Mechanics of Solids (about journal) Mechanics of Solids
A Journal of Russian Academy of Sciences
in January 1966
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IssuesArchive of Issues2014-2pp.196-207

Archive of Issues

Total articles in the database: 10864
In Russian (. . ): 8009
In English (Mech. Solids): 2855

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S.M. Afonin, "Stability of Strain Control Systems of Nano- and Microdisplacement Piezotransducers," Mech. Solids. 49 (2), 196-207 (2014)
Year 2014 Volume 49 Number 2 Pages 196-207
DOI 10.3103/S0025654414020095
Title Stability of Strain Control Systems of Nano- and Microdisplacement Piezotransducers
Author(s) S.M. Afonin (National Research University of Electronic Technology, Proezd 4806, 5, Zelenograd, Moscow, 124498 Russia,
Abstract The transfer functions of multilayer nano- and microdisplacement piezotransducers are obtained under the conditions of longitudinal and transverse piezo-optic effects. The absolute stability conditions are derived for the strain control systems of multilayer nano- and microdisplacement piezotransducers. Some compensating devices ensuring the stability of strain control systems of multilayer piezotransducers are chosen.
Keywords multilayer nano- and microdisplacement piezotransducers, strain control system, absolute stability conditions, compensating devices
1.  V. L. Mironov, Foundations of Scanning Probe Microscopy (Tekhnosfera, Moscow, 2004) [in Russian].
2.  V. A. Akopiayn, A. E. Panich, A. N. Soloviev, et al., "Several Physico-Mechanical Problems of Piezoelectric Actuators and the Fields of Their Application," Nano- Mikrosist. Tekhn., No. 10, 35-40 (2006).
3.  S. M. Afonin, "Parametric Structural Diagram of a Piezoelectric Converter," Izv. Akad. Nauk. Mekh. Tverd. Tela, No. 6, 101-107 (2002) [Mech. Solids (Engl. Transl.) 37 (6), 85-91 (2002)].
4.  S. M. Afonin, "Absolute Stability Conditions for a System Controlling the Deformation of an Electromagnetoelastic Transducer," Dokl. Ross. Akad. Nauk 411 (5), 603-608 (2006) [Dokl. Math. (Engl. Transl.) 74 (3), 943-948 (2006)].
5.  S. M. Afonin, "Static and Dynamic Characteristics of a Multi-Layer Electroelastic Solid," Izv. Akad. Nauk. Mekh. Tverd. Tela, No. 6, 149-168 (2009) [Mech. Solids (Engl. Transl.) 44 (6), 935-950 (2009)].
6.  W. Mason (Editor) Physical Acoustics, Vol. 1, Part A: Methods and Devices of Ultrasonic Studies (Mir, Moscow, 1966) [in Russian].
7.  B. N. Naumov, Theory of Nonlinear Automatic Systems. Frequency Methods (Nauka, Moscow, 1972) [in Russian].
8.  A. Kh. Gelig, G. A. Leonov, and V. A. Yakubovich, Stability of Nonlinear Systems with Nonunique Equilibrium (Nauka, Moscow, 1978) [in Russian].
9.  A. Kh. Gelig, G. A. Leonov, and A. L. Fradkov (Editors), Nonlinear Systems. Frequency and Matrix Methods (Fizmatlit, Moscow, 2008) [in Russian].
10.  V. A. Besekerskii and E. P. Popov, Theory of Automatic Control Systems (Professiya, Moscow, 2004) [in Russian].
11.  A. Preisach, "Über die Magnetische Nachwirkung," Zeitschrift für Physic. Berlin: Verlag von Julius Springer 94 (5, 6), 277-302 (1935).
12.  A. V. Turik, "Theory of Polarization and Hysteresis of Ferroelectrics," Fiz. Tverd. Tela 5 (4), 1213-1215 (1963) [Sov. Phys. Solid State (Engl. Transl.) 5 (4), 885-886 (1963)].
13.  A. V. Turik and L. A. Reznichenko, "Ferroelectric Ceramics in Strong Electric Fields: Electromechanical Hysteresis, Piezoeffect, and Electrostriction. A Survey," in Phase Transitions, Ordered States and New Materials (Rostov Univ., Rostov-on-Don, 2008), No. 1, pp. 1-4 [in Russian].
14.  C. S. Lynch, "The Effect of Uniaxial Stress on the Electro-Mechanical Response of 8/65/35 PLZT," Acta Materialia 44 (10), 4137-4148 (1996).
Received 19 December 2011
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