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ways, mechanical properties test (such as tensile test, etc.) and some highly advanced microstructural characterisation such as SEM (Scanning electron microscope), XRD (X-ray diffraction) and TEM
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the admission application is approved. Cutting-Edge Training: Gain hands-on experience with multi-material 4D printing, advanced electrode fabrication, and state-of-the-art characterisation (e.g., SEM, TEM, XPS
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microscopy tools such as SEM/EDX, FIB and TEM. Also use dimensional metrology for metal loss evaluation. Thermodynamics calculations using FactSage software will also be used. The candidate will be based
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diffraction (EBSD), transmission electron microscope (TEM) and in-situ micromechanics. This project will involve manufacturing trials, workpiece surface quality analysis (e.g. metallurgy, integrity, residual
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electron microscopy image simulations Development of a machine learning model capable of inferring 3D atomic structure from two-dimensional TEM projection images Application of the new approach