,10 – 0,25 Zr
EN AW-Al 5,8 – 0,20 – 0,10 – 0,05–
EN AW-2319 0,20 0,30 0,02 - - 0,10 - 0,05 0,15 Remainder
h
Cu6Mn(A) 6,8 0,40 0,20 0,15
3,8 – 0,30 –
f
EN AW-2024 EN AW-Al Cu4Mg1 0,50 0,50 1,2 – 1,8 0,10 - 0,25 0,15 - - 0,05 0,15 Remainder
4,9 0,9
EN AW-Al 3,8 – 0,30 –
EN AW-2124 0,20 0,30 1,2 – 1,8 0,10 - 0,25 0,15 - - f 0,05 0,15 Remainder
Cu4Mg1(A) 4,9 0,9
EN AW-Al 3,3 – 0,20 – 0,50 – 0,20 Bi ; 0,8–
EN AW-2030 0,8 0,7 0,10 - 0,50 0,20 - - 0,10 0,30 Remainder
Cu4PbMg 4,5 1,0 1,3 1,5 Pb
EN AW-Al 1,8 – 0,6 –
EN AW-2031 0,50 – 1,3 0,6–1,2 0,50 0,6 – 1,2 - 0,20 0,20 - - - 0,05 0,15 Remainder
Cu2,5NiMg 2,8 1,4
EN AW-Al 2,2 – 0,40 – 0,20 –
EN AW-2033 0,10 – 1,2 0,7 0,15 0,15 0,50 0,10 Bi: 0,05 − 0,8 0,05 0,15 Remainder
Cu2,5MnSiMgBi 2,7 1,0 0,6
Li: 0,15
Bi: 0,20 – 0,9
EN AW-Al 4,0 −
EN AW-2077 0,40 – 1,0 0,7 0,6 – 1,2 0,6 – 1,2 0,20 0,20 0,25 0,15 0,05 0,15 Remainder
Cu4,5MgMnSiBi 5,0
Ag: 0,15
Zr: 0,15
0,8 – 1,0 Li
EN AW-Al 3,0 – 0,10 – 0,05 – 0,8 –
EN AW-2079 0,12 0,15 - - 0,10 - - 0,05 0,15 Remainder
Cu3,5Zn1Li1 3,8 0,35 0,35 1,2
0,05 – 0,15 Zr
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
0,04 – 0,16 Zr
EN AW-Al 1,8 –
EN AW-2091 0,20 0,30 0,10 1,1 – 1,9 0,10 - 0,25 0,10 - - 0,05 0,15 Remainder
Cu2Li2Mg1,5 2,5 g
a
“Others” includes listed elements for which no specific limit is shown as well as unlisted metallic elements. The producer may analyse samples for trace elements not specified in the registration
or specification. However, such analysis is not required and might not cover all metallic “Other” elements. Should any analysis by the producer or the purchaser establish that an “Others” element
exceeds the limit of “Each” or that the aggregate of several “Others” elements exceeds the limit of “Total”, the material shall be considered non-conforming.
b
The sum of those “Others” metallic elements 0,010 % or more each, expressed to the second decimal place before determining the sum.
c
0,003 max. Pb.
d
0,20 Bi; 0,8–1,5 Pb; 0,20 Sn.
e
0,20–0,6 Bi; 0,20–0,6 Pb.
f
Zr + Ti limit of 0,20 maximum may be used for extruded and forged products if mutually agreed by supplier or manufacturer and purchaser.
g
1,7–2,3 Li.
h
0,000 3 max. Be for welding electrode, welding rod and filler wire only.
Table 3 — Aluminium alloys — 3000 series — Al Mn
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
b
Numerical Chemical Symbols Each min.
