Engineering PapersSearch

DOE OSTI · 3028443

Cr-Be Pushered Single Shell (PSS) Capsule Development

Abstract

Pushered single shell (PSS) has emerged as an alternative platform of implosion to ease the stability issue at the ablation front. The design consists of a thin inner Be layer, a 50% Cr:Be plateau region, an S-curve gradient, a low Cr (1.5%) tamper layer, and followed by a pure Be outer layer. General Atomics has developed a way to fabricate the higher-Z Cr to lower-Z Be gradients on glow discharge polymer mandrels with a designed S-shape profile for optimal implosion stability using magnetron sputtering. Microstructure analysis of the gradient coating indicated that at lower Cr concentration a short order or amorphous structure was formed. Here, these fabricated PSS capsules were subsequently built into capsule fill tube assemblies, verified to be leak tight at both ambient and cryogenic conditions, and delivered to Lawrence Livermore National Laboratory for the shots. The capsule thermal stability was demonstrated by invariable Cr profiles before and after pyrolysis. However, cracking at inner Cr layers was observed, which has been attributed to thermal stress.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Xu, Hongwei [General Atomics, San Diego, CA (United States)] (ORCID:0009000460486759), Huang, Haibo [General Atomics, San Diego, CA (United States)], Ratledge, Mark [General Atomics, San Diego, CA (United States)], Kong, Casey [General Atomics, San Diego, CA (United States)], Sequoia, Keven [General Atomics, San Diego, CA (United States)], MacLaren, Steve [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Dewald, Eduard [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Horwood, Corie [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Tipton, Robert [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)], Ho, Darwin [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)]. 2025-11-18. Cr-Be Pushered Single Shell (PSS) Capsule Development. https://doi.org/10.1080/15361055.2025.2581539

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related reports

Universal method for the optimization of HDC coating uniformity on non-planar, non-stationary substrates for inertial confinement fusion targets

The thickness uniformity of chemical vapor deposited (CVD) diamond coatings on non-planar, non-stationary substrates depends on both the intrinsic instantaneous coating thickness distribution (ICTD) of the coating conditions used and, if applicable, on the frequency of substrate reorientation. While important for many CVD diamond applications, the relative impact of the ICTD and substrate reorientation on the coating thickness uniformity has not been studied. In this work, we systematically investigate the effect of these factors for microwave-plasma chemical vapor deposition (MPCVD) of diamond (referred to as high density carbon (HDC) in the inertial confinement fusion (ICF) community) coatings on spherical, rolling substrates. This coating technique is used to fabricate capsules for ICF experiments, which require extreme coating uniformity with <0.3 % thickness variation (so-called Mode 1 or M1) to ensure symmetric compression of imploding targets. To extract the otherwise unobservable reorientation timescale (Δt), Monte Carlo simulations were performed using experimental ICTD data as input. This combined approach confirms scaling relationships between the substrate reorientation timescale as well as coating thickness and coating uniformity, as expected from a 3D random walk. Simulations confirm that M1 is Rayleigh-distributed and scales as (Δt) 1/2 , consistent with the randomization of two angles that determine orientation of a sphere. We also demonstrate that, under the conditions studied, Δt is the dominant factor in determining thickness uniformity while the intrinsic ICTD has minimal impact. Finally, experiments show that Δt can be affected by total batch size under constant agitation conditions due to space constraints that limit the capsule reorientation kinetics. In conclusion, this study highlights the utility of a combined experiment-simulation approach as a general methodology for understanding and improving coating uniformity on non-planar, non-stationary substrates.

Capsule