Jarir Aktaa
Affiliations: | Maschinenbau | Karlsruher Institut für Technologie |
Website:
https://www.iam.kit.edu/mmi/deutsch/Team_75.phpGoogle:
"Jarir Aktaa"Bio:
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Sign in to add traineeAnkur Chauhan | grad student | 2014-2018 | Karlsruher Institut für Technologie |
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Publications
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Lu K, Chauhan A, Litvinov D, et al. (2020) High-temperature low cycle fatigue behavior of an equiatomic CoCrFeMnNi high-entropy alloy Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 791: 139781 |
Yuan Q, Chauhan A, Gaganidze E, et al. (2020) Direct observation of dislocation loops shrinkage upon annealing neutron-irradiated Fe–9Cr alloy Journal of Nuclear Materials. 542: 152401 |
Aktaa J, Walter M, Gaisina E, et al. (2020) Assessment of the chemical compatibility between EUROFER and ceramic breeder with respect to fatigue lifetime Fusion Engineering and Design. 157: 111732 |
Emmerich T, Vaßen R, Aktaa J. (2020) Thermal fatigue behavior of functionally graded W/EUROFER-layer systems using a new test apparatus Fusion Engineering and Design. 154: 111550 |
Forest L, Aktaa J, Boccaccini LV, et al. (2020) Status of the EU DEMO breeding blanket manufacturing R&D activities Fusion Engineering and Design. 152: 111420 |
Zhang K, Walter M, Aktaa J. (2020) Ratcheting and fatigue behavior of Eurofer97 at high temperature, part 1: Experiment Fusion Engineering and Design. 150: 111407 |
Beinert AJ, Imm M, Benick J, et al. (2020) Silicon solar cell–integrated stress and temperature sensors for photovoltaic modules Progress in Photovoltaics. 28: 717-724 |
Conte M, Aktaa J. (2019) Manufacturing influences on microstructure and fracture mechanical properties of polycrystalline tungsten Nuclear Materials and Energy. 21: 100591 |
Litvinov D, Chauhan A, Gräning T, et al. (2019) Microstructure characterization of a novel austenitic ODS steel by transmission electron microscopy Materialia. 5: 100176 |
Qu D, Wirtz M, Linke J, et al. (2019) Thermo-mechanical response of FG tungsten/EUROFER multilayer under high thermal loads Journal of Nuclear Materials. 519: 137-144 |