Produktbild: IUTAM Symposium on Multiscale Modelling of Fatigue, Damage and Fracture in Smart Materials
Band 24

IUTAM Symposium on Multiscale Modelling of Fatigue, Damage and Fracture in Smart Materials Proceedings of the IUTAM Symposium on Multiscale Modelling of Fatigue, Damage and Fracture in Smart Materials, held in Freiberg, Germany, September 1-4, 2009

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

30.11.2010

Abbildungen

XXII, 296 p.

Herausgeber

Meinhard Kuna + weitere

Verlag

Springer Netherland

Seitenzahl

296

Maße (L/B/H)

24,4/16,7/2,8 cm

Gewicht

628 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-90-481-9886-3

Beschreibung

Portrait

After studying physics at the University of Magdeburg, Prof. Dr. Meinhard Kuna worked as researcher and group leader at the Academy of Sciences of GDR (Institute of Solid State Physics and Electron Microscopy) in Halle. At the university of Halle he graduated with PhD Thesis (1978) and habilitation (1991) in the field of numerical methods in fracture mechanics. After German reunification, he became head of department at Fraunhofer institute for Mechanics of Materials Freiburg/Halle and later at MPA Stuttgart. Since 1997 he is full Professor for Applied Mechanics and Solid Mechanics at TU Bergakademie Freiberg. Prof. Kuna established an internationally recognized research group dealing with computational methods in fracture mechanics, damage mechanics and modelling of materials. His projects are devoted both to fundamental research and industrial applications, ranging from nuclear waste casks, piezoelectric materials to microelectronic devices. Prof. Kuna published about 240 papers and one monograph. He organized several national and international scientific conferences on fracture mechanics and is member of Editorial Boards in international journals.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

30.11.2010

Abbildungen

XXII, 296 p.

Herausgeber

Verlag

Springer Netherland

Seitenzahl

296

Maße (L/B/H)

24,4/16,7/2,8 cm

Gewicht

628 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-90-481-9886-3

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: IUTAM Symposium on Multiscale Modelling of Fatigue, Damage and Fracture in Smart Materials
  • L. Banks-Sills and Y. Motola: A Fracture Criterion for Piezoelectric Material.- A. R. Engert, F. Felten, H. Jelitto and G. A. Schneider: What do we know about surface charges on cracks in ferroelectric ceramics?.- Y. Shindo and F. Narita: Effects of Electric Field and Poling on Fatigue Behavior of PZT Ceramics with Single-Edge Crack by Three-Point Bending.- F. Auricchio, M. Conti, S. Morganti and A. Reali: Shape Memory Alloys: Material Modeling and Device Finite Element Simulations.- A. S. Semenov, A. C. Liskowsky, P. Neumeister and H. Balke: Effective computational methods for the modeling of ferroelectroelastic hysteresis behavior.- S. Roth, P. Neumeister, A. S. Semenov and H. Balke: Finite Element Simulation of the Non-remanent Straining Ferroelectric Material Behaviour Based on the Electrostatic Scalar Potential – Convergence and Stability.- L. Yu, S. Yu and D. Gross: Constitutive Behavior of Nano-particle Ferroelectric Ceramics.- F. Li: An optimization-based computational model for polycrystalline ferroelastics.- R. Mueller, B. X. Xu, D. Schrade and D. Gross: Modeling of domain structure evolution in ferroelectric materials.- Q. Li, M. Enderlein and M. Kuna: Micromechanical simulation of ferroelectric domain switching at cracks.- S. Klinkel and K. Linnemann: A phenomenological constitutive model for ferroelectric ceramics and ferromagnetic materials.- D. K. Vu and P. Steinmann: The concept of material forces in nonlinear electro-elastostatics.- C.-F. Gao and Y.-W. Mai: Permeable interfacial crack in electrostrictive materials.- E. Béchet and M. Kuna: Some numerical studies with X-FEM for cracked piezoelectric media.- J.-S. Wang, X. He and Q.-H. Qin: Singularity analysis of electro-mechanical fields in angularly inhomogeneous piezoelectric composites wedges.- L. Janski, P. Steinhorst and M. Kuna: Crack propagation simulations in piezoelectric structures with an efficient adaptive finite element tool.- V.V. Loboda and S.V. Kozinov: Periodic setof the interface cracks with limited electric permeability.- F. Shang, Y. Yan and T. Kitamura: Interfacial delamination of PZT thin films.- T. Kitamura, T. Sumigawa and T. Sueda: Mechanical Behavior of Thin Film Comprised of Sculptured Nano-elements.- L.M. Gao, Ch. Zhang, Z. Zhong, C.-P. Fritzen, X. Jiang, H.-J. Christ and U. Pietsch: Propagation of SAW and PSAW in a Smart AlN/Diamond/γ-TiAl Structure.- M.S. Senousy, R.K.N.D. Rajapakse and M. Gadala: Experimental Investigation and Theoretical Modeling of Piezoelectric Actuators Used in Fuel Injectors.- A. Benjeddou and M. Al-Ajmi: Analytical homogenizations of piezoceramic d15 shear macro-fibre composites.- H. Grünbichler, J. Kreith, R. Bermejo, C. Krautgasser and P. Supancic: Influence of the load dependent material properties on the performance of multilayer piezoelectric actuators.- F. Fang, W. Yang and X. Luo: Roles of Micro-Cracking and Phase Transition on Electric Fatigue for [001]-Oriented Pb(Mg1/3Nb2/3)O3-PbTiO3 Single Crystals.- J. Schröder and M.-A. Keip: Multiscale Modeling of Electro-Mechanically Coupled Materials: Homogenization Procedure and Computation of Overall Moduli.- K. Dayal and K. Bhattacharya: A Boundary Element Method Coupled to Phase Field to Compute Ferroelectric Domains in Complex Geometries.- N.-T. Tsou, I. Münch and J. E. Huber: Low energy periodic microstructure inferroelectric single crystals.