吕德斯乐队
金属
电化学
打滑(空气动力学)
化学
疲劳试验
高分辨率
灾难性故障
位错
冶金
材料科学
复合材料
电极
结晶学
地质学
物理
遥感
物理化学
热力学
作者
Taishi Xiao,Lixun Cheng,Zheng Chen,Yan Hu,Xiangdong Yao,Junxiang Shu,Sailin Yuan,Yao Ma,Can Tang,Zuohua Huang,Bin Shen,Wenzhong Bao,Xin Xu,Binghui Ge,Zhengzong Sun
摘要
Metal fatigue, characterized by the accumulation of dislocation defects, is a prevalent failure mode in structural materials. Nondestructive early-stage detection of metal fatigue is extremely important to prevent disastrous events and protect human life. However, the lack of a precise quantitative method to visualize fatigue with spatiotemporal resolution poses a significant obstacle to timely detection. Here, we demonstrate a nondestructive electrocatalytic method to visualize metal fatigue, which is promising for future fatigue early detections. The persistent slip band (PSB) is considered one of the most consequential defect structures for metal fatigue failure. The selective electrochemistry is highly dependent on the metal crystallography and the collective dislocations in the PSB structure, enabling the amplification of the electrochemical response and differentiation of the fatigue stages at a submillimeter resolution. In addition, this nondestructive electrocatalytic method is applicable to several common metals, including copper, silver, iron, and aluminum, holding great significance where metal fatigue is a critical concern.
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