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剪切载荷条件下镍基单晶合金裂纹扩展与微观结构演化行为研究
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武汉理工大学,武汉理工大学,武汉理工大学,武汉理工大学,武汉理工大学,武汉理工大学

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Crack propagation and microstructural evolution of Ni-based single crystal alloy under shear loads
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School of Mechanical and Electronic Engineering,Wuhan University of Technology,122 Luoshi Road,School of Mechanical and Electronic Engineering,Wuhan University of Technology,122 Luoshi Road,School of Mechanical and Electronic Engineering,Wuhan University of Technology,122 Luoshi Road,School of Mechanical and Electronic Engineering,Wuhan University of Technology,122 Luoshi Road,School of Mechanical and Electronic Engineering,Wuhan University of Technology,122 Luoshi Road,School of Mechanical and Electronic Engineering,Wuhan University of Technology,122 Luoshi Road

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    摘要:

    目前拉伸载荷下的镍基单晶合金的力学性能研究较为广泛,而剪切载荷对镍基单晶合金的力学性能也十分重要但缺乏研究。本文利用分子动力学方法研究了镍基单晶合金在剪切载荷下的裂纹扩展和微观结构演化,分析了应力-应变、势能和裂纹生长速率的变化。同时,揭示了温度和剪切应变率对裂纹扩展和微观结构演化的影响。结果表明,临界分切应力随温度的降低和应变速率的增大而增大;随着温度的升高以及剪切载荷下发生剧烈的热运动,裂缝表现为加速扩展的趋势;而在较高的应变率影响下,会形成位错塞积和孪晶,出现加工硬化现象。

    Abstract:

    Under shear load, crack propagation and microstructural evolution of Ni-based single crystal alloy have been investigated by molecular dynamics simulations. Stress-strain, potential energy and crack growth rates have been explored. Moreover, the influences of temperatures and strain rates have been verified. Simulation results show that the critical stress value increases with the decreasing temperature and increasing strain rate, respectively. As the temperature increases, the crack propagation is accelerated by severe thermal vibrations. Then, dislocations pile-up and twinning emerge resulting in significantly work hardening at a higher strain rate.

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李本,张世明,F. A. Essa,董超,余金桂,章桥新.剪切载荷条件下镍基单晶合金裂纹扩展与微观结构演化行为研究[J].稀有金属材料与工程,2018,47(5):1370~1376.[Li Ben, Zhang Shiming, F. A. Essa, Dong Chao, Yu Jingui, Zhang Qiaoxin. Crack propagation and microstructural evolution of Ni-based single crystal alloy under shear loads[J]. Rare Metal Materials and Engineering,2018,47(5):1370~1376.]
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  • 收稿日期:2017-10-09
  • 最后修改日期:2017-11-30
  • 录用日期:2017-12-18
  • 在线发布日期: 2018-06-08
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