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晶界处钼偏析对镍钼合金高温蠕变行为的影响:一项原子尺度研究。

Influence of Mo Segregation at Grain Boundaries on the High Temperature Creep Behavior of Ni-Mo Alloys: An Atomistic Study.

作者信息

Li Qian, Zhang Jiayong, Tang Huayuan, Zhang Hongwu, Ye Hongfei, Zheng Yonggang

机构信息

School of Science, North University of China, Taiyuan 030051, China.

International Research Center for Computational Mechanics, State Key Laboratory of Structural Analysis for Industrial Equipment, Department of Engineering Mechanics, Faculty of Vehicle Engineering and Mechanics, Dalian University of Technology, Dalian 116024, China.

出版信息

Materials (Basel). 2021 Nov 18;14(22):6966. doi: 10.3390/ma14226966.

Abstract

Based on molecular dynamics simulations, the creep behaviors of nanocrystalline Ni before and after the segregation of Mo atoms at grain boundaries are comparatively investigated with the influences of external stress, grain size, temperature, and the concentration of Mo atoms taken into consideration. The results show that the creep strain rate of nanocrystalline Ni decreases significantly after the segregation of Mo atoms at grain boundaries due to the increase of the activation energy. The creep mechanisms corresponding to low, medium, and high stress states are respectively diffusion, grain boundary slip and dislocation activities based on the analysis of stress exponent and grain size exponent for both pure Ni and segregated Ni-Mo samples. Importantly, the influence of external stress and grain size on the creep strain rate of segregated Ni-Mo samples agrees well with the classical Bird-Dorn-Mukherjee model. The results also show that segregation has little effect on the creep process dominated by lattice diffusion. However, it can effectively reduce the strain rate of the creep deformation dominated by grain boundary behaviors and dislocation activities, where the creep rate decreases when increasing the concentration of Mo atoms at grain boundaries within a certain range.

摘要

基于分子动力学模拟,考虑到外部应力、晶粒尺寸、温度和钼原子浓度的影响,对晶界处钼原子偏聚前后纳米晶镍的蠕变行为进行了对比研究。结果表明,由于激活能增加,晶界处钼原子偏聚后纳米晶镍的蠕变应变率显著降低。基于对纯镍和偏聚镍钼样品的应力指数和晶粒尺寸指数的分析,低、中、高应力状态下的蠕变机制分别为扩散、晶界滑移和位错活动。重要的是,外部应力和晶粒尺寸对偏聚镍钼样品蠕变应变率的影响与经典的Bird-Dorn-Mukherjee模型吻合良好。结果还表明,偏聚对以晶格扩散为主的蠕变过程影响较小。然而,它可以有效降低以晶界行为和位错活动为主的蠕变变形的应变率,在一定范围内增加晶界处钼原子浓度时蠕变率会降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6955/8625863/f9169e5c792c/materials-14-06966-g001.jpg

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