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Dive into the research topics where Amnaya P. Awasthi is active.

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Featured researches published by Amnaya P. Awasthi.


International Journal of Fracture | 2017

Multi-scale model of effects of roughness on the cohesive strength of self-assembled monolayers

Chen Zhang; Amnaya P. Awasthi; Jeauk Sung; Philippe H. Geubelle; Nancy R. Sottos

Self-assembled monolayers (SAMs) are aggregates of small molecular chains that form highly ordered assemblies at the nanoscale. They are excellent contenders of molecular-level tailoring of interfaces because of the wide choice of terminal groups. Molecular dynamics (MD) simulations and experimental observations of spallation of two SAM-enhanced gold-film/fused silica-substrate interfaces have shown that the cohesive strength of SAM-enriched transfer-printed interfaces is strongly dependent on the choice of terminal groups. Though the MD results of perfectly ordered atomistic surfaces show the same qualitative trend as the experiments, they over-predict the interfacial cohesive strengths by a factor of about 50. Previous studies have revealed that the roughness of these interfaces may significantly impact their cohesive strength. In this manuscript, we perform a multiscale study to investigate the influence of surface roughness on cohesive strength of an interface between a Si/SAM substrate and a transfer-printed gold film. We approximate the film as a 2D deformable medium while the rough SAM-enhanced substrate is modeled using 2D harmonic functions with the cohesive interaction between the SAM and the film described by a simple exponential relation. Spallation is simulated on this system to evaluate the effective traction-separation response for the rough SAM-gold interface. Beyond the idealized harmonic interface, we extend our studies to real surface profiles obtained by AFM. We demonstrate how interfacial roughness can reduce the cohesive strength of the SAM-enhanced interface by more than an order of magnitude.


Mechanics of Materials | 2012

Propagation of solitary waves in 2D granular media: A numerical study

Amnaya P. Awasthi; Kyle J. Smith; Philippe H. Geubelle; John Lambros


Physical Review E | 2012

Wave propagation in random granular chains.

Mohith Manjunath; Amnaya P. Awasthi; Philippe H. Geubelle


Granular Matter | 2013

Wave propagation in elasto-plastic granular systems

Raj Kumar Pal; Amnaya P. Awasthi; Philippe H. Geubelle


Scripta Materialia | 2016

In search of amorphization-resistant boron carbide

Ghatu Subhash; Amnaya P. Awasthi; Cody Kunka; Phillip Jannotti; Matthew DeVries


Physical Review E | 2012

Effects of weak disorder on stress-wave anisotropy in centered square nonlinear granular crystals

Andrea Leonard; Chiara Daraio; Amnaya P. Awasthi; Philippe H. Geubelle


Granular Matter | 2014

Plane wave propagation in 2D and 3D monodisperse periodic granular media

Mohith Manjunath; Amnaya P. Awasthi; Philippe H. Geubelle


Physical Review E | 2014

Characterization of wave propagation in elastic and elastoplastic granular chains.

Raj Kumar Pal; Amnaya P. Awasthi; Philippe H. Geubelle


Physica D: Nonlinear Phenomena | 2014

Wave propagation in 2D random granular media

Mohith Manjunath; Amnaya P. Awasthi; Philippe H. Geubelle


Journal of The Mechanics and Physics of Solids | 2014

High-amplitude elastic solitary wave propagation in 1-D granular chains with preconditioned beads: Experiments and theoretical analysis

Erheng Wang; Mohith Manjunath; Amnaya P. Awasthi; Raj Kumar Pal; Philippe H. Geubelle; John Lambros

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Raj Kumar Pal

Georgia Institute of Technology

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Andrea Leonard

California Institute of Technology

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Chiara Daraio

California Institute of Technology

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