Total
EN AW-3002 EN AW-Al Mn0,2Mg0,1 0,08 0,10 0,15 0,05 – 0,25 0,05 – 0,20 - - 0,05 0,03 - 0,05 - 0,03 0,10 Remainder
EN AW-3102 EN AW-Al Mn0,2 0,40 0,7 0,10 0,05 – 0,40 - - - 0,30 0,10 - - - 0,05 0,15 Remainder
EN AW-3003 EN AW-Al Mn1Cu 0,6 0,7 0,05 – 0,20 1,0 – 1,5 - - - 0,10 - - - - 0,05 0,15 Remainder
c
EN AW-3103 EN AW-Al Mn1 0,50 0,7 0,10 0,9 – 1,5 0,30 0,10 - 0,20 - - - 0,05 0,15 Remainder
0,10 Zr+Ti
EN AW-3103A EN AW-Al Mn1(A) 0,50 0,7 0,10 0,7 – 1,4 0,30 0,10 - 0,20 0,10 - - 0,10 Zr+Ti 0,05 0,15 Remainder
EN AW-3004 EN AW-Al Mn1Mg1 0,30 0,7 0,25 1,0 – 1,5 0,8 – 1,3 - - 0,25 - - - - 0,05 0,15 Remainder
EN AW-3104 EN AW-Al Mn1Mg1Cu 0,6 0,8 0,05 – 0,25 0,8 – 1,4 0,8 – 1,3 - - 0,25 0,10 0,05 0,05 - 0,05 0,15 Remainder
EN AW-3005 EN AW-Al Mn1Mg0,5 0,6 0,7 0,30 1,0 – 1,5 0,20 – 0,6 0,10 - 0,25 0,10 - - - 0,05 0,15 Remainder
EN AW-Al
EN AW-3005A 0,7 0,8 0,30 1,0 – 1,5 0,20 – 0,6 0,10 - 0,40 0,10 - - - 0,05 0,15 Remainder
Mn1Mg0,5(A)
EN AW-3105 EN AW-Al Mn0,5Mg0,5 0,6 0,7 0,30 0,30 – 0,8 0,20 – 0,8 0,20 - 0,40 0,10 - - - 0,05 0,15 Remainder
EN AW-Al
EN AW-3105A 0,6 0,7 0,30 0,30 – 0,8 0,20 – 0,8 0,20 - 0,25 0,10 - - - 0,05 0,15 Remainder
Mn0,5Mg0,5(A)
EN AW-3105B EN AW-Al Mn0,6Mg0,5 0,7 0,9 0,30 0,30 – 0,9 0,20 – 0,8 0,20 - 0,50 0,10 - - 0,10 Pb 0,05 0,15 Remainder
EN AW-3017 EN AW-Al Mn1Cu0,3 0,25 0,25 – 0,45 0,25 – 0,40 0,8 – 1,2 0,10 0,15 - 0,10 0,05 - - - 0,05 0,15 Remainder
EN AW-3207 EN AW-Al Mn0,6 0,30 0,45 0,10 0,40 – 0,8 0,10 - - 0,10 - - - - 0,05 0,10 Remainder
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
b
Numerical Chemical Symbols Each min.
Total
EN AW-3207A EN AW-Al Mn0,6(A) 0,35 0,6 0,25 0,30 – 0,8 0,40 0,20 - 0,25 - - - - 0,05 0,15 Remainder
a
“Others” includes listed elements for which no specific limit is shown as well as unlisted metallic elements. The producer may analyse samples for trace elements not specified in the registration
or specification. However, such analysis is not required and might not cover all metallic “Other” elements. Should any analysis by the producer or the purchaser establish that an “Others” element
exceeds the limit of “Each” or that the aggregate of several “Others” elements exceeds the limit of “Total”, the material shall be considered non-conforming.
b
The sum of those “Others” metallic elements 0,010 % or more each, expressed to the second decimal place before determining the sum.
c
0,000 3 max. Be for welding electrode, welding rod and filler wire only.
Table 4 — Aluminium alloys — 4000 series — Al Si
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
b
Numerical Chemical symbols Each min.
Total
EN AW-4004 EN AW-Al Si10Mg1,5 9,0 – 10,5 0,8 0,25 0,10 1,0 – 2,0 - - 0,20 - - - - 0,05 0,15 Remainder
0,02 –
EN AW-4104 EN AW-Al Si10MgBi 9,0 – 10,5 0,8 0,25 0,10 1,0 – 2,0 - - 0,20 - - - 0,05 0,15 Remainder
0,20 Bi
0,50 –
EN AW-4006 EN AW-Al Si1Fe 0,8 – 1,2 0,10 0,05 0,01 0,20 - 0,05 - - - - 0,05 0,15 Remainder
0,8
0,40 – 0,8 – 0,05 – 0,15 –
EN AW-4007 EN AW-Al Si1,5Mn 1,0 – 1,7 0,20 0,20 0,10 0,10 - - 0,05 Co 0,05 0,15 Remainder
1,0 1,5 0,25 0,7
0,6 – 0,10 –
EN AW-4015 EN AW-Al Si2Mn 1,4 – 2,2 0,7 0,20 - - 0,20 - - - - 0,05 0,15 Remainder
1,2 0,50
EN AW-Al 0,10 – 0,6 – 0,10 –
EN AW-4115 1,8 – 2,2 0,7 - - 0,20 - - - - 0,05 0,15 Remainder
Si2MnMgCu 0,50 1,2 0,50
EN AW-Al 0,10 – 0,6 – 0,10 –
EN AW-4115A 1,8 – 2,2 0,7 - - 0,20 0,15 - - - 0,05 0,15 Remainder
Si2MnMgCu(A) 0,50 1,2 0,50
0,6 – 0,50 –
EN AW-4016 EN AW-Al Si2MnZn 1,4 – 2,2 0,7 0,20 0,10 - - - - - - 0,05 0,15 Remainder
1,2 1,3
0,10 – 0,6 – 0,10 –
EN AW-4017 EN AW-Al SiMnMgCu 0,6 – 1,6 0,7 - - 0,20 - - - - 0,05 0,15 Remainder
0,50 1,2 0,50
0,50 –
c
EN AW-4018 EN AW-Al Si7Mg 6,5 – 7,5 0,20 0,05 0,10 - - 0,10 0,20 - - 0,05 0,15 Remainder
0,8
EN AW- Al 0,30 – 0,6 – 0,10 –
EN AW-4025 1,2 – 2,2 0,7 - - 0,20 0,20 - - - 0,05 0,15 Remainder
Si2MnCuMg 0,7 1,2 0,50
EN AW-Al 11,0 – 0,50 – 0,50 –
EN AW-4032 1,0 - 0,8 – 1,3 0,10 0,25 - - - - 0,05 0,15 Remainder
Si12,5MgCuNi 13,5 1,3 1,3
EN AW-4043A EN AW-Al Si5(A) 4,5 – 6,0 0,6 0,30 0,15 0,20 - - 0,10 0,15 - - - 0,05 0,15 Remainder
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
b
Numerical Chemical symbols Each min.
