Journal of the American Ceramic Society · 1980 · 36 citations · 5 references
EngineeringNuclear PhysicsBoron NitrideSmall BubblesBoron CarbideNuclear ReactorNuclear ReactorsMaterials SciencePhysicsNeutron SourceAtomic PhysicsIrradiation TemperatureHydrogenHelium BubblesNuclear CeramicNatural SciencesApplied PhysicsNeutron ScatteringCarbide
Boron carbide, in nuclear reactor neutron absorber applications, generates large quantities of helium, some of which is trapped in small bubbles within the grains. Transmission electron microscopy was used to examine the size distribution, shape, and density of these bubbles in boron carbide irradiated, at 540° to 1850°C, to burnups of 62 × 10 20 captures/cm 3 . Bubble density was reduced but bubble diameter was increased at high temperatures. Bubbles were flat disks at low temperatures and more equiaxed at higher temperatures.
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Defect structure of neutron irradiated boron carbide
A. Jostsons, C.K.H. DuBose, G.L. Copeland et al. · Journal of Nuclear Materials · 1973 · 76 citations
Defects in boron carbide before and after neutron irradiation
K. H. G. Ashbee · Acta Metallurgica · 1971 · 56 citations
Irradiation Behavior of Boron Carbide
G.L. Copeland, R.G. Donnelly, W.R. Martin · Nuclear Technology · 1972 · 32 citations
Materials Engineering, Materials Science, Nuclear Ceramic +13