Virtual Work and Shape Change in Solid Mechanics

Virtual Work and Shape Change in Solid Mechanics
Author: Michel Frémond
Publsiher: Springer
Total Pages: 371
Release: 2016-09-24
Genre: Science
ISBN: 9783319406824

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This book provides novel insights into two fundamental subjects in solid mechanics: virtual work and shape change. The author explains how the principle of virtual work represents a tool for analysis of the mechanical effects of the evolution of the shape of a system, how it can be applied to observations and experiments, and how it may be adapted to produce predictive theories of numerous phenomena. The book is divided into three parts. The first relates the principle of virtual work to what we observe with our eyes, the second demonstrates its flexibility on the basis of many examples, and the third applies the principle to predict the motion of solids with large deformations. Examples of both usual and unusual shape changes are presented, and equations of motion, some of which are entirely new, are derived for smooth and non-smooth motions associated with, for instance, systems of disks, systems of balls, classical and non-classical small deformation theories, systems involving volume and surface damage, systems with interactions at a distance (e.g., solids reinforced by fibers), systems involving porosity, collisions, and fracturing of solids.

The Finite Element Method for Mechanics of Solids with ANSYS Applications

The Finite Element Method for Mechanics of Solids with ANSYS Applications
Author: Ellis H. Dill
Publsiher: CRC Press
Total Pages: 500
Release: 2011-08-25
Genre: Science
ISBN: 9781439845844

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While the finite element method (FEM) has become the standard technique used to solve static and dynamic problems associated with structures and machines, ANSYS software has developed into the engineer's software of choice to model and numerically solve those problems. An invaluable tool to help engineers master and optimize analysis, The Finite El

Applied Mechanics of Solids

Applied Mechanics of Solids
Author: Allan F. Bower
Publsiher: CRC Press
Total Pages: 820
Release: 2009-10-05
Genre: Science
ISBN: 9781439802489

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Modern computer simulations make stress analysis easy. As they continue to replace classical mathematical methods of analysis, these software programs require users to have a solid understanding of the fundamental principles on which they are based.Develop Intuitive Ability to Identify and Avoid Physically Meaningless PredictionsApplied Mechanics o

Proceedings of the 1st International Conference on Numerical Modelling in Engineering

Proceedings of the 1st International Conference on Numerical Modelling in Engineering
Author: Magd Abdel Wahab
Publsiher: Springer
Total Pages: 418
Release: 2018-08-28
Genre: Technology & Engineering
ISBN: 9789811322730

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This book gathers outstanding papers on numerical modeling in Mechanical Engineering (Volume 2) as part of the proceedings of the 1st International Conference on Numerical Modeling in Engineering (NME 2018), which was held in Ghent, Belgium. The overall objective of the conference was to bring together international scientists and engineers in academia and industry from fields related to advanced numerical techniques, such as the finite element method (FEM), boundary element method (BEM), isogeometric analysis (IGA), etc., and their applications to a wide range of engineering disciplines. This book addresses various industrial engineering applications of numerical simulations to Mechanical and Materials Engineering, including: Aerospace applications, Acoustic analysis, Biomechanical applications, Contact problems and wear, Heat transfer analysis, Vibration and dynamics, Transient analysis, Nonlinear analysis, Composite materials, Polymers, Metal alloys, Fracture mechanics, Fatigue of materials, Creep behavior, Phase transformation, and Crystal plasticity.

Theoretical Foundations of Nanoscale Quantum Devices

Theoretical Foundations of Nanoscale Quantum Devices
Author: Malin Premaratne,Govind P. Agrawal
Publsiher: Cambridge University Press
Total Pages: 299
Release: 2021-01-07
Genre: Science
ISBN: 9781108475662

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This self-contained text describes the underlying theory and approximate quantum models of real nanodevices for nanotechnology applications.

Solvability Regularity and Optimal Control of Boundary Value Problems for PDEs

Solvability  Regularity  and Optimal Control of Boundary Value Problems for PDEs
Author: Pierluigi Colli,Angelo Favini,Elisabetta Rocca,Giulio Schimperna,Jürgen Sprekels
Publsiher: Springer
Total Pages: 571
Release: 2017-11-03
Genre: Mathematics
ISBN: 9783319644899

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This volume gathers contributions in the field of partial differential equations, with a focus on mathematical models in phase transitions, complex fluids and thermomechanics. These contributions are dedicated to Professor Gianni Gilardi on the occasion of his 70th birthday. It particularly develops the following thematic areas: nonlinear dynamic and stationary equations; well-posedness of initial and boundary value problems for systems of PDEs; regularity properties for the solutions; optimal control problems and optimality conditions; feedback stabilization and stability results. Most of the articles are presented in a self-contained manner, and describe new achievements and/or the state of the art in their line of research, providing interested readers with an overview of recent advances and future research directions in PDEs.

Intermediate Solid Mechanics

Intermediate Solid Mechanics
Author: Marko V. Lubarda,Vlado A. Lubarda
Publsiher: Cambridge University Press
Total Pages: 501
Release: 2020-01-09
Genre: Science
ISBN: 9781108499606

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A concise yet comprehensive treatment of the fundamentals of solid mechanics, including solved examples, exercises, and homework problems.

Computational Methods in Solid Mechanics

Computational Methods in Solid Mechanics
Author: A. Curnier
Publsiher: Springer Science & Business Media
Total Pages: 412
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9789401111126

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This volume presents an introduction to the three numerical methods most commonly used in the mechanical analysis of deformable solids, viz. the finite element method (FEM), the linear iteration method (LIM), and the finite difference method (FDM). The book has been written from the point of view of simplicity and unity; its originality lies in the comparable emphasis given to the spatial, temporal and nonlinear dimensions of problem solving. This leads to a neat global algorithm. Chapter 1 addresses the problem of a one-dimensional bar, with emphasis being given to the virtual work principle. Chapters 2--4 present the three numerical methods. Although the discussion relates to a one-dimensional model, the formalism used is extendable to two-dimensional situations. Chapter 5 is devoted to a detailed discussion of the compact combination of the three methods, and contains several sections concerning their computer implementation. Finally, Chapter 6 gives a generalization to two and three dimensions of both the mechanical and numerical aspects. For graduate students and researchers whose work involves the theory and application of computational solid mechanics.