A-Powder Cobalt Chrome Powder (CoCrMo) for Metal 3D Printing | LPBF Compatible – 10 kg / 22 lbs
$1,470
Extreme Strength. Superior Wear Resistance. Medical-Grade Performance. High-performance cobalt chrome powder engineered for LPBF additive manufacturing. Exceptional wear resistance, high strength, and outstanding corrosion resistance for medical and industrial applications. OEM-optimized CoCrMo powder for metal 3D printing, delivering predictable prints, stable LPBF processing, and full traceable documentation.
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Technology:
Metal LPBF
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Printing Materials:
Metal Powders
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Production Method:
Vacuum Induction Melting Gas Atomization (VIGA)
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Powder Package:
10 kg bottle, 440 kg hopper, 840 kg hopper
Need more than 100 kg / 222 lbs? Or official request?
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✔ Application-driven material engineering and validation
✔ Optimized printing parameters for maximum performance
✔ Reduced trial-and-error through pre-qualified solutions
✔ Improved repeatability and process stability
✔ Developed for demanding industrial use cases
| Quantity, kg | Per Bottle 10 kg | Per kg |
|---|---|---|
| 10-100 | $1470.00 | $147.00 |
| 100+ | $1320.00 | $132.00 |
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Description
A-Powder Cobalt Chrome Powder (CoCrMo) is a high-performance cobalt-based alloy developed for LPBF additive manufacturing. Produced via vacuum gas atomization, the powder features spherical morphology, controlled particle size distribution (15–53 µm), and low oxygen content for stable recoating and repeatable layer fusion.
The Co-Cr-Mo composition (Co balance, Cr ~28%, Mo ~6%) provides:
- Outstanding wear resistance
- Excellent corrosion resistance
- High tensile and yield strength
- Superior fatigue behavior
After printing and heat treatment, components exhibit ultimate tensile strength up to 1100–1350 MPa with high hardness and long-term structural stability.
This cobalt chrome powder is widely used in orthopedic implants, dental frameworks, surgical instruments, and high-load industrial parts where strength and durability are critical.
AO Metal ensures small-batch flexibility, fast lead times, and full traceable documentation for production-ready additive manufacturing.
| Element | Min | Max | Typical |
| Co | Bal. | Bal. | Bal. |
| Cr | 27.0 | 30.0 | 28.44 |
| Mo | 5.0 | 7.0 | 6.33 |
| Ni | – | 0.10 | 0.017 |
| Fe | – | 0.50 | 0.04 |
| C | – | 0.15 | 0.024 |
| Si | – | 1.0 | 0.79 |
| Mn | – | 0.3 | 0.26 |
| W | – | 0.2 | <0.2 |
| P | – | 0.020 | <0.015 |
| S | – | 0.010 | 0.002 |
| Al | – | 0.10 | <0.001 |
| Ti | – | 0.10 | <0.001 |
| B | – | 0.010 | <0.001 |
| O | – | 0.08 | 0.050 |
| N | – | 0.15 | 0.124 |
machine type: F – LPBF
Key Performance Benefits
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High-strength cobalt-chromium alloy with excellent biocompatibility
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Predictable LPBF performance with stable layer deposition
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Spherical particle morphology ensures repeatable powder flow
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Heat-treatable to achieve target mechanical properties
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Suitable for complex, high-stress, end-use components
industries: Energy / Medical / Dental
Typical Applications
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Orthopedic and dental implants
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Aerospace brackets and structural parts
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High-performance industrial components
- Brand AO Metal – High-Precision Metal 3D Printers for Innovation
- Technology Metal LPBF
- Powder Package 10 kg bottle, 440 kg hopper, 840 kg hopper
- PSD (particle size distribution) 15–53 μm
- Printing Materials Metal Powders
- Material CoCrMo
- Country of origin China
- Production Method Vacuum Induction Melting Gas Atomization (VIGA)
Materials
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CoCrMo
Frequently asked questions
What is CoCrMo Powder best suited for?
High-strength, biocompatible components with complex geometries for medical, dental, and aerospace applications.
Is this powder production-ready?
Yes, CoCrMo is LPBF-optimized with repeatable, production-ready processing parameters.
Can printed parts be heat treated?
Yes. Heat treatment is fully supported to achieve target mechanical performance.
Which post-processing methods are compatible?
Machining, polishing, coating, and heat treatment for final part optimization.
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