For an extrusion buyer the choice between 6063 vs 6061 vs 6005A aluminium is the single decision that sets your surface quality, your strength ceiling and the quench capacity your line must have. All three are 6xxx-series alloys built around magnesium and silicon, but their balance of extrudability and strength is very different. This guide gives you the chemistry, the T5/T6 numbers and the practical selection logic we use when sizing equipment for customers.
The 6xxx family precipitates its strength from magnesium silicide (Mg2Si). More magnesium and silicon, plus small copper and chromium additions, raise strength but also raise the squeeze pressure needed at the press and the speed of quench required afterwards.
6063 — low Mg/Si (~0.7% Mg, ~0.4% Si): easy to extrude, excellent finish.
6061 — higher Mg/Si plus ~0.15–0.4% Cu and 0.04–0.35% Cr: strong but harder to push.
6005A — mid-range Mg/Si with a little Mn: a strength/extrudability compromise.
Extrudability describes how fast and thin you can push a section at a given press force. 6063 flows readily and gives the thinnest, most complex architectural profiles. 6061 needs more pressure and runs slower, which lowers die life and throughput. 6005A sits between them — often the pragmatic answer when 6063 is not strong enough but 6061 is too difficult to run in volume.
The values below are typical ranges for extruded sections; thin walls and slow cooling can shift them. They show why the alloy choice is rarely about cost alone.
| Alloy & temper | Tensile strength | Yield strength | Elongation |
|---|---|---|---|
| 6063-T5 | ~185 MPa | ~145 MPa | ~8% |
| 6063-T6 | ~240 MPa | ~215 MPa | ~10% |
| 6005A-T6 | ~270–300 MPa | ~230–250 MPa | ~8% |
| 6061-T6 | ~310 MPa | ~276 MPa | ~12% |
6063 earns its popularity in doors, windows and curtain wall largely because it anodises to a clean, even tone. Its lower alloy content means fewer intermetallic particles to disrupt the oxide layer. 6061 and 6005A anodise acceptably but tend to show more brightness variation, so they are often specified for painted or structural roles where the raw tone matters less.
Both 6061 and 6005A are quench-sensitive: their soluble phases must be frozen in by rapid cooling straight from the press. A weak or delayed quench drops strength and can hurt corrosion resistance. That is why a capable cooling bed and a properly sized water or mist quench are not optional when you run these alloys in volume.
6063 — window and door frames, curtain wall, decorative trim, heat sinks.
6005A — rail transit structures, solar frame reinforcing, medium-strength framing.
6061 — NEV battery trays and structural members, bridges, ladder sections, machined parts.
All three draw from the same billet supply chain, so price differences are modest and shift with alloying additions and mill minimums rather than scarcity. 6063 billet is the most widely available and cheapest to buy in small lots; 6061 and 6005A cost a little more and may carry longer lead times at smaller diameters. Choose on property needs first, then confirm billet supply for your wall thicknesses.
| If your priority is… | Choose | Why |
|---|---|---|
| Best anodised surface, thin walls | 6063 | Easiest flow, finest finish, low press load |
| Mid strength, good output | 6005A | ~270–300 MPa with better extrudability than 6061 |
| Maximum structural strength | 6061 | ~310 MPa tensile, but needs fast quench and more force |
| Weldable transport structure | 6005A or 6061 | Higher strength after welding than 6063 |
When you plan a line around 6061 or 6005A, size the haul-off machine and downstream handling for the faster quench and heavier sections. Our process walkthrough and the defects guide explain how equipment choices protect these properties on the floor. For NEV and rail work see our NEV equipment notes.
6063 is the easier-extruding, better-surface alloy used for architectural sections, while 6061 carries roughly 30% more strength and is used for structural and transport parts. 6061 also needs a faster quench to reach full T6 properties.
Yes. 6005A-T6 typically reaches a tensile strength of about 270–300 MPa, sitting between 6063-T6 at roughly 240 MPa and 6061-T6 at about 310 MPa. It is a common choice where 6063 is too weak but 6061 is harder to extrude.
Both alloys are more quench-sensitive: their soluble phases must be locked in by rapid cooling straight from the press. A weak or delayed quench lowers strength and corrosion resistance, so the line needs a capable water or mist quench and tight temperature control.
6063 generally gives the most consistent, attractive anodised finish because of its lower alloy content and finer structure. 6061 and 6005A anodise well but show more variation in tone and brightness, so they suit painted or less visible structural work.
It does. Higher-strength 6061 and 6005A demand faster, more uniform quenching and good cooling-bed handling, so your quench system, cooling bed and haul-off machine must be matched to the alloy mix you plan to run.
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