Aluminium crossover alloys are one of the more interesting recent developments in light metals. Rather than staying within the traditional wrought families, they deliberately blend the chemistries of the AA5xxx and AA7xxx systems, and in doing so they form the compositionally complex T-phase, Mg32(Al,Cu)49, which gives a remarkable hardening response and has already attracted serious … Continue reading On the 3D printing of novel aluminium crossover alloys
Tag: SEM
Battery waste is worth billions!
As the world accelerates its transition to electric vehicles and renewable energy, the pressure to recycle lithium-ion batteries efficiently has never been greater. At the heart of most recycling processes sits a fine black powder called black mass — a mixture of cathode and anode materials, binder residues, and metallic fragments recovered from spent batteries. … Continue reading Battery waste is worth billions!
Paving the Way for Hydrogen Energy with Carbon Felts
We are pleased to share our latest research, now published in Applied Surface Science. This study led by Ahmad Alem explores the use of radio frequency (RF) oxygen plasma as a powerful tool for functionalising the surface of carbon felts – materials with significant potential in energy storage, catalysis, and environmental technologies. By systematically varying … Continue reading Paving the Way for Hydrogen Energy with Carbon Felts
Pushing the Limits of Aluminium Crossover Alloys
Dr. mont. Patrick Willenshofer’s recent publication, “Influence of alloy chemistry and overaging on mechanical properties and corrosion resistance in aluminium crossover alloys”, is a remarkable contribution to the rapidly evolving field of advanced aluminium alloy development. This paper investigates the nuanced interplay between alloying elements and thermal history in novel AlMgZn-based crossover alloys enriched with copper … Continue reading Pushing the Limits of Aluminium Crossover Alloys




