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Advances In Mathematical Modeling And Experimental Methods For Materials And Structures -

  • Collection: Solid Mechanics And Its Applications
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        Avis sur Advances In Mathematical Modeling And Experimental Methods For Materials And Structures Format Non Precisé  - Livre Technologie

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        Présentation Advances In Mathematical Modeling And Experimental Methods For Materials And Structures Format Non Precisé

         - Livre Technologie

        Livre Technologie - 24/03/2024 - Non Precisé

        . .

      • Collection : Solid Mechanics And Its Applications
      • Parution : 24/03/2024
      • Nombre de pages : 312
      • Expédition : 515
      • Dimensions : 23.5 x 15.6 x 1.9
      • ISBN : 940073168X



      • Résumé :
        This work presents a collection of papers, written by leading authors in honor of Professor Jacob Aboudi. Jacob Aboudi served as Head of the Department of Solid Mechanics, Materials and Structures, as Dean of the Faculty of Engineering and as Incumbent of the Diane and Arthur Belfer Chair of Mechanics and Biomechanics at Tel Aviv University. Aboudi has published more than 200 papers, 2 books and is a leading authority in the field of composite materials. The papers in this volume cover a wide spectrum of topics in the forefront of research in experimental methods and mathematical modeling of materials and structures. Subjects treated include developments in materials science, theoretical and applied mechanics, applied mathematics, applied physics, computational methods in engineering, mechanical and civil engineering. Both theoretical and experimental approaches are presented. As this book reflects the state of the art, possible engineering applications and future research directions are suggested.

        Sommaire:
        Table of Contents --- Aboudi Volume: Foreword, List of Publications by Jacob Aboudi; 1 Aboudi?s Micromechanics Theories Applied to Multiscale Analysis of Composites, by Bednarcyk B.A. and Arnold S.M.; 2 The Effect of Inclusions on Phase Transformations in Dynamically Driven Plates, by Clements B.E., Addessio F.L. and Plohr J.N. ; 3 Fitting an Anisotropic Yield Surface Using the Generalized Method of Cells, by Acton K. and Graham-Brady L.; 4 A Multiscale Progressive Damage and Failure Modeling Approach for Laminated Fiber Reinforced Composites, by Pineda E.J., Waas A.M., Bednarcyk B.A., Craig S.C. and Yarrington P.W.; 5 A Comparison of Micromechanical Models for the Homogenization of Microheterogeneous Elastic Composites, by Matzenmiller A. and Kurnatowski B.; 6 A Multi-Scale Formulation for Smart Composites with Field Coupling Effects, by Muliana A.; 7 Computational Homogenization of Polymeric Nanofiber Scaffolds and Biological Cells, by Reddy J.N., Unnikrishnan V.U., and Unnikrishnan G.U.; 8 A Computational Multiscale Investigation of Failure in Viscoelastic Solids, by Soares R.F. and Allen D.H. ; 9 Variational Asymptotic Method for Unit Cell Homogenization, by Yu W. and Tang T.; 10 A Computational Framework for Multiscale Analysis of Laminated Composite Plates, by Mourad H.M., Williams T.O. and Addessio F.L; 11 In Situ Characterization and Modeling of Strains near Embedded Electronic Components during Processing and Break-in for Multifunctional Polymer Structures, by Gershon A.L., Gyger L.S. Jr., Bruck H.A., Gupta S.K.; 12 Multiscale Hybrid Nano/Microcomposites - Processing, Characterization and Analysis, by Daniel I.M. and Cho J-M.; 13 Experimental Yield Surface Determination for Metal Matrix Composites, by Lissenden C.J.; 14 Compressive Response of Dentin Micro-Pillars, by Ziskind D., Fleischer S., Zhang K., Cohen S.R and Wagner H.D.; 15 Diffusion Linked Solidification Model of Axisymmetric Growth of Gold Nanorods, by Ray T.R., Murphy C.J. and Baxter S.C.;16 Probabilistic Strength of Carbon Nanotube Yarns, by Beyerlein I.J., Porwal P.K., Zhu Y.T., Xu X.F. and Phoenix S.L.; 17 Flaw Identification in Structures via Computationally-Assisted NDT , by Rabinovich D., Givoli D. and Vigdergauz S.; 18 Some Analytic Solutions for Plane Strain Deformations of Compressible Isotropic Nonlinearly Elastic Materials, by Horgan C.O. and Murphy J.G.; 19 An Equation both More Consistent and Simpler than the Bresse-Timoshenko Equation, by Elishakoff I.; 20 A Robust and Consistent First-Order Zigzag Theory for Multilayered Beams, by Di Sciuva M., Gherlone, M. and Tessler A.; 21 Anisotropic Elastic Beams with Axially Distributed Loads, by Rand O. and Rovenski V.; 22 Consistent Loading in Structural Reduction Procedure for Thin Plate Models, by Harari I., Sokolov I. and Krylov S.; 23 Modelling Generalized Plane Problems with Cylindrical Anisotropy, by Hersh C.L. and Herakovich C.T.

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