首页> 外文会议>TMS annual meeting exhibition >Ab Initio Molecular Dynamics Study on the Dissolution of Interfacial Iron Oxides in Hot Compressive Bonding Combined with Experiments
【24h】

Ab Initio Molecular Dynamics Study on the Dissolution of Interfacial Iron Oxides in Hot Compressive Bonding Combined with Experiments

机译:结合实验从头算分子动力学研究热压键合中界面氧化铁的溶解

获取原文

摘要

Based on experimental observation, ab initio molecular dynamics was used to investigate the dissolution of interfacial iron oxides in hot compressive bonding (HCB). The surface analysis indicated that there was reoxidation at the unclosed iron surface during the sample heating in HCB. The bonding of pre-oxidized iron was designed to verify the dissolution of iron oxides into matrix. Two models were proposed to understand the dissolution behavior with dynamic simulations. Model I was applied to the case with bonding interface between oxides and matrix,in which periodical interface structure of Fe_3O_4/BCC-Fe was constructed. The dissolution of Fe_3O_4 contained the initial structural dissociation and the diffusion of free oxygen and iron atoms into matrix. It was found that the diffusivity of iron was higher than oxygen. Model Ⅱ with embedded structure of oxide cluster was proposed to understand the initial dissolution of iron oxide particles in the matrix. The mean square displacement (MSD) results suggested that the local strain may promote the process by increasing the mobility of oxygen. And the Bader charge analysis implied that the electron contribution of iron matrix and its transfer to the dissociated atoms plays a key role in the initial dissolution of interfacial iron oxides.
机译:基于实验观察,从头算分子动力学用于研究热压键合(HCB)中界面铁氧化物的溶解。表面分析表明,在六氯代苯中加热样品期间,未封闭的铁表面存在再氧化。设计预氧化铁的键合以验证铁氧化物在基质中的溶解。提出了两个模型以通过动态模拟了解溶解行为。将模型I应用于氧化物与基体之间具有键合界面的情况,构建了Fe_3O_4 / BCC-Fe的周期性界面结构。 Fe_3O_4的溶解包括初始结构解离和游离氧和铁原子向基体中的扩散。发现铁的扩散率高于氧气。提出了具有氧化物簇嵌入结构的模型Ⅱ,以了解氧化铁颗粒在基体中的初始溶解。均方位移(MSD)结果表明,局部应变可以通过增加氧气的迁移率来促进该过程。 Bader电荷分析表明,铁基质的电子贡献及其向离解原子的转移在界面氧化铁的初始溶解中起关键作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号