Finite element analysis has been widely applied in mechanical,
civil, and biomedical designs. This book aims to provide the
readers comprehensive views of various material models with
practical examples, which would help readers understand various
materials, and build appropriate material models in the finite
element analysis. This book is composed of four main parts: 1)
metals, 2) polymers, 3) soils, and 4) modern materials. Each part
starts with the structure and function of different materials and
then follows the corresponding material models such as BISO, MISO,
Chaboche model in metals, Arruda-Boyce model, Mooney-Rivlin model,
Ogden model in polymers, Mohr-Coulomb model, Cam Clay model and
Jointed Rock model in geomechanics, composites and shape memory
alloys in modern materials. The final section presents some
specific problems, such as metal forming process, combustion
chamber, Mullins effect of rubber tire, breast shape after breast
surgery, viscoelasticity of liver soft tissues, tunnel excavation,
slope stability, orthodontic wire, and piezoelectric
microaccelerometer. All modeling files are provided in the
appendixes of the book. This book would be helpful for graduate
students and researchers in the mechanical, civil, and biomedical
fields who conduct finite element analysis. The book provides all
readers with comprehensive understanding of modeling various
materials.
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