LAMEC Officine regularly works with five aluminium alloys for sheet metal and tube: EN AW-5754 (H111, H114, H22), EN AW-5083 (H111), EN AW-6082 (T6) and EN AW-6060 (T5, T6).
Below is a technical comparison of mechanical properties, formability and corrosion resistance, useful for selecting the most suitable alloy for your project. The company is based in Sogliano al Rubicone (FC), Italy. For laser cutting and CNC bending, see the Services page.
For information on laser cutting, CNC bending capacity and in-stock materials for these alloys, see the Laser Cutting and Aluminium Bending page.
Technical documentComparison of the main mechanical and processing properties of the aluminium alloys used by LAMEC Officine, broken down by sheet metal products and by tube/profiles. Figures are indicative, drawn from standard and technical reference data; for design applications, refer to the current editions of the cited standards.
Indicative mechanical properties per EN 485-2, with formability, weldability and corrosion resistance for the alloys most commonly used in sheet metal fabrication.
| Property | EN AW-5754 H111 | EN AW-5754 H22 | EN AW-5083 H111 | EN AW-6082 T6 |
|---|---|---|---|---|
| Rm (MPa) | 190–240 | 220–260 | 270–310 | 290–330 |
| Rp0.2 (MPa) | 80–100 | 160–180 | 125–200 | 250–280 |
| Elongation (%) | 14–18 | 10–12 | 14–16 | 8–10 |
| Hardness HB | ~60 | ~65 | ~75 | ~95 |
| Formability | Excellent | Good | Very good | Medium–low |
| Weldability | Excellent | Good | Excellent | *Good |
| Corrosion resistance | Very good | Very good | Excellent | Good |
*EN AW-6082 T6: reduced mechanical properties in the heat-affected zone (HAZ) after welding.
Technical notes — sheet metal
Indicative mechanical properties per EN 755-2 for the alloys most commonly used in tube and extruded profile fabrication.
| Property | EN AW-5754 H32 | EN AW-6060 T6 | EN AW-6060 T5 |
|---|---|---|---|
| Rm (MPa) | 220–270 | 170–210 | 160–190 |
| Rp0.2 (MPa) | 120–140 | 140–150 | 110–130 |
| Elongation (%) | 8–11 | 6–8 | 8–10 |
| Hardness HB | ~63 | ~55 | ~50 |
| Formability | Very good | Medium–low | Good |
Technical notes — tube and formability
| Standard | Subject | Scope |
|---|---|---|
| EN 573-1 | Numerical designation system for aluminium alloys (EN AW-XXXX) | Classification |
| EN 573-3 | Chemical composition and form of products | Composition |
| EN 515 | Designation of temper conditions (H, T, O, F) | Classification |
| EN 485-2 | Sheet, strip and plate: mechanical properties | Mechanical properties (sheet) |
| EN 755-2 | Extruded bar, tube and profiles: mechanical properties | Mechanical properties (tube) |
| EN 1999-1-1 (EC9) | Design of aluminium structures | Structural design |
The EN standards cited are adopted in Italy as national UNI EN standards.
Alloys covered in this comparison: EN AW-5754 H111 · EN AW-5754 H22 · EN AW-5083 H111 · EN AW-6082 T6 · EN AW-6060 T5. Alloys are designated per EN 573-1 (numerical designation) and temper conditions per EN 515. Chemical composition limits are those of EN 573-3. Product mechanical properties are defined by EN 485-2 (sheet, strip and plate) and EN 755-2 (extruded bar, tube and profiles). The behaviour of welded structures should be assessed per EN 1999-1-1 (Eurocode 9).
| Standard | Subject | Scope |
|---|---|---|
| EN 573-1 | Numerical designation system for aluminium alloys (EN AW-XXXX) | Classification |
| EN 573-3 | Chemical composition and form of products | Composition |
| EN 515 | Designation of temper conditions (H, T, O, F) | Classification |
| EN 485-2 | Sheet, strip and plate: mechanical properties | Mechanical properties |
| EN 755-2 | Extruded bar, tube and profiles: mechanical properties | Mechanical properties |
| ISO 9227 | Salt spray corrosion testing | Corrosion testing |
| EN 1999-1-1 (EC9) | Design of aluminium structures | Structural design |
| EN ISO 12944 | Corrosion protection by coating systems (classes C3–C5) | Surface protection |
| EN ISO 3834-2 | Quality requirements for fusion welding | Welding |
| EN ISO 15614-2 | Qualification of welding procedures for aluminium | Welding |
| EN ISO 9606-2 | Qualification of welders for aluminium and its alloys | Welding |
Concise classification of the five alloys by general corrosion, post-weld behaviour, and suitability for marine or aggressive environments.
