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the way in sustainable additive manufacturing research and development. For more details, please view https://www.ntu.edu.sg/sc3dp/ Key Responsibilities: Perform fabrication using Laser powder-bed fusion
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) Production through arc melting, powder metallurgy or additive manufacturing; (3) Characterisation using advanced electron microscopy (SEM, EBSD, TEM), APT and x-ray diffraction methods; (4) Mechanical Testing
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reconstructions (EBSD). • Performing in situ high-energy XRD (HEXRD) experiments to track the carbides fractions and the carbon concentration in the austenite [2]. In these experiments, the samples will have
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etc). Advanced characterization of steels, for example transmission electron microscopy and electron backscatter diffraction (EBSD). Mechanical property testing. Materials modelling, with experience
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of the produced powders and films: SEM/EDS, TEM, XRD, ICP-OES, EBSD, etc. Correlate material morphology and composition with final TE material and device performance. Develop TE devices optimized for both energy
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selection criteria Hands-on experience with one or more advanced characterization techniques such as SEM, EBSD, FIB, and TEM Prior knowledge/experience in hydrogen embrittlement A record of peer-reviewed
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Knowledge: Experience with advanced microscopy techniques such as transmission electron microscopy (TEM), scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), and nano/microindentation
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, numerical process simulation, and advanced characterization techniques (synchrotron, TEM, EBSD), will be implemented. The ideal candidate will hold a Master's degree or an engineering degree in Materials
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Electron Microscope) with CL/EDS/EBSD capabilities. For more information, please visit https://www.bowdoin.edu/earth-oceanographicscience/ . Bowdoin College offers opportunities for professional development
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APT, TEM, FIM, EBIC, EBSD, XPS Kelvin probe microscopy, machine learning augmented analysis techniques) Experimental and computational analysis of transport and the reaction of surfaces and particles