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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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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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) transmission electron microscopy (TEM/STEM), nanoindentation, and complementary microstructural and mechanical analysis methods Comparative evaluation of innovative materials with reference materials Literature
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reported for Zn. This is 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
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microstructures formed by PBF-LB result in slower degradation. Several explanations proposed so far do not clarify all observed nuances. This project focuses on unravelling the origin of the elevated corrosion
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, microstructural analysis, mechanical testing) high sense of responsibility in the laboratory, and confident handling of complex equipment and systems great care, independence, and reliability, as well as strong
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, experimentally grounded workflow for rapid microstructure-property optimization in steels. The PhD student will play a central role in this interdisciplinary initiative. They will: Develop and apply machine
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Materials and Devices – Structure and Function of Materials (IMD-1) to establish a data-driven, experimentally grounded workflow for rapid microstructure-property optimization in steels. The PhD student will
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Materials and Devices – Structure and Function of Materials (IMD-1) to establish a data-driven, experimentally grounded workflow for rapid microstructure-property optimization in steels. The PhD student will
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into biomimetic microstructures with 2-photon polymerization setup The evaluation of morphological and electrochemical device properties in biological conditions The validation for in-vitro cell interfacing