Journal Article

·2015 OPEN ACCESS

Swelling Mechanisms of UO2 Lattices with Defect Ingrowths

Seçkin D. Günay YTU

PLoS ONE

Abstract

The swelling that occurs in uranium dioxide as a result of radiation-induced defect ingrowth is not fully understood. Experimental and theoretical groups have attempted to explain this phenomenon with various complex theories. In this study, experimental lattice expansion and lattice super saturation were accurately reproduced using a molecular dynamics simulation method. Based on their resemblance to experimental data, the simulation results presented here show that fission induces only oxygen Frenkel pairs while alpha particle irradiation results in both oxygen and uranium Frenkel pair defects. Moreover, in this work, defects are divided into two sub-groups, obstruction type defects and distortion type defects. It is shown that obstruction type Frenkel pairs are responsible for both fission- and alpha-particle-induced lattice swelling. Relative lattice expansion was found to vary linearly with the number of obstruction type uranium Frenkel defects. Additionally, at high concentrations, some of the obstruction type uranium Frenkel pairs formed diatomic and triatomic structures with oxygen ions in their octahedral cages, increasing the slope of the linear dependence.

Keywords

Frenkel defect Lattice (music) Swelling Crystallographic defect Fission Materials science Uranium Molecular physics Neutron Atomic physics Crystallography Chemistry Physics Nuclear physics Composite material

Subject Areas

Nuclear Materials and Properties ·Materials Chemistry ·Physical Sciences
Radioactive element chemistry and processing ·Inorganic Chemistry ·Physical Sciences
Nuclear reactor physics and engineering ·Aerospace Engineering ·Physical Sciences

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