From Coherent to Semi-Coherent — Evolution of Precipitation Crystallography in an fcc/bcc System

Fu‐Zhi Dai, Zhipeng Sun, Wen-Zheng Zhang
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Abstract

A comprehensive knowledge about how crystallographic features are developed at the early stage of a phase transformation in an anisotropic misfit system (e.g., bcc/fcc) is limited, which impedes the deep understanding and quantitative modeling of microstructure evolution. In this work, we simulated coherency loss process during the early growth of a Cr precipitate (bcc) in a Cu matrix (fcc) by the combination of Monte Carlo and molecular dynamics. The simulation results reveal the fine details in the evolution of the crystallographic features, including the orientation relationship (OR) between two phases, the precipitate morphology, and interfacial dislocation structure at the early stage of the precipitate growth. Generation of a dominant set of dislocations is the governing event during the evolution process. The selection of the dominant dislocations was rationalized based on the minimization of interfacial energy in the major facet containing a single set of these dislocations. The initial OR developed between the coherent precipitate and the matrix is near the Nishiyama-Wassermann OR, and it changes discretely in response to the early generation of the dominant dislocations, towards the ideal OR corresponding to the O-line condition, near the Kurdjumov-Sachs OR. This tendency reflects the experimental observations in a Cu-Cr system, and provides helpful insight into the evolution of crystallographic features in physical reality.
从相干到半相干——fcc/bcc体系中沉淀结晶学的演化
关于各向异性失配体系(如bcc/fcc)相变早期晶体学特征如何发展的全面知识是有限的,这阻碍了对微观结构演变的深入理解和定量建模。在这项工作中,我们采用蒙特卡罗和分子动力学相结合的方法模拟了Cr沉淀(bcc)在Cu基体(fcc)中早期生长过程中的相干损失过程。模拟结果揭示了结晶学特征演变的精细细节,包括两相之间的取向关系(OR)、析出相形态和析出相生长早期的界面位错结构。一组优势位错的产生是进化过程中的支配事件。优势位错的选择是基于包含单一位错集的主关节面界面能的最小化而合理的。相干析出相与基体之间形成的初始OR在Nishiyama-Wassermann OR附近,随着优势位错的早期产生,该OR离散地向o线条件下的理想OR靠近Kurdjumov-Sachs OR变化。这一趋势反映了Cu-Cr体系的实验观察结果,并为物理现实中晶体学特征的演变提供了有益的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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