Mathematical Methods And Models In CompositesVladislav Mantic World Scientific, 10 mar 2023 - 732 páginas Mathematical Methods and Models in Composites (Second Edition) provides an in-depth treatment of modern and rigorous mathematical methods and models applied to composites modeling on the micro-, meso-, and macro scale. There has been a steady growth in the diversity of such methods and models that are used in the analysis and characterization of composites, their behavior, and their associated phenomena and processes. This second edition expands upon the success of the first edition, and has been substantially revised and updated.Written by well-known experts in different areas of applied mathematics, physics, and composite engineering, this book is mainly focused on continuous fiber reinforced composites and their ever increasing range of applications (for example, in the aerospace industry), though it also covers other kind of composites. The chapters cover a range of topics including, but not limited to: scaling and homogenization procedures in composites, thin plate and wave solutions in anisotropic materials, laminated structures, fiber-reinforced nonlinearly elastic solids, buckling and postbuckling, fracture and damage analysis of composites, and highly efficient methods for simulation of composites manufacturing such as resin transfer molding. The results presented are useful for the design, fabrication, testing and industrial applications of composite components and structures.This book is an essential reference for graduate and doctoral students, as well as researchers in mathematics, physics and composite engineering. Explanations and references in the book are sufficiently detailed so as to provide the necessary background to further investigate the fascinating subject of composites modeling and explore relevant research literature. It is also suitable for non-experts who wish to have an overview of the mathematical methods and models used for composites, and of the open problems in this area that require further research. |
Índice
2 Scaling Functions in Spatially Random Composites | 75 |
3 StrohLike Formalism for General ThinLaminated Plates and Its Applications | 121 |
4 Classical Refined ZigZag LayerWise Models and Best Theory Diagrams for Laminated Structures | 155 |
5 A Modeling Framework for the Analysis of Instabilities and Delamination in Composite Shells | 209 |
6 Bifurcation of Elastic Multilayers | 259 |
7 Instabilities Associated with Loss of Ellipticity in FiberReinforced Nonlinearly Elastic Solids | 295 |
8 Propagation of Rayleigh Waves in Anisotropic Media and an Inverse Problem in the Characterization of Initial Stress | 333 |
9 Advanced Mathematical Models and Efficient Numerical Simulation in Composite Processes | 385 |
10 Modeling Fracture and Complex Crack Networks in Laminated Composites | 439 |
11 Delamination and Adhesive Contacts Their Mathematical Modeling and Numerical Treatment | 497 |
12 Interaction of Cracks with Interfaces | 579 |
13 Computational Procedure for Singularity Analysis of Anisotropic Elastic Multimaterial Corners Applications to Composites and Their Joints | 613 |
| 697 | |
Otras ediciones - Ver todo
Mathematical Methods and Models in Composites Vladislav Mantič No hay ninguna vista previa disponible - 2022 |
Mathematical Methods And Models In Composites (Second Edition) Vladislav Mantic No hay ninguna vista previa disponible - 2022 |
Términos y frases comunes
adhesive angle anisotropic Appl applications asymptotic homogenization bending bifurcation boundary conditions characteristic coefficients cohesive law components composite laminates composite materials composite shells compression computational configuration considered coordinate damage debonding defined deformation delamination denotes discontinuity displacement effective eigenvalues eigenvectors elastic elasticity tensor energy equations failure fiber finite element formulation fracture friction geometrical GSIFs homogenization model in-plane initial interface isotropic Kalamkarov A.L. kink layer linear linear elastic load matrix cracks Mech mechanical mesh mesoscale method mode moduli multilayered multimaterial corner nonlinear numerical obtained orthotropic parameters perturbation phase velocity plane plane strain plates problem propagation properties Rayleigh waves reinforced scaling function Section shear stresses shown in Fig singularity analysis Solids Struct solution specimen stiffness strain surface tensile tensor theory thickness traction unit cell variables vector velocity Α Α Δ Δ Δ λμ
