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techniques for composite structures, including hybrid and multi-material systems Utilize advanced characterization methods to evaluate multifunctional materials, including mechanical, thermal, and
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) and Computational Fluid Dynamics (CFD), for polymer composite manufacturing processes Perform multi-physics simulations involving coupled thermal, mechanical, and material behavior across multiple
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manufacturing for applications in aerospace, automotive, and marine/shipbuilding industries, as well as trending areas of international composite research in material science, mechanical engineering, chemical
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of neutron irradiation on the mechanical and thermophysical properties of nuclear ceramics, composites, structural alloys, and related materials. Conduct detailed microstructural and defect characterization
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This position is partially supported by the University of Tennessee–Oak Ridge Innovation Institute (UT-ORII), and resides in the Composite Science and Technology Section in the Manufacturing Science Division (MSD
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. MSTD conducts world-leading research on metallic, ceramic, and composite materials for harsh environments with emphasis on materials for nuclear energy, fusion, combustion, space, transportation, and
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Materials & Manufacturing Technology Office (AMMTO) and Industrial Technologies Office (ITO) and cover the topics like smart manufacturing, additive manufacturing, carbon fiber and composites, energy-water
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design for manufacturing. Focus areas include: rotors, motors, bearings, suspensions, composites, vibrations, and containment safety design. Progress new designs through various stages of testing toward