Zhao Yinting, Fu Danyang, Wang Qikun, Huang Jiali, Lei Dan, Ren Zhongming, Wu Liang
School of Materials Science and Engineering, Shanghai University, No. 99 ShangDa Road, BaoShan District, Shanghai 200444, China.
Ultratrend Technologies Inc., Room 518, Building 3, No. 503, Shunfeng Road, Yuhang District, Hangzhou City, Zhejiang Province 311199, China.
ACS Omega. 2021 Dec 13;7(2):2015-2022. doi: 10.1021/acsomega.1c05483. eCollection 2022 Jan 18.
Classical molecular dynamics simulations are performed to investigate the motion of a-type edge dislocations in wurtzite aluminum nitride (AlN). The nucleation and propagation of kinks are observed via the dislocation extraction algorithm. Our simulation results show that the nucleation energy of the kink pair in AlN is 1.2 eV and that the migration energy is 2.8 eV. The Peierls stress of the 1/3⟨112̅0⟩{101̅0} edge dislocation at 0 K is 15.9 GPa. The viscous motion of dislocations occurs when τ > τ , and the dislocation velocity is inversely proportional to the temperature and directly proportional to the applied stress. Below room temperature, the value of the critical resolved shear stress (CRSS) on the prismatic plane is the lowest, which suggests that the dislocation mobility on the prismatic plane is the easiest. The CRSS on the pyramidal plane is always the highest at all temperatures, which suggests that pyramidal slip is the hardest among these three slip systems.
进行经典分子动力学模拟以研究纤锌矿型氮化铝(AlN)中a型刃位错的运动。通过位错提取算法观察到扭折的形核和传播。我们的模拟结果表明,AlN中扭折对的形核能为1.2 eV,迁移能为2.8 eV。0 K时1/3⟨112̅0⟩{101̅0}刃位错的派尔斯应力为15.9 GPa。当τ > τ 时,位错发生粘性运动,位错速度与温度成反比,与外加应力成正比。在室温以下,棱柱面上的临界分切应力(CRSS)值最低,这表明棱柱面上的位错迁移最容易。在所有温度下,锥面上的CRSS始终最高,这表明在这三种滑移系统中锥面滑移最难。