What is the difference between 6061-O and 6061-T6 aluminum sheet?
6061-O aluminum sheet and 6061-T6 aluminum sheet are two common specifications of aluminum sheets in the 6000 sērija 6061. They have better characteristics. What is the difference between 6061-O and 6061-T6 aluminum sheets? The main difference between 6061-O and 6061-T6 aluminum plates is their mechanical properties, especially strength and hardness, which are affected by the tempering process.
6061-O aluminum plate:
Temperaments: O (annealed)
Mechanical behavior:
Stiepes izturība: Typically approximately 124 MPa (18 ksi)
Ražas spēks: Typically approximately 55 MPa (8 ksi)
Pagarinājums: usually around 25%
Cietība: lower
Veidojamība: Excellent formability due to its softness. It can be molded, bent, and molded easily without cracking or weakening.
Typical uses:
Typically used in applications where high strength is not a critical requirement but formability and corrosion resistance are critical.
Ideal for applications requiring deep drawing or forming processes such as automotive parts, cans and kitchenware.
6061-T6 aluminum plate:
Condition: T6 (solution heat treatment and artificial aging)
Mechanical behavior:
Stiepes izturība: Typically approximately 310 MPa (45 ksi)
Ražas spēks: Typically approximately 275 MPa (40 ksi)
Pagarinājums: usually around 12%
Cietība: Harder compared to 6061-O due to precipitation hardening process.
Veidojamība: Although still formable, 6061-T6 is less ductile than 6061-O due to increased strength and hardness. It may require more force to bend or form.
Typical uses:
Structural applications requiring high strength and good corrosion resistance, such as aerospace components, bicycle frames and structural components in construction.
Machined components requiring high strength and excellent machining properties.
Comparison Table:
Īpašums | 6061-O Aluminum Sheet | 6061-T6 Aluminum Sheet |
---|
Stiepes izturība | Typically around 124 MPa (18 ksi) | Typically around 310 MPa (45 ksi) |
Ražas spēks | Typically around 55 MPa (8 ksi) | Typically around 275 MPa (40 ksi) |
Pagarinājums | Typically around 25% | Typically around 12% |
Cietība | Relatively low | Higher |
Veidojamība | Lieliski | Formable, but less malleable |
Typical Uses | Deep drawing, forming processes | Structural applications, machined components |