Chellali M R, Nandam S H, Hahn H
Institute of Nanotechnology, Karlsruhe Institute of Technology, 76344 Eggenstein-Leopoldshafen, Germany.
KIT-TUD Joint Research Laboratory Nanomaterials, Institute of Materials Science, Technical University Darmstadt, 64287 Darmstadt, Germany.
Phys Rev Lett. 2020 Nov 13;125(20):205501. doi: 10.1103/PhysRevLett.125.205501.
The compositional changes in shear bands of a Cu_{50}Zr_{50} metallic glass after plastic deformation at room temperature have been monitored by atom probe tomography. Across the width of the shear bands an asymmetry of the enriched and depleted zones of the constituent elements is observed, while no change of the composition within the surrounding matrix occurs. The diffusion coefficients determined from the concentration profiles are orders of magnitude larger than the values of bulk diffusion at room temperature. The asymmetric concentration profiles of the constituent elements (Cu and Zr) remain stable during annealing at a temperature of 543 K, even though fast and preferential diffusion of a Ni tracer has been found along the shear band at the same temperature. The results indicate that the atomic structure and stress distribution within the shear bands is altered from that of the surrounding amorphous matrix. The fact that the shear band structure is unaltered at elevated temperatures and that fast diffusion occurs preferentially within the shear bands leads to the conclusion that they are structurally stable.
通过原子探针断层扫描技术监测了室温下塑性变形后的Cu₅₀Zr₅₀金属玻璃剪切带的成分变化。在剪切带的宽度范围内,观察到组成元素的富集区和贫化区存在不对称性,而周围基体中的成分没有变化。从浓度分布确定的扩散系数比室温下的体扩散值大几个数量级。在543 K温度下退火期间,组成元素(Cu和Zr)的不对称浓度分布保持稳定,尽管在相同温度下已发现Ni示踪剂沿剪切带快速且优先扩散。结果表明,剪切带内的原子结构和应力分布与周围非晶基体的不同。剪切带结构在高温下未改变且快速扩散优先发生在剪切带内这一事实得出它们在结构上是稳定的结论。