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Titlebook: Applications of Microscopy in Materials and Life Sciences; Proceedings of 12th Partha Ghosal,C. Barry Carter,Rajdeep Sarkar Conference pro

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https://doi.org/10.1007/978-981-16-2982-2Microscopy Techniques; Materials Science; Life Sciences; Microscopy of High Energy Materials; Microscopy
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Development of Thin Aluminide Coatings on Alloy 800 Substrateamination with elemental analysis on magnetron-sputtered substrates indicated formation of ~1.0 µm thick oxygen-rich Al–Fe–Ni–Cr containing layer just below the uppermost aluminium-rich deposited layer. Magnetron-sputtered + thermally–treated (1273 K for 18 h) substrates revealed formation of thin (
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Estimation of Dislocation Density Using Electron Channelling Contrast Imaging in Ti-Hastelloy-Normed to a nominal strain of 0.1. These dislocations were imaged using the backscattered electrons signal under controlled two beam diffraction conditions in SEM. To obtain such a condition, the crystallographic orientation of the grain is evaluated from the electron backscattered diffraction (EBSD)
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Efficiency of the Solid Oxide Cell (SOC) Using Nanocrystalline Mixed Ionic and Electronic Conductingtechnique and hydroxide co-precipitated route, respectively. Synthesized calcined nanopowders are characterized for phase purity using X-ray diffraction showing rhombohedral lattice for LSCF and cubic lattices for BSCF and GDC. Detailed transmission electron microscopy (TEM) reveals a near-net shape
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