Simultaneous measurement of self-diffusion of iron and nitrogen in amorphous iron nitride (Fe86N14) using secondary ion mass spectroscopy (SIMS) technique has been done. In addition neutron reflectivity (NR) technique was employed to study the Fe diffusion in the same compound. The broadening of a tracer layer of 57Fe8615N14 sandwiched between Fe86N14 layers was observed after isothermal vacuum annealing of the films at different temperatures in SIMS measurements. And a decay of the Bragg peak intensity after isothermal annealing was observed in [Fe86N14/57Fe86N14]10 multilayers in NR. Strong structural relaxation of diffusion coefficient was observed below the crystallization temperature of the amorphous phase in both measurements. It was observed from the SIMS measurements that Fe diffusion was about 2 orders of magnitude smaller compared to nitrogen at a given temperature. The NR measurements reveal that the mechanism of Fe self-diffusion is very similar to that in metal-metal type metallic glasses. The structural relaxation time for Fe and N diffusion was found comparable indicating that the obtained relaxation time essentially pertain to the structural relaxation of the amorphous phase.
翻译:使用二级离子质谱光谱学(SIMS)技术,对铁和氮在无定形铁硝化铁中自扩散(Fe86N14)进行了同步测量,此外,还使用中子反射技术研究同一化合物中的Fe扩散;在Fe86N14层之间,发现Fe86N14层之间有57Fe8615N14层的痕量层的扩大,在SIMS测量不同温度的薄膜中发生热真空,在薄膜喷射后,发现薄膜自扩散(Fe86N14N14)自扩散(Fe86N14)自扩散;在[Fe86N14/57Fe86N14]10 NRC多层中观察到了布拉格峰顶强度的衰减。在两种测量中,均在不固定阶段的结晶温度下观测到扩散系数的强烈结构松动。从SIMIS的测量中发现,Fe扩散比给定温度的氮分量小于2级的2级。在金属金属类型金属眼镜中发现的自融化机制非常相似。