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Open AccessJournal ArticleDOI

Frequency filtering in disordered granular chains

Brian P. Lawney, +1 more
- 28 Jun 2014 - 
- Vol. 225, Iss: 8, pp 2385-2407
TLDR
In this article, disorder-induced frequency filtering is studied for one-dimensional systems composed of random, pre-stressed masses interacting through both linear and nonlinear (Hertzian) repulsive forces.
Abstract
The study of disorder-induced frequency filtering is presented for one-dimensional systems composed of random, pre-stressed masses interacting through both linear and nonlinear (Hertzian) repulsive forces. An ensemble of such systems is driven at a specified frequency, and the spectral content of the propagated disturbance is examined as a function of distance from the source. It is shown that the transmitted signal contains only low-frequency components, and the attenuation is dependent on the magnitude of disorder, the input frequency, and the contact model. It is found that increased disorder leads to a narrower bandwidth of transmitted frequencies at a given distance from the source and that lower input frequencies exhibit less sensitivity to the arrangement of the masses. Comparison of the nonlinear and linear contact models reveals qualitatively similar filtering behavior; however, it is observed that the nonlinear chain produces transmission spectrums with a greater density at the lowest frequencies. In addition, it is shown that random masses sampled from normal, uniform, and binary distributions produce quantitatively indistinguishable filtering behavior, suggesting that knowledge of only the distribution’s first two moments is sufficient to characterize the bulk signal transmission behavior. Finally, we examine the wave number evolution of random chains constrained to move between fixed end-particles and present a transfer matrix theory in wave number space, and an argument for the observed filtering based on the spatial localization of the higher-frequency normal modes.

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References
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Journal ArticleDOI

Pulse propagation in decorated granular chains: An analytical approach.

TL;DR: Pulse propagation in one-dimensional chains of spherical granules decorated with small grains placed between large granules is studied to obtain simple analytic expressions for the pulse propagation properties using a generalization of the binary collision approximation.
Journal ArticleDOI

Traveling waves in 2D hexagonal granular crystal lattices.

TL;DR: This study describes the dynamic response of a two-dimensional hexagonal packing of uncompressed stainless steel spheres excited by localized impulsive loadings, and provides scaling relations that characterize the directional power law decay of the wave velocity for various angles of impact.
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Absorption of short duration pulses by small, scalable, tapered granular chains

TL;DR: In this paper, a small alignment of progressively shrinking spheres of a strong, light-mass material, placed horizontally in an appropriate casing, can absorb ∼80% (∼90%) of the incident force (energy) pulse.
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The propagation and backscattering of soliton-like pulses in a chain of quartz beads and related problems. (II). Backscattering

TL;DR: Manciu et al. as mentioned in this paper demonstrated that the propagation of solitons, soliton-like excitations and acoustic pulses can be used to detect buried impurities in a chain of elastic grains with Hertzian contacts.
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