We perform measurements, numerical simulations, and quantitative comparisons with available theory on solitary wave propagation in a linear chain of beads without static pre-constrain. By designing a non intrusive force sensor to measure the impulse as it propagates along the chain, we study the solitary wave reflection at a wall. We show that the main features of solitary wave reflection depend on wall mechanical properties. Since, previous studies on solitary waves have been performed at walls without these considerations, our experiment provides a more reliable tool to characterize solitary wave propagation. We find, for the first time, precise quantitative agreements
The interaction of a solitary wave with an interface formed by two strongly nonlinear noncohesive gr...
We studied the dynamic response of a two-dimensional square packing of uncompressed stainless steel ...
We study the dynamic response of uniform granular chains composed of short cylindrical particles ex...
We study the interaction of highly nonlinear solitary waves propagating in granular crystals with an...
AbstractWe investigate the reflection of highly nonlinear solitary waves in one-dimensional granular...
We investigate the reflection of highly nonlinear solitary waves in one-dimensional granular crystal...
One dimensional stress waves travelling in granular chains exhibit interesting characteristics such ...
We study solitary wave propagation in 1D granular crystals with Hertz-like interaction potentials. W...
The classical reflection of a highly nonlinear solitary wave (HNSW) on an elastic wall has been used...
Ordered granular media, such as a one dimensional aligned chain of spherical particles, have unique ...
AbstractThis paper describes the coupling mechanism between highly nonlinear solitary waves propagat...
We study the dynamic response of one- dimensional granular chains composed of uniform hollow spheres...
International audienceWe study experimentally the propagation of high-amplitude compressional waves ...
We present investigations into the collision of co-travelling solitary waves in a granular chain. Im...
The interaction of a solitary wave with an interface formed by two strongly nonlinear noncohesive gr...
We studied the dynamic response of a two-dimensional square packing of uncompressed stainless steel ...
We study the dynamic response of uniform granular chains composed of short cylindrical particles ex...
We study the interaction of highly nonlinear solitary waves propagating in granular crystals with an...
AbstractWe investigate the reflection of highly nonlinear solitary waves in one-dimensional granular...
We investigate the reflection of highly nonlinear solitary waves in one-dimensional granular crystal...
One dimensional stress waves travelling in granular chains exhibit interesting characteristics such ...
We study solitary wave propagation in 1D granular crystals with Hertz-like interaction potentials. W...
The classical reflection of a highly nonlinear solitary wave (HNSW) on an elastic wall has been used...
Ordered granular media, such as a one dimensional aligned chain of spherical particles, have unique ...
AbstractThis paper describes the coupling mechanism between highly nonlinear solitary waves propagat...
We study the dynamic response of one- dimensional granular chains composed of uniform hollow spheres...
International audienceWe study experimentally the propagation of high-amplitude compressional waves ...
We present investigations into the collision of co-travelling solitary waves in a granular chain. Im...
The interaction of a solitary wave with an interface formed by two strongly nonlinear noncohesive gr...
We studied the dynamic response of a two-dimensional square packing of uncompressed stainless steel ...
We study the dynamic response of uniform granular chains composed of short cylindrical particles ex...