Researchers at Brigham Young University have demonstrated the ability to create microfluidic lab-on-a-chip devices with channels and valves smaller than ever before. Using a new 3D printing technique, ...
(Nanowerk News) New technology that enables more efficient and effective transfer printing for electronic devices has been developed by researchers at the Daegu Gyeongbuk Institute of Science and ...
A research team at UT Austin has introduced a new technique that could redefine how semiconductor components are designed and ...
Researchers at MIT have developed a rapid 3D-printing technique that uses liquid metal to allow for extremely fast prints. The process can manufacture large aluminum components in minutes, whereas ...
Optimally, I print the hose adapter with five walls and the 3D honeycomb infill pattern. This takes 90 minutes and nearly 69g ...
Electrohydrodynamic (EHD) jet printing has emerged as a transformative technique in micro‐ and nanoscale additive manufacturing. By exploiting strong electric fields to induce and control fluid ...
Over the past decade 3D printing has advanced from simple plastic objects to creating intricate designs with multiple materials to bioprinting living tissues, the possibilities are expanding rapidly, ...
As efficient as electronic data storage systems can be, they've got nothing on nature's own version – DNA. A new technique for writing data to DNA works like a printing press and makes it easy enough ...
[Claywoven] mostly prints with ceramics, although he does produce plastic inserts for functional parts in his designs. The ceramic parts have an interesting texture, and he wondered if the same ...
Remember those ancient clay structures from history class? Well, clay is making a grand re-entrance into the world of construction, and it's undergone a high-tech makeover. Thanks to a cutting-edge ...
Biologists are studying how engineered biofilms closely mimic natural ones. Their research may aid in developing drugs to fight the negative effects of these microorganisms that adhere to surfaces.