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Showing 1 to 5 of 5 for “"Ferritic Martensitic Steels"”.

  1. Microstructure Evolution of Two Model Ferritic/Martensitic Steels Under Ion Irradiation In A Transmission Electron Microscope

    <p>Ferritic/martensitic steels are candidate materials for structural and cladding components designed for Generation IV reactors because of their superior resistance to radiation damage at the high operating temperatures envisioned in these reactors. To enable the development and optimization of …

    south-carolina Repository record for Microstructure Evolution of Two Model Ferritic/Martensitic Steels Under Ion Irradiation In A Transmission Electron Microscope (opens in a new tab)

  2. Alloy Design for a Fusion Power Plant

    … of a set of candidate alloys, reduced-activation ferritic-martensitic steels. The models have been compared to other methods, and it is demonstrated that a neural network approach to modelling the properties of irradiated steels provides a useful tool in the future engineering of fusion materials, …

    cambridge Repository record for Alloy Design for a Fusion Power Plant (opens in a new tab)

  3. Mechanical properties of materials for fusion power plants

    … changes in mechanical properties of irradiated steels, but the lack of facilities prevents us from testing candidate materials in a fusion{like environment. Modelling techniques are utilised here to extract information and principles which can help estimate changes in steels due to damage. The …

    cambridge Repository record for Mechanical properties of materials for fusion power plants (opens in a new tab)

  4. First-principles studies on oxide nanoclusters in bcc Fe

    … amongst them Oxide Dispersion Strengthened (ODS) steels also called Nanostructured Ferritic Alloys (NFA). NFA consist of Fe-Cr based ferritic/martensitic steels that contain highly dispersed nanometer-size Y-Ti-O nanoclusters, and are manufactured via powder metallurgy. The presence of …

    qucosa-diss

  5. Advanced characterization of the early-stage evolution of microstructures and mechanical properties in neutron-irradiated commercial steels

    … and mechanical properties of two types of Fe-Cr ferritic-martensitic (F-M) steels, HT9 and T91, were characterized. The materials were irradiated in the Advanced Test Reactor (ATR) at different temperatures and neutron fluences. Three temperature ranges and four neutron dose levels were …

    uiuc Repository record for Advanced characterization of the early-stage evolution of microstructures and mechanical properties in neutron-irradiated commercial steels (opens in a new tab)