Products Parameters
|
Element |
Chemical Composition (%) |
|
Magnesium (Mg) |
99.90% |
|
Iron (Fe) |
0.01% |
|
Silicon (Si) |
0.01% |
|
Copper (Cu) |
0.00% |
|
Nickel (Ni) |
0.00% |
|
Aluminum (Al) |
0.01% |
|
Zinc (Zn) |
0.00% |
|
Manganese (Mn) |
0.03% |
|
Calcium (Ca) |
0.04% |
Size: 80 mm x 130 mm x 495 mm, Can be customized upon request
Purity: 99.99%
Packaging Details: magnesium pallet wrapped (plastic film) and fastened with steel strips or on wooden pallets.
Delivery Time: Within 10-20 days after receipt of prepayment.
Remark: Package and particle size can accept custom

Products Description
Magnesium ingot is a new type of lightweight and corrosion-resistant metal material developed in the 20th century.
Magnesium ingot has good damping and cutting performance, low specific gravity, good strength per unit weight, and stable chemical properties.

Magnesium ingots are the main raw material for the production of magnesium alloys. Magnesium alloys have the advantages of high strength, good damping and cutting performance, low specific gravity, high strength per unit weight, and high chemical stability, making them widely used in aerospace, automobile, electronics and other fields. Magnesium ingots are also used in the production of aluminum alloys. By adding magnesium, the strength and corrosion resistance of aluminum alloys can be improved to meet the needs of different industries. In the steelmaking process, magnesium ingots are often used as desulfurizers, which can effectively remove sulfur from molten steel and improve the quality and performance of steel. Magnesium desulfurization has the advantages of fast reaction speed and high desulfurization efficiency, and is an indispensable and important raw material in the steelmaking process.

Magnesium ingots also have important applications in the aviation and military fields. Due to their light weight, high strength, and corrosion resistance, magnesium ingots are used to manufacture parts for aircraft, missiles, and other aerospace vehicles, as well as lightweight parts in military equipment, which helps to improve the performance of aerospace vehicles and military equipment. In addition to the above main uses, magnesium ingots are also widely used in many fields such as automobile manufacturing, light industry, metallurgical industry, chemical industry, electronics industry, and instrument manufacturing industry. For example, in the automobile manufacturing industry, magnesium alloys are used to manufacture engines, steering wheels, seat bases and other parts to achieve lightweight automobiles; in light industry, magnesium ingots are used to manufacture various magnesium products, such as magnesium handicrafts, magnesium building materials, etc.; in the metallurgical industry, magnesium ingots are also used to produce other magnesium alloys and magnesium compounds. In summary, magnesium ingots, as an important lightweight and corrosion-resistant metal material, play an important role in alloy production, steelmaking desulfurization, aviation and military industry, and many other fields.

The manufacturing of magnesium ingots usually involves the following steps: calcined dolomite is used as raw material, ferrosilicon is used as reducing agent, and fluorite is used as catalyst for metering. After grinding, it is pressed into balls, which are called pellets. The pellets are placed in a reduction tank, heated to a high temperature (such as 1200°C), and the inside is evacuated to a certain pressure (such as 13.3Pa or higher) to generate magnesium vapor. The magnesium vapor forms crystalline magnesium, also known as crude magnesium, in the condenser at the front end of the reduction tank. After flux refining, commercial magnesium ingots, namely refined magnesium, are produced.
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