Kepaptsoglou D M, Paluga M, Deanko M, Müller D, Conde C F, Hristoforou E, Janickovic D, Svec P
Laboratory of Physical Metallurgy, National Technical University of Athens, 9 Heroon Polytechniou str., Zografou Campus, 15780 Athens, Greece.
J Microsc. 2006 Sep;223(Pt 3):288-91. doi: 10.1111/j.1365-2818.2006.01656.x.
The effect of the substitution of Fe by Co on the enhancement of glass-forming ability limits and subsequent nanocrystallization was studied in a rapidly quenched amorphous system (Fe(x)Co(y))(79)Mo(8)Cu(1)B(12) for y/x ranging from 0 to 1. The effect of Cu on nanocrystallization was investigated by comparison with Cu-free amorphous Fe(80)Mo(8)B(12). Systems partially crystallized at the surface layer were prepared for y/x = 0 using different quenching conditions. The effect of heat treatment of master alloys used for ribbon casting was also assessed. The microstructure and surface/bulk crystallization effects were analysed using transmission electron microscopy and electron and X-ray diffraction in relation to the expected enhancement of high-temperature soft magnetic properties, drastically reduced grain sizes (approximately 5 nm) and Co content. Unusual surface phenomena were observed, indicating the origin of possible nucleation sites for preferential crystallization in samples with low Co content.
在快速淬火的非晶体系(Fe(x)Co(y))(79)Mo(8)Cu(1)B(12)中,研究了用Co替代Fe对玻璃形成能力极限增强以及随后的纳米晶化的影响,其中y/x的范围为0至1。通过与无Cu的非晶Fe(80)Mo(8)B(12)比较,研究了Cu对纳米晶化的影响。对于y/x = 0,使用不同的淬火条件制备了在表面层部分结晶的体系。还评估了用于带材铸造的母合金的热处理效果。利用透射电子显微镜、电子衍射和X射线衍射分析了微观结构以及表面/体相结晶效应,这些效应与预期的高温软磁性能增强、晶粒尺寸大幅减小(约5 nm)和Co含量有关。观察到了异常的表面现象,这表明了低Co含量样品中优先结晶的可能成核位点的来源。