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execute experimental welding trials, including parameter selection, tooling setup, and sample preparation. Perform microstructural characterization (optical microscopy, SEM/EDS, EBSD) and mechanical testing
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techniques such as SEM, TEM, XRD, EDS, EBSD, FIB/SEM etc., as well as physico-mechanical characterization techniques such as tensile, compression, DSC/TGA, etc. as well as analysis of the data with good
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or burn-resistant testing demonstrated experience with conducting microstructural characterization techniques such as SEM, TEM, XRD, EDS, EBSD, FIB/SEM etc., as well as physico-mechanical characterization
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engineering background in mechanical design, manufacturing and control circuit development; microstructure characterization capability with SEM and EBSD Desired Experience: Knowledge and skills in mechanical
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experiments (He⁺, H⁺, and Fe²⁺) with advanced microstructural characterization (TEM, FIB, EBSD, APT) to elucidate the atomic-scale mechanisms governing interface stability and helium transport. The ultimate
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, ideally using the Laser Powder Bed Fusion (L-PBF) technique. Proficiency in thermo-mechanical and microstructural characterization methods, such as DSC, SEM, EBSD, XRD, and other relevant analytical
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-on experience in: Additive manufacturing of High Entropy alloys and Al-based alloys Powder characterization – Microstructure characterization (SEM, EBSD, TEM, XRD) Mechanical testing (tensile, fatigue, creep
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/Responsibilities: Utilize techniques such as optical microscopy, scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), and transmission electron microscopy (TEM) for microstructural
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(tensile, hardness, nanoindentation, metallography) and microstructural characterization techniques (SEM, EBSD, OM) Experience with metallographic specimen preparation Knowledge of mechanical properties