Structural and topological nature of plasticity in sheared granular materials

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作者
Yixin Cao
Jindong Li
Binquan Kou
Chengjie Xia
Zhifeng Li
Rongchang Chen
Honglan Xie
Tiqiao Xiao
Walter Kob
Liang Hong
Jie Zhang
Yujie Wang
机构
[1] Shanghai Jiao Tong University,School of Physics and Astronomy
[2] Chinese Academy of Sciences,Shanghai Institute of Applied Physics
[3] University of Montpellier and CNRS,Laboratoire Charles Coulomb, UMR 5521
[4] Shanghai Jiao Tong University,Institute of Natural Sciences
[5] Shanghai Jiao Tong University,Materials Genome Initiative Center
[6] Nanjing University,Collaborative Innovation Center of Advanced Microstructures
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Upon mechanical loading, granular materials yield and undergo plastic deformation. The nature of plastic deformation is essential for the development of the macroscopic constitutive models and the understanding of shear band formation. However, we still do not fully understand the microscopic nature of plastic deformation in disordered granular materials. Here we used synchrotron X-ray tomography technique to track the structural evolutions of three-dimensional granular materials under shear. We establish that highly distorted coplanar tetrahedra are the structural defects responsible for microscopic plasticity in disordered granular packings. The elementary plastic events occur through flip events which correspond to a neighbor switching process among these coplanar tetrahedra (or equivalently as the rotation motion of 4-ring disclinations). These events are discrete in space and possess specific orientations with the principal stress direction.
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