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EU MSCA doctoral (PhD) position in Materials Engineering with focus on computational optimization of
, scanning speed, layer thickness, scan strategy and subsequent heat-treatment) has a significant effect on the microstructure (grain size, alloying elements distribution, crystallographic texture), mechanical
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compared to extruded or cast counterparts. Similar effect albeit of lesser extent has been reported for Zn. This is against common expectation that the finer microstructures formed by PBF-LB result in slower
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of high cor
against common expectation that the finer microstructures formed by PBF-LB result in slower degradation. Several explanations proposed so far do not clarify all observed nuances. This project focuses
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of processing parameters (laser power, spot size, hatch distance, scanning speed, layer thickness, scan strategy and subsequent heat-treatment) has a significant effect on the microstructure (grain size, alloying
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analytical skills are desirable as well as some programming experience, while initial exposure to Finite Element Methods & object-oriented C++ programming language would be a plus, but is not required. We also
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the GraduateCenter . International elements Projects with partners in Germany and abroad Special promotion / funding of the programme DAAD development-related postgraduate course Course-specific, integrated
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significant effect on the microstructure (grain size, alloying elements distribution, crystallographic texture), mechanical properties (hardness, yield and tensile strength) and corrosion profile (rate and
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-motivation and interest to learn new skills Great to have: Experience programming in Python, Julia, or C/C++ Experience with Mathematica Experience with finite element methods, agent-based simulations, and/or
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. Additional support is offered by the GraduateCenter. International elements Courses are led with foreign partners Course-specific, integrated German language courses No Course-specific, integrated
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upon metal contact with an aqueous electrolyte. For this, in situ SEM and in situ TEM will be used at HEREON. This will be accompanied by EBSD for ex situ microstructure characterization, X-ray micro