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Advanced Materials - Studies and Applications
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Editors: Ivan A. Parinov, Shun-Hsyung Chang and Somnuk Theerakulpisut (Vorovich Mechanics and Applied Mathematics Research Institute, Southern Federal University, Russia, and others)
Book Description:
Advanced materials and their applications based on nanotechnology and piezoelectric approaches are a tremendous interest in modern science and techniques. This book presents processing techniques, physics, mechanics, and applications of novel materials. The book concentrates on some nanostructures, ferro- and magnetoelectric crystals, materials and composites, materials for solar cells and polymeric composites. There are present nanotechnology approaches, modern piezoelectric techniques, and also studies of the structure-sensitive properties of the materials. Great attention is devoted to novel devices with high accuracy, longevity and extended possibilities to work with wide temperature and pressure ranges, which show characteristics defined by used materials and composites with improved properties opening new possibilities in the study of various physical processes, in particular the transmission and receipt of signals under water. This collection of 30 papers presents selected reports of the 2014 International Symposium on “Physics and Mechanics of New Materials and Underwater Applications” (PHENMA-2014), which has taken place in Khon-Kaen, Thailand, 27-29 March, 2014 (http://phenma2014.math.sfedu.ru).
The book is divided into four scientific directions, namely processing techniques, physics, mechanics and applications of advanced materials. The first section covers search and development of smart materials, investigation of NaTaO3 photocatalyst materials, studies of the doped ZnO thin films grown by dual-plasma-enhanced metal-organic chemical vapor deposition and pulsed laser deposition, characterization of ZnO nanocrystals, sapphire laser processing and optimization of cure processing of polymeric composite. The second section discusses the structure and properties of spinel-perovskite lead-free magnetoelectric composites, finite-element modeling piezoelectric and magnetoelectric composites, porous piezoceramics and ceramic matrix composites, piezoelectric elements with inhomogeneous polarization, acoustic emission diagnostics of the kinetics of physicochemical processes in liquid and solid media, MDSM structures and thermoelectric capacitor with the semiconductor plate. The third section presents the problem of flat punch sliding on the boundary of the elastic half-plane, as well as the coupled boundary-value problems of anisotropic elasticity, voscoelasticity, elastodynamics, poroelastodynamics and numerical methods (BIE and BEM) used for their research. Moreover, the semi-inverted method is discussed in the problem of plastic deformation of the cylindrical shell, and stress-strain state of layered anisotropic elliptic construction under the action of impulse load. Finally, the fourth section demonstrates novel results in modeling and experimental studies of ultrasound transducers for medical applications, energy efficiency of piezoelectric generators, optic devices for measurement of displacements, based on the method of control object highlighting laser interferometer, LEDs for marine applications, transmission signals under water, protection of equipment from excessive pressure and study of rigidity of the Novikov gearing teeth.
The book is addressed to students, post-graduate students, scientists and engineers taking part in R&D of nano-materials, ferro-piezoelectrics and related materials, and also different devices based on them having broad applications in different areas of modern science and techniques. (Imprint: Nova)



Table of Contents:
Preface pp.ix-x

I. Processing Techniques of Advanced Materials pp.1

Chapter 1. Search and Development of Smart Materials Based on Solid Solutions of Systems with Different Chemical Compounds
(L. A. Reznichenko, I.A. Verbenko, O.N. Razumovskaya, L.A. Shilkina, S.I. Dudkina, A.G. Abubakarov, A.V. Pavlenko, I.M. Aliev, S. Kh. Alikhadzhiyev, G.N. Tolmachev and H.A. Sadykov, Research Institute of Physics, Rostov State University, Rostov-on-Don, Russia)pp.3-28

