Aluminum Alloy Series Chart: 1xxx to 8xxx Explained

The four-digit number on an aluminium specification is not arbitrary. The first digit tells you the principal alloying element, and therefore most of what you need to know about how the metal behaves.

Learn the series and you can look at an unfamiliar grade and predict its character — whether it will weld, whether it will corrode, whether it can be heat treated, and roughly how strong it is.


1000 aluminum foil rolls
1000 aluminum foil rolls

The series system at a glance

Series Principal alloying element Heat treatable Paglaban sa kaagnasan Typical strength
1xxx None — ≥99% aluminium No Napakahusay Low
2xxx Tanso Oo nga Mga Maralita Very high
3xxx Mga mangganeso No Mabuti na lang Low–medium
4xxx Silicon Some Mabuti na lang Medium
5xxx Magnesium No Napakahusay Medium
6xxx Magnesium + Silicon Oo nga Mabuti na lang Medium–high
7xxx Sink Oo nga Fair Very high
8xxx Other (often Fe, Li, or foil-specific) Varies Varies Varies

1xxx — commercially pure aluminium

Komposisyon: ≥99.00% aluminium, no deliberate major alloying addition.

Grade Purity Character
1050 ≥99.50% Excellent formability and conductivity; soft
1060 ≥99.60% Slightly purer; excellent conductivity
1070 ≥99.70% High purity
1100 ≥99.00% Slightly stronger (minor Cu), excellent workability
1145 ≥99.45% Foil grades
1235 ≥99.35% Foil and flexible packaging

Character: soft, extremely formable, excellent electrical and thermal conductivity, mahusay na paglaban sa kaagnasan, not heat treatable, low strength.

Used for: foil and packaging, chemical equipment, electrical conductors and busbars, heat exchangers, deep-drawn cookware, reflective and decorative applications, battery current collector foil.

Choose 1xxx when you need conductivity, maximum formability, or corrosion resistance, and strength is not the priority.


2xxx — copper

Komposisyon: copper as the principal addition (typically 3–6%).

Grade Note
2024 Classic aerospace alloy; mataas na lakas, good fatigue resistance
2011 Free-machining
2014 / 2017 High-strength forgings and structural

Character: heat treatable, very high strength, good fatigue performance — but poor corrosion resistance and generally poor weldability. Usually clad or painted for protection.

Used for: aircraft structures, aerospace forgings, high-strength machined parts, military hardware.

Caveat: generally avoided in marine environments and in welded structures. Also anodizes poorly — not suitable for decorative anodizing.


aluminum-barrier-foil-4

3xxx — manganese

Komposisyon: manganese as the principal addition (typically 1.0–1.5%).

Grade Note
3003 The general-purpose 3xxx alloy
3004 Higher strength; beverage can bodies
3105 Building products, pag bubungan ng bubong, siding

Character: not heat treatable, moderate strength (roughly 20% stronger than 1xxx), excellent formability and weldability, magandang paglaban sa kaagnasan.

Used for: cooking utensils, beverage cans, heat exchangers, roofing and siding, chemical equipment, general sheet metal work.


4xxx — silicon

Komposisyon: silicon as the principal addition.

Character: lowers the melting point, improves fluidity. Primarily used as welding and brazing filler rather than as wrought product. Some 4xxx grades are heat treatable; 4xxx fillers are used with 6xxx base metal.

Used for: welding wire and brazing filler (4043, 4047), some pistons and wear-resistant applications.


5xxx — magnesium

Komposisyon: magnesium as the principal addition (typically 0.5–5.5%).

Grade Magnesium Note
5005 0.5–1.1% Architectural anodizing alloy
5052 2.2–2.8% The general marine and sheet metal alloy
5083 4.0–4.9% Structural marine; highest strength
5086 3.5–4.5% Marine and pressure vessels
5754 2.6–3.6% Automotive and general
5182 4.0–5.0% Beverage can ends

Character: not heat treatable, medium-to-high strength from solid-solution strengthening, excellent corrosion resistance including marine, excellent weldability, good formability in softer tempers.

Used for: marine structures and boat building, vehicle bodies, pressure vessels, cryogenic applications, architectural panels, mga signage, cookware, can ends.

Choose 5xxx when you need corrosion resistance plus weldability. This is the marine and transport series.


6xxx — magnesium and silicon

Komposisyon: magnesiyo at siliniyum, forming Mg₂Si, which makes the series heat treatable.

Grade Note
6061 The general-purpose structural alloy
6063 Architectural extrusions; excellent anodizing
6082 European structural equivalent; widely used in Europe
6005 / 6005A Structural extrusions

Character: heat treatable (T6 is the common condition), medium-to-high strength, magandang paglaban sa kaagnasan, good machinability, magandang weldability (though strength drops in the weld zone), excellent extrudability.

Used for: structural sections and extrusions, architectural frames and curtain wall, automotive components, mga frame ng bisikleta, machined parts, piping, marine fittings.

