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Microstructure and microtexture evolution during static annealing of a hot-extruded AZ21 magnesium alloy was studied.
The microstructure and microtexture of the shear band in a 200 series Fe Cr Ni austenitic stainless steel are investigated by means of optical micrograph electron backscatter diffraction.
The microstructure and microtexture were characterized by electron back-scattering diffraction, and mechanical properties were assessed by shear punch and uniaxial tensile testing.
The detailed evolution of microstructure and microtexture during the annealing of warm-rolled (WR) and cold-rolled (CR) 0.78 wt.% Cr extra-low-carbon steels was studied via electron back-scattering diffraction (EBSD).
The produced microstructure and microtexture are not homogeneous across the turbine component due to geometrical factors and localised cooling rate during the casting process, which give rise to inhomogeneous deformation during service.
Although the cold-rolled texture is a typical pure metal or Cu-type deformation texture on a global scale, variations in microstructure and microtexture are found in the deformed material between locally sheared regions and away those from these regions.
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The deformed microstructure and microtextures are characterized by systematic electron backscatter diffraction orientation maps giving unequivocal primary and secondary twin determinations.
A scanning electron microscope in combination with an electron backscatter diffraction pattern mapping technique was employed to reveal microstructures and microtextures formed on these two facilities.
Samples of grey cast iron, compacted graphite cast iron and nodular cast iron were extensively studied, and the microstructure, microtexture and grain boundary misorientation evaluated.
Under given conditions, miniaturised macro-and microtexture tests (modified EN 13036-1 and modified EN 13036-4, respectively) prove to be a reliable tool to optimise texture design.
The evolution of microstructure, microtexture and mechanical properties during isothermal annealing of an ultrafine-grained interstitial-free steel after eight passes of route BC room temperature equal-channel angular pressing (ECAP) was studied.
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