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Nanomechanics and micromechanics : generalized models and nonclassical engineering approaches / edited by Satya Bir Singh, PhD, Alexander V. Vakhrushev, DSc, A.K. Haghi, PhD.

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Format:
Book
Contributor:
Singh, Satya Bir, editor.
Vakhrushev, Alexander V., editor.
Haghi, A. K., editor.
Series:
AAP research notes on nanoscience & nanotechnology.
AAP research notes on nanoscience & nanotechnology
Language:
English
Subjects (All):
Micromechanics--Mathematical models.
Micromechanics.
Physical Description:
1 online resource (xviii, 255 pages) : illustrations.
Edition:
1st ed.
Place of Publication:
Burlington, ON, Canada ; Palm Bay, Florida, USA : Apple Academic Press, 2020.
Summary:
"This volume, Nanomechanics and Micromechanics: Generalized Models and Nonclassical Engineering Approaches, enables readers to interpret and predict the effective mechanical properties of existing and emerging composites through modeling and design. The book addresses that materials and structures with small-scale dimensions do not behave in the same manner as their bulk counterparts. Once materials dimensions are reduced to the micron- and-sub-micron range, their properties are subject to significant change. Thus, mechanical properties will be varied and will depend on the sample size. In the meantime, due to the large surface-to-volume ration of small structures, deformation mechanisms are subject to change. This volume integrates various approaches in micromechanics and nanomechanics into a unified mathematical framework, complete with coverage of both linear and nonlinear behaviors. It weaves together the basic concepts, mathematical fundamentals, and formulations of micromechanics and nanomechanics into a systemic approach for understanding and modeling the effective material behavior of composite materials. While providing information on recent developments in the mathematical framework of micro- and nanomechanics, the volume addresses highly localized phenomena and a number of interesting applications. It also illustrates application of micromechanical and nanomechanical theory to design novel engineering materials. This volume is intended for advanced undergraduate and graduate students, researchers, and engineers interested and involved in mechanical analysis and design."-- Provided by publisher.
Contents:
Effects of Heat Treatment Conditions on Microstructure and mechanical Properties of Halloysite Nanotube (HNT) Filled Epoxy Nanocomposites / G. Ravichandran, G. Rathnakar, and N. Santhosh
Study of Properties of Nanostructures and Metal Nanocomposites on Their Basis / A. Yu. Fedotov and A. V. Vakhrushev
Possible Mechanism of Redox Synthesis of Metal/Carbon Nanocomposites Modified by p, d Elements / V. I. Kodolov, V. V. Trineeva, I. N. Shabanova, and N. S. Terebova
Simulation of Thermal Fields and Formation of Drops at Welding of Microsystems / S. V. Suvorov and A. V. Vakhrushev
Effect of Imposing Linear Particle Gradient on Creep Behavior in Composite Disc Having Hyperbolic Thickness / Vandana Gupta and S. B. Singh
Microstructure and Properties of Fire-Resistant Polymeric Materials / S. G. Shuklin, D. S. Shuklin, and A. V. Vakhrushev
Optimization of Wear Rate on the Low-Cost Reinforced-Hybrid Aluminum Metal Matrix Composite / L. Francis Xavier, G. Ravichandran, and N. Santhosh
Elastic-Plastic and Creep Transition in Structural Components / Shivdev Shahi, Pankaj Thakur, Vandana Gupta, and S. B. Singh
Comparative Analysis of Elastic-Plastic Stress Distributions in Human Femur Bone, Titanium, and Boron-Aluminum Fiber-Reinforced Composite for Surgical Implants and Prosthetic Equipment Design / Shivdev Shahi, S.B. Singh, and Pankaj Thakur
Creep Modeling in a Composite Rotating Disc with Constant Thickness in the Presence of Residual Stress / Nishi Gupta and S.B. Singh
Big Data Development Platform for Engineering Applications / Chin Kang Chen and Heru Susanto.
Notes:
Description based on print version record.
ISBN:
1-000-43933-X
0-429-32244-5
9780429322440
OCLC:
1139708643

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