Nano 3D Printing of Capillary Optics
Department of Energy
Key Details
- Posted Date
- Response Deadline
- NAICS Code
- 541715
- Source
- sbir_sttr
- Award Amount
- $1,099,958
- Awarded To
- POLARONYX INC
Description
Additive manufacturing (AM), esp. laser AM, becomes a powerful tool to replace conventional methods due to its cost effectiveness and capability of making complex structure and composition. However, direct fabrication of optics parts is still a challenging field, mainly due to limited understanding of process control, powder fabrication, and laser melting mechanism to eliminate defects and bubbles. Statement of how this problem or situation is being addressed. Based on our patented laser AM technology and the world’s first product of fs fiber laser AM, PolarOnyx proposes, for the first time, a glass AM/SM system to develop the optimal process to overcome these difficulties and meet the requirement of X-ray fluorescence microscopy. Phase I Results. Significant breakthroughs were made: Achieved high density (>99%) and excellent control for capillary structures, and filed one patent. Phase II Plan. PolarOnyx will develop and prototype nano-AM to make high quality and high resolution capillary optics. Commercial Applications and Other Benefits. In addition to the 3D AM applications (potential $44B market in 2025), material processing is another major commercial application for this project. This includes (1) Photonic device fabrications, such as waveguide, coupler, WDM, modulator, and switching; (2) all types of metal processing such as welding, cutting, annealing, and drilling; (3) semiconductor and microelectronics manufacturing such as lithography, inspection, control, defect analysis and repair, and via drilling; (4) other materials processing such as rapid prototyping, desk top manufacturing, micromachining, photofinishing, embossed holograms, and grating manufacturing.
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