Kim Jong Hun, Yoo Geun Hee, Ryu Wook Ha, Park Eun Soo, Lee Gwan-Hyoung
Department of Materials Science and Engineering, Seoul National University, Seoul08826, Korea.
Research Institute of Advanced Materials, Seoul National University, Seoul08826, Korea.
ACS Omega. 2022 Nov 2;7(45):41256-41265. doi: 10.1021/acsomega.2c04930. eCollection 2022 Nov 15.
Metallic glass (MG), an intrinsic heterogeneous structure at the atomic scale, is one of the promising engineering materials with intriguing physical properties. MG often suffers from the fatigue issue caused by the repetitive mechanical loading, but it is still elusive how the local heterogeneity evolves and affects the macroscale fatigue and deformation against bulky external stress. In this study, we investigate the fatigue effect in Zr-Cu-Al ribbon using a bending fatigue method. We used scanning probe microscopy (SPM) in parallel with X-ray diffraction and X-ray photoelectron spectroscopy to figure out the loading effect on the local heterogeneities. The spatially resolved SPM images show that there is a local fluctuation of mechanical and electrical properties on the fatigued side along with morphological deformation compared to the unloaded side. Approaching the broken edge where the fatigue failure occurs, the decaying tendency is not only more dominant but also accelerated by surface oxidation of the fatigued regions. Our study provides a useful guideline on how to monitor structural changes of MGs under fatigue conditions in service and will open a door toward commercialization of high-performance structural engineering materials.
金属玻璃(MG)在原子尺度上是一种固有的非均匀结构,是具有迷人物理特性的有前途的工程材料之一。MG常常受到重复机械载荷引起的疲劳问题困扰,但局部非均匀性如何演变以及如何抵抗大量外部应力影响宏观尺度的疲劳和变形,仍然难以捉摸。在本研究中,我们使用弯曲疲劳方法研究Zr-Cu-Al薄带中的疲劳效应。我们将扫描探针显微镜(SPM)与X射线衍射和X射线光电子能谱并行使用,以确定载荷对局部非均匀性的影响。空间分辨的SPM图像显示,与未加载的一侧相比,疲劳一侧的机械和电学性质存在局部波动,同时伴有形态变形。靠近发生疲劳失效的断裂边缘时,衰减趋势不仅更为显著,而且会因疲劳区域的表面氧化而加速。我们的研究为如何在实际使用的疲劳条件下监测MG的结构变化提供了有用的指导方针,并将为高性能结构工程材料的商业化打开一扇门。