Images are for guidance only and might not represent the final product.

AJ62 Magnesium Ingot

Available Configurations

Properties common to all products in this list

Grade: AJ62 Composition: Mg 91/Al 6/Sr 3 Form: Pellet/Lump Material: Magnesium UNS Number: M11620 Commodity: Alloys Maximum Lump Size: 600mm
AJ62 Magnesium Ingot is a high-performance Mg–6Al–2Sr alloy engineered for superior creep resistance and structural stability at elevated temperatures. Its microstructure consists primarily of α-Mg dendrites with intermetallic Al₄Sr and Al₃Mg₁₃Sr phases, providing exceptional strength retention under thermal stress and reducing microstructural degradation during long-term service. The alloy also exhibits fine corrosion resistance when cast under optimized conditions, making it highly suited for aggressive environments. It is widely employed in automotive, aerospace, and powertrain manufacturing, where weight reduction without sacrificing mechanical integrity is crucial. Notable applications include engine block components, transmission cases, and aerospace housings where high-temperature strength and creep resistance are mandatory. Advances in protective coatings, such as plasma electrolytic oxidation, have further enhanced its wear performance in moving assemblies. AJ62 Magnesium Ingot remains a vital material in research and innovation for lightweight, thermally stable structural alloys, offering a balance of mechanical reliability and manufacturability that is invaluable in both scientific and industrial contexts.
Starting at $170.00 each
No Minimum order Free technical support *Free delivery worldwide
each

Choose Your Options

Close

Available Configurations

Properties common to all products in this list

Grade: AJ62 Composition: Mg 91/Al 6/Sr 3 Form: Pellet/Lump Material: Magnesium UNS Number: M11620 Commodity: Alloys Maximum Lump Size: 600mm

We are collecting your products, please wait!...

Shipping restrictions and charges may apply for some hazardous materials.

Tolerances

Pellet/Lump
Maximum Lump Size Nominal