The microstructural evolution of the alloy, heated for 32 hours (left) versus 64 hours (right). (Zhang et al., Science, 2026) Metal alloys are used everywhere from aircraft to cutlery, making them an ...
In a breakthrough that could reshape the future of aerospace and advanced engineering, researchers ...
Humans have been making metal alloys for thousands of years, and most of us can conjure a rough mental image of the process—it involves red-hot molten metals being mixed, poured, and shaped in a ...
Researchers at the University of Toronto Engineering have developed six new metal alloys using ...
A cobalt aluminum nanolaminate has shattered the usual tradeoff between strength and flexibility, emerging up to 10 times ...
Companies building next-generation products and breakthrough technologies are often limited by the physical constraints of traditional materials. In aerospace, defense, energy, and industrial tooling, ...
Researchers at the University of Toronto Engineering have used artificial intelligence (AI) to discover six new metal alloys ...
Although metal alloys is not among the most exciting topics for most people, the moment you add the word ‘radioactive’, it does tend to get their attention. So too with the once fairly common Mag-Thor ...
Add Yahoo as a preferred source to see more of our stories on Google. The microstructural evolution of the alloy, heated for 32 hours (left) versus 64 hours (right). (Zhang et al., Science, 2026) ...
Researchers created a near-room-temperature method to make high-entropy alloys with precise control of crystal structure and morphology for custom designs. (Nanowerk News) Humans have been making ...