Aluminum profile longitudinal mechanical properties at room temperature
| Aluminum alloy no. | Aging/heat treatment | Tensile Strength/MPa | yield strength /MPa | elongation /% |
|---|---|---|---|---|
| 1060 | 0 | 60~95 | 15 | 22 |
| 1060 | H112 | 60 | 15 | 22 |
| 1100 | 0 | 75~105 | 20 | 22 |
| 1100 | H112 | 75 | 20 | 22 |
| 2A11 | T4 | 335~365 | 190~210 | 10~12 |
| 2A11 | 0 | ≤245 | 190~210 | 12 |
| 2A12 | T4 | 390~440 | 315 | 10 |
| 2A12 | 0 | ≤245 | 一 | 12 |
| 3003 | 0 | 95~130 | 35 | 22 |
| 3003 | H112 | 90 | 30 | 22 |
| 2017 | 0 | ≤225 | ≤145 | 13 |
| 2017 | T4 | 390 | 245 | 15 |
| 2024 | 0 | 240 | 130 | 12 |
| 3A21 | 0,H112 | ≤185 | 一 | 16 |
| 5A02 | 0,H112 | ≤245 | 一 | 12 |
| 5A03 | 0,H112 | 180 | 80 | 12 |
| 5A05 | 0,H112 | 255 | 130 | 15 |
| 5A06 | 0,H112 | 315 | 160 | 15 |
| 5052 | 0 | 170~240 | 70 | 14 |
| 6A02 | T4 | 180 | 一 | 12 |
| 6A02 | T6 | 295 | 230 | 10 |
| 6061 | T4 | 180 | 110 | 16 |
| 6061 | T6 | 265 | 245 | 9 |
| 6005 | T5 | 260 | 240 | 10 |
| 6060 | T5 | 150 | 110 | 8 |
| 6063 | T4 | 130 | 65 | 12 |
| 6063 | T5 | 160 | 110 | 8 |
| 6063 | T6 | 205 | 180 | 8 |
| 6063A | T4 | 150 | 90 | 10 |
| 6063A | T5 | 200 | 160 | 5 |
| 6063A | T6 | 230 | 190 | 5 |
| 6082 | T4 | 205 | 110 | 14 |
| 6082 | T6 | 310 | 260 | 10 |
| 2A14 | T6 | 440 | 360 | 10 |
| 2A16 | T6 | 380 | 280 | 9 |
| 2A17 | T6 | 410 | 330 | 一 |
| 2A80 | T4 | 380 | 310 | 一 |
| 7A04 | T6 | 530 | 440 | 6 |
| 7A04 | 0 | ≤245 | 一 | 10 |
| 7075 | T6 | 560 | 495 | 6 |
| 7075 | 0 | ≤275 | ≤165 | 10 |
| 2A01 | T4 | 260 | 150 | 20 |
| 2A06 | T4 | 410 | 260 | 16 |
| 7A09 | T6 | 495 | 450 | 9 |
| 7A09 | 0 | 220 | 95 | 16 |
| 2A05 | T6 | 400 | 280 | 10 |
O-Temper (Fully Annealed State): This is the base temper for aluminum alloys, characterized by maximum ductility and minimum strength. The O-temper process involves heating cold-processed aluminum above its recrystallization temperature, holding it there for a sufficient period, and then cooling it slowly. This allows the distorted crystal lattice—caused by process hardening—to fully recover and eliminates residual stresses, resulting in a uniform, stress-free, equiaxed grain structure.
H112: is a temper designation for aluminum alloys. It refers to material that, after being formed via hot processing (such as extrusion or rolling), acquires a degree of strain hardening through natural aging. It requires no additional specialized cold work hardening or heat treatment for strengthening.
T4 Temper: first solid solution heat treatment, then complete natural cooling and natural aging at room temperature to reach a stable state; no additional artificial aging.
T5 Temper: After being formed at high temperatures in the extrusion press, the aluminum profile is rapidly cooled via air quenching without undergoing solid solution treatment; then it go under artificial aging at lower temperatures for strengthening. This is the mainstream of mass-production temper for 6063 profiles.
T6 Temper: The aluminum is first heated to 520–540℃ to achieve complete solid solution treatment, followed by rapid water quenching to lock in the supersaturated solid solution; it then undergoes high-temperature artificial aging to allow the Mg2Si strengthening phase to precipitate fully, thereby maximizing strength.
