Keywords
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- Additive Manufacturing (29)
- 3D Printing (3)
- Manufacturing Improvements (2)
- Volumetric Additive Manufacturing (2)
- Additively Manufactured (AM) Optics (1)
- Manufacturing Simulation (1)
- Precision Engineering (1)
- Synthesis and Processing (1)
- (-) Manufacturing Automation (2)
- (-) Microfabrication (1)
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Livermore researchers have developed a method for implementing closed-loop control in extrusion printing processes by means of novel sensing, machine learning, and optimal control algorithms for the optimization of printing parameters and controllability. The system includes a suite of sensors, including cameras, voltage and current meters, scales, etc., that provide in-situ process monitoring…
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Livermore researchers have developed a method of fabricating functional polymer-based particles by crosslinking UV-curable polymer drops in mid-air and collecting crosslinked particles in a solid container, a liquid suspension, or an air flow. Particles could contain different phases in the form or layered structures that contain one to multiple cores, or structures that are blended with…
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LLNL researchers have developed a system that relies on machine learning to monitor microfluidic devices. The system includes (at least) a microfluidic device, sensor(s), and a local network computer. The system could also include a camera that takes real-time images of channel(s) within an operating microfluidic device. A subset of these images can be used to train/teach a machine learning…