Fracture Mechanics of Piezoelectric and Ferroelectric Solids

Fracture Mechanics of Piezoelectric and Ferroelectric Solids
Author: Daining Fang,Jinxi Liu
Publsiher: Springer Science & Business Media
Total Pages: 430
Release: 2014-12-12
Genre: Science
ISBN: 9783642300875

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Fracture Mechanics of Piezoelectric and Ferroelectric Solids presents a systematic and comprehensive coverage of the fracture mechanics of piezoelectric/ferroelectric materials, which includes the theoretical analysis, numerical computations and experimental observations. The main emphasis is placed on the mechanics description of various crack problems such static, dynamic and interface fractures as well as the physical explanations for the mechanism of electrically induced fracture. The book is intended for postgraduate students, researchers and engineers in the fields of solid mechanics, applied physics, material science and mechanical engineering. Dr. Daining Fang is a professor at the School of Aerospace, Tsinghua University, China; Dr. Jinxi Liu is a professor at the Department of Engineering Mechanics, Shijiazhuang Railway Institute, China.

Fracture Mechanics of Piezoelectric Solids with Interface Cracks

Fracture Mechanics of Piezoelectric Solids with Interface Cracks
Author: Volodymyr Govorukha,Marc Kamlah,Volodymyr Loboda,Yuri Lapusta
Publsiher: Springer
Total Pages: 235
Release: 2017-03-14
Genre: Science
ISBN: 9783319535531

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This book provides a comprehensive study of cracks situated at the interface of two piezoelectric materials. It discusses different electric boundary conditions along the crack faces, in particular the cases of electrically permeable, impermeable, partially permeable, and conducting cracks. The book also elaborates on a new technique for the determination of electromechanical fields at the tips of interface cracks in finite sized piezoceramic bodies of arbitrary shape under different load types. It solves scientific problems of solid mechanics in connection with the investigation of electromechanical fields in piezoceramic bodies with interface cracks, and develops calculation models and solution methods for plane fracture mechanical problems for piecewise homogeneous piezoceramic bodies with cracks at the interfaces. It discusses the “open” crack model, which leads to a physically unrealistic oscillating singularity at the crack tips, and the contact zone model for in-plane straight interface cracks between two dissimilar piezoelectric materials. It also investigates the model of a crack with electro-mechanical pre-fracture zones. The formulated problems are reduced to problems of linear relationship, which correspond to different crack models, and their exact analytical solutions are found. The book presents in detail the expressions for stress and electric displacement intensity factors, as well as for the energy release rate. The influence of the electric permittivity of the crack, the mechanical load and the electric field upon the electro-elastic state, as well as the main fracture mechanical parameters, are analyzed and clearly illustrated. This book addresses postgraduate students, university teachers and researchers dealing with the problems of fracture mechanics of piezoelectric materials, as well as engineers who are active in the analysis of strength and durability of piezoelectric constructions.

Dynamic Fracture of Piezoelectric Materials

Dynamic Fracture of Piezoelectric Materials
Author: Petia Dineva,Dietmar Gross,Ralf Müller,Tsviatko Rangelov
Publsiher: Springer Science & Business Media
Total Pages: 249
Release: 2014-01-30
Genre: Technology & Engineering
ISBN: 9783319039619

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Dynamic Fracture of Piezoelectric Materials focuses on the Boundary Integral Equation Method as an efficient computational tool. The presentation of the theoretical basis of piezoelectricity is followed by sections on fundamental solutions and the numerical realization of the boundary value problems. Two major parts of the book are devoted to the solution of problems in homogeneous and inhomogeneous solids. The book includes contributions on coupled electro-mechanical models, computational methods, its validation and the simulation results, which reveal different effects useful for engineering design and practice. The book is self-contained and well-illustrated, and it serves as a graduate-level textbook or as extra reading material for students and researchers.

Advanced Mechanics of Piezoelectricity

Advanced Mechanics of Piezoelectricity
Author: Qinghua Qin
Publsiher: Springer Science & Business Media
Total Pages: 339
Release: 2012-11-29
Genre: Technology & Engineering
ISBN: 9783642297670

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"Advanced Mechanics of Piezoelectricity" presents a comprehensive treatment of piezoelectric materials using linear electroelastic theory, symplectic models, and Hamiltonian systems. It summarizes the current state of practice and presents the most recent research findings in piezoelectricity. It is intended for researchers and graduate students in the fields of applied mechanics, material science and engineering, computational engineering, and aerospace engineering. Dr. Qinghua Qin is a professor at the School of Engineering, Australian National University, Australia.

Selected Problems of Solid Mechanics and Solving Methods

Selected Problems of Solid Mechanics and Solving Methods
Author: Holm Altenbach
Publsiher: Springer Nature
Total Pages: 531
Release: 2024
Genre: Electronic Book
ISBN: 9783031540639

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Mechanics of Advanced Functional Materials

Mechanics of Advanced Functional Materials
Author: Biao Wang
Publsiher: Springer Science & Business Media
Total Pages: 537
Release: 2013-07-24
Genre: Science
ISBN: 9783642335969

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Mechanics of Advanced Functional Materials emphasizes the coupling effect between the electric and mechanical field in the piezoelectric, ferroelectric and other functional materials. It also discusses the size effect on the ferroelectric domain instability and phase transition behaviors using the continuum micro-structural evolution models. Functional materials usually have a very wide application in engineering due to their unique thermal, electric, magnetic, optoelectronic, etc., functions. Almost all the applications demand that the material should have reasonable stiffness, strength, fracture toughness and the other mechanical properties. Furthermore, usually the stress and strain fields on the functional materials and devices have some important coupling effect on the functionality of the materials. Much progress has been made concerning the coupling electric and mechanical behaviors such as the coupled electric and stress field distribution in piezoelectric solids, ferroelectric domain patterns in ferroelectrics, fracture and failure properties under coupled electric and stress field, etc. The book is intended for researchers and postgraduate students in the fields of mechanics, materials sciences and applied physics who are interested to work on the interdisciplinary mathematical modeling of the functional materials. Prof. Biao Wang is the Dean of School of Physics and Engineering of the Sun Yat-sen University, China.

Fracture Mechanics

Fracture Mechanics
Author: Fazil Erdogan
Publsiher: ASTM International
Total Pages: 716
Release: 1995
Genre: Aluminum alloys
ISBN: 9780803118829

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Recent Trends in Fracture and Damage Mechanics

Recent Trends in Fracture and Damage Mechanics
Author: Geralf Hütter,Lutz Zybell
Publsiher: Springer
Total Pages: 438
Release: 2015-09-01
Genre: Science
ISBN: 9783319214672

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This book covers a wide range of topics in fracture and damage mechanics. It presents historical perspectives as well as recent innovative developments, presented by peer reviewed contributions from internationally acknowledged authors. The volume deals with the modeling of fracture and damage in smart materials, current industrial applications of fracture mechanics, and it explores advances in fracture testing methods. In addition, readers will discover trends in the field of local approach to fracture and approaches using analytical mechanics. Scholars in the fields of materials science, engineering and computational science will value this volume which is dedicated to Meinhard Kuna on the occasion of his 65th birthday in 2015. This book incorporates the proceedings of an international symposium that was organized to honor Meinhard Kuna’s contributions to the field of theoretical and applied fracture and damage mechanics.