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Field
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Requisition Id 15907 Overview: The Radiation Effects and Microstructural Analysis Group (REMAG) within the Materials Science and Technology Division at Oak Ridge National Laboratory (ORNL) is
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the effect of thermal tempering on thin film microstructure while focusing on the evolution of mechanical properties and adhesion. Different thin film stack architectures will be synthetized by PVD techniques
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accounts for the observed microstructural effects, validated through comparison with available experimental data and implementable in finite element simulations for engineering applications. Where to apply
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the patented PowderMEMS technology. A core competence is the integration of porous microstructures on wafers for various microtechnological applications. Further information on the »Agglomerated Microsystems
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innovation, and materials research capability expansion. This position resides in the Radiation Effects and Microstructural Analysis Group (REMAG) within the Materials in Extremes Section, Materials Science
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high-grade recycled metal alloys from low-grade scrap sources can be delivered by uncovering the missing science to engineer the solidification microstructure to tolerate higher level of impurities, by
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microstructure and mechanical properties and correlate these with the process route. You will conduct modelling investigation and validation of the performance (wear, resistance to fatigue cracking) under working
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| Materials Science and Engineering Designs, develops, and conducts scientific research studies in the areas of ultrasonically assisted manufacturing processes, microstructure characterization, and
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Implementing labeling functions for supervised learning Analyzing microstructure patterns (e.g., spread crossing opportunities) Required skills Strong programming skills (Rust and/or Python) Experience handling
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include very high temperature stability, high mechanical stability and longevity, excellent chemical resistance, and tuneable microstructure. Combined with the design freedom of 3D printing, we have the