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Multiscale Modeling Approaches for Composites outlines the
fundamentals of common multiscale modeling techniques and provides
detailed guidance for putting them into practice. Various
homogenization methods are presented in a simple, didactic manner,
with an array of numerical examples. The book starts by covering
the theoretical underpinnings of tensors and continuum mechanics
concepts, then passes to actual micromechanic techniques for
composite media and laminate plates. In the last chapters the book
covers advanced topics in homogenization, including Green's tensor,
Hashin-Shtrikman bounds, and special types of problems. All
chapters feature comprehensive analytical and numerical examples
(Python and ABAQUS scripts) to better illustrate the theory.
Thermomechanical Behavior of Dissipative Composite Materials
presents theoretical and numerical tools for studying materials and
structures under fully coupled thermomechanical conditions,
focusing primarily on composites. The authors cover many aspects of
the modeling process and provide the reader with the knowledge
required to identify the conservation laws and thermodynamic
principles that must be respected by most solid materials. The book
also covers construct constitutive laws for various types of
dissipative processes, both rate-independent and rate-dependent, by
utilizing a rigorous thermodynamic framework. Topics explored are
useful for graduate students and advanced researchers who wish to
strengthen their knowledge of the application of thermodynamic
principles.
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