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Designing engineering components that make optimal use of materials
requires consideration of the nonlinear static and dynamic
characteristics associated with both manufacturing and working
environments. The modeling of these characteristics can only be
done through numerical formulation and simulation, which requires
an understanding of both the theoretical background and associated
computer solution techniques. By presenting nonlinear solid
mechanics, dynamic conservation laws and principles, and the
associated finite element techniques together, the authors provide
in this second book a unified treatment of the dynamic simulation
of nonlinear solids. Alongside a number of worked examples and
exercises are user instructions, program descriptions, and examples
for two MATLAB computer implementations for which source codes are
available online. While this book is designed to complement
postgraduate courses, it is also relevant to those in industry
requiring an appreciation of the way their computer simulation
programs work.
Designing engineering components that make optimal use of materials
requires consideration of the nonlinear static and dynamic
characteristics associated with both manufacturing and working
environments. The modeling of these characteristics can only be
done through numerical formulation and simulation, which requires
an understanding of both the theoretical background and associated
computer solution techniques. By presenting both the nonlinear
solid mechanics and the associated finite element techniques
together, the authors provide, in the first of two books in this
series, a complete, clear, and unified treatment of the static
aspects of nonlinear solid mechanics. Alongside a range of worked
examples and exercises are user instructions, program descriptions,
and examples for the FLagSHyP MATLAB computer implementation, for
which the source code is available online. While this book is
designed to complement postgraduate courses, it is also relevant to
those in industry requiring an appreciation of the way their
computer simulation programs work.
Now in its second English edition, Mechanics of Materials is the
second volume of a three-volume textbook series on Engineering
Mechanics. It was written with the intention of presenting to
engineering students the basic concepts and principles of mechanics
in as simple a form as the subject allows. A second objective of
this book is to guide the students in their efforts to solve
problems in mechanics in a systematic manner. The simple approach
to the theory of mechanics allows for the different educational
backgrounds of the students. Another aim of this book is to provide
engineering students as well as practising engineers with a basis
to help them bridge the gaps between undergraduate studies,
advanced courses on mechanics and practical engineering problems.
The book contains numerous examples and their solutions. Emphasis
is placed upon student participation in solving the problems. The
new edition is fully revised and supplemented by additional
examples. The contents of the book correspond to the topics
normally covered in courses on basic engineering mechanics at
universities and colleges. Volume 1 deals with Statics and Volume 3
treats Particle Dynamics and Rigid Body Dynamics. Separate books
with exercises and well elaborated solutions are available.
Many processes in materials science and engineering, such as the
load deformation behaviour of certain structures, exhibit nonlinear
characteristics. The computer simulation of such processes
therefore requires a deep understanding of both the theoretical
aspects of nonlinearity and the associated computational
techniques. This book provides a complete set of exercises and
solutions in the field of theoretical and computational nonlinear
continuum mechanics and is the perfect companion to Nonlinear
Continuum Mechanics for Finite Element Analysis, where the authors
set out the theoretical foundations of the subject. It employs
notation consistent with the theory book and serves as a great
resource to students, researchers and those in industry interested
in gaining confidence by practising through examples. Instructors
of the subject will also find the book indispensable in aiding
student learning.
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