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Titlebook: Structure and Multiscale Mechanics of Carbon Nanomaterials; Oskar Paris Book 2016 CISM Udine 2016 Carbon Nanomaterials.Carbon Nanotubes.Gr

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Structure and Multiscale Mechanics of Carbon Nanomaterials
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Continuum Modelling of Nanotubes: Collapse Under Pressure, for a recent discussion see Corradi . (2011). Experimentally, end-effects tended to dominate even for what seemed like long tubes, while theoretically, this example of Euler buckling was recognized to be one of the hardest problems in elasticity theory. Indeed, exact solutions have been found only recently.
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Collective Behaviour of Vertically Aligned Carbon Nanotubes: from a Single Tube towards Complex Nett due to their perpendicular growth from a stiff substrate. They are a unique class of materials having many of the desirable thermal, electrical, and mechanical properties of individual carbon nanotubes, while exhibiting these properties through the collective interaction of thousands of tubes on a macroscopic scale.
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0254-1971 xperimental work mainly based on the use of (in-situ) Raman and X-ray scattering and on nanoindentation, the book also covers some aspects of multiscale modeling of the mechanics of carbon nanomaterials.978-3-7091-1998-3978-3-7091-1887-0Series ISSN 0254-1971 Series E-ISSN 2309-3706
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Graphene and Graphene-Based Nanocomposites, good prospects for applications in a number of different fields (Novoselov, 2011; Geim, 2011). There has been a rapid rise of interest in the study of the structure and properties of graphene following the first report in 2004 of the preparation and isolation of single graphene layers in Manchester
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