Theory-guided design of high-strength, high-melting point, ductile, low-density, single-phase BCC high entropy alloys
Authors: Y. Rao, C. Baruffi, A. De Luca, C. Leinenbach, W.A. Curtin
Effect of oxidation temperature on the properties of niobium in view of its biomedical applications
Authors: Tomasz Borowski, Katarzyna Zielińska, Maciej Spychalski, Bogusława Adamczyk-Cieślak, Łukasz Żrodowski
In-situ alloy homogenization from raw elements | Application note
Create custom FeCrAlY alloys from raw elements as spherical powder for research or CSP. Discover in-situ alloy homogenization with rePOWDER.
Recycling of Ti alloy machining chips | Case study
Discover how arcMELTER efficiently transforms CNC machining chips into high-quality ingots for severe plastic deformation (SPD). This case study highlights the use of a getter for inert atmosphere purification before homogenization. Learn about this sustainable, cost-effective closed-loop approach to metal production and material valorization.
Alloy preparation from irregular powder | Case study
Learn how arcMELTER transformed poorly flowing irregular powder into spherical feedstock suitable for Direct Energy Deposition. This case study details how the process also enabled alloy homogenization with an additional element, improving thermal stability and precipitation hardening, unlocking new possibilities for advanced component manufacturing.
Custom master alloy preparation | Case study
Explore how arcMELTER facilitated the creation of a custom Mg-25%Ag master alloy, bypassing temperature limitations and evaporation issues of induction melting. This case study demonstrates a novel approach to precise alloying with pure elements, offering greater control and flexibility for material property tailoring without relying on commercially available master alloys. Discover the benefits for mechanical, corrosion, and thermal properties.
Metal matrix composites | Case study
Discover how we utilized arc melting (arcMELTER) for in-situ phase transformation in TiB2/Ti MMCs, achieving unique dendritic structures and avoiding additive manufacturing challenges. This case study highlights the potential of this technology for advanced materials in aerospace and automotive applications. Explore the property testing results and future research directions.
High entropy alloys from pure elements | Case study
High entropy alloys are hard to obtain due to often usage of refractory elements. Thanks to the fact that arcMELTER can be equipped with focus plasma torch working with such elements is much smoother than just standard TIG torch. Additionally with the use of inFURNER you can perform the test of anneling time influence and thermal stability of HEA microstructure in casted state, powder form obtained by rePOWDER of after your powder-based manufacturing process.
Low volume production of superalloy powders | Application note
Produce spherical superalloy powders from just 10g of feedstock. Explore low-volume, high-value Pt-based powder production with rePOWDER.
Bioresorbable metal powders for additive manufacturing | Application note
Bioresorbable metal powders enable implants that safely degrade in the body, offering major benefits for biomedical applications. In the 3D-BioMg project, AMAZEMET develops spherical magnesium-based powders to support next-generation implant design.












