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The precipitation of the γ′ phase from the γ phase during continuous cooling conditions (0.17 75 K s−1) from the solutionizing temperature was characterized in a directionally solidified CM247DS alloy with thermomechanical simulator, and by transmission electron microscopy, atom probe field ion microscopy and atom probe tomography.
The solute nanostructures formed in the primary α-Al grains of a semi-solid metal cast Al 7Si 0.6Mg alloy (F357) during ageing at 180 °C, and the age-hardening response of the alloy, have been systematically investigated by transmission electron microscopy, atom probe tomography and hardness testing.
The microstructural evolution in the heat-affected zone (HAZ) of 5 mm thick friction stir welded (FSW) 2024Al T351 joints during long-term natural aging and its effect on mechanical properties were investigated by a combination of transmission electron microscopy, atom probe tomography, differential scanning calorimetry and mechanical property tests.
Severe plastic deformation (SPD) of Cu, Ag and Nb ternary alloys with average Nb concentrations of 5, 10 and 15 at.% and an Ag concentration of 10 at.% was studied using high resolution scanning electron microscopy, atom probe tomography and X-ray diffraction.
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The phases and microstructures of the resulting coatings were thoroughly investigated by optical microscopy, X-ray diffraction, scanning electron microscopy, transmission electron microscopy and atom probe tomography.
To understand the mechanism of the increase in coercivity caused by post-sinter annealing of Nd Fe B-based magNd Fe B-based investigated the magnetsructures of commercial sintered magnets by high-resolution scanning electron microscopy, transmission electron microscopy and atom probe tomography.
Using electron microscopy and atom probe field ion microscopy, we have demonstrated that Ag+Si additions produce multi-component clustering reactions.
The microstructures of a 2.25%Cr 1%% Mo 0.15 wt% C steel, and a steel with identical alloying additions but a higher carbon level, 2.25%Cr 1%Mo 0.4wt wt% C, have been examined in the martensitic condition for a variety of tempering heat treatments by transmission electron microscopy and atom probe field ion microscopy.
Detailed microstructure investigations using scanning electron microscopy, scanning transmission electron microscopy and atom probe tomography revealed that the high carbon content resulted in the formation of a Nd-carbide with a tetragonal structure and the reduction in the volume fraction of an α-Nd phase at triple junctions.
The effect of Cu Mg cluster size and number density on the fatigue fracture behavior of Al Cu Mg alloy with various aging conditions was investigated by means of transmission electron microscopy (TEM), atom probe tomography (APT), scanning electron microscopy (SEM) and fatigue testing.
Herbig, M., Choi, P. & Raabe, D. Combining structural and chemical information at the nanometer scale by correlative transmission electron microscopy and atom probe tomography.
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