Characteristics Atomised powder FeSi15 is produced by atomisation of liquid alloy with air into the water. The resulting powder has a regular spherical shape, providing optimum corrosion resistance and durability.
Atomized FeSi15% powder is a finely divided metallic alloy composed primarily of iron and silicon, with the silicon content typically ranging between 14.5% and 15.5%. This material is produced through an atomization process that involves melting the...
1. Why choose 72 silicon iron powder?
1. High-efficiency deoxidation, improving steel quality
During the steelmaking process, excessive oxygen content can lead to increased brittleness of the steel. 72 silicon iron powder can quickly combine with...
Description of Atomized Ferrosilicon 15% Atomized ferrosilicon powder is a fesi powder containing a small amount of silicon elements.It is smelted by electric furnace and then...
Atomized ferrosilicon (FeSi) is Atomized ferrosilicon (FeSi) is a powder produced by rapidly cooling molten FeSi alloy into fine particles using a gas or liquid atomization process. This process results in particles with a high surface area and...
MILLED FERROSILICON POWDER Milled FeSi 15% constitutes the essential medium in Dense Media Separation (DMS/Sink-Float Systems) deployed within mineral extraction and scrap recovery sectors. This density-mediated segregation process establishes a...
Milled FeSi 15% as Heavy Media for Mining Separation : FerroSilicon 15% is widely used as Heavy Media for the Dense Media Separation process in Mining Separation.
Ferrosilicon 15% has many properties essential to a metal or alloy powder that is to...
Description of Atomized Ferrosilicon 15% Atomized ferrosilicon powder is a fesi powder containing a small amount of silicon elements.It is smelted by electric furnace and then...
Introducing Ferrosilicon45: The Ultimate Solution for Welding and Industrial Applications
Ferrosilicon45, commonly known as fesi45, is a versatile alloy that plays a crucial role in various industries. This product combines silicon and iron in...