Chapter 2. Hydrothermal Preparation of NaTaO3 Photocatalyst Materials
(Min Yen Yeh, Yi Cheng Lee, Kun Fu Hsu, Chyi-Da Yang, Cheng-Liang Huang, Po-Hsun Lei, Shun-Hsyung Chang, Department of Microelectronics Engineering, National Kaohsiung Marine University, Kaohsiung, and Department of Electro-Optical Engineering and Graduate Institute of Electro-Optical and Materials Science National Formosa University,
Huwei, Yunlin 623, Taiwan)pp.29-38

Chapter 3. Characterization of Antimony Doped ZnO Films Designed by Pulsed Laser Deposition
(A. S. Puzikov, N. V. Lyanguzo, D. G. Nesvetaev, I. N. Zakharchenko and E. M. Kaidashev, Vorovich Mechanics and Applied Mathematics Research Institute, Southern Federal University, and Physics Department, Southern Federal University, Rostov-on-Don, Russia)pp.39-50

Chapter 4. Influence of Zn Vapor Supersaturation on Morphology and Optical Properties of ZnO Nanorods Grown by CVD Technique
(V. I. Pushkariov, A. L. Nikolaev and E. M. Kaidashev, Vorovich Mechanics and Applied Mathematics Research Institute, Southern Federal University, and Physics Department, Southern Federal University, Rostov-on-Don, Russia) pp.51-56

Chapter 5. Photoelectric Properties of Metal-Semiconductor-Metal Structure Based on ZnO Nanorods Designed Thermal Evaporation and Carbothermal Methods
(D. A. Zhilin, N. V. Lyanguzov, V. I. Pushkariov, L. A. Nikolaev, V.E. Kaydashev, E. M. Kaidashev, Vorovich Mechanics and Applied Mathematics Research Institute, Southern Federal University, and Physics Department, Southern Federal University, Rostov-on-Don, Russia)pp.57-64

Chapter 6. Study of Laser Processing Sapphire
(S. P. Malyukov and Yu. V. Klunnikova, Engineering Technological Academy, Southern Federal University, Taganrog, Russia)pp.65-76

Chapter 7. Multiobjective Optimization of the Cure Cycle at the Closed-Mould Forming of Thick Walled Polymeric Composite Structures
(S. Shevtsov, I. Zhilyaev, A. Evlanov, I. Tarasov, M. Flek and L. Chinchan, Department of Aircraft Systems Mechanics and Technologies, South Center of Russian Academy of Science, Rostov-on-Don; Department of Composite Manufacturing, Beriev Aircraft Co., Taganrog; APGroup LLC, Saint-Petersburg, and Rostvertol Helicopters Co., Rostov-on-Don, Russia)pp.77-92

II. Physics of Advanced Materials pp.93

Chapter 8. Structure, Dielectric and Magnetodielectric Properties of Spinel-Perovskite Lead-Free Magnetoelectric Composites (1x)(Ni0.7Zn0.3Fe2O4)/x(Na, Li, Sr)NbO3
(M. V. Talanov, L.A. Shilkina, V.M. Talanov, L.A. Reznichenko, N.P. Shabelskaya, Research Institute of Physics, Southern Federal University, Rostov-on-Don, and South- Russian State Polytechnic University, Novocherkassk, Russia)pp.95-108

Chapter 9. Finite Element Design of Piezoelectric and Magnetoelectric Composites with Use of Symmetric Quasidefinite Matrices
(A. V. Nasedkin, Department of Mathematics, Mechanics & Computer Science, Southern Federal University, Rostov-on-Don, Russia)pp.109-124

Chapter 10. Elastic Losses and Spatial Dispersion in Porous Piezoceramics and Ceramic Matrix Composites
(A. N. Rybyanets, A. A. Naumenko, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia)pp.l25-146

Chapter 11. Optimization of Finite Element Models for Porous Ceramic Piezoelements by Piezoelectric Resonance Analysis Method
(A. N. Rybyanets, A. V. Nasedkin, A. A. Naumenko, N. A. Shvetsova, M. A. Lugovaya, E. I. Petrova, Physics Research Institute, Southern Federal University, Rostov-on-Don, and Vorovich Mathematics, Mechanics and Computer Sciences Institute, Southern Federal University, Rostov-on-Don, Russia)pp.147-168

