LLNL researchers have developed additive manufactured fuel targets for IFE. They have been successful in using TPL to fabricate low density (down to 60 mg/cm3) and low atomic number (CHO) polymeric foams for potential targets, and some have been tested at the OMEGA Laser Facility. With TPL, LLNL researchers have also been able to fabricate a full fuel capsule with diameter of ~ 5mm or…
Keywords
- Show all (77)
- Additive Manufacturing (51)
- 3D Printing (7)
- Synthesis and Processing (3)
- Manufacturing Automation (2)
- Microfabrication (2)
- Volumetric Additive Manufacturing (2)
- Additively Manufactured (AM) Optics (1)
- Electric Grid (1)
- Inertial Confinement Fusion (ICF) (1)
- Manufacturing Simulation (1)
- Material Design (1)
- Optical Switches (1)
- Precision Engineering (1)
- (-) Manufacturing Improvements (2)
- (-) Inertial Fusion Energy (IFE) (1)
Technology Portfolios
Image

LLNL’s novel approach utilizes a number of techniques to improve reconstruction accuracy:
- Better coding scheme-based techniques
- Hardware-assisted techniques
- Adaptive fringe projection techniques
- Multi-exposure based techniques
The method requires specific calibration procedures and control of the hardware, which is achieved through a digital twin…
Image

Versatile Cold Spray (VCS) enables deposition of brittle materials, such as thermoelectrics, magnets, and insulators, while retaining their functional properties. Materials can be deposited on substrates or arbitrary shapes with no requirement to match compositions. The VCS system is low cost, easily portable, and easy to use.
VCS has been developed in a collaboration between Lawrence Livermore…