Aluminum Magnesium Alloy Wire

5000 series aluminum magnesium alloy wire is the preferred material for automotive air filter screens and aluminium alloy insect screens, and is also widely used in industries such as cables and bundling. 

Due to its strong corrosion resistance among aluminum magnesium alloy series, it has an extremely strong resistance to seawater, salt spray and humid industrial atmospheres, earning the nickname "rust-proof aluminum." 

Additionally, it offers superior lightweight advantages compared to other metallic materials.

Production Capacity

Jiushen is equipped with 20 sets fine-drawing CNC production lines, 2 sets medium-drawing CNC production lines, 1 set of heat treatment industrial furnace, and 30 heads of wire conductor spindle. Wire drawing fluid centrifugal filtration equipment and industrial cooling facility were also equipped to ensure the equipment operates normally and keeps the aluminium wire material clean and uncontaminated.


The aluminium wire can be produced in both cold-drawn and heat-treated forms, with an annual production capacity of up to 1,000 tons.


Product Technical Parameters

Aluminum Wire Grade : 5154, 5056, 5052 etc.

Aluminum Wire Standard: ASTM B211M-19. 

Aluminum Wire Diameter: φ 0.125 ~ 3.0mm; Tolerance ± 0.02 mm.

Tensile Strength: 170~350 MPa  ( varying with different heat treatment forms ).

Elongation: 1 ~1 5%  ( varying with different heat treatment forms ).

Packaging: Size of the spool core can be customized according to application scenarios. 

What is Aluminum Magnesium Alloy Wire?

Aluminum Magnesium Alloy Wire is an alloy wire material formed by adding a certain proportion of magnesium (Mg) element to aluminum as the matrix, usually with a magnesium content between about 0.5% and 6%. By alloying and processing, it improves the strength and corrosion resistance of aluminum while maintaining its lightweight properties.

This material has the characteristics of light weight, high specific strength, strong resistance to oxidation and corrosion in marine environments, and good processing and welding performance. Compared with pure aluminum, its mechanical strength is significantly improved, but its conductivity will slightly decrease, but it can still meet most power and communication transmission needs.

Aluminum magnesium alloy wire is widely used in power overhead transmission lines, communication cable shielding layers, ship and ocean engineering, building structure reinforcement, and automotive lightweight components. It is an engineering material that balances strength, corrosion resistance, and economy.

What is The Advantage Of Aluminum Magnesium Alloy Wire?

Aluminum Magnesium Alloy Wire (Al-Mg alloy wire) offers a combination of properties that make it highly valuable in electrical, structural, and industrial applications. One of its main advantages is its excellent strength-to-weight ratio. By adding magnesium to aluminum, the material becomes significantly stronger while still remaining very lightweight. This makes it ideal for applications where reducing weight is important, such as overhead power transmission lines and transportation systems.

Another key advantage is its good corrosion resistance. Aluminum naturally forms a protective oxide layer, and the addition of magnesium further improves resistance to harsh environments, including humidity, saltwater, and industrial pollution. This makes the wire particularly suitable for coastal areas and marine engineering projects.

The alloy also maintains relatively good electrical conductivity. Although it is slightly lower than pure aluminum or copper, it is still sufficient for many power distribution and communication uses. When combined with its lower cost compared to copper, it becomes a cost-effective alternative in large-scale electrical infrastructure.

In addition, Aluminum Magnesium Alloy Wire has excellent mechanical properties, including high tensile strength and good fatigue resistance. It can withstand mechanical stress, wind load, and long-term vibration without easily breaking or deforming. It also performs well in processing, as it can be drawn into fine wires and easily fabricated into different shapes.


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