

Spherical Fe-based Powder FeCrMnMoWBCSi provides advantages in terms of uniformity, flowability, and ease of use in powder metallurgy processes, such as additive manufacturing and powder injection molding. Stanford Advanced Materials (SAM) specializes in delivering Spherical Fe-based Powder with high purity and competitive prices.
Related products: Spherical Fe-based Powder FeMoPCBSi, Spherical Fe-based Powder FeCSi, Spherical Fe-based Powder FeCrMoCB
Spherical Fe-based Powder FeCrMnMoWBCSi provides advantages in terms of uniformity, flowability, and ease of use in powder metallurgy processes, such as additive manufacturing and powder injection molding. Stanford Advanced Materials (SAM) specializes in delivering Spherical Fe-based Powder with high purity and competitive prices.
Related products: Spherical Fe-based Powder FeMoPCBSi, Spherical Fe-based Powder FeCSi, Spherical Fe-based Powder FeCrMoCB
Spherical Fe-based Powder FeCrMnMoWBCSi is a type of bulk metallic glass (BMG) alloy powder. Spherical FeCrMnMoWBCSi powder is easy to handle and process for various applications. Spherical Fe-based Powder FeCrMnMoWBCSi provides advantages of uniformity, flowability, and ease of application in powder metallurgy processing, such as additive manufacturing and powder injection molding.
FeCrMnMoWBCSi alloys have a blend of good properties, such as high hardness, strength, wear resistance, and corrosion resistance.
MGs |
Fe54.35Cr18.47Mn2.05Mo13.93W5.77B3.22C0.90Si1.32 |
Laser power (W) |
260-380 |
Scan speed (mm/s) |
2000 |
Hatch spacing (μm) |
90 |
Powder size (μm) |
53 |
layer thickness (μm) |
50 |
Spherical Fe-based Powder FeCrMnMoWBCSi is of high application in additive manufacturing as well as in powder injection molding. FeCrMnMoWBCSi alloys are further used in the production of soft magnetic composite materials and also as additives for producing permanent magnets.
Our Spherical Fe-based Powder FeCrMnMoWBCSi is treated with caution when transported and stored in a way that ensures the quality of our product remains in its pure state.
Q1. What are the primary benefits of using FeCrMnMoWBCSi powder?
FeCrMnMoWBCSi powder offers high wear resistance, high-temperature stability, and corrosion resistance. Its transition metal composition makes it perfect for high-strength, high-performance components subjected to extreme environments.
Q2. Which industries use FeCrMnMoWBCSi powder?
It finds widespread use in industries such as aerospace, automotive, mining, metalworking, and manufacturing for wear-resistant, high-strength, and heat-resistant applications.