摘要
Atomistic simulations are performed to probe the anisotropic deformation in the compressions of face-centred-cubic metallic nanoparticles. In the elastic regime, the compressive load-depth behaviors can be characterized by the classical Hertzian model or flat punch model, depending on the surface configuration beneath indenter. On the onset of plasticity, atomic-scale surface steps serve as the source of heterogeneous dislocation in nanoparticle, which is distinct from indenting bulk materials. Under [111] compression, the gliding of jogged dislocation takes over the dominant plastic deformation. The plasticity is governed by nucleation and exhaustion of extended dislocation ribbons in [110] compression. Twin boundary migration mainly sustain the plastic deformation under [112] compression. This study is helpful to extract the mechanical properties of metallic nanoparticles and understand their anisotropic deformation behaviors.
| 源语言 | 英语 |
|---|---|
| 文章编号 | 116 |
| 期刊 | Crystals |
| 卷 | 8 |
| 期 | 3 |
| DOI | |
| 出版状态 | 已出版 - 3月 2018 |
学术指纹
探究 'Anisotropic deformation in the compressions of single crystalline copper nanoparticles' 的科研主题。它们共同构成独一无二的指纹。引用此
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