Choose 6xxx when you need a heat-treatable, machinable, extrudable structural alloy with good all-round properties. 6061 is the most widely used aluminium alloy in general engineering.


7xxx — zinc

Komposisyon: zinc as the principal addition, often with magnesium and copper.

Grade Note
7075 Highest-strength common aluminium alloy; aerospace
7005 Weldable, used in bicycle and motorcycle frames
7050 / 7150 Aerospace plate and forgings

Character: heat treatable, the highest strengths available in wrought aluminium, but fair-to-poor corrosion resistance and generally poor weldability (with exceptions such as 7005).

Used for: aircraft structures, high-stress aerospace components, high-performance sporting goods, mga aplikasyon ng militar.

Caveat: susceptible to stress corrosion cracking in some tempers; anodizes poorly; generally not chosen for marine service.


Coated aluminum foil for Flexible pipes
Coated aluminum foil for Flexible pipes

8xxx — other elements

A catch-all series for alloys not covered elsewhere. In foil, the 8xxx grades are among the most important in the world.

Grade Character Gamitin ang
8011 Al-Fe-Si The workhorse packaging foil alloy — household foil, lalagyan ng foil, PTP pharmaceutical lidding, bottle caps
8021 Al-Fe-Si, very low Si Cold-form pharmaceutical foil, high-barrier laminates
8079 Al-Fe-Si, low Si/Mn High-barrier food and pharmaceutical foil, thin-gauge laminates
8006 Al-Fe-Mn Container and packaging foil
8090 / 8xxx Li grades Aluminium-lithium Aerospace, mababang density

The key distinction inside 8xxx foil grades is purity of the minor elements. 8011 permits more silicon and manganese, making it stronger and cheaper. 8021 at 8079 restrict them, giving better ductility, fewer pinholes and better barrier — which is why they are used for cold forming and high-barrier applications.


Reading temper designations

The suffix after the grade describes the treatment condition:

Suffix Meaning
F As fabricated
O Annealed — softest, maximum formability
H Strain hardened (with a second digit for degree, and sometimes a third for stabilisation)
H1x Strain hardened only
H2x Strain hardened and partially annealed
H3x Strain hardened and stabilised
H12 / H14 / H16 / H18 Quarter / half / three-quarter / full hard
H32 / H34 Strain hardened and stabilised — the marine tempers
T Thermally treated (heat treated)
T4 Solution treated and naturally aged
T5 Cooled from forming and artificially aged
T6 Solution treated and artificially aged — peak strength
T651 T6 plus stress relief by stretching

Practical note: for non-heat-treatable alloys (1xxx, 3xxx, 5xxx) you will only see O and H tempers. For heat-treatable alloys (2xxx, 6xxx, 7xxx) you will see T tempers.


Quick selection guide

If you need… Series Typical grade
Maximum formability or conductivity 1xxx 1050, 1060
Packaging foil, general purpose 8xxx 8011
High-barrier or cold-form foil 8xxx 8079, 8021
General sheet metal, moderate strength 3xxx 3003
Marine corrosion resistance 5xxx 5052
Structural marine 5xxx 5083
General structural, machinable 6xxx 6061
Architectural extrusion, anodizing 6xxx 6063
Maximum strength 7xxx 7075
Aerospace structure 2xxx / 7xxx 2024, 7075

FAQ

What does the first digit of an aluminium grade mean? The principal alloying element: 1 = pure, 2 = copper, 3 = manganese, 4 = silicon, 5 = magnesium, 6 = magnesium + Silicon, 7 = zinc, 8 = other.

Which aluminium series is strongest? 7xxx (sink), led by 7075, gives the highest strengths in wrought aluminium. 2xxx (copper) is also very strong.

Which series has the best corrosion resistance? 1xxx and 5xxx. 5xxx (especially 5052, 5083, 5086) combines corrosion resistance with useful strength, which is why it dominates marine work.

Can all aluminium be heat treated? No. 2xxx, 6xxx and 7xxx are heat treatable. 1xxx, 3xxx and 4xxx are not — they gain strength only from work hardening (H tempers).

Ano ang pagkakaiba ng 6061 at 6063? 6061 is a general structural alloy with higher strength and better machinability. 6063 is an architectural extrusion alloy with better surface finish and superior anodizing response.

Why are 8011, 8021 at 8079 all used for foil? All are Al-Fe-Si alloys, but they differ in how tightly minor elements are restricted. 8011 permits more silicon and manganese — stronger, cheaper. 8021 at 8079 are purer — more ductile, fewer pinholes, better barrier.

What does T6 mean? Solution heat treated then artificially aged to peak strength. It applies only to heat-treatable alloys.

Which alloy should I choose for welding? 5xxx (5052, 5083) welds best and retains strength as-welded. 6xxx welds acceptably but loses strength in the heat-affected zone. 2xxx and 7xxx are generally poor.


Not sure which series you need?

Send us your application, environment, fabrication method and strength requirement. We will recommend a series and a grade — and tell you if a cheaper alloy will do the job.

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