Qiu Caihao, Punke Maik, Tian Yuan, Han Ying, Wang Siqi, Su Yishi, Salvalaglio Marco, Pan Xiaoqing, Srolovitz David J, Han Jian
Department of Materials Science and Engineering, City University of Hong Kong, Hong Kong, China.
Institute of Scientific Computing, TU Dresden, 01062 Dresden, Germany.
Science. 2024 Aug 30;385(6712):980-985. doi: 10.1126/science.adp1516. Epub 2024 Aug 29.
We demonstrate that grain boundaries (GBs) behave as Brownian ratchets, exhibiting direction-dependent mobilities and unidirectional motion under oscillatory driving forces or cyclic thermal annealing. We observed these phenomena for nearly all nonsymmetric GBs but not for symmetric ones. Our observations build on molecular dynamics and phase-field crystal simulations for a wide range of GB types and driving forces in both bicrystal and polycrystalline microstructures. We corroborate these simulation results through in situ experimental observations. We analyze these results with a Markov chain model and explore the implications of GB ratchet behavior for materials processing and microstructure tailoring.
我们证明,晶界表现为布朗棘轮,在振荡驱动力或循环热退火下表现出方向依赖性迁移率和单向运动。我们在几乎所有非对称晶界中观察到了这些现象,但对称晶界则没有。我们的观察基于对双晶和多晶微结构中广泛的晶界类型和驱动力进行的分子动力学和相场晶体模拟。我们通过原位实验观察证实了这些模拟结果。我们用马尔可夫链模型分析这些结果,并探讨晶界棘轮行为对材料加工和微观结构剪裁的影响。