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Materials with low values of σFL/σcy show extensive short crack behaviour, while in material with high values of σFL/σcy short crack behaviour is very limited.
NC values were, in material with a low predeformed cube grain frequency, proposed to be either 1 or 2, based on the deformed microstructure.
We present a scanning transmission electron microscopy (STEM) analysis of electron irradiation-induced defects in Yb2Ti2O7, which form in material with a deliberate Ti excess.
However, at higher rates, in situ heating in the deformation zone engenders dynamic recovery that results in material with a multimodal grain size distribution that is comparable in strength to the unimodal chips, but additionally possesses improved ductility.
This work presents a coupled experimental and modeling approach to better understand the role of stress field heterogeneities on deformation behavior in material with a high viscoplastic anisotropy e.g. polycrystalline ice.
It is proposed that these phenomena, and their absence in stoichiometric and Yb-rich material, can be explained by the presence of negatively-charged Yb vacancies that are only present in material with a Ti excess.
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Photoelectric absorption predominates at low energies and is greatly enhanced in materials with high atomic number.
Pesin, D. & Balents, L. Mott physics and band topology in materials with strong spin-orbit interaction.
Pair production predominates for higher energies and is also enhanced in materials with high atomic number.
The H. H. Uhlig Corrosion Laboratory investigates the causes of failure in materials, with an emphasis on nuclear materials.
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