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Atomistic origin of size effects in fatigue behavior of metallic glasses

  • Zhendong Sha
  • , Wei Hin Wong
  • , Qingxiang Pei
  • , Paulo Sergio Branicio
  • , Zishun Liu
  • , Tiejun Wang*
  • , Tianfu Guo
  • , Huajian Gao
  • *此作品的通讯作者
  • Xi'an Jiaotong University
  • Agency for Science, Technology and Research, Singapore
  • University of Southern California
  • School of Aerospace Engineering
  • Brown University

科研成果: 期刊稿件文章同行评审

摘要

While many experiments and simulations on metallic glasses (MGs) have focused on their tensile ductility under monotonic loading, the fatigue mechanisms of MGs under cyclic loading still remain largely elusive. Here we perform molecular dynamics (MD) and finite element simulations of tension-compression fatigue tests in MGs to elucidate their fatigue mechanisms with focus on the sample size effect. Shear band (SB) thickening is found to be the inherent fatigue mechanism for nanoscale MGs. The difference in fatigue mechanisms between macroscopic and nanoscale MGs originates from whether the SB forms partially or fully through the cross-section of the specimen. Furthermore, a qualitative investigation of the sample size effect suggests that small sample size increases the fatigue life while large sample size promotes cyclic softening and necking. Our observations on the size-dependent fatigue behavior can be rationalized by the Gurson model and the concept of surface tension of the nanovoids. The present study sheds light on the fatigue mechanisms of MGs and can be useful in interpreting previous experimental results.

源语言英语
页(从-至)84-95
页数12
期刊Journal of the Mechanics and Physics of Solids
104
DOI
出版状态已出版 - 1 7月 2017
已对外发布

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