Atom Probe Tomography (APT), Transmission Electron Microscopy (TEM), and 3D mechanical calculations in complex geometry and anisotropic strain fields were employed to study the role of minor elements in the precipitation process of silicon and chromium nitrides in nitrided Feâ»Si and Feâ»Cr alloys, respectively. In nitrided Feâ»Si alloys, an original sequence of SiâNâ precipitation was highlighted. Alâ»N clusters form first and act as nucleation sites for amorphous SiâNâ nitrides. This novel example of particle-simulated nucleation opens a new way to control SiâNâ precipitation in Feâ»Si alloys. In nitrided Feâ»Cr alloys, both the presence of iron in chromium nitrides and excess nitrogen in the ferritic matrix are unquestionably proved. Only a certain part of the so-called excess nitrogen is shown to be explained by the elastic accommodation of the misfit between nitride and the ferritic matrix. The presence of immobile excess nitrogen trapped at interfaces can be highly suspected.
Contribution of Local Analysis Techniques for the Characterization of Iron and Alloying Elements in Nitrides: Consequences on the Precipitation Process in Feâ»Si and Feâ»Cr Nitrided Alloys.
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作者:Van Landeghem Hugo P, Danoix Raphaële, Gouné Mohamed, Bordère Sylvie, MartinaviÄius Andrius, Jessner Peter, Epicier Thierry, Hannoyer Béatrice, Danoix Frédéric, Redjaïmia Abdelkrim
| 期刊: | Materials | 影响因子: | 3.200 |
| 时间: | 2018 | 起止号: | 2018 Aug 11; 11(8):1409 |
| doi: | 10.3390/ma11081409 | ||
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