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Finite Element Modeling of Nanotube Structures [electronic resource] : Linear and Non-linear Models / by Mokhtar Awang, Ehsan Mohammadpour, Ibrahim Dauda Muhammad.

By: Awang, Mokhtar [author.].
Contributor(s): Mohammadpour, Ehsan [author.] | Muhammad, Ibrahim Dauda [author.] | SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Engineering Materials: Publisher: Cham : Springer International Publishing : Imprint: Springer, 2016Edition: 1st ed. 2016.Description: XIII, 212 p. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783319031972.Subject(s): Mechanics, Applied | Solids | Nanotechnology | Microtechnology | Microelectromechanical systems | Solid Mechanics | Nanotechnology | Microsystems and MEMSAdditional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification: 620.105 Online resources: Click here to access online
Contents:
Introduction -- Nanotube structures -- Modeling process for carbon structures -- Mechanical behavior of carbon structures.
In: Springer Nature eBookSummary: This book presents a new approach to modeling carbon structures such as graphene and carbon nanotubes using finite element methods, and addresses the latest advances in numerical studies for these materials. Based on the available findings, the book develops an effective finite element approach for modeling the structure and the deformation of grapheme-based materials. Further, modeling processing for single-walled and multi-walled carbon nanotubes is demonstrated in detail.
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Introduction -- Nanotube structures -- Modeling process for carbon structures -- Mechanical behavior of carbon structures.

This book presents a new approach to modeling carbon structures such as graphene and carbon nanotubes using finite element methods, and addresses the latest advances in numerical studies for these materials. Based on the available findings, the book develops an effective finite element approach for modeling the structure and the deformation of grapheme-based materials. Further, modeling processing for single-walled and multi-walled carbon nanotubes is demonstrated in detail.

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