Analytical and Computational Modeling of Mechanical Waves in Microscale Granular Crystals

Analytical and Computational Modeling of Mechanical Waves in Microscale Granular Crystals
Author :
Publisher :
Total Pages : 139
Release :
ISBN-10 : OCLC:1006648752
ISBN-13 :
Rating : 4/5 ( Downloads)

Book Synopsis Analytical and Computational Modeling of Mechanical Waves in Microscale Granular Crystals by : Samuel P. Wallen

Download or read book Analytical and Computational Modeling of Mechanical Waves in Microscale Granular Crystals written by Samuel P. Wallen and published by . This book was released on 2017 with total page 139 pages. Available in PDF, EPUB and Kindle. Book excerpt: Granular media are one of the most common, yet least understood forms of matter on earth. The difficulties in understanding the physics of granular media stem from the fact that they are typically heterogeneous and highly disordered, and the grains interact via nonlinear contact forces. Historically, one approach to reducing these complexities and gaining new insight has been the study of granular crystals, which are ordered arrays of similarly-shaped particles (typically spheres) in Hertzian contact. Using this setting, past works explored the rich nonlinear dynamics stemming from contact forces, and proposed avenues where such granular crystals could form designer, dynamically responsive materials, which yield beneficial functionality in dynamic regimes. In recent years, the combination of self-assembly fabrication methods and laser ultrasonic experimental characterization have enabled the study of granular crystals at microscale. While our intuition may suggest that these microscale granular crystals are simply scaled-down versions of their macroscale counterparts, in fact, the relevant physics change drastically; for example, short-range adhesive forces between particles, which are negligible at macroscale, are several orders of magnitude stronger than gravity at microscale. In this thesis, we present recent advances in analytical and computational modeling of microscale granular crystals, in particular concerning the interplay of nonlinearity, shear interactions, and particle rotations, which have previously been either absent, or included separately at macroscale. Drawing inspiration from past works on phononic crystals and nonlinear lattices, we explore problems involving locally-resonant metamaterials, nonlinear localized modes, amplitude-dependent energy partition, and other rich dynamical phenomena. This work enhances our understanding of microscale granular media, which may find applicability in fields such as ultrasonic wave tailoring, signal processing, shock and vibration mitigation, and powder processing.


Analytical and Computational Modeling of Mechanical Waves in Microscale Granular Crystals Related Books

Analytical and Computational Modeling of Mechanical Waves in Microscale Granular Crystals
Language: en
Pages: 139
Authors: Samuel P. Wallen
Categories:
Type: BOOK - Published: 2017 - Publisher:

DOWNLOAD EBOOK

Granular media are one of the most common, yet least understood forms of matter on earth. The difficulties in understanding the physics of granular media stem f
Coherent Structures in Granular Crystals
Language: en
Pages: 100
Authors: Christopher Chong
Categories: Science
Type: BOOK - Published: 2018-03-29 - Publisher: Springer

DOWNLOAD EBOOK

This book summarizes a number of fundamental developments at the interface of granular crystals and the mathematical and computational analysis of some of their
Analytical and Computational Modeling of the Mechanical Response of Polycrystalline and Nanocrystalline Metals
Language: en
Pages: 224
Towards Understanding Nonlinear Wave Propagation in Three-dimensional Microscale Granular Crystals
Language: en
Pages: 157
Authors: Morgan Hiraiwa
Categories:
Type: BOOK - Published: 2020 - Publisher:

DOWNLOAD EBOOK

Elastic waves and vibrations play central roles in numerous engineering fields and technologies such as impact mitigation, vibration isolation, ultrasonic imagi
Analysis and optimization of stress wave propagation in two-dimensional granular crystals with defects
Language: en
Pages: 270
Authors: Ivan Michel Nicolas Szelengowicz
Categories: Electronic dissertations
Type: BOOK - Published: 2013 - Publisher:

DOWNLOAD EBOOK