Microwave Plasma Spheroidization Equipment (MPS)
Irregular metal powder or ceramic powder is fed into high-temperature microwave plasma using a powder feeder, and the surface of the powder is remelted at a high temperature above 2000°C in the center, and then solidified and cooled into powder with high sphericity, or the surface of the micro-melted powder is coated with nanoscale reinforced particles.
- Final configuration confirmed before quotation
- Customization and accessories reviewed by application
- Export packing and documentation available on request
- Metal powders, low-temperature high-entropy alloys, low-temperature ceramic powders, oxide powders, graphene coating, other alloys
Key product features
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Metal powder spheroidization
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Metal nanoparticle coating
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Compact equipment footprint
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Powder surface modification
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Small-batch powder production
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Safe and simple operation
Technical principles
Irregular metal powder or ceramic powder is fed into high-temperature microwave plasma using a powder feeder, and the surface of the powder is remelted at a high temperature above 2000°C in the center, and then solidified and cooled into powder with high sphericity, or the surface of the micro-melted powder is coated with nanoscale reinforced particles.
Technical advantages
- Metal powder spheroidization treatment
- Metal nanoparticle coating
- The equipment occupies a small area
- Powder surface modification
- Suitable for small batch production of powders
- Safe and simple to operate
Main application scope
- metal powder
- Low temperature high-entropy alloy
- Low temperature ceramic powder
- Oxide powder
- Graphene coating
- Other alloys
Main technical parameters
| Plasma type | High temperature microwave plasma |
|---|---|
| core temperature | Above 2000°C |
| processing power | Metal powder spheroidization, surface modification, nanoparticle coating |
For international buyers, quotation confirmation can include configuration, accessories, packing method, export documents, inspection photos or videos and shipping terms.






