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Microstructural evolution during directional annealing has been investigated with variable grain boundary energy and mobility.
It is composed of variable grain sizes ranging from silt, silty sand to sandy silt, sand and intercalations of gravels.
The data suggest a need for advanced synthetic nanostructured materials processes producing high-purity crystallites in variable grain sizes in the range 1 20 nm.
The variable grain sizes imply (i) Different amount of deformation; (ii) Different annealing conditions and/or different numbers of thermomechanical cycles [14].
The classical Hall Petch equation inaccurately predicts the macroscopic yield strength for materials with non-equiaxed grains or variable grain size distributions.
The ground samples are shown as "granular" in the graphs, whereas the plots are shown as normal RD/LD are the variable grain sizes in which the dross was received.
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Depending on whether or not pale-ointensity was able to be determined, these iron oxides are characterized by variable grain-size distribution and composition.
The blue arrows within Figure 11 emphasize the discrepancy between where melt is thermodynamically stable and where melt would exist after deflection by a variable grain-size permeability field.
The variable property grain model, including the effect of grain diffusion resistance, has been applied to experimental results from the reaction of hydrogen sulfide with zinc oxide.
Functionally, the effect of the variable spiral grain is to distribute water to all parts of the tree from any root.
A variable property grain model was applied to account for the kinetic reaction of hydrogen sulfide with zinc oxide.
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