Jang Tae Jin, Choi Won Seok, Kim Dae Woong, Choi Gwanghyo, Jun Hosun, Ferrari Alberto, Körmann Fritz, Choi Pyuck-Pa, Sohn Seok Su
Department of Materials Science and Engineering Korea University, Seoul, South Korea.
Department of Materials Science and Engineering Korea Advanced Institute of Science and Technology, Daejeon, South Korea.
Nat Commun. 2021 Aug 4;12(1):4703. doi: 10.1038/s41467-021-25031-6.
Precipitation strengthening has been the basis of physical metallurgy since more than 100 years owing to its excellent strengthening effects. This approach generally employs coherent and nano-sized precipitates, as incoherent precipitates energetically become coarse due to their incompatibility with matrix and provide a negligible strengthening effect or even cause brittleness. Here we propose a shear band-driven dispersion of nano-sized and semicoherent precipitates, which show significant strengthening effects. We add aluminum to a model CoNiV medium-entropy alloy with a face-centered cubic structure to form the L2 Heusler phase with an ordered body-centered cubic structure, as predicted by ab initio calculations. Micro-shear bands act as heterogeneous nucleation sites and generate finely dispersed intragranular precipitates with a semicoherent interface, which leads to a remarkable strength-ductility balance. This work suggests that the structurally dissimilar precipitates, which are generally avoided in conventional alloys, can be a useful design concept in developing high-strength ductile structural materials.
由于析出强化具有优异的强化效果,在100多年来一直是物理冶金的基础。这种方法通常采用相干的纳米级析出物,因为非相干析出物由于与基体不相容而在能量上变得粗大,强化效果可忽略不计,甚至会导致脆性。在此,我们提出了一种由剪切带驱动的纳米级半相干析出物的弥散,其显示出显著的强化效果。我们将铝添加到具有面心立方结构的模型CoNiV中熵合金中,以形成具有有序体心立方结构的L2 Heusler相,这是由从头算计算预测的。微剪切带作为异质形核位点,产生具有半相干界面的细分散晶内析出物,从而导致显著的强度-延展性平衡。这项工作表明,在传统合金中通常避免的结构不同的析出物,可能是开发高强度韧性结构材料的有用设计概念。