Chapter 12. Modeling of Piezoelectric Elements with Inhomogeneous Polarization by Using ACELAN
(A. N. Soloviev, P. A. Oganesyan and A. S. Skaliukh, Department of Theoretical and Applied Mechanics, Don State Technical University, Rostov-on-Don; Department of Mathematics, Mechanics and Computer Sciences, Southern Federal University, Rostov-on-Don; Department of Mechanics of Active Materials, Southern Scientific Centre of Russian Academy of Sciences, Rostov-on-Don, and Aircraft Technology Department, Southern Scientific Centre of Russian Academy of Sciences, Rostov-on-Don, Russia)pp.169-192

Chapter 13. Acoustic Emission Diagnostics of the Kinetics of Physicochemical Processes in Liquid and Solid Media
(S. I. Builo and V.L. Gaponov and D. M. Kuznetsov, Vorovich Mathematics, Mechanics and Computer Sciences Institute, Southern Federal University, Rostov-on-Don, and Don State Technical University, Rostov-on-Don, Russia)pp.193-208

Chapter 14. Change of Fermi Level in Area of Near-Surface Charge in MDSM Structures
(G. Y Karapetyan, V. G. Dneprovski, I. A. Parinov, Vorovich Mathematics, Mechanics and Computer Sciences Institute, Southern Federal University, Rostov-on-Don, Russia)pp.209-216

Chapter 15. Excitation of Un-damped Oscillations in LC-circuit with Thermoelectric Capacitor with Semiconductor Plate
(G. Ya. Karapetyan and V. G. Dneprovski, Vorovich Mathematics, Mechanics and Computer Sciences Institute, Southern Federal University, Rostov-on-Don, Russia) pp.217-226

III. Mechanics of Advanced Materials pp.227

Chapter 16. Flat Punch Sliding on Boundary of Elastic Half-Plane
(V. B. Zelentsov, B. I. Mitrin and S. S. Volkov, Research and Education Center “Materials”, Don State Technical University, Rostov-on-Don, Russia)pp.229-270

Chapter 17. BEM Analysis of 3-D Equilibrium Problems of Anisotropic Elasticity with Coupled Fields
(L. А. Igumnov, А. А. Ipatov, S. Yu. Litvinchuk and I. P. Markov, Research Institute for Mechanics, Lobachevsky State University of Nizhni Novgorod, Nizhny Novgorod, Russia)pp.271-282

Chapter 18. Treating Coupled Boundary Value Problems of 3D Elastodynamics by Means of Boundary Integral Equations (BIE) Method
(L.A. Igumnov, Ya.Yu. Rataushko and A.A. Ipatov, Research Institute for Mechanics, Lobachevsky State University of Nizhni, Nizhny Novgorod, Russia)pp.283-300

Chapter 19. Boundary-Element Modeling of the Dynamics of Elastic and Viscoelastic Bodies and Media
(L. А. Igumnov, А. А. Belov and А. N. Petrov, Research Institute for Mechanics, Lobachevsky State University of Nizhni Novgorod, Nizhny Novgorod, Russia)pp.301-318

Chapter 20. Analysis of 3D Poroelastodynamics with the Help of Boundary Element Method
(L. A. Igumnov, Ya. Yu. Rataushko, S. Yu. Litvinchuk and A. A. Ipatov, Research Institute for Mechanics, Lobachevsky State
University of Nizhni Novgorod, Nizhny Novgorod, Russia)pp.319-340

Chapter 21. Semi-Inverse Method in the Problem of Plastic Deformation of Cylindrical Shell
(A. S. Yudin, S. A. Yudin and T. V. Sigaeva, Institute of Mathematics, Mechanics and Computer Science, Southern Federal University, Rostov-on-Don, Russia and others)pp.341-352

