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Dive into the research topics where Joel Storch is active.

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Featured researches published by Joel Storch.


Archive | 2012

Carbon nanotubes and nanosensors: vibration, buckling and ballistic impact

Isaac Elishakoff; Demetris Pentaras; Kevin Dujat; Claudia Versaci; G. Muscolino; Joel Storch; Simon Bucas; Noël Challamel; Toshiaki Natsuki; Yingyan Zhang; C. Ming Wang; Guillaume Ghyselinck

The main properties that make carbon nanotubes (CNTs) a promising technology for many future applications are: extremely high strength, low mass density, linear elastic behavior, almost perfect geometrical structure, and nanometer scale structure. Also, CNTs can conduct electricity better than copper and transmit heat better than diamonds. Therefore, they are bound to find a wide, and possibly revolutionary use in all fields of engineering. The interest in CNTs and their potential use in a wide range of commercial applications; such as nanoelectronics, quantum wire interconnects, field emission devices, composites, chemical sensors, biosensors, detectors, etc.; have rapidly increased in the last two decades. However, the performance of any CNT-based nanostructure is dependent on the mechanical properties of constituent CNTs. Therefore, it is crucial to know the mechanical behavior of individual CNTs such as their vibration frequencies, buckling loads, and deformations under different loadings. This title is dedicated to the vibration, buckling and impact behavior of CNTs, along with theory for carbon nanosensors, like the Bubnov-Galerkin and the Petrov-Galerkin methods, the Bresse-Timoshenko and the Donnell shell theory.


Journal of Applied Physics | 2013

Analytical solutions to the free vibration of a double-walled carbon nanotube carrying a bacterium at its tip

Joel Storch; Isaac Elishakoff

We calculate the natural frequencies and mode shapes of a cantilevered double-walled carbon nanotube carrying a rigid body—representative of a bacterium or virus—at the tip of the outer nanotube. By idealizing the nanotubes as Bernoulli-Euler beams, we are able to obtain exact expressions for both the mode shapes and characteristic frequency equation. Separate analyses are performed for the special case of a concentrated tip mass and the more complicated situation where the tip body also exhibits inertia and mass center offset from the beam tip.


Journal of Sound and Vibration | 2005

An unusual exact, closed-form solution for axisymmetric vibration of inhomogeneous simply supported circular plates

Isaac Elishakoff; Joel Storch


Advanced Science Letters | 2009

Buckling of a Double‐Walled Carbon Nanotube

Isaac Elishakoff; Demetris Pentaras; Kevin Dujat; Claudia Versaci; G. Muscolino; Joel Storch; Simon Bucas; Noël Challamel; Toshiaki Natsuki; Yingyan Zhang; C. M. Wang; Guillaume Ghyselinck


Journal of Sound and Vibration | 2004

Apparently first closed-form solutions of inhomogeneous circular plates in 200 years after Chladni

Joel Storch; Isaac Elishakoff


Archive | 2013

Exact Solution for Natural Frequencies of Clamped‐Clamped Double‐Walled Carbon Nanotubes

Isaac Elishakoff; Demetris Pentaras; Kevin Dujat; Claudia Versaci; G. Muscolino; Joel Storch; Simon Bucas; Noël Challamel; Toshiaki Natsuki; Yingyan Zhang; C. M. Wang; Guillaume Ghyselinck


AIAA Journal | 2017

Vibration of Functionally Graded Rotating Beams Including the Effects of Nonlocal Elasticity

Joel Storch; Isaac Elishakoff


Archive | 2013

Natural Frequencies of Carbon Nanotubes Based on a Consistent Version of Bresse–Timoshenko Theory

Isaac Elishakoff; Demetris Pentaras; Kevin Dujat; Claudia Versaci; G. Muscolino; Joel Storch; Simon Bucas; Noël Challamel; Toshiaki Natsuki; Yingyan Zhang; C. M. Wang; Guillaume Ghyselinck


Archive | 2013

Surface Effects on the Natural Frequencies of Double‐Walled Carbon Nanotubes

Isaac Elishakoff; Demetris Pentaras; Kevin Dujat; Claudia Versaci; G. Muscolino; Joel Storch; Simon Bucas; Noël Challamel; Toshiaki Natsuki; Yingyan Zhang; C. M. Wang; Guillaume Ghyselinck


Archive | 2013

Natural Frequencies of Double‐Walled Carbon Nanotubes Based on Donnell Shell Theory

Isaac Elishakoff; Demetris Pentaras; Kevin Dujat; Claudia Versaci; G. Muscolino; Joel Storch; Simon Bucas; Noël Challamel; Toshiaki Natsuki; Yingyan Zhang; C. M. Wang; Guillaume Ghyselinck

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Isaac Elishakoff

Florida Atlantic University

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Demetris Pentaras

Florida Atlantic University

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C. M. Wang

University of Queensland

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