A team of researchers from the University of Virginia, Carnegie Mellon University, and the University of Wisconsin-Madison has made a breakthrough in the field of additive manufacturing that could ...
Morning Overview on MSN
MIT 3D-printed aluminum that’s 5× stronger than before
Engineers at MIT have taken a metal that usually trades strength for lightness and pushed it into an entirely new class, ...
Researchers have improved flaw detection to increase confidence in metal parts that are 3D-printed using laser powder bed fusion. Researchers at the Department of Energy's Oak Ridge National ...
Additive manufacturing technology is appropriate for fabricating NiTi products, but the control of microstructure, phase transformation, and mechanical property of NiTi alloys is scarce and imperative ...
In the Laser Powder Bed Fusion (LPBF) process, metal powder is selectively melted and solidified layer by layer using a laser ...
Techno-Science.net on MSN
️ An AI designs an alloy 5 times stronger than traditional aluminum
Designing materials that are both lightweight and exceptionally robust has always been a goal for engineers. However, ...
When it comes to additive manufacturing, advanced simulation techniques have become essential, particularly for processes like laser powder bed fusion (LPBF) and directed energy deposition (DED). In ...
A team of researchers from Xi'an Jiaotong University, Tianmushan Laboratory, and the National University of Singapore has pioneered a new method for crafting an ultra-strong, ductile alloy using 3D ...
Researchers can now detect the formation of keyhole pores, one of the most challenging defects common in additive manufacturing, with incredible accuracy. A research team led by Tao Sun, associate ...
GranuTools enhances powder understanding by offering cutting-edge physical characterization tools. Integrating years of experience in scientific instrumentation with fundamental studies on powder ...
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