Traveling waves in 2D hexagonal granular crystal lattices

被引:0
|
作者
A. Leonard
C. Chong
P. G. Kevrekidis
C. Daraio
机构
[1] California Institute of Technology,Department of Civil and Mechanical Engineering
[2] University of Massachusetts,Department of Mathematics and Statistics
[3] Department of Mechanical and Process Engineering (D-MAVT),Department of Aerospace Engineering (GALCIT)
[4] California Institute of Technology,undefined
来源
Granular Matter | 2014年 / 16卷
关键词
2D Hexagonal; Highly nonlinear; Ternary collision approximation (TCA); Impulsive excitation; Weak disorder;
D O I
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中图分类号
学科分类号
摘要
This study describes the dynamic response of a two-dimensional hexagonal packing of uncompressed stainless steel spheres excited by localized impulsive loadings. The dynamics of the system are modeled using the Hertzian normal contact law. After the initial impact strikes the system, a characteristic wave structure emerges and continuously decays as it propagates through the lattice. Using an extension of the binary collision approximation for one-dimensional chains, we predict its decay rate, which compares well with numerical simulations and experimental data. While the hexagonal lattice does not support constant speed traveling waves, we provide scaling relations that characterize the directional power law decay of the wave velocity for various angles of impact. Lastly, we discuss the effects of weak disorder on the directional amplitude decay rates.
引用
收藏
页码:531 / 542
页数:11
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