Aluminium 1050 Forgings

Sadiki Metals, located in Kinshasa, Congo, stands out as a top manufacturer and supplier of Aluminium 1050 Forgings. They specialize in crafting high-quality, precision-engineered products tailored for demanding industrial needs. With a reputation for excellence in metallurgy and rigorous quality control, the company guarantees that each forging adheres to international standards. Aluminium 1050, known for being a commercially pure grade, boasts impressive corrosion resistance, excellent formability, and lightweight strength. Sadiki Metals’ 1050 forgings find their place in various sectors, including electrical, automotive, marine, and construction, delivering reliable and durable solutions. The company is dedicated to providing long-lasting, high-performance aluminium components that blend strength, flexibility, and ease of fabrication.

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Aluminium 1050 Rolled Forging

Aluminium 1050 Hot Forging

Aluminium 1050 Cold Forging

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What is Aluminium 1050 Forgings?

Sadiki Metals’ Aluminium 1050 Forgings are made up of at least 99.5% pure aluminium, with small traces of iron, silicon, copper, manganese, and zinc. This specific blend guarantees exceptional corrosion resistance, high ductility, and remarkable formability. The material showcases a tensile strength ranging from approximately 70–110 MPa and a yield strength between 35–55 MPa, along with a good elongation of 20–30%. Its low density of 2.71 g/cm³, paired with high thermal and electrical conductivity, makes it perfect for lightweight components. Aluminium 1050 forgings maintain their shape and mechanical integrity even under moderate stress and elevated temperatures.

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Forgings

Aluminium 1050 Forgings Specifications

Temper : H14

Specification : DIN, ASTM, BS and all International Standards

Flat bar blocks : up to 27″ width and 15,000 lbs.

Cylinders and sleeves : up to 50″ maximum O.D. and 65″ maximum length

Discs and hubs : up to 50″ diameter and 20,000 lbs.

Rolled, hand forged or mandrel forged rings : up to 84″ maximum O.D. and 40″ maximum length

Rounds, shafts and step shafts : up to 144″ maximum length and 20,000 lbs.

Aluminium 1050 Forgings Chemical Compositions

Alloy (ISS) Equivalent alloy (A.A) Copper Magnesium Silicon Iron Managanese Others* (Total) Remarks
Old New U.S.A Min. Max. Min. Max. Min. Max. Min. Max. Max Max. Aluminum 99.0% Min.
1 B 19500 1050 0.05 0.30 0.4 0.05 0.1 Aluminum 99.5% Min.

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Aluminium 1050 Forgings Mechanical Properties

Alloy Temper UTS (Mpa) Yield Strength (Mpa) Elongation (%)
Minimum Maximum Minimum Maximum A 50mm (Minimum)
EN AW-1050 A F 60 20 23
O 60 95 20 23

Aluminium 1050 Equivalent Grades

European Standard BS (OLD) USA (AA) GERMANY (DIN) ISO IS Canadian
EN AW-1050 A 1E 1050 Al99.5 Al99.5 19500, 19501 1 S

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Aluminium 1050 Forgings Types

Aluminium 1050 Impression Die Drop Forging
Aluminium 1050 Upset Forging
Aluminium 1050 l Press Forging
Aluminium 1050 Open Die Hammer Forging
Aluminium 1050 Closed Die Forgings
Aluminium 1050 Compression Forging

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Frequently Asked Questions (FAQ)

Yes, Aluminum 1050 forgings can be shaped into custom designs through processes like open-die and closed-die forging, allowing for precise, unique shapes tailored to specific applications.

The ideal temperature range for forging Aluminium 1050 forgings is between 350°C to 500°C (660°F to 930°F), ensuring optimal material flow and minimizing the risk of cracking or deformation.

The forging process for Aluminium 1050 typically takes between 30 minutes to 2 hours, depending on the complexity and size of the part, along with the required heat treatment and finishing steps.

Aluminium 1050 Forgings Uses

Sadiki Metals’ Aluminium 1050 Forgings are widely utilized in industries that demand corrosion-resistant, lightweight, and durable components. In the electrical field, they are perfect for connectors, busbars, and switchgear components thanks to their excellent conductivity. The automotive and marine sectors rely on them for structural parts, fuel tanks, and lightweight panels. In construction, they serve as decorative elements, roofing components, and cladding. Additionally, they find applications in machinery parts, showcasing their versatility and reliability across various industries.

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