首页> 外文会议>Symposium on Influences of Interface and Dislocation Behavior on Microstructure Evolution Nov 27-30, 2000, Boston, Massachusetts, U.S.A. >Nanometer Scale Study of Segregation at Heterophase Interfaces of Molybdenum Nitride Precipitates in an α-Iron Matrix
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Nanometer Scale Study of Segregation at Heterophase Interfaces of Molybdenum Nitride Precipitates in an α-Iron Matrix

机译:α-铁基质中氮化钼沉淀物异相界面偏析的纳米尺度研究

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We are studying heterophase interfaces between molybdenum nitride precipitates and an α-iron matrix on a nanometer scale by electron and atom-probe field-ion microscopies. Fe-2 at.% Mo-0.5 at.% Sn and Fe-2 at.% Mo-0.4 at.% Sb are internally nitrided by annealing in an NH_3 / H_2 atmosphere. Nitridation at 550℃ produces coherent thin platelet-shaped molybdenum nitride precipitates, while at 600℃ semicoherent coarse plates and spheres also form. Segregation of Sn and Sb is observed at the heterophase interfaces of only the semicoherent precipitates. The loss of coherency, that is the formation of misfit dislocations, is essential for substantial interfacial solute segregation to occur at heterophase interfaces.
机译:我们正在通过电子和原子探针场离子显微术研究氮化钼沉淀物和α-铁基体之间纳米级的异相界面。通过在NH_3 / H_2气氛中退火,将Fe-2 at%Mo-0.5 at%Sn和Fe-2 at%Mo-0.4 at%Sb内部氮化。在550℃进行氮化处理会生成连贯的薄片状氮化钼沉淀物,而在600℃进行氮化也会形成半连贯的粗晶板和球状物。仅在半相干沉淀物的异相界面上观察到Sn和Sb的偏析。相干性的丧失,即失配位错的形成,对于在异相界面处发生实质性的界面溶质离析至关重要。

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