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Open AccessJournal ArticleDOI

Momentum and energy propagation in tapered granular chains

TLDR
In this article, a mixed numerical/analytical correction algorithm was developed to estimate the velocity of the particles during pulse propagation, which is in turn able to correctly predict the momentum and kinetic energy along the chain for several tapering configurations.
Abstract
We study momentum and energy propagation in 1D tapered chains of spherical granules which interact according to a Hertz potential. In this work we apply the binary collision approximation, which is based on the assumption that transfer of energy along the chain occurs via a succession of two-particle collisions. Although the binary theory correctly captures the trends of increase or decrease of kinetic energy and momentum, the actual values of these quantities are not in good quantitative agreement with those obtained by numerically integrating the full equations of motion. To address this difficulty we have developed a mixed numerical/analytical correction algorithm to provide an improved estimate of the velocity of the particles during pulse propagation. With this corrected velocity we are in turn able to correctly predict the momentum and kinetic energy along the chain for several tapering configurations, specifically for forward linear, forward exponential, backward linear and backward exponential tapering.

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Journal ArticleDOI

Frequency filtering in disordered granular chains

Brian P. Lawney, +1 more
- 28 Jun 2014 - 
TL;DR: 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.
Journal ArticleDOI

Pulse propagation in granular chains

TL;DR: In this paper, a comprehensive review of theoretical approaches to the propagation of impulses in granular chains is presented, discussing the strengths and weaknesses of each approach and comparing them with experimental and numerical results.
Journal ArticleDOI

A quasi-unidimensional granular chain to attenuate impact.

TL;DR: It is shown that a granular chain not only with decreasing radii in geometric progression, but also decorated with grains positioned on the top and bottom of the chain, without altering its original length, is possible to mitigate impacts almost completely.
Journal ArticleDOI

Nonlinear wave propagation in 3D-printed graded lattices of hollow elliptical cylinders

TL;DR: In this paper, a 3D-printed graded lattice made of hollow elliptical cylinders (HECs) is proposed as a new way to design impact mitigation systems, which can lead to the development of a new type of impact mitigating and shock absorbing structures.
Journal ArticleDOI

Pulse propagation in granular chains: The binary collision approximation

TL;DR: In this paper, the binary collision approximation has been successfully applied to the study of pulse propagation in several types of granular chains and discussed and reviewed a number of results found in the literature.
References
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Book

Dynamics of Heterogeneous Materials

TL;DR: In this paper, the authors describe the transformation of shocks in Laminated and Porous materials under dynamic loading and shear localization and band patterning in Heterogeneous Materials.
Journal ArticleDOI

Solitary waves in a chain of beads under Hertz contact

TL;DR: In this article, the propagation of high-amplitude compressional waves in a chain of beads in contact, submitted or not to a small static force, was studied experimentally, and it was shown that the velocity measurements taken at three different nonzero applied static forces all lie on a single curve, when expressed in rescaled variables.
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Propagation of nonlinear compression pulses in granular media

TL;DR: In this article, the problem of nonstationary, nonlinear perturbations in one-dimensional granular media is stated on the basis of the wellknown interaction between neighboring granules.
Journal ArticleDOI

Solitary waves in the granular chain

TL;DR: In this paper, the authors introduce the physics of solitary waves in alignments of elastic beads, such as glass beads or stainless steel beads, and show that any impulse propagates as a new kind of highly interactive solitary wave through such an alignment and that the existence of these waves seems to present a need to re-examine the very definition of equilibrium.
Journal ArticleDOI

Energy trapping and shock disintegration in a composite granular medium.

TL;DR: The first experimental observation of impulse confinement and the disintegration of shock and solitary waves in one-dimensional strongly nonlinear composite granular materials is reported.
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