The microstrain behavior of beryllium single crystals.
Room temperature microstrain behavior of zone- refined single crystal beryllium examined as function of prestrain
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Room temperature microstrain behavior of zone- refined single crystal beryllium examined as function of prestrain
Influence of grain-size purity relation beryllium fabrication and resulting mechanical properties
Gas pressure bonding for hot isostatic pressing of beryllium powder into complex shapes
Thin self-supporting beryllium foils preparation for use as atomic and molecular ion beam targets
The outer surface of the high-Z inner shell in the double shell configuration of inertial confinement fusion experiments experiences Rayleigh–Taylor instability growth during the implosion process due to inverted density and pressure gradients between a highly compressed foam interstitial layer and the accelerating dense inner shell. Graded density layers have long been known to reduce instability growth rates. In this study, we employ high-fidelity radiation hydrodynamic simulations to demonstrate this improved stability when grading beryllium into tungsten. We first characterize the response to L-band preheat of these layers using a newly calibrated radiation drive. While graded layer capsules suffer reduced performance (here, measured as DD neutron yield from a CD foam fuel) in 1D simulations due to reduced kinetic energy coupling and reduced fuel compression, they suffer less of a performance drop when 2D instabilities are accounted for. With the improved stability of graded layers, we explore the performance of capsules with larger fuel radii and thinner shells as a preliminary study to find new designs in which graded layers produce the highest yields.
We present a systematic ab initio study of the low-lying states in beryllium isotopes from 7 Be to 12 Be using nuclear lattice effective field theory with the N 3 LO interaction. Our calculations achieve good agreement with experimental data for energies, radii, and electromagnetic properties. We introduce a novel, model-independent method to quantify nuclear shapes, uncovering a distinct pattern in the interplay between positive and negative parity states across the isotopic chain. By combining Monte Carlo sampling of the many-body density operator with a novel nucleon-grouping algorithm, the prominent two-center cluster structures, the emergence of one-neutron halo, complex nuclear molecular dynamics such as 𝜋 orbital and 𝜎 orbital, emerge naturally.
Crucible from a mixture of a beryllium oxide aggregate and hydraulic refractory cement, and coated with an impervious refractory oxide will not deteriorate in the presence of fused salt- molten metal mixtures such as uranium- magnesium-zinc-halide salt systems. Vessels cast by this process are used in the flux reduction of oxides of thorium and uranium.
Hypervelocity impact into stainless steel tubes armored with reinforced beryllium
Plutonium-beryllium source neutron dating in water and mixtures of tungsten rods and water
Modified gloved enclosure is used to fill a capsule with a mixture of americium and beryllium radioactive powders to seal weld the opening, and to test it for leaks. It contains a horizontal partition, vortex mixer, mounting press, welder, test vessel, and radiation shielding to prevent surface contamination.
Heat treatment effects on beryllium structures for aerospace applications
Product development of beryllium alloy prestressed fasteners for use in Saturn project
Development of technology for electrodeposition of aluminum alloys and beryllium
Beryllium target for use in high current ion accelerator for thermal neutron production
Reaction kinetics of fluorination of beryllium sheet by pressure drop method, giving activation energies and parabolic rate constants
Hot pressing process for beryllium gyro components, noting application of porous copper mandrel and sodium chloride sealer
Study on the fabrication and testing of a magnesium-lithium box beam shows the formability and machinability characteristics of that alloy to be excellent. Results of forming tests for shrink and stretch flanges show values for both flange heights that may be used in future beryllium design.
Decoupling effects in magnetic forming beryllium coil assembly