Total
EN AW-4343 EN AW-AI Si7,5 6,8 – 8,2 0,8 0,25 0,10 - - - 0,20 - - - - 0,05 0,15 Remainder
EN AW-4045 EN AW-Al Si10 9,0 – 11,0 0,8 0,30 0,05 0,05 - - 0,10 0,20 - - - 0,05 0,15 Remainder
0,20 –
EN AW-4046 EN AW-Al Si10Mg 9,0 – 11,0 0,50 0,03 0,40 - - 0,10 0,15 - - c 0,05 0,15 Remainder
0,50
11,0 –
c
EN AW-4047A EN AW-Al Si12(A) 0,6 0,30 0,15 0,10 - - 0,20 0,15 - - 0,05 0,15 Remainder
13,0
a
“Others” includes listed elements for which no specific limit is shown as well as unlisted metallic elements. The producer may analyse samples for trace elements not specified in the registration
or specification. However, such analysis is not required and might not cover all metallic “Other” elements. Should any analysis by the producer or the purchaser establish that an “Others” element
exceeds the limit of “Each” or that the aggregate of several “Others” elements exceeds the limit of “Total”, the material shall be considered non-conforming.
b
The sum of those “Others” metallic elements 0,010 % or more each, expressed to the second decimal place before determining the sum.
c
0,000 3 max. Be for welding electrode, welding rod and filler wire only.
Table 5 — Aluminium alloys — 5000 series — Al Mg
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
0,50 –
EN AW-5005 EN AW-Al Mg1(A) 0,30 0,7 0,20 0,20 0,10 - 0,25 - - - - 0,05 0,15 Remainder
1,1
0,7 –
EN AW-5005A EN AW-Al Mg1(A) 0,30 0,45 0,05 0,15 0,10 - 0,20 - - - - 0,05 0,15 Remainder
1,1
EN AW-Al 0,7 –
EN AW-5305 0,08 0,08 - 0,03 - 0,05 0,02 - - - 0,02 - Remainder
99,85Mg1 1,1
EN AW-Al 0,8 –
EN AW-5505 0,06 0,04 - 0,03 - 0,04 0,01 - - - 0,01 - Remainder
99,9Mg1 1,1
EN AW-Al 0,8 – 0,008
EN AW-5605 0,01 0,008 - - - 0,01 0,008 - - 0,003 - Remainder
99,98Mg1 1,1 Fe+Ti
EN AW-Al 0,40 – 0,8 –
EN AW-5006 0,40 0,80 0,10 0,10 - 0,25 0,10 - - - 0,05 0,15 Remainder
Mg1Mn0,5 0,8 1,3
EN AW-Al 0,10 – 0,20 –
EN AW-5010 0,40 0,7 0,25 0,15 - 0,30 0,10 - - - 0,05 0,15 Remainder
Mg0,5Mn 0,30 0,6
EN AW-Al 0,30 –
EN AW-5110 0,08 0,08 - 0,03 - - 0,05 0,02 - - - 0,02 - Remainder
99,85Mg0,5 0,6
EN AW-Al 0,35 –
EN AW-5210 0,06 0,04 - 0,03 - - 0,04 0,01 - - - 0,01 - Remainder
99,9Mg0,5 0,6
EN AW-Al 0,35 – 0,008
EN AW-5310 0,01 0,008 - - - - 0,01 0,008 - - 0,003 - Remainder
99,98Mg0,5 0,6 Fe+Ti
0,20 – 0,6
EN AW-Al 0,20 – 2,6 –
EN AW-5018 0,25 0,40 0,10 0,30 - 0,20 0,15 - - 0,05 0,15 Remainder
c
Mg3Mn0,4 0,6 3,6
Mn+Cr
EN AW-Al 0,40 – 2,9 –
EN AW-5018B 0,25 0,40 0,10 0,30 - 0,20 0,15 - - - 0,05 0,15 Remainder
Mg3Mn0,6 0,7 3,6
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
0,10 – 4,5 – 0,10 – 0,6
EN AW-5019 EN AW-Al Mg5 0,40 0,50 0,10 0,20 - 0,20 0,20 - - 0,05 0,15 Remainder
0,6 5,6 Mn+Cr
0,20 – 0,6
0,20 – 4,5 –
EN AW-5119 EN AW-Al Mg5(A) 0,25 0,40 0,05 0,30 - 0,20 0,15 - - 0,05 0,15 Remainder
c
