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in conducting high quality research on a variety of metal alloy systems fabricated via DED with the goal of constructing process-structure-property relationships of these materials. A background in
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, mechanical CAD, PCB design tools, and finite element electromagnetic analysis software. Experience creating engineering documents, reports, and technical publications, including drawings, procedures, and
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methods reliant on powder feedstock synthesis, compaction and sintering. Characterization of chemistry and microstructure resulting from processing, and evaluation of potential impacts on mechanical and
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Laboratory (ORNL) is seeking to fill a post-doctoral position in the Metals and Composites Processing Group with a focus on developing relationships between alloy design, processing, and microstructure. Key
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and hardware. Preferred Qualifications: Experience with solid modeling and finite element analysis codes as it relates to electromagnetic interactions of coil assemblies, the modeling of cryogenic
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analysis using finite elements of various mechanical assemblies and components when subjected to static, non-linear loads, dynamic, thermal, and/or seismic loads Regulatory destructive testing of Type A
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calculations. Experience with reactor system codes such as RELAP5 or other CFD experience. Experience with finite element codes such as COMSOL or ANSYS. Preferred Qualifications: Experience in a research and
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high-speed rotating equipment. Finite Element (FE) modeling/analysis. Expertise with 3D CAD modeling drafting, and product data management (PDM) systems. Proficiency with SolidWorks. Experience creating
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process. Experience at a commercial, research, or naval reactor. NRC/DOE regulatory experience and/or past interaction with regulators. Demonstrated experience using finite element analysis programs
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application spaces. The research will focus on detailed trace element and isotopic characterizations via inorganic mass spectrometry and using a variety of elemental and isotopic approaches. As a U.S