Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Phys Rev Lett. 2012 Jan 6;108(1):015504. doi: 10.1103/PhysRevLett.108.015504. Epub 2012 Jan 4.
Metallic glasses are commonly brittle, as they generally fail catastrophically under uniaxial tension. Here we show pronounced macroscopic tensile plasticity achieved in a La-based metallic glass which possesses strong β relaxations and nanoscale heterogeneous structures. We demonstrate that the β relaxation is closely correlated with the activation of the structural units of plastic deformations and global plasticity, and the transition from brittle to ductile in tension and the activation of the β relaxations follow a similar time-temperature scaling relationship. The results have implications for understanding the mechanisms of plastic deformation and structural origin of β relaxations as well as for solving the brittleness in metallic glasses.
金属玻璃通常是脆性的,因为它们在单轴拉伸下通常会灾难性地失效。在这里,我们展示了一种基于镧的金属玻璃中显著的宏观拉伸塑性,该金属玻璃具有强烈的β弛豫和纳米级异质结构。我们证明β弛豫与塑性变形和整体塑性的结构单元的激活密切相关,拉伸时从脆性到韧性的转变以及β弛豫的激活遵循相似的时-温标度关系。这些结果对于理解塑性变形机制和β弛豫的结构起源以及解决金属玻璃的脆性问题具有重要意义。