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Aluminium 5083 is one of the most popular Aluminium alloys due to its high strength and excellent corrosion resistance. The aluminium 5083 tube is a highly sought-after and versatile building material. It is corrosion-resistant, weldable, and extremely durable - making it ideal for constructing infrastructure such as railway lines and ships. On top of that, its nonmagnetic properties make it an invaluable asset in shielding electronics and containing electrical current. Aluminium 5083 tube also has excellent qualities when it comes to sustainability: its light weight makes it easy to transport while raising fuel efficiency and reducing carbon emissions. Furthermore, its low cost in production, as well as recycling capabilities, make use of resources both economically efficient and sustainable. It is an alloy of aluminium, magnesium and manganese with a chemical composition consisting of 98% aluminium, 4% magnesium, 0.5% manganese, 0.2% chromium, and less than 0.1 % iron and silicon. This combination gives Aluminium 5083 extraordinary strength when exposed to extreme temperatures, making it ideal for structures requiring lightweight yet strong building materials. Additionally, the high magnesium levels give 5083 Aluminium tubes excellent corrosion resistance, making them durable in even the most corrosive conditions. With all these favourable characteristics, Aluminium 5083 tubes are widely used in various industrial applications such as plumbing fixtures and containers for food processing factories.

FAQ's for Aluminium 5083 Tubing

Aluminum 5083 is a non-heat treatable alloy that is known for its high strength and corrosion resistance properties. Some of the key physical properties of this alloy include:

  • Density: 2.68 g/cm³ (0.0975 lb/in³)
  • Tensile strength: 45000 psi (310 MPa)
  • Yield strength: 35000 psi (241 MPa)
  • Elongation at break: 15%
  • Modulus of elasticity: 69 GPa (10 x 106 psi)
  • Thermal conductivity: 138 W/m-K
  • Coefficient of thermal expansion: 23.2 x 10⁻⁶/K
  • Poisson's ratio: 0.33
  • Hardness (Brinell): 95 HB
  • Hardness (Rockwell B): 60 HRB
  • Hardness (Vickers): 95 HV

The mechanical properties of aluminum 5083 tubing are influenced by both the alloy composition and the temper of the material. Some of the typical mechanical properties of 5083 aluminum tubing in the H-32 temper include:

  • Ultimate Tensile Strength: 45000 psi (310 MPa)
  • Yield Strength: 35000 psi (241 MPa)
  • Elongation at Break: 15%
  • Hardness (Brinell): 95 HB
  • Hardness (Rockwell B): 60 HRB
  • Hardness (Vickers): 95 HV

Yes, aluminum 5083 tubing is highly corrosion resistant. This alloy is known for its exceptional resistance to both seawater and industrial chemical environments, making it an ideal choice for marine and industrial applications.

The corrosion resistance of 5083 aluminum tubing is due to its composition, which includes high levels of manganese, chromium, and zinc. These elements form a protective oxide layer on the surface of the tubing that prevents the ingress of corrosive agents.

The alloy also have a good resistance to stress-corrosion cracking and pitting corrosion. The aluminum-magnesium alloys such as 5083, have the highest resistance among all the aluminum alloys to marine atmosphere and salt water.

The Price Range For Aluminium 5083 tubing Products Is ₹250 To ₹300 Per Kilogram.

European Standard - AW-AlMg4,5Mn0,7

WNr - 3.3547

UNS - A95083

ISO - AlMg4,5Mn0,7

USA - AA5083


Aluminium alloy 5083 and 6061 are both popular options for tubing, but they have a number of key differences. Aluminium alloy 5083 is more expensive and tougher than 6061, offering better corrosion resistance in marine environments. It can also be used at temperatures much lower than 6061 without losing strength, making it suitable for cryogenic applications. On the other hand, aluminium alloy 6061 is easier to weld and offers better surface finish than 5083. It also has higher ductility and formability, making it ideal for bending, shaping and forming operations.

The density of aluminium alloy 5083 tubing is 2.66 g/cm³. This makes it one of the most dense types of aluminium available, and it is approximately twice as dense as other common alloys such as 6061. Aluminium alloy 5083 is also stronger than other alloys at a given weight, making it an ideal choice for lightweight yet strong parts such as aerospace components and structural elements.

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