0,6 5,6
Mn+Cr
0,20 – 0,6
0,20 – 4,5 –
EN AW-5119A EN-AW Al Mg5(B) 0,25 0,40 0,05 0,30 - 0,20 0,15 0,05 0,15 Remainder
e
0,6 5,6
Mn+Cr
EN AW-Al 0,55 – 0,20 – 0,6 – 3,9 –
EN AW-5026 0,10 – 0,8 0,30 - 1,0 0,20 - - 0,30Zr 0,05 0,15 Remainder
Mg4,5MnSiFe 1,4 1,0 1,8 4,9
EN AW-Al 0,9 – 1,0 – 0,10 –
EN AW-5040 0,30 0,7 0,25 - 0,25 - - - - 0,05 0,15 Remainder
Mg1,5Mn 1,4 1,5 0,30
EN AW-Al 0,20 – 3,0 –
EN AW-5042 0,20 0,35 0,15 0,10 - 0,25 0,10 - - - 0,05 0,15 Remainder
Mg3,5Mn 0,50 4,0
EN AW-Al 0,50 – 1,6 –
EN AW-5049 0,40 0,50 0,10 0,30 - 0,20 0,10 - - - 0,05 0,15 Remainder
Mg2Mn0,8 1,1 2,5
EN AW-Al 0,50 – 1,6 –
EN AW-5149 0,25 0,40 0,05 0,30 - 0,20 0,15 - - - 0,05 0,15 Remainder
Mg2Mn0,8(A) 1,1 2,5
0,10 – 0,20
EN AW-Al 0,50 – 1,6 –
EN AW-5249 0,25 0,40 0,05 0,30 - 0,20 0,15 - - 0,05 0,15 Remainder
c
Mg2Mn0,8Zr 1,1 2,5
Zr
EN AW-Al 0,6 – 1,6 –
EN AW-5449 0,40 0,7 0,30 0,30 - 0,30 0,10 - - - 0,05 0,15 Remainder
Mg2Mn0,8 1,1 2,6
EN AW-Al 0,6 – 1,6 –
EN AW-5449A 0,6 1,2 0,30 0,30 0,10 0,30 0,10 - - 0,10 Sn 0,05 0,15 Remainder
Mg2Mn0,8(A) 1,1 2,6
1,1 –
EN AW-5050 EN AW-Al Mg1,5 0,40 0,7 0,20 0,10 0,10 - 0,25 - - - - 0,05 0,15 Remainder
1,8
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
EN AW-Al 1,1 –
EN AW-5050A 0,40 0,7 0,20 0,30 0,10 - 0,25 - - - - 0,05 0,15 Remainder
Mg1,5(A) 1,8
1,4 –
EN AW-5051A EN AW-Al Mg2(A) 0,30 0,45 0,05 0,25 0,30 - 0,20 0,10 - - - 0,05 0,15 Remainder
2,1
EN AW-Al 0,10 – 1,7 –
EN AW-5251 0,40 0,50 0,15 0,15 - 0,15 0,15 - - - 0,05 0,15 Remainder
Mg2Mn0,3 0,50 2,4
2,2 – 0,15 –
EN AW-5052 EN AW-Al Mg2,5 0,25 0,40 0,10 0,10 - 0,10 - - - - 0,05 0,15 Remainder
2,8 0,35
EN AW-Al 2,2 –
EN AW-5252 0,08 0,10 0,10 0,10 - - 0,05 - - 0,05 - 0,03 0,10 Remainder
Mg2,5(B) 2,8
EN AW-Al 2,2 –
EN AW-5352 0,45 Si+Fe 0,10 0,10 0,10 - 0,10 0,10 - - - 0,05 0,15 Remainder
Mg2,5(A) 2,8
0,10 – 0,50
EN AW-Al 3,1 –
EN AW-5154A 0,50 0,50 0,10 0,50 0,25 - 0,20 0,20 - - 0,05 0,15 Remainder
c
Mg3,5(A) 3,9
Mn+Cr
EN AW-Al 0,15 – 3,2 –
EN AW-5154B 0,35 0,45 0,05 0,10 0,01 0,15 0,15 - - - 0,05 0,15 Remainder
Mg3,5Mn0,3 0,45 3,8
EN AW-Al 0,50 – 2,4 – 0,05 – 0,10 – 0,20
EN AW-5354 0,25 0,40 0,05 - 0,25 0,15 - - 0,05 0,15 Remainder
Mg2,5MnZr 1,0 3,0 0,20 Zr
0,50 – 2,4 – 0,05 –
EN AW-5454 EN AW-Al Mg3Mn 0,25 0,40 0,10 - 0,25 0,20 - - - 0,05 0,15 Remainder
1,0 3,0 0,20
EN AW-Al 0,50 – 2,4 – 0,05 – 0,05 –
c
EN AW-5554 0,25 0,40 0,10 - 0,25 - - 0,05 0,15 Remainder
Mg3Mn(A) 1,0 3,0 0,20 0,20
EN AW-Al 3,1 – 0,15 – 0,05 –
EN AW-5654 0,45 Si+Fe 0,05 0,01 - 0,20 - - c 0,05 0,15 Remainder
Mg3,5Cr 3,9 0,35 0,15
EN AW-Al 3,1 – 0,15 – 0,05 –
e
EN AW-5654A 0,45 Si+Fe 0,05 0,01 - 0,20 - - 0,05 0,15 Remainder
Mg3,5Cr(A) 3,9 0,35 0,15
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
0,10 – 0,6
2,6 –
EN AW-5754 EN AW-Al Mg3 0,40 0,40 0,10 0,50 0,30 - 0,20 0,15 - - 0,05 0,15 Remainder
