



| Item | Specification |
|---|---|
| Material Type | 316L, 17-4PH, H13, M2, Maraging Steel, Tool Steel |
| Manufacturing Process | Gas Atomization |
| Particle Size | 15-45 μm / 15-53 μm / 20-63 μm |
| Particle Morphology | Highly Spherical |
| Oxygen Content | ≤0.10% (Depending on Alloy Grade) |
| Powder Flowability | Excellent |
| Apparent Density | High Packing Density |
| Powder Purity | High Purity with Low Impurity Content |
| Printing Processes | SLM / LPBF / DED / DMLS |
Iron-based high temperature alloy powder is an advanced metal additive manufacturing material developed for applications requiring high strength, wear resistance, thermal stability and reliable performance under elevated temperature conditions.
Based on iron as the primary element, these alloys are strengthened by alloying elements such as chromium (Cr), nickel (Ni), molybdenum (Mo), cobalt (Co), tungsten (W), vanadium (V) and other elements to improve mechanical properties, oxidation resistance and high-temperature durability.
Produced through advanced powder manufacturing technologies such as gas atomization, iron-based high temperature alloy powders feature high sphericity, controlled particle size distribution, low oxygen content and excellent flowability, making them suitable for SLM, LPBF, DED and other metal additive manufacturing processes.