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Product Introduction
Powder Introduction
CuAl10Fe5Ni5 is a high‑end, multi‑element‑strengthened aluminum bronze alloy powder, ideally suited for your company’s electrode‑induction gas atomization and plasma atomization processes. The powder exhibits excellent sphericity, low oxygen content, and outstanding flowability, effectively addressing the challenge of poor printability posed by pure copper’s high laser reflectivity. It serves as a core wear‑ and corrosion‑resistant copper‑based material for metal 3D printing, laser cladding, and powder metallurgy applications.
| Chemical composition |
Cu |
Al |
Fe |
Ni |
Mn |
O |
| Bal. |
8.5-10.5 |
4-6 |
4-5.5 |
≤3 |
/ |
|
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 15.89 |
35.70 |
57.96 |
4.22 |
5.12 |
20.50 |
Application Scenarios
1. Shipbuilding/Marine Engineering
• Shipboard seawater systems: 3D-printed integrated seawater valve assemblies, cooling heat exchangers, pipeline valve bodies, and propeller bushings;
• Heavy-duty, wear-resistant components for ships: rudder shaft sleeves, propeller bearings, and erosion‑resistant sealing friction assemblies—replacing conventional castings and achieving weight reductions of over 30%.
2. Weapons and Naval Vessels
• Nuclear power auxiliary equipment: seawater cooling heat exchanger arrays for the nuclear island, acid- and alkali-resistant circulating pipelines, and high-temperature, wear-resistant valve seats;
• Hydropower: turbine blades and wear‑resistant repair coatings for seawater‑exposed turbines.
3. Aerospace
• Onboard high- and low-temperature fluid lines, fuel control valves, and lightweight heat-dissipating lattice structures;
• Integrated structural components for deep-space cryogenic equipment, resistant to embrittlement in cryogenic environments, while balancing lightweight design with corrosion and wear resistance.
4. High-end Mechanical Equipment
Heavy-duty gears, oil-free self-lubricating bearings, wear-resistant inserts for injection molds, and wear-resistant distribution plates for hydraulic pumps; all-in-one printed wear‑resistant friction pairs designed for high‑load, hard‑to‑lubricate operating conditions.
CuAINiFe
Category:
Brand: Asia Materials
Category: Copper Alloy Powder
Product Name: CuAINiFe
European and American grades: /
Specification and model: 0–20 µm, 15–53 µm, 45–105 µm, 53–150 µm
Reference standard: EN 1982-2017
Appearance: Nearly spherical
Oxygen content: ≤500 ppm
For more product details, please contact our product experts. We look forward to your call.
Product Introduction
Powder Introduction
CuAl10Fe5Ni5 is a high‑end, multi‑element‑strengthened aluminum bronze alloy powder, ideally suited for your company’s electrode‑induction gas atomization and plasma atomization processes. The powder exhibits excellent sphericity, low oxygen content, and outstanding flowability, effectively addressing the challenge of poor printability posed by pure copper’s high laser reflectivity. It serves as a core wear‑ and corrosion‑resistant copper‑based material for metal 3D printing, laser cladding, and powder metallurgy applications.
| Chemical composition |
Cu |
Al |
Fe |
Ni |
Mn |
O |
| Bal. |
8.5-10.5 |
4-6 |
4-5.5 |
≤3 |
/ |
|
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 15.89 |
35.70 |
57.96 |
4.22 |
5.12 |
20.50 |
Application Scenarios
1. Shipbuilding/Marine Engineering
• Shipboard seawater systems: 3D-printed integrated seawater valve assemblies, cooling heat exchangers, pipeline valve bodies, and propeller bushings;
• Heavy-duty, wear-resistant components for ships: rudder shaft sleeves, propeller bearings, and erosion‑resistant sealing friction assemblies—replacing conventional castings and achieving weight reductions of over 30%.
2. Weapons and Naval Vessels
• Nuclear power auxiliary equipment: seawater cooling heat exchanger arrays for the nuclear island, acid- and alkali-resistant circulating pipelines, and high-temperature, wear-resistant valve seats;
• Hydropower: turbine blades and wear‑resistant repair coatings for seawater‑exposed turbines.
3. Aerospace
• Onboard high- and low-temperature fluid lines, fuel control valves, and lightweight heat-dissipating lattice structures;
• Integrated structural components for deep-space cryogenic equipment, resistant to embrittlement in cryogenic environments, while balancing lightweight design with corrosion and wear resistance.
4. High-end Mechanical Equipment
Heavy-duty gears, oil-free self-lubricating bearings, wear-resistant inserts for injection molds, and wear-resistant distribution plates for hydraulic pumps; all-in-one printed wear‑resistant friction pairs designed for high‑load, hard‑to‑lubricate operating conditions.
Product Inquiry
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