Chemical composition, mechanical properties and elastic modulus of 1050A materials

theoretical calculation 740 17/06/2023 1052 Sophia

Aluminium Alloy 1050A Aluminium alloy 1050A (Al99.5) is just one of the many types of aluminium alloys available on the market today. Produced in the form of rolled plate, Sheet, Strip and foil, it is often used for applications in industries such as advertising nameplates, decoration, traffic si......

Aluminium Alloy 1050A

Aluminium alloy 1050A (Al99.5) is just one of the many types of aluminium alloys available on the market today. Produced in the form of rolled plate, Sheet, Strip and foil, it is often used for applications in industries such as advertising nameplates, decoration, traffic signs and a variety of consumer goods.

Chemical Composition

Aluminium alloy 1050A contains 99.5% aluminium and is amongst the lowest strength general purpose aluminium alloys. It is commonly comprised of small amounts of nickel and copper, and other trace elements such as manganese and chromium.

Mechanical Properties

Aluminum alloy 1050A is known to have an ultimate tensile strength of 18 Mpa (2600 psi) and a yield strength of 8 Mpa (1160 psi). Its Young’s Modulus measures an approximate 70 GPa, with a modulus of elasticity of 9.7 GPa.

Other mechanical properties of this alloy, such as elongation, fatigue strength and shear strength, can vary, depending on the method of production and the size of the sample being tested.

Elastic Modulus

Aluminium 1050A’s elastic modulus measures an approximate 9.7 GPa. This is an indication of how tough the metal is and how well it will respond to flexing or force. This statistic can be used to help determine what materials are best suited for certain applications.

Conclusion

Aluminium alloy 1050A is a popular choice for the production of many metal goods. Its low strength and typically low cost make it a go-to metal for many industries. Able to withstand a significant amount of strain and flexing, aluminium alloy 1050A can be used in place of more expensive metals in a variety of uses, such as signs and nameplates. Its chemical composition, mechanical properties and elastic modulus are just a few of the factors that make this alloy a popular choice.

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theoretical calculation 740 2023-06-17 1052 SereneSunshine

Chemical composition Aluminum 5052-H32 alloy is composed of 97.5% aluminum, 0.25% chromium and 1.9 - 2.9% magnesium. Phosphorous and silicon are also present. Mechanical Properties The 5052-H32 aluminum alloy is a medium strength alloy with a strength slightly higher than 5251 and a strength sl......

Chemical composition

Aluminum 5052-H32 alloy is composed of 97.5% aluminum, 0.25% chromium and 1.9 - 2.9% magnesium. Phosphorous and silicon are also present.

Mechanical Properties

The 5052-H32 aluminum alloy is a medium strength alloy with a strength slightly higher than 5251 and a strength slightly lower than that of 6061-T6 aluminum alloy. It has excellent corrosion resistance and weldability. The mechanical properties of 5052-H32 aluminum alloy are:

Ultimate Tensile Strength: 33.7ksi (232MPa)

Yield Strength: 27.7ksi (191MPa)

Elongation: 10.7%

Fatigue Strength: 12.8MPa

Young’s Modulus: 10GPa

Shear Modulus: 3.7GPa

Brinell Hardness: 60

Elastic modulus

The elastic modulus or Youngs modulus of 5052-H32 aluminum alloy is 10 GPa. This signifies that the alloy has good elasticity, which is why it is commonly used in a wide range of structures and components. This number is much higher than other materials, like steel for instance, where the elastic modulus is around 200 GPa. In the case of 5052-H32, the modulus of elasticity is significantly lower, thus allowing for a greater range of applications.

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