Magnesium Alloy Supplier

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Magnesium alloys, a testament to innovation and lightweight durability, are a specialty at Steelco Metal. As an industry leader, we provide magnesium alloys that are renowned for their exceptional strength-to-weight ratio and versatility. These alloys are sought after in a range of sectors, from aerospace and automotive engineering to sporting equipment, where weight savings and structural integrity are paramount.

Our magnesium alloys are distinguished by their low density, making them the ideal choice for applications where reducing weight without compromising performance is crucial. Whether in aircraft components, precision tools, or medical devices, Steelco Metal’s magnesium alloys contribute to enhanced fuel efficiency, maneuverability, and overall performance.

At Steelco Metal, we ensure that our magnesium alloys meet the highest industry standards for quality and performance. These alloys can be tailored to various forms and specifications, accommodating the diverse needs of our clients. When you choose our magnesium alloys, you’re selecting materials that epitomize innovation, strength, and versatility, ensuring your projects and products achieve their full potential.

Types of Magnesium Alloy

AZ31B

AZ31B is a widely used magnesium alloy known for its balanced combination of strength and corrosion resistance. Comprising 3% aluminum and 1% zinc, it is favored for sheet and plate applications in industries such as automotive, where lightweight structures and excellent formability are essential.

AZ91D

AZ91D, composed of 9% aluminum and 1% zinc, is a castable magnesium alloy highly regarded for its strength and castability. It is a preferred choice for die-casting processes, often employed in the production of automotive parts, such as transmission cases and engine blocks.

AM60B

AM60B is a magnesium alloy containing 6% aluminum and 0.45% manganese. This alloy strikes a balance between strength, castability, and corrosion resistance. It is commonly used in both automotive and aerospace applications, contributing to the production of various components.

AZ61A

AZ61A, featuring 6% aluminum and 1% zinc, along with small amounts of manganese and other elements, offers good strength and corrosion resistance. It is often chosen for extruded profiles and forgings, making it a valuable choice in industries like bicycle manufacturing and aircraft components.

WE43

WE43 is a specialized magnesium alloy incorporating 4% yttrium and 3% rare earth elements. Renowned for its exceptional creep resistance at elevated temperatures, it is a crucial material in applications within the aerospace and defense sectors, where high-temperature stability is paramount.

ZK60A

ZK60A is a high-strength magnesium alloy comprising 6% zinc and 0.6% zirconium. This alloy stands out for its excellent tensile strength and is frequently utilized in applications that demand robust structural performance, including the production of sporting equipment and aircraft components.

Key features of Magnesium Alloy

Low Density

Magnesium alloys are known for their exceptionally low density, making them one of the lightest structural materials available. This property is a game-changer in industries like aerospace and automotive, where weight reduction is crucial for improving fuel efficiency and performance.

High Strength-to-Weight Ratio

Despite their low density, magnesium alloys offer impressive strength. This high strength-to-weight ratio is valuable in applications where both durability and reduced weight are desired, such as in aircraft components and sporting equipment.

Excellent Castability

Many magnesium alloys, like AZ91D, exhibit excellent castability, allowing for intricate and complex shapes to be formed through die-casting processes. This feature is crucial in producing parts with intricate designs in various industries.

Good Corrosion Resistance

Certain magnesium alloys, like AZ31B, provide good corrosion resistance, ensuring longevity and reliability, especially in applications where exposure to moisture and environmental elements is common. This makes them suitable for components that require durability in various conditions.

Electromagnetic Shielding

Magnesium alloys offer effective electromagnetic shielding, making them suitable for applications where electrical interference needs to be minimized or contained, such as in electronic devices and communication equipment.

Recyclability

Magnesium alloys are highly recyclable, contributing to sustainability efforts in various industries. Recycling magnesium consumes significantly less energy compared to primary production, making it an environmentally friendly choice.

High Heat Dissipation

These alloys have excellent thermal conductivity, aiding in efficient heat dissipation. This property is advantageous in applications like heat sinks and thermal management systems in electronics and LED lighting.

Non-Magnetic

Some magnesium alloys, such as ZK60A, are non-magnetic, making them suitable for applications where magnetic interference is a concern, such as in medical equipment and magnetic resonance imaging (MRI) devices.

Biocompatibility

Magnesium alloys exhibit biocompatibility and are non-toxic to the human body. This feature makes them suitable for medical implants and devices, including orthopedic implants and stents.

Customization

Manufacturers can customize magnesium alloys to meet specific application requirements, producing components in various forms and shapes tailored to the unique needs of different industries. This flexibility ensures the alloys are versatile and adaptable.

Specification of Magnesium alloy

Property Value/Range
Composition
Primarily Magnesium (Mg), often with alloying elements such as Aluminum (Al), Zinc (Zn), Manganese (Mn), and others
Density
1.74 - 1.85 g/cm³
Melting Point
650°C - 700°C (1202°F - 1292°F)
Tensile Strength
170 - 350 MPa (24,655 - 50,763 psi)
Yield Strength
70 - 270 MPa (10,152 - 39,165 psi)
Modulus of Elasticity
45 - 45 GPa (6,527,798 - 6,527,798 psi)
Poisson's Ratio
0.35
Thermal Conductivity
156 - 205 W/m·K
Electrical Conductivity
34 - 45% IACS
Corrosion Resistance
Low to moderate; often requires surface treatment or coatings for improved corrosion resistance
Machinability
Good
Weldability
Generally good, but welding may require protective atmospheres
Applications
Automotive parts, aerospace components, electronics, and medical devices
CUTTING

Industrial Applications of Magnesium Alloy

Magnesium Alloy finds application in various industries, including:

Countries We Supply Magnesium Alloy  To

Steelco Metal & Alloys supply and distribute Magnesium Alloy to countries like:

US United States

Europe Europe

Middle East Middle East

Africa Africa

and more…

 

Competitive Advantage of Steelco Metal & Alloys

Company Services
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An integrated approach to providing engineering services allows our clients to benefit from the commercial and logistical advantages.

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We’ll work with you on your project, large or small. Together we’ll fine-tune your new construction, remodeling or renovation plans.

FAQ

Magnesium alloys are materials made by combining magnesium with other alloying elements, such as aluminum, zinc, and rare earth metals. These alloys are known for their lightweight properties and are used in various industries, including aerospace and automotive.
Magnesium alloys are primarily composed of magnesium, with other elements added to improve specific properties. Common alloying elements include aluminum, zinc, manganese, and rare earth elements, depending on the desired alloy characteristics.
Choosing the appropriate magnesium alloy depends on the specific performance requirements of your application. Factors to consider include strength, corrosion resistance, and weight reduction goals. Referring to material specifications and consulting with experts can help determine the best choice.
Yes, manufacturers can customize magnesium alloys to suit specific applications. They can tailor the alloy composition to meet precise requirements, ensuring that the alloy’s properties align with the needs of the project. Customization allows for the creation of components in various forms and shapes to fit unique application demands.

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