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Численное моделирование прецессии упругой волны в цилиндрическом резонаторе…

ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. Машиностроение. 2017. № 5

51

[6] Vakhlyarskiy D.S., Guskov A.M., Basarab M.A., Matveev V.A. Using a combination of fem

and perturbation method in frequency split calculation of a nearly axisymmetric shell with

middle surface shape defect.

Nauka i obrazovanie: nauchnoe izdanie MGTU im. N.E. Baumana

[Science and Education: Scientific Publication of BMSTU], 2016, no. 5, pp. 152–174

(in Russ.). DOI: 10.7463/0516.0839190

Available at:

http://techomag.bmstu.ru/doc/839190.html

[7] Kozubnyak S.A. Splitting of natural frequencies of cylindrical resonator gyro due to

non-ideal shape.

Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Priborostr.

[Herald of the

Bauman Moscow State Tech. Univ., Instrum. Eng.], 2015, no. 3, pp. 39–49 (in Russ.).

DOI: 10.18698/0236-3933-2015-3-39-49

[8] Biderman V.L. Mekhanika tonkostennykh konstruktsiy. Statika [Thin-walled structure

mechanics. Statics]. Moscow, Mashinostroenie Publ., 1977. 488 p.

[9] D'yakonov V.P. Mathematica 5.1/5.2/6. Programmirovanie i matematicheskie vychisle-

niya [Mathematica 5.1/5.2/6. Programming and mathematical calculations]