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Product Introduction
Product Introduction
Iron-based amorphous alloy powders are iron‑based alloy powders with an atomically disordered, non‑crystalline structure. They are prepared via gas atomization or combined gas–water atomization, rapid quenching followed by crushing, and high‑energy ball milling, resulting in an amorphous atomic arrangement devoid of grain boundaries and dislocation defects.
Wear- and corrosion-resistant bulk amorphous powders (for additive manufacturing/spraying): high-Cr–Mo iron-based amorphous materials, offering high hardness and excellent corrosion resistance, suitable for 3D printing and thermal-spray coatings.
| Chemical composition |
Fe |
Cr |
Mo |
Yes |
Note |
| Bal. |
0.2-0.24 |
0.03-0.07 |
0.01-0.15 |
0.01-0.03 |
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 10-20 |
25-35 |
≤60 |
≥4.0 |
≥4.8 |
≤30 |
Application areas
Thermal-sprayed wear-resistant and corrosion-resistant coating
1. Metallurgical rolls, paper-making drying cylinders, hydraulic valve spools, and pump impellers;
2. Anti-corrosion and wear-resistant coatings for ship seawater piping systems and offshore wind turbine bearings;
3. Oilfield drill pipes and valves, resistant to hydrogen sulfide and salt spray corrosion;
Metal 3D Printing/Additive Manufacturing
High-formability FeSiBCr amorphous powder, prepared by SLM laser printing:
Micro-sensor magnetic cores, wear-resistant precision molds, miniature valve bodies, and lightweight aerospace magnetic structural components.
Amorphous alloy
Category:
Brand: Asia Materials
Category: Special Steel Alloy
Product Name: Amorphous Alloy
European and American grades: /
Specifications and model numbers: 0–20 μm, 15–45 μm, 15–53 μm, 45–105 μm, 53–150 μm
Reference standard: /
Appearance: Spherical
For more product details, please contact our product experts. We look forward to your call.
Product Introduction
Product Introduction
Iron-based amorphous alloy powders are iron‑based alloy powders with an atomically disordered, non‑crystalline structure. They are prepared via gas atomization or combined gas–water atomization, rapid quenching followed by crushing, and high‑energy ball milling, resulting in an amorphous atomic arrangement devoid of grain boundaries and dislocation defects.
Wear- and corrosion-resistant bulk amorphous powders (for additive manufacturing/spraying): high-Cr–Mo iron-based amorphous materials, offering high hardness and excellent corrosion resistance, suitable for 3D printing and thermal-spray coatings.
| Chemical composition |
Fe |
Cr |
Mo |
Yes |
Note |
| Bal. |
0.2-0.24 |
0.03-0.07 |
0.01-0.15 |
0.01-0.03 |
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 10-20 |
25-35 |
≤60 |
≥4.0 |
≥4.8 |
≤30 |
Application areas
Thermal-sprayed wear-resistant and corrosion-resistant coating
1. Metallurgical rolls, paper-making drying cylinders, hydraulic valve spools, and pump impellers;
2. Anti-corrosion and wear-resistant coatings for ship seawater piping systems and offshore wind turbine bearings;
3. Oilfield drill pipes and valves, resistant to hydrogen sulfide and salt spray corrosion;
Metal 3D Printing/Additive Manufacturing
High-formability FeSiBCr amorphous powder, prepared by SLM laser printing:
Micro-sensor magnetic cores, wear-resistant precision molds, miniature valve bodies, and lightweight aerospace magnetic structural components.
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