MoNbTi High-Entropy Alloy (HEA) Spherical Powder is a powdered form of a high-entropy alloy composed primarily of molybdenum (Mo), niobium (Nb), titanium (Ti), and other alloying elements. Stanford Advanced Materials (SAM) is adept at delivering High-Entropy Alloy Powder with both high purity and competitive pricing.
Related products: FeCoNiCrTi High-Entropy Alloy (HEA) Spherical Powder, Spherical Fe-based Powder FeMoPCBSi, Spherical Fe-based Powder FeCSi, Spherical Fe-based Powder FeCrMoCB
MoNbTi High-Entropy Alloy (HEA) Spherical Powder is a powdered form of a high-entropy alloy composed primarily of molybdenum (Mo), niobium (Nb), titanium (Ti), and other alloying elements. Stanford Advanced Materials (SAM) is adept at delivering High-Entropy Alloy Powder with both high purity and competitive pricing.
Related products: FeCoNiCrTi High-Entropy Alloy (HEA) Spherical Powder, Spherical Fe-based Powder FeMoPCBSi, Spherical Fe-based Powder FeCSi, Spherical Fe-based Powder FeCrMoCB
MoNbTi High-Entropy Alloy (HEA) Spherical Powder is a powdered form of a high-entropy alloy primarily comprising molybdenum (Mo), niobium (Nb), titanium (Ti), and other alloying elements. It is worth noting that known for their intricate compositions and unique properties, high-entropy alloys (HEAs) represent a distinct class of metallic materials.
This MoNbTi HEA spherical powder is extensively utilized in advanced manufacturing processes, particularly in additive manufacturing (AM) or 3D printing techniques like powder bed fusion (e.g., selective laser melting or electron beam melting). Its spherical powder form facilitates outstanding flowability and packing density during these processes, resulting in high-quality parts with consistent properties.
Main Content | Mo, Nb, Ti |
Shape | Spherical Powder |
Particle Size (μm) | 15-53, or customized |
Our MoNbTi High-Entropy Alloy (HEA) Spherical Powder is carefully handled during storage and transportation to preserve the quality of our product in its original condition.