6 found
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  1.  36
    The effect of Cu on precipitation in Al–Mg–Si alloys.C. D. Marioara, S. J. Andersen, T. N. Stene, H. Hasting, J. Walmsley, A. T. J. Van Helvoort & R. Holmestad - 2007 - Philosophical Magazine 87 (23):3385-3413.
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  2.  41
    HAADF-STEM study ofβ′-type precipitates in an over-aged Al–Mg–Si–Ag alloy.C. D. Marioara, J. Nakamura, K. Matsuda, S. J. Andersen, R. Holmestad, T. Sato, T. Kawabata & S. Ikeno - 2012 - Philosophical Magazine 92 (9):1149-1158.
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  3.  27
    Applying precipitate–host lattice coherency for compositional determination of precipitates in Al–Mg–Si–Cu alloys.M. Torsæter, F. J. H. Ehlers, C. D. Marioara, S. J. Andersen & R. Holmestad - 2012 - Philosophical Magazine 92 (31):3833-3856.
  4.  18
    Scanning transmission electron microscopy investigation of an Al–Mg–Si–Ge–Cu alloy.R. Bjørge, S. J. Andersen, C. D. Marioara, J. Etheridge & R. Holmestad - 2012 - Philosophical Magazine 92 (32):3983-3993.
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  5.  12
    A study of the influence of precipitate-free zones on the strain localization and failure of the aluminium alloy AA7075-T651.M. Fourmeau, C. D. Marioara, T. Børvik, A. Benallal & O. S. Hopperstad - 2015 - Philosophical Magazine 95 (28-30):3278-3304.
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  6.  24
    HRTEM study of the effect of deformation on the early precipitation behaviour in an AA6060 Al–Mg–Si alloy.K. Teichmann, C. D. Marioara, S. J. Andersen, K. O. Pedersen, S. Gulbrandsen-Dahl, M. Kolar, R. Holmestad & K. Marthinsen - 2011 - Philosophical Magazine 91 (28):3744-3754.
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