Titanium alloys have emerged as pivotal materials in aerospace, biomedical and automotive industries owing to their exceptional strength-to-weight ratio, corrosion resistance and biocompatibility. The ...
A research led by scientists from City University of Hong Kong (CityU) has successfully developed a super-strong, highly ductile and super-light titanium-based alloy using additive manufacturing, ...
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Mapping the future: AI deciphers alloy microstructures to enhance properties prediction and design
In a world of 8 billion people, there's one thing that makes each of us unique: our fingerprints. A variety of genetic and environmental factors create tiny variations in the skin's ridges and whorls, ...
A research team led by professors Zhang Zhefeng and Zhang Zhenjun from the Institute of Metal Research (IMR) of the Chinese Academy of Sciences has proposed a novel strategy for fabricating an ...
Researchers develop a novel method to predict alloy microstructures with unprecedented speed and accuracy. (Nanowerk News) For thousands of years, humans have combined metals to collectively harness ...
Schematic illustration showing how the EWF (an athermal effect) induced by HDPEC drives atomic motion and triggers phase transformation and microstructural refinement within an extremely short time, ...
Metals such as titanium are prized for their strength, light weight, and resistance to corrosion, making them essential for aircraft, spacecraft, and medical implants. Now, a joint research team from ...
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