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Migration mechanisms of interphase boundaries with irrational orientation relationships in massive transformations: A phase-field crystal study

机译:巨大变换中非理性取向关系的间间边界的迁移机制:一个相场水晶研究

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Migration mechanisms of interphase boundaries (IPBs) are essential for understanding solid phase transformations. Most studies of the migration mechanisms of IPBs are focused on transformations under rational or near-rational orientation relationships. However, for cases of irrational orientation relationships that widely exist in massive transformations and grain boundary (GB) precipitations, knowledge remains extremely lacking. In this study, taking a triangular-square massive transformation as an example, we explored the migration mechanisms of IPBs with irrational orientation relationships at atomic scales by using the phase-field crystal method. Crystallography analysis based on near-coincidence site calculations also were conducted to verify simulated IPBs structures. Both massive transformations and precipitation transformations were reproduced using the phase-field crystal model. The simulation results show that, similar to the case of rational orientation relationships, the IPBs with irrational orientation relationships migrate by a ledge mechanism due to the satisfying of the edge-to-edge matching relationship. Further simulations on the interactions between IPBs and GBs indicate that GBs can make the newly generated massive phase change its orientation during the process of massive phase transfer across some low-angle GBs.
机译:相互关联边界(IPB)的迁移机制对于了解实体变化是必不可少的。大多数对IPB的迁移机制的研究侧重于理性或接近合理取向关系下的转型。然而,对于广泛存在于大规模转化和晶界(GB)沉淀的非理性取向关系的情况下,知识仍然缺乏。在这项研究中,采用三角形大规模的大规模变换作为示例,我们利用相场晶体方法探讨了IPB与非理性取向关系的迁移机制。还进行了基于近巧的部位计算的晶体学分析,以验证模拟IPBS结构。使用相场晶体模型再现大量变换和析出变换。仿真结果表明,类似于理性取向关系的情况,由于对边缘到边缘匹配关系的满足,具有非理性取向关系的IPB通过凸起机构迁移。进一步模拟IPB和GBS之间的相互作用表明,GBS可以使新产生的大量相位在一些低角度GBS上的大规模转移过程中改变其取向。

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