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Mechanics of Nanocomposites
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Mechanics of Nanocomposites : Homogenization and Analysis

Book Details

Format Paperback / Softback
ISBN-10 1032235756
ISBN-13 9781032235752
Publisher Taylor & Francis Ltd
Imprint CRC Press
Country of Manufacture GB
Country of Publication GB
Publication Date Feb 1st, 2022
Print length 268 Pages
Weight 453 grams
Ksh 14,600.00
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The book investigates static and dynamic behavior of nanocomposites using various reinforcements. It discusses matrices strengthened via various nanofillers like carbon nanotubes, graphene platelets and oxide powders. Equivalent properties of nanocomposites are obtained via homogenization techniques based on micromechanics approaches.

Emphasizing the static and dynamic behaviors of nanocomposite single- or multilayered structures in the framework of continuum mechanics-based approaches, Mechanics of Nanocomposites: Homogenization and Analysis investigates mechanical behaviors of polymeric matrices strengthened via various nanofillers and nanoparticles such as carbon nanotubes (CNTs), graphene platelets (GPLs), and graphene oxides (GOs). It covers equivalent properties of nanocomposites that are obtained via homogenization techniques based on micromechanics approaches. In addition, this comprehensive book:

    • Discusses the effects of various nanofillers and identifies the amount of the improvement that can be induced in the stiffness of the polymeric nanocomposites by adding a finite content of the aforementioned nanosize reinforcements
    • Magnifies the effect of the number of the stacking plies of the multi-layered nanocomposite structures on both static and dynamic responses of the continuous systems manufactured from such sandwich structures
    • Presents a wide range of analytical and numerical solution procedures
    • Investigates the effects of porosity along with mechanical characteristics of nanocomposites
    • Considers the time-dependency of the material properties of the viscoelastic polymeric nanocomposite structures
    • Performs analyses using an energy-based approach incorporated with the strain-displacement relations of both classical and higher-order shear deformable beam, plate, or shell theorems

Aimed at researchers, academics, and professionals working across mechanical, materials, and other areas of engineering, this work ensures that readers are equipped to fully understand the mechanical characteristics of nanocomposite structures so that they can design, develop, and apply these materials effectively.


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