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首页> 外文期刊>Materials transactions >Local Atomic Configuration of Dislocation-Accumulated Grain Boundary and Energetics of Gradual Transition from Low Angle to High Angle Grain Boundary in Pure Aluminum by First-Principles Calculations
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Local Atomic Configuration of Dislocation-Accumulated Grain Boundary and Energetics of Gradual Transition from Low Angle to High Angle Grain Boundary in Pure Aluminum by First-Principles Calculations

机译:通过第一性原理计算的纯铝中位错累积晶粒边界的局部原子构型和从低角度到高角度晶粒边界的逐渐跃迁的能量

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Dislocation-accumulated grain boundaries were systematically investigated in terms of local atomic coordinates in the vicinity of grain boundary and energetics on grain boundary evolution by first-principles calculations. Detailed numerical analyses of energy and local atomic configuration at a grain boundary with fixed misorientation angle identified the most stable configurations both for the dislocation-distinctive model and the coincident-site-lattice model with kite-shaped structural units on grain boundary planes. The energy profiles of structural optimization using both initial models indicate that the distinctive dislocations at a grain boundary can be readily converted into kite-shaped structural units without noticeable energy barrier, though they look quite different, and reverse conversion may also be realized under external stress, enabling grain boundaries functioning as dislocation sources and sinks. Systematic calculations for grain boundary with misorientation angles ranging from 5.7deg to 53.1deg revealed that the interaction energy between dislocation is blunted within a dislocation core region. Furthermore, the energy needed to increase the misorientation angle during severe plastic deformation is quantitatively evaluated, Ksevere plastic deformation;;aluminum;;grain boundary;;dislocation;;density functional theory
机译:通过第一性原理的计算,系统地研究了位错积累的晶界,根据晶界附近的局部原子坐标和晶界演化的能量。对具有固定的失取向角的晶界处的能量和局部原子构型进行了详细的数值分析,确定了位错-区分模型和在晶界平面上具有风筝状结构单元的重合点-晶格模型的最稳定构型。使用这两个初始模型进行结构优化的能谱表明,晶界处的独特位错可以很容易地转换成风筝状的结构单元,而没有明显的能垒,尽管它们看起来很不一样,并且在外部应力下也可以实现逆向转换,使晶界起位错源和汇的作用。取向差范围为5.7度至53.1度的晶界的系统计算表明,位错之间的相互作用能在位错核心区域内减弱了。此外,定量评估了在严重塑性变形过程中增加取向差角所需的能量,即K 严重塑性变形;铝;晶界;位错;密度泛函理论

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