AbstractWe simulate the dynamics of impacts on 1D, 2D and 3D arrays of metallic spheres in order to design novel granular protection systems. The dynamics of these highly organized systems of spheres, commonly called granular crystals, are governed by the contact law that describes how each particle interacts with the others. We use our recently developed force-displacement model of the dynamic compression of elastic-plastic spheres as the building block to investigate the response of systems comprised of metallic spheres to an impact. We first provide preliminary experimental results using a drop tower as validation of our numerical approach for 2D and 3D systems. We then use simulations of large periodic granular crystals in order to dete...
Shock propagation in particulate materials is governed by the nonlinear interactions between particl...
Particle mechanics approaches to modeling granular solids employ contact laws to determine interpart...
We study stress wave mitigation in one- and two-dimensional granular media employing evolutionary al...
We simulate the dynamics of impacts on 1D, 2D and 3D arrays of metallic spheres in order to design n...
AbstractWe simulate the dynamics of impacts on 1D, 2D and 3D arrays of metallic spheres in order to ...
We study the behavior of granular crystals subjected to impact loading that creates plastic deformat...
We present a mesoscopic approach to granular crystal dynamics, which comprises a three-dimensional f...
We study the propagation of elastic stress waves in two-dimensional highly nonlin-ear granular cryst...
Highly ordered, close packed granular systems present a nonlinear dynamic behavior stemming from the...
This study describes the dynamic response of a two-dimensional hexagonal packing of uncompressed sta...
Controlling stress waves during impact beyond merely dissipating their energy through material fract...
We study the fundamental dynamic behavior of a special class of ordered granular systems in order to...
We investigate the properties of high-amplitude stress waves propagating through chains of elastic–p...
This thesis addresses some of the fundamental issues/aspects as well as practical significance of im...
This dissertation studies wave propagation in granular media with the objective of developing stres...
Shock propagation in particulate materials is governed by the nonlinear interactions between particl...
Particle mechanics approaches to modeling granular solids employ contact laws to determine interpart...
We study stress wave mitigation in one- and two-dimensional granular media employing evolutionary al...
We simulate the dynamics of impacts on 1D, 2D and 3D arrays of metallic spheres in order to design n...
AbstractWe simulate the dynamics of impacts on 1D, 2D and 3D arrays of metallic spheres in order to ...
We study the behavior of granular crystals subjected to impact loading that creates plastic deformat...
We present a mesoscopic approach to granular crystal dynamics, which comprises a three-dimensional f...
We study the propagation of elastic stress waves in two-dimensional highly nonlin-ear granular cryst...
Highly ordered, close packed granular systems present a nonlinear dynamic behavior stemming from the...
This study describes the dynamic response of a two-dimensional hexagonal packing of uncompressed sta...
Controlling stress waves during impact beyond merely dissipating their energy through material fract...
We study the fundamental dynamic behavior of a special class of ordered granular systems in order to...
We investigate the properties of high-amplitude stress waves propagating through chains of elastic–p...
This thesis addresses some of the fundamental issues/aspects as well as practical significance of im...
This dissertation studies wave propagation in granular media with the objective of developing stres...
Shock propagation in particulate materials is governed by the nonlinear interactions between particl...
Particle mechanics approaches to modeling granular solids employ contact laws to determine interpart...
We study stress wave mitigation in one- and two-dimensional granular media employing evolutionary al...