Chapter 22. Definition of Stress-Strain State of Layered Anisotropic Elliptic Construction under Action of Impulse Load
(I. P. Miroshnichenko and V. P. Sizov, Don State Technical University, and Southern Federal University, Rostov-on-Don, Russia)pp.353-390

IV. Applications of Advanced Materials pp.391

Chapter 23. Theoretical Modeling and ExperimentaL Study of High Intensity Focused Ultrasound Transducers
(A. N. Rybyanets, V. A. Khokhlova, A.A. Sapozhnikov, A. A. Naumenko, M. A. Lugovaya and S.A. Shcherbinin, Southern Federal University, Rostov-on-Don, and Moscow State University, Moscow, Russia)pp.393-416

Chapter 24. Advanced Investigations of Energy Efficiency of Piezoelectric Generators
(V. A. Akopyan, I. A. Parinov, Yu. N. Zakharov, V. A. Chebanenko and E. V. Rozhkov, Vorovich Mathematics, Mechanics and Computer Sciences Institute, Southern Federal University, and Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia)pp.417-436

Chapter 25. Novel Optic Devices for Measurement of Displacements Based on Method of Control Object Highlighting by Using Laser Interferometer
(I. P. Miroshnichenko, I. A. Parinov and Shun-Hsyung Chang, Don State Technical University, Rostov-on-Don, Russia and others)pp.437-452

Chapter 26. Colorful Flashing LED Night Pearls for Marine Application
(Chyi-Da Yang, Chia-Hsiang Chou, Yu-Cheng Kung, Cheng-Liang Huang, Min-Yen Yeh, Jiing-Kae Wu, Huoo-Yuan Jenq, Jenq-Der Chen, Chih-Yu Lee, Chiung-Hsing Chen and Shun-Hsyung Chang, Department of Microelectronics Engineering, National Kaohsiung Marine University, Kaohsiung; Department of Marine Engineering, National Kaohsiung Marine University, Kaohsiung; Department of Fishery Production and Management, National Kaohsiung Marine University, Kaohsiung; Department of Electronic Engineering, National Quemoy University, Kinmen, and Department of Electronic Communication Engineering,
National Kaohsiung Marine University, Kaohsiung, Taiwan)pp.453-474

Chapter 27. High-Q Biquadratic Bandpass Filter Synthesis Using Nodal Admittance Matrix Expansion
(H. D. Tran, H. Y. Wang, Q. M. Nguyen, L. T. Yin and T. Y. Chen, Department of Electronic Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung, and Department of Optometry,
Chung Hwa University of Medical Technology, Tainan, Taiwan, R.O.)pp.475-486

Chapter 28. Hilbert-Huang Transform Based Features for Underwater Voice (II) Transmission
(C. F. Lin, T. K. Chan, C. C. Wen, S. H. Chang, I. A. Parinov and S. N. Shevtsov, Department of Electrical Engineering, National Taiwan Ocean University, Kaohsiung, Taiwan, ROC and others)pp.487-498

Chapter 29. Protection of Equipment from Excessive Pressure
(A.S. Yudin and N.V. Belikov, Institute of Mathematics, Mechanics and Computer Science, Southern Federal University, Rostov-on-Don, Russia)pp.499-510

Chapter 30. Rigidity of Novikov Gearing Teeth
(V. I. Korotkin, D. A. Gazzaev and E. V. Kovalenko, Vorovich Mathematics, Mechanics and Computer Sciences Institute, Southern Federal University, Rostov-on-Don, and Financial Institute under Government of Russian Federation, Moscow, Russia)pp.511-522

Index pp.523-527

   Series:
      Nanotechnology Science and Technology
   Binding: Hardcover
   Pub. Date: 2015 - 1st Quarter
   Pages: 537. 7x10 - (NBC-C)
   ISBN: 978-1-63463-749-7
   Status: AV
  
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