LLNL researchers have continued to develop their pioneering DIW 3D-printed glass optics technology that allows for the 3D printing of single- and multi-material optical glass compositions in complex shapes. This LLNL invention further proposes incorporating dopants (including, but not limited to TiO2 and Pd) into slurries and inks for 3D printing of glass components that can then be directly…
Keywords
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- Additive Manufacturing (51)
- 3D Printing (7)
- Synthesis and Processing (3)
- Manufacturing Automation (2)
- Manufacturing Improvements (2)
- Microfabrication (2)
- Volumetric Additive Manufacturing (2)
- Electric Grid (1)
- Inertial Confinement Fusion (ICF) (1)
- Inertial Fusion Energy (IFE) (1)
- Manufacturing Simulation (1)
- Material Design (1)
- Optical Switches (1)
- (-) Additively Manufactured (AM) Optics (1)
- (-) Precision Engineering (1)
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The LLNL method for optimizing as built optical designs uses insights from perturbed optical system theory and reformulates perturbation of optical performance in terms of double Zernikes, which can be calculated analytically rather than by tracing thousands of rays. A new theory of compensation is enabled by the use of double Zernikes which allows the performance degradation of a perturbed…