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As well, the tensile loading of a dislocation loop is considered.
Further, MicroViBe enables consistent, objective quantitative approximation of the b = ½ <111> dislocation loop number density.
The partial is left inside the precipitate and remains as a dislocation loop.
Accordingly, models of dislocation loop formation during various irradiations were proposed.
Thereby, dislocation loop glide is not confined to an isolated layer, changing the plastic behaviour of the nano-multilayer.
The results demonstrate a strong correlation between the dislocation loop density and areal coverage, and the light emission efficiency.
We implement a new method to determine the strain tensor of a distorted crystal lattice and we measure the critical dislocation loop size and the rate of dislocation nucleation directly.
Dislocation loop rafting and dislocation decoration have been previously observed in neutron and heavy ion irradiated materials.
Here, we performed a detailed transmission electron microscopy study on dislocation loop rafts in heavy ion irradiated tungsten.
The equilibrium hydrogen concentration around the dislocation loop is calculated using a recently developed self-consistent iterative method [1].
A model based on the homogeneous nucleation of a dislocation loop was proposed to explain the observations.
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