Don’t Miss AMAZEMET at Plasma Tech 2025 in Portugal!
We'd love to meet with you during Plasma Tech 2025! Whether you're interested in learning more about our ultrasonic atomization technology for metal powder recycling or exploring collaboration opportunities, we're here to help. Feel free to reach out and schedule a meeting with Tomasz Choma via LinkedIn.
Meet AMAZEMET at HIP International Conference 2025
We are excited to announce AMAZEMET’s participation in the 14th International Conference on Hot Isostatic Pressing (HIP 2025), taking place from April 6 to 10, 2025, in Aachen, Germany.
Meet AMAZEMET at EMAM Symposium 2025
We are pleased to announce our participation in the European Military Additive Manufacturing Symposium (EMAM) 2025, taking place on April 8–9, 2025, at the Maritim Hotel in Bonn, Germany. This event brings together key players from defense, academia, and industry to discuss the role of additive manufacturing in strategic and security-critical applications.
AMAZEMET Expands Ultrasonic Atomization Capabilities with Laser-Melting Source
AMAZEMET has announced the development of a new high-energy laser source. This latest innovation, developed under the EU-funded project aims at enabling next-level efficiency and purity for ultrasonic atomization process.
Atomization Methods in Metal Powder Production | Essential Guide
Currently, the majority of spherical metal powders available commercially are produced using a range of atomization techniques, each excelling in its specific application area due to its unique attributes. High-quality spherical metal powders are essential for additive manufacturing (AM) and are characterized by proper particle size distribution, high density, good flowability, minimal impurities, and the absence of satellite particles or defects.
Meet AMAZEMET at AMUG 2025
At AMUG 2025, AMAZEMET will showcase the potential of its innovative Powder2Powder (P2P) technology. Visit us at Booth 74 to learn more about AMAZEMET's innovative technologies and explore how we’re advancing the field of metal additive manufacturing (AM).