c
3,6
Mn+Cr
EN AW-Al 0,05 – 4,5 – 0,05 – 0,06 –
EN AW-5356 0,25 0,40 0,10 - 0,10 - - c 0,05 0,15 Remainder
Mg5Cr(A) 0,20 5,5 0,20 0,20
EN AW-Al 0,05 – 4,5 – 0,05 – 0,06 –
e
EN AW-5356A 0,25 0,40 0,10 - 0,10 - - 0,05 0,15 Remainder
Mg5Cr(B) 0,20 5,5 0,20 0,20
EN AW-Al 0,50 – 4,7 – 0,05 –
EN AW-5456 0,25 0,40 0,10 - 0,25 0,20 - - - 0,05 0,15 Remainder
Mg5Mn1 1,0 5,5 0,20
EN AW-Al 0,7 – 4,5 – 0,05 –
EN AW-5456A 0,25 0,40 0,05 - 0,25 0,15 - - c 0,05 0,15 Remainder
Mg5Mn1(A) 1,1 5,2 0,25
EN AW-Al 0,7 – 4,5 – 0,05 –
e
EN AW-5456B 0,25 0,40 0,05 - 0,25 0,15 - - 0,05 0,15 Remainder
Mg5Mn1(B) 1,1 5,2 0,25
0,6 – 5,0 – 0,05 – 0,05 –
EN AW-5556A EN AW-Al Mg5Mn 0,25 0,40 0,10 - 0,20 - - c 0,05 0,15 Remainder
1,0 5,5 0,20 0,20
EN AW-Al 0,6 – 5,0 – 0,05 – 0,05 –
e
EN AW-5556B 0,25 0,40 0,10 - 0,20 - - 0,05 0,15 Remainder
Mg5Mn(A) 1,0 5,5 0,20 0,20
EN AW-Al 0,6 –
EN AW-5657 0,08 0,10 0,10 0,03 - - 0,05 - 0,03 0,05 - 0,02 0,05 Remainder
99,85Mg1(A) 1,0
EN AW-Al 4,5 – 1,2 – 1,8
EN AW-5058 0,40 0,50 0,10 0,20 0,10 - 0,20 0,20 - - 0,05 0,15 Remainder
Mg5Pb1,5 5,6 Pb
EN-AW-Al 0,6 – 5,0 – 0,40 – 0,05 – 0,25
EN AW-5059 0,45 0,50 0,25 0,25 - 0,20 - - 0,05 0,15 Remainder
Mg5,5MnZnZr 1,2 6,0 0,9 Zr
EN AW-Al 0,40 – 3,5 – 0,40 –
EN AW-5070 0,25 0,40 0,25 0,30 - 0,15 - - - 0,05 0,15 Remainder
Mg4MnZn 0,8 4,5 0,8
4,0 –
EN AW-5082 EN AW-Al Mg4,5 0,20 0,35 0,15 0,15 0,15 - 0,25 0,10 - - - 0,05 0,15 Remainder
5,0
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
EN AW-Al 0,20 – 4,0 –
EN AW-5182 0,20 0,35 0,15 0,10 - 0,25 0,10 - - - 0,05 0,15 Remainder
Mg4,5Mn0,4 0,50 5,0
EN AW-Al 0,40 – 4,0 – 0,05 –
EN AW-5083 0,40 0,40 0,10 - 0,25 0,15 - - - 0,05 0,15 Remainder
Mg4,5Mn0,7 1,0 4,9 0,25
EN AW-Al 0,50 – 4,3 – 0,05 –
c
EN AW-5183 0,40 0,40 0,10 - 0,25 0,15 - - 0,05 0,15 Remainder
Mg4,5Mn0,7(A) 1,0 5,2 0,25
EN AW-Al 0,50 – 4,3 – 0,05 –
e
EN AW-5183A 0,40 0,40 0,10 - 0,25 0,15 - - 0,05 0,15 Remainder
Mg4,5Mn0,7(C) 1,0 5,2 0,25
EN AW-Al 0,50 – 4,5 –
d
EN AW-5283A 0,30 0,30 0,03 0,05 0,03 0,10 0,03 - - 0,05 0,15 Remainder
0,05 Zr
Mg4,5Mn0,7(B) 1,0 5,1
EN AW-Al 0,7 – 4,0 –
EN AW-5383 0,25 0,25 0,20 0,25 - 0,40 0,15 - - 0,20 Zr 0,05 0,15 Remainder
Mg4,5Mn0,9 1,0 5,2
0,20 – 3,5 – 0,05 –
EN AW-5086 EN AW-Al Mg4 0,40 0,50 0,10 - 0,25 0,15 - - - 0,05 0,15 Remainder
0,7 4,5 0,25
EN AW-Al 0,20 – 3,8 –
EN AW-5186 0,40 0,45 0,25 0,15 - 0,40 0,15 - - 0,05 Zr 0,05 0,15 Remainder
Mg4Mn0,4 0,50 4,8
0,10 – 0,20
EN AW-Al 0,7 – 4,5 – 0,05 –
EN AW-5087 0,25 0,40 0,05 - 0,25 0,15 - - 0,05 0,15 Remainder
c
Mg4,5MnZr 1,1 5,2 0,25
Zr
0,10 – 0,20
EN AW-Al 0,7 – 4,5 – 0,05 –
EN AW-5187 0,25 0,40 0,05 - 0,25 0,15 - - 0,05 0,15 Remainder
e
Mg4,5MnZr 1,1 5,2 0,25
Zr
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical
b
Numerical Each min.
