This is the only finite element analysis book on the market using ANSYS® to analyze composite materials. Combining theory of advanced mechanics of composites with implementation, the text covers major aspects of advanced analysis, including three-dimensional effects, viscoelasticity, edge effects, elastic instability, damage, and delamination. This second edition of a bestseller has been completely revised to incorporate advances in the state of the art in such areas as modeling of damage in composites. In addition, all 50+ examples have been updated for the newest ANSYS version.
This is the only finite element analysis book on the market using ANSYS® to analyze composite materials. Combining theory of advanced mechanics of composites with implementation, the text covers major aspects of advanced analysis, including three-dimensional effects, viscoelasticity, edge effects, elastic instability, damage, and delamination. This second edition of a bestseller has been completely revised to incorporate advances in the state of the art in such areas as modeling of damage in composites. In addition, all 50+ examples have been updated for the newest ANSYS version.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Ever J. Barbero holds a BSME-BSEE from Universidad Nacional de Río Cuarto, Argentina and a Ph.D from Virginia Polytechnic Institute and State University, Blacksburg, USA. He is ASME and SAMPE fellow, a professor at West Virginia University, Morgantown, USA, and honorary professor at Universidad Nacional de Trujillo, Peru. Holder of two US patents, author of over 100 peer-reviewed publications, and recipient of numerous teaching and research awards, he is recognized internationally for his work on material models for composite materials.
Inhaltsangabe
Mechanics of Orthotropic Materials. Introduction to Finite Element Analysis. Elasticity and Strength of Laminates. Buckling. Free Edge Stresses. Computational Micromechanics. Viscoelasticity. Continuum Damage Mechanics. Discrete Damage Mechanics. Delaminations. Appendices. References. Index.