微尺度化学
材料科学
缩放比例
纳米尺度
机械
粘着
静摩擦
摩擦系数
航程(航空)
摩擦学
复合材料
纳米技术
接触力学
比例(比率)
剪切(地质)
可塑性
石墨
原子力显微镜
接触面积
作者
Minhao Han,Deli Peng,Dinglin Yang,Jin Wang,Yi Ning Zheng,Guofeng Hu,Meng Qi,Shao, Yifan,Jiaying Li,Feng Ding,Zhiping Xu,Michael Urbakh,Quanshui Zheng
标识
DOI:10.48550/arxiv.2601.00190
摘要
Structural superlubricity (SSL) promises nearly frictionless and wearless sliding, but has until now been considered a special and extreme interfacial phenomenon limited to micro- and nanoscale contacts. Here, we demonstrate robust macroscale SSL within a single sub-millimeter graphite contact. Previously reported near-zero friction coefficients, where friction is nearly independent of normal load, have only been observed at microscale contacts under low loads. Our system expands both contact size and load into the macroscopic regime, exhibiting friction coefficients that fluctuate around zero and reach values as low as $10^{-6}$ across a broad load range from 1 mN to 0.5 N. Negative friction coefficients are also observed. Similar behavior is observed at graphite/MoS$_2$ interfaces, indicating that macroscale SSL is a generalizable phenomenon across flat layered materials. These findings overturn long-standing scaling limitations and establish macroscale SSL as a paradigm-shifting platform for next-generation mechanical and electromechanical systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI