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  1. 27 Ιουλ 2023 · Construction Industry: Forged aluminum is used in the construction industry for architectural structures, bridges, and building components, benefiting from its high strength and corrosion resistance. Electrical Industry: Forged aluminum is utilized in electrical conductors, connectors, and heat sinks, where lightweight materials with excellent ...

  2. Aluminium is the second most widely specified metal in buildings after steel, and is used in all construction sectors, from commercial buildings to domestic dwellings. 40% of the UK annual production of aluminium is utilized within the construction industry, which equates to roughly 150,000 tonnes of aluminium per annum, of which approximately ...

  3. 7 Μαρ 2023 · Forged aluminium is an aluminum alloy that combines two or more metals to create a single material with enhanced properties. The two most common types of forged aluminium are 6xxx and 7xxx alloys. The 6xxx series contains magnesium and silicon, while the 7xxx series contains zinc and copper.

  4. This article will explore forged aluminum as a sustainable choice for construction projects, covering its characteristics, properties, sustainability benefits, applications in construction, and case studies.

  5. clintonaluminum.com › aluminum-uses-in-constructionAluminum Uses In Construction

    Aluminum alloys can be welded, cast, forged, extruded, or rolled, meaning that aluminum can be found throughout the building, from its main support structure to the decorative elements and electrical fixtures.

  6. 15 Ιουν 2024 · Aluminum forging is a manufacturing process that involves shaping aluminum using pressure and heat. Forged aluminum has superior strength, durability, and metallurgical properties compared to cast aluminum. When forging aluminum, it is important to choose the right alloy and follow proper forging techniques for successful results.

  7. 25 Απρ 2024 · Aluminium forgings are metal components produced through a process of shaping and compressing aluminium alloys under high pressure and temperature. This method enhances the material’s mechanical properties, making it ideal for applications requiring strength and lightweight characteristics.

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