铬偏析对镍─钴─铬合金机械行为和变形机理的影响

IF 1.5 4区 材料科学 Q3 Chemistry
Zhiyuan Bai, Boyu Chen, Jiayin Zhang, Di Liu, Xuefeng Lu, Dan Yang, Junchen Li, Xin Guo
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引用次数: 0

摘要

近年来,镍─钴合金因其优异的性能引起了材料研究人员的广泛关注。本文通过分子动力学模拟研究了溶质偏析对合金性能的影响。结果表明,当溶质原子 Cr 被引入晶界时,屈服强度从 2.8 GPa 增加到 3.5 GPa。在应力作用下,偏析晶界的无序性增强,阻碍了晶粒的生长,产生了较少的层状断层结构,HCP(六方紧密堆积)原子的峰值数从 50 000 降至 37 000。溶质原子的引入为晶界提供了强有力的支撑,并具有相似的骨架结构,从而提高了晶格的抗变形能力。此外,晶界稳定性的提高导致了位错成核的困难,因为晶界的阻碍使得相邻晶粒中的位错源难以激活,完美位错的最大减少量为 74%。总之,从位错、相结构和能量等方面探讨了溶质偏析强化的微观机理,为固溶合金的塑性变形提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of Cr Segregation on Mechanical Behavior and Deformation Mechanism of Ni─Co─Cr Alloy

Effect of Cr Segregation on Mechanical Behavior and Deformation Mechanism of Ni─Co─Cr Alloy

Effect of Cr Segregation on Mechanical Behavior and Deformation Mechanism of Ni─Co─Cr Alloy

Ni─Co alloys have attracted extensive attention from materials researchers in recent years because of their excellent properties. The effect of solute segregation on the properties of the alloy is studied by molecular dynamics simulation. The results show that the yield strength increases from 2.8 to 3.5 GPa when the solute atom Cr is introduced into the grain boundary. Under the action of stress, the disorder of segregation grain boundary is enhanced, which hinders the growth of grain, produces less layer fault structure, and the peak number of HCP (Hexagonal Close Packed) atom decreases from 50 000 to 37 000. The introduction of solute atoms provides a strong support for the grain boundary and has a similar skeleton structure, which improves the deformation resistance of the lattice. In addition, the improved grain boundary stability leads to the difficulty of nucleation of the dislocation, because the obstruction of the grain boundary makes it difficult to activate the dislocation source in the adjacent grain, and the maximum reduction of the perfect dislocation is 74%. In general, the microscopic mechanism of solute segregation strengthening is discussed from dislocation, phase structure, and energy, which provides guidance for plastic deformation of solid-solution alloys.

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来源期刊
CiteScore
2.50
自引率
6.70%
发文量
121
审稿时长
1.9 months
期刊介绍: The journal Crystal Research and Technology is a pure online Journal (since 2012). Crystal Research and Technology is an international journal examining all aspects of research within experimental, industrial, and theoretical crystallography. The journal covers the relevant aspects of -crystal growth techniques and phenomena (including bulk growth, thin films) -modern crystalline materials (e.g. smart materials, nanocrystals, quasicrystals, liquid crystals) -industrial crystallisation -application of crystals in materials science, electronics, data storage, and optics -experimental, simulation and theoretical studies of the structural properties of crystals -crystallographic computing
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