| Alloy / temper | Series | General corrosion | After welding | Marine environment | Rating |
|---|---|---|---|---|---|
| EN AW-5754 H111 | 5xxx (Al-Mg) | Excellent | Excellent | Very good | Excellent |
| EN AW-5754 H22 | 5xxx (Al-Mg) | Excellent | Excellent | Very good | Excellent |
| EN AW-5083 H111 | 5xxx (Al-Mg) | Excellent | Excellent | Very good | Excellent |
| EN AW-6082 T6 | 6xxx (Al-Mg-Si) | Good | Reduced in heat-affected zone (HAZ) | Fair: not recommended without surface protection | Good |
| EN AW-6060 T5 | 6xxx (Al-Mg-Si) | Very good | Good | Good, with surface protection in aggressive environments | Good / very good |
Higher-magnesium alloys (5083 and, at the upper end of the range, 5754) should not be exposed for prolonged periods to temperatures above approximately 65 °C, due to the risk of sensitisation and stress corrosion cracking (SCC).
| Alloy / temper | HAZ corrosion (welding) | Stress corrosion cracking (SCC) | Intergranular corrosion |
|---|---|---|---|
| EN AW-5754 H111 | Corrosion resistance unchanged after welding | Low tendency | Very low |
| EN AW-5754 H22 | Corrosion resistance unchanged; mechanical strength in HAZ reduced (strain-hardened temper) | Low tendency | Very low |
| EN AW-5083 H111 | Corrosion resistance unchanged after welding | Moderate: sensitive to prolonged exposure above 65 °C | Low below 65 °C |
| EN AW-6082 T6 | Both mechanical strength and corrosion resistance reduced in HAZ | Low | Moderate in post-weld HAZ |
| EN AW-6060 T5 | Less critical than 6082 (lower Mg and Si content) | Very low | Low |
Values per EN 573-3. The low copper content (Cu ≤ 0.10%) across all these alloys reduces the risk of internal galvanic corrosion. In the 5xxx alloys, magnesium determines mechanical strength and, at higher levels, temperature sensitivity. Temper conditions do not alter the composition limits.
| Alloy | Mg | Mn | Si | Fe | Cu | Cr |
|---|---|---|---|---|---|---|
| EN AW-5754 | 2.6–3.6 | ≤ 0.50 | ≤ 0.40 | ≤ 0.40 | ≤ 0.10 | ≤ 0.30 |
| EN AW-5083 | 4.0–4.9 | 0.40–1.00 | ≤ 0.40 | ≤ 0.40 | ≤ 0.10 | 0.05–0.25 |
| EN AW-6082 | 0.60–1.20 | 0.40–1.00 | 0.70–1.30 | ≤ 0.50 | ≤ 0.10 | ≤ 0.25 |
| EN AW-6060 | 0.35–0.60 | ≤ 0.10 | 0.30–0.60 | 0.10–0.30 | ≤ 0.10 | ≤ 0.05 |
| Alloy / temper | Technical notes |
|---|---|
| EN AW-5754 H111 | Reference alloy for outdoor applications, aerial work platforms and baskets. Not heat-treatable: maximum corrosion resistance. |
| EN AW-5754 H22 | Same composition as H111; strain-hardened and partially annealed temper, slightly higher mechanical strength. Same corrosion resistance; mechanical strength in HAZ is reduced. |
| EN AW-5083 H111 | Highest mechanical strength among the 5xxx alloys, suited to marine and offshore environments. Avoid prolonged exposure above 65 °C (risk of SCC/sensitisation). |
| EN AW-6082 T6 | High mechanical strength among the 6xxx alloys. Welding reduces both mechanical strength and corrosion resistance in the HAZ. Requires anodising or painting in aggressive environments. |
| EN AW-6060 T5 | Typical extruded profile for frames and structures. Lower Mg and Si content than 6082, correspondingly lower mechanical strength. |
Outdoor applications, aerial work platforms, marine or humid environments.
The 5xxx alloys (EN AW-5754 and EN AW-5083) offer the best corrosion resistance, and welding does not compromise their anti-corrosion performance. EN AW-5754 (H111 or H22) is LAMEC Officine's standard choice; EN AW-5083 H111 is selected when higher mechanical strength is required, subject to the temperature limit.
High-strength structures, controlled environments.
EN AW-6082 T6 offers the best mechanical properties among the alloys considered, but requires surface protection (anodising or painting per EN ISO 12944) in aggressive environments. EN AW-6060 T5 has lower mechanical strength but better corrosion behaviour than 6082. For the 6xxx alloys, the HAZ reduction factors set out in EN 1999-1-1 should be applied at the design stage.
Welding quality.
LAMEC Officine performs welding per EN ISO 3834-2, with procedures qualified per EN ISO 15614-2 and welders qualified per EN ISO 9606-2.
The data in this page are indicative and reference the standards cited; for design applications, refer to the current editions of the standards and to the assessment of the responsible design engineer.
Please contact us for information and bespoke solutions for your project