Total
symbols
EN AW-Al 0,10 – 0,20 – 4,7 – 0,20 –
EN AW-5088 0,20 0,25 0,15 - - - - 0,15Zr 0,05 0,15 Remainder
Mg5Mn0,4 0,35 0,50 5,5 0,40
a
“Others” includes listed elements for which no specific limit is shown as well as unlisted metallic elements. The producer may analyse samples for trace elements not specified in the registration
or specification. However, such analysis is not required and might not cover all metallic “Other” elements. Should any analysis by the producer or the purchaser establish that an “Others” element
exceeds the limit of “Each” or that the aggregate of several “Others” elements exceeds the limit of “Total”, the material shall be considered non-conforming.
b
The sum of those “Others” metallic elements 0,010 % or more each, expressed to the second decimal place before determining the sum.
c
0,000 3 max. Be for welding electrode, welding rod and filler wire only.
d
0,003 max. Pb.
e
0,000 5 % max Be for welding electrode, welding rod and filler wire.
Table 6 — Aluminium alloys — 6000 series — Al MgSi
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
0,35 –
EN AW-6101 EN AW-Al MgSi 0,30 – 0,7 0,50 0,10 0,03 0,03 - 0,10 - - - 0,06 B 0,03 0,10 Remainder
0,8
0,40 –
EN AW-6101A EN AW-Al MgSi(A) 0,30 – 0,7 0,40 0,05 - - - - - - - - 0,03 0,10 Remainder
0,9
0,10– 0,35 –
EN AW-6101B EN AW-Al MgSi(B) 0,30 – 0,6 0,05 0,05 - - 0,10 - - - - 0,03 0,10 Remainder
0,30 0,6
EN AW-6201 EN AW-Al Mg0,7Si 0,50 – 0,9 0,50 0,10 0,03 0,6 – 0,9 0,03 - 0,10 - - - 0,06 B 0,03 0,10 Remainder
EN AW-Al 0,05 – 0,35 –
EN AW-6401 0,35 – 0,7 0,04 0,03 - - 0,04 0,01 - - - 0,01 - Remainder
99,9MgSi 0,20 0,7
EN AW-Al
EN AW-6003 0,35 – 1,0 0,6 0,10 0,8 0,8 – 1,5 0,35 - 0,20 0,10 - - - 0,05 0,15 Remainder
Mg1Si0,8
0,40 –
EN AW-6005 EN AW-Al SiMg 0,6 – 0,9 0,35 0,10 0,10 0,10 - 0,10 0,10 - - - 0,05 0,15 Remainder
0,6
0,40 – 0,12 – 0,50
EN AW-6005A EN AW-Al SiMg(A) 0,50 – 0,9 0,35 0,30 0,50 0,30 - 0,20 0,10 - - 0,05 0,15 Remainder
0,7 Mn+Cr
0,40 –
EN AW-6005B EN AW-Al SiMg(B) 0,45 – 0,8 0,30 0,10 0,10 0,10 - 0,10 0,10 - - - 0,05 0,15 Remainder
0,8
0,05 – 0,40 –
EN AW-6106 EN AW-Al MgSiMn 0,30 – 0,6 0,35 0,25 0,20 - 0,10 - - - - 0,05 0,10 Remainder
0,20 0,8
0,40 – 0,05 –
EN AW-6008 EN AW-Al SiMgV 0,50 – 0,9 0,35 0,30 0,30 0,30 - 0,20 0,10 - - 0,05 0,15 Remainder
0,7 0,20
EN AW-Al 0,30 – 0,30 – 0,05 –
EN AW-6110A 0,7 – 1,1 0,50 0,7 – 1,1 - 0,20 - - - 0,20 Ti+Zr 0,05 0,15 Remainder
Mg0,9Si0,9MnCu 0,8 0,9 0,25
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
EN AW-Al 0,40 –
