A research team at UT Austin has introduced a new technique that could redefine how semiconductor components are designed and ...
Morning Overview on MSN
Scientists are literally growing metal in the lab
In a quiet corner of Switzerland, researchers have stopped treating metal like something to be melted and poured, and started ...
LIFT in Detroit’s Corktown, the national advanced materials manufacturing innovation institute operated by the American Lightweight Materials Manufacturing Innovation Institute, has launched three ...
Additive manufacturing leaders are focusing on defense, helping the U.S. military move from 'futuristic visions' to ...
Lawrence Livermore National Laboratory (LLNL) engineers and scientists, in collaboration with Stanford University, have ...
Scientists in Italy are developing sweet snacks with lab-grown plant cells and fruit residues, producing a material that a 3D ...
Aluminum is prized for being lightweight and strong, but at high temperatures it loses strength. This has limited its use in ...
IEEE Spectrum on MSN
Metalenses improve microscopic 3D printing precision
Currently the most precise method for 3D printing complex microscopic features is two-photon lithography. The technique uses ...
At TU Wien, researchers are developing three-dimensional (3D) printing techniques that can be used to create living ...
Researchers at Lawrence Livermore National Laboratory (LLNL) have optimized and 3D-printed helix structures as optical ...
They have created a 3D concrete bridge that absorbs CO2 like bones and uses 60% less material than a conventional bridge.
Nagoya researchers 3D print high-performance aluminum parts, with one variant staying both strong and flexible at 300°C.
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