Vacuum Gas Atomization Induction Furnace Powder Production Equipment for High-Density Powder Used Precision 3D Printing
Product Description
The Vacuum Gas Atomization Induction Furnace is a high-end precision equipment dedicated to producing high-density metal powders for precision 3D printing. Integrating vacuum induction melting technology and high-pressure gas atomization process, it realizes the integrated operation of metal melting, purification, and atomization forming, which can produce spherical powders with high purity, uniform particle size distribution, and excellent compactness, providing core material support for the precision 3D printing industry in aerospace, medical devices, precision machinery, and other fields.




Features
• Operating in a high-vacuum environment (up to 1×10⁻³ Pa), it avoids material oxidation and impurity contamination, ensuring powder purity over 99.95%. The high-pressure gas atomization system (2-15 MPa adjustable) produces powders with high sphericity (≥98%), narrow particle size range (15-150 μm customizable), and low porosity (≤0.5%), which excel in fluidity and sintering density for 3D printing.
• With intelligent closed-loop control for temperature, vacuum degree, and atomization pressure, it ensures stable production. Widely used in aerospace, medical devices, and precision machinery, it provides core high-density powder materials for high-end additive manufacturing.
Technical Parameters
• Melting Capacity: 1-500KG
• Heating method: MF/HF induction heating
• Melting Power: 30-500KW
• Max Temperature: 1750℃
• Temperature Detection Method: Infrared or thermocouple
• Working Limit Degree: 6.67×10-1Pa
Application
• Precision 3D Printing (Additive Manufacturing)
As the core powder production equipment for 3D printing, it provides high-quality metal powders for aerospace, medical devices, and precision machinery fields.
• Aerospace Industry
It is used to produce high-purity, high-performance alloy powders for aerospace components such as aircraft turbine blades, rocket engine nozzles, and satellite structural parts.
• Medical Device Industry
In the medical field, it is mainly used to produce titanium alloy, cobalt-chromium alloy powders for medical implants.
• Precision Machinery & Automobile Industry
It provides high-density metal powders for the production of precision mechanical parts, automobile engine components, and transmission system parts.
• New Energy Industry
In the new energy field, it is used to produce alloy powders for lithium-ion battery electrodes, fuel cell components, and solar energy equipment.
Model selection
|
Model |
Capacity (KG) |
Power (KW) |
Freq. (Hz) |
Cooling Water Flow (T/h) |
Cooling Water Pressure(Mpa) |
Max Temp.(℃) |
|
1 |
20 |
2500 |
8-12 |
0.3 |
1800 |
|
|
VIGA-3 |
3 |
25 |
2500 |
8-12 |
0.3 |
1800 |
|
VIGA-5 |
5 |
30 |
2500 |
8-12 |
0.3 |
1800 |
|
VIGA-10 |
10 |
60 |
2500 |
15-20 |
0.3 |
1800 |
|
VIGA-25 |
25 |
100 |
2500 |
15-20 |
0.3 |
1800 |
|
VIGA-50 |
50 |
160 |
1000 |
30-40 |
0.3 |
1800 |
|
VIGA-100 |
100 |
200 |
1000 |
30-40 |
0.3 |
1800 |
|
VIGA-200 |
200 |
250 |
1000 |
50-60 |
0.3 |
1800 |
|
VIGA-300 |
300 |
300 |
1000 |
60-80 |
0.3 |
1800 |
|
VIGA-500 |
500 |
400 |
1000 |
60-80 |
0.3 |
1800 |
|
VIGA-1000 |
1000 |
800 |
1000 |
80-100 |
0.3 |
1800 |
Other specification can be customized


Send Email