EN AW-6011 0,6 – 1,2 1,0 0,8 0,6 – 1,2 0,30 0,20 1,5 0,20 - - - 0,05 0,15 Remainder
Mg0,9Si0,9Cu 0,9
0,40 – 0,7 Bi; 0,40 – 2,0
EN AW-6012 EN AW-Al MgSiPb 0,6 – 1,4 0,50 0,10 0,6 – 1,2 0,30 - 0,30 0,20 - - 0,05 0,15 Remainder
1,0 Pb
0,20 – 0,7 Bi; 0,40 – 2,0
EN AW-6012A EN AW-Al MgSiSn 0,6 – 1,4 0,50 0,40 0,6 – 1,2 0,30 - 0,30 0,20 0,05 0,15 Remainder
1,0 Sn
EN AW-Al 0,20 –
EN AW-6013 0,6 – 1,0 0,50 0,6 – 1,1 0,8 – 1,2 0,10 - 0,25 0,10 - - - 0,05 0,15 Remainder
Mg1Si0,8CuMn 0,8
EN AW-Al 0,05 – 0,40 – 0,05 –
EN AW-6014 0,30 – 0,6 0,35 0,25 0,20 - 0,10 0,10 - - 0,05 0,15 Remainder
Mg0,6Si0,6V 0,20 0,8 0,20
EN AW-Al 0,20 – 0,10– 0,10 –
EN AW-6015 0,10 0,8 – 1,1 0,10 - 0,10 0,10 - - - 0,05 0,15 Remainder
Mg1Si0,3Cu 0,40 0,30 0,25
EN AW-Al 0,25 –
EN AW-6016 1,0 – 1,5 0,50 0,20 0,20 0,10 - 0,20 0,15 - - 0,05 0,15 Remainder
Si1,2Mg0,4 0,6
EN AW-Al 0,15 – 0,30 –
c
EN AW-6018 0,50 – 1,2 0,7 0,6 – 1,2 0,10 - 0,30 0,20 - - 0,05 0,15 Remainder
Mg1SiPbMn 0,40 0,8
EN AW-Al 0,20 – 0,20 – 0,40 – 0,30 – 0,8 Bi, 0,6
EN AW-6023 0,6 – 1,4 0,50 - - - - - - 0,05 0,15 Remainder
Si1Sn1MgBi 0,50 0,6 0,9 – 1,2Sn
EN AW-Al 0,20 –
EN AW-6025 0,8 – 1,5 0,7 0,6 – 1,4 2,1 – 3,0 0,20 - 0,50 0,20 - - 0,05 0,15 Remainder
Mg2,5SiMnCu 0,7
0,60 – 0,20 – 0,20 – 0,60 – 0,50–1,5 Bi;
EN AW-6026 EN AW-Al MgSiBi 0,70 0,30 - 0,30 0,20 - - 0,05 0,15 Remainder
1,40 0,50 1,0 1,2 0,40 Pb; 0,05 Sn
EN AW-Al 0,40 –
EN AW-6035 0,7 – 1,4 0,50 0,6 – 1,0 0,6 – 1,0 0,25 - 0,20 0,20 - - 0,07 – 0,20 Zr 0,05 0,15 Remainder
Mg0,9Si0,9MnCu 1,0
EN AW- Al 0,15 – 0,20 – 0,50 – 0,05 – 0,20–
EN AW- 6050 1,2 – 1,8 1,3 – 1,8 0,25 0,10 0,05 0,15 Remainder
Si1,5FeMgNi 0,50 0,7 0,9 0,25 1,0
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
EN AW-Al 0,40 – 0,40 –
EN AW-6351 0,7 – 1,3 0,50 0,10 - - 0,20 0,20 - - - 0,05 0,15 Remainder
SiMg0,5Mn 0,8 0,8
EN AW-Al 0,40 – 0,40 –
EN AW-6351A 0,7 – 1,3 0,50 0,10 - - 0,20 0,20 - - e 0,05 0,15 Remainder
SiMg0,5Mn(A) 0,8 0,8
EN AW-Al 0,20 – 0,15 – 0,40 –
EN AW-6951 0,8 0,10 - - 0,20 - - - - 0,05 0,15 Remainder
MgSi0,3Cu 0,50 0,40 0,8
EN AW-Al 0,50 – 0,40 – 0,10–
EN AW-6056 0,7 – 1,3 0,50 0,6 – 1,2 0,25 - d - - d 0,05 0,15 Remainder
Si1MgCuMn 1,1 1,0 0,7
0,10 – 0,35 –
EN AW-6060 EN AW-Al MgSi 0,30 – 0,6 0,10 0,10 0,05 - 0,15 0,10 - - - 0,05 0,15 Remainder
0,30 0,6
0,10 – 0,02 – 0,25 –
EN AW-6360 EN AW-Al SiMgMn 0,35 – 0,8 0,15 0,05 - 0,10 0,10 - - - 0,05 0,15 Remainder
0,30 0,15 0,45
EN AW-Al 0,15 – 0,04 –
EN AW-6061 0,40 – 0,8 0,7 0,15 0,8 – 1,2 0,25 0,15 0,05 0,15 Remainder
Mg1SiCu 0,40 0,35
EN AW-Al 0,15 – 0,04 –
