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advanced characterisation techniques. The successful candidate will be expected to: undertake experimental research in metallic additive manufacturing, with a focus on powder bed fusion processing
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with applicable laboratory safety procedures, good laboratory practice principles, and regulations governing the implementation of the project. Requirements for the candidate: PhD degree in materials
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that such stacks should behave as one-dimensional metals, and potentially as superconductors. We have made a phase whose average structure matches that prediction in synchrotron powder diffraction and neutron total
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as the raw material. The candidate is also expected to be well-versed in powder processing, processing in low Po2 environments, chemical and physical powder characterization of ceramic and metallic
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candidate is expected to: Develop thermoelectric alloy powders, formulate printable inks, and develop a sintering and patterning process on a flexible substrate based on selective laser exposure
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commensurate with abilities and experience Type of Position Other Position Time Status Full-Time Required Education PhD in Engineering Required Related Experience see Skills / Knowledge / Abilities Required
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on powder diffraction, neutron diffraction, or scattering data will also be considered, preference will be given to those with expertise in electron diffraction. Candidates should be capable of preparing
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using the Advanced Photon Source (APS) and other characterization techniques such as scanning electron microscopy (SEM) and powder diffraction. This is a one-year appointment centered on the development
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, and related materials. Research activities will include developing solution-based processing methods, optimizing powder mixing and dispersion, fabricating dense composites through thermal consolidation
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of the powder bed, binder concentration (cellulose, starch, etc…) - atomization-drying with either evaporation or freezing/freeze-drying of the solvent.37,38 Formulation parameters (dry matter