6063 T6 T651 T5 Aluminum Sheet
Products Description Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistant format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see...
Description
Products Description
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Mechanical Properties |
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| Hardness, Brinell | 25 | 25 | AA; Typical; 500 g load; 10 mm ball |
| Ultimate Tensile Strength | 89.6 MPa | 13000 psi | AA; Typical |
| Tensile Yield Strength | 48.3 MPa | 7000 psi | AA; Typical |
| Modulus of Elasticity | 68.9 GPa | 10000 ksi | AA; Typical; Average of tension and compression. Compression modulus is about 2% greater than tensile modulus. |
| Poisson's Ratio | 0.33 | 0.33 | |
| Fatigue Strength | 55.2 MPa | 8000 psi | AA; 500,000,000 cycles completely reversed stress; RR Moore machine/specimen |
| Machinability | 30 % | 30 % | 0-100 Scale of Aluminum Alloys |
| Shear Modulus | 25.8 GPa | 3740 ksi | |
| Shear Strength | 68.9 MPa | 10000 psi | AA; Typical |
Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistant format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's disclaimer and terms of use regarding this information. MatWeb data and tools provided by MatWeb, LLC.
Beginning with the T6 temper, it undergoes a meticulously controlled solution heat treatment followed by artificial aging. This process bestows upon the aluminum sheet remarkable strength and hardness. In applications such as automotive body panels, it provides the necessary robustness to withstand minor impacts and vibrations during daily commutes, all while maintaining a sleek and dent-resistant surface. The T6 aluminum sheet is also favored in the fabrication of high-precision machinery parts, where its stability and load-bearing capabilities ensure the equipment operates smoothly and reliably.

The T651 temper builds on the strengths of T6, with an added benefit of stress relief. After extrusion or other forming operations, the T651 aluminum sheet has its internal stresses mitigated, which is crucial for applications demanding dimensional accuracy. In the aerospace industry, when crafting components like wing ribs or fuselage frames, any deviation in size could spell disaster. T651 sheets offer the precision engineers need, allowing for seamless assembly and optimal structural integrity, reducing the risk of premature failures due to stress-induced deformations.
Turning to the T5 temper, it features a unique combination of natural aging and controlled cooling after extrusion. This results in an aluminum sheet with excellent extrudability and formability. Architects and designers adore the T5 aluminum sheet for its ability to be effortlessly molded into intricate shapes for building facades, curtain walls, and decorative trims. It enables the realization of avant-garde architectural concepts, adding a touch of elegance and modernity to skylines around the world.
All these temper variants share some common advantages of the 6063 aluminum alloy base. They exhibit good corrosion resistance, safeguarding the sheets from rust and degradation, even when exposed to humid or mildly corrosive environments like coastal areas or industrial zones. Additionally, the alloy sheets have decent thermal conductivity, making them suitable for heat dissipation applications, such as heat sinks in electronics or heat exchangers in HVAC systems.
From a manufacturing perspective, these aluminum sheets are machinist-friendly. They can be cut, drilled, and milled with relative ease, minimizing tool wear and production time. Their recyclability further cements their position as an environmentally friendly choice, allowing used sheets to be reprocessed into new, high-quality materials, reducing the ecological footprint associated with aluminum production.
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