EN AW-6061A 0,40 – 0,8 0,7 0,15 0,8 – 1,2 - 0,25 0,15 - - e 0,05 0,15 Remainder
Mg1SiCu(A) 0,40 0,35
EN AW-Al 0,15 – 0,20 –
EN AW-6261 0,40 – 0,7 0,40 0,7 – 1,0 0,10 - 0,20 0,10 - - - 0,05 0,15 Remainder
Mg1SiCuMn 0,40 0,35
EN AW-Al 0,15 – 0,04 –
EN AW-6262 0,40 – 0,8 0,7 0,15 0,8 – 1,2 - 0,25 0,15 - - f 0,05 0,15 Remainder
Mg1SiPb 0,40 0,14
0,40 – 0,9 Bi;
0,15 – 0,04 –
EN AW-6262A EN AW-Al Mg1SiSn 0,40 – 0,8 0,7 0,15 0,8 – 1,2 - 0,25 0,10 - - 0,05 0,15 Remainder
0,40 0,14
0,40 – 1,0 Sn
0,45 –
EN AW-6063 EN AW-Al Mg0,7Si 0,20 – 0,6 0,35 0,10 0,10 0,10 - 0,10 0,10 - - - 0,05 0,15 Remainder
0,9
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
EN AW-Al 0,15 –
EN AW-6063A 0,30 – 0,6 0,10 0,15 0,6 – 0,9 0,05 - 0,15 0,10 - - - 0,05 0,15 Remainder
Mg0,7Si(A) 0,35
EN AW-Al 0,45 –
EN AW-6463 0,20 – 0,6 0,15 0,20 0,05 - - 0,05 - - - - 0,05 0,15 Remainder
Mg0,7Si(B) 0,9
0,40 – 0,8 Bi;
0,15 – 0,04 –
EN AW-6064A EN AW-Al Mg1SiBi 0,40 – 0,8 0,7 0,15 0,8 – 1,2 - 0,25 0,15 - - 0,05 0,15 Remainder
0,40 0,14
0,20 – 0,40 Pb
EN AW-Al 0,15 – 0,50 – 1,5 Bi;
EN AW-6065 0,40 – 0,8 0,7 0,15 0,8 – 1,2 0,15 - 0,25 0,10 - - 0,05 0,15 Remainder
Mg1Bi1Si 0,40 0,05 Pb; 0,15 Zr
EN AW-Al 0,10 –
EN AW-6081 0,7 – 1,1 0,50 0,10 0,6 – 1,0 0,10 - 0,20 0,15 - - - 0,05 0,15 Remainder
Si0,9MgMn 0,45
EN AW-6181 EN AW-Al SiMg0,8 0,8 – 1,2 0,45 0,10 0,15 0,6 – 1,0 0,10 - 0,20 0,10 - - - 0,05 0,15 Remainder
EN AW-Al 0,40 –
EN AW-6082 0,7 – 1,3 0,50 0,10 0,6 – 1,2 0,25 - 0,20 0,10 - - - 0,05 0,15 Remainder
Si1MgMn 1,0
EN AW-Al 0,40 –
EN AW-6082A 0,7 – 1,3 0,50 0,10 0,6 – 1,2 0,25 - 0,20 0,10 - - e 0,05 0,15 Remainder
Si1MgMn(A) 1,0
0,50 –
EN AW-6182 EN AW-Al Si1MgZr 0,9 – 1,3 0,50 0,10 0,7 – 1,2 0,25 - 0,20 0,10 - - 0,05 – 0,20 Zr 0,05 0,15 Remainder
1,0
a
Alloy designation Aluminium
Others
Si Fe Cu Mn Mg Cr Ni Zn Ti Ga V Remarks
Chemical Total
Numerical Each min.
b
symbols
0,20 – 0,8 Bi
EN AW-Al 0,15 – 0,04 –
EN AW-6084 0,40 – 1,0 0,7 0,20 0,7 – 1,2 - 0,30 0,15 - - 0,05 0,15 Remainder
Mg1SiCuBi 0,50 0,20
0,10 Pb
a
“Others” includes listed elements for which no specific limit is shown as well as unlisted metallic elements. The producer may analyse samples for trace elements not specified in the registration
or specification. However, such analysis is not required and might not cover all metallic “Other” elements. Should any analysis by the producer or the purchaser establish that an “Others” element
exceeds the limit of “Each” or that the aggregate of several “Others” elements exceeds the limit of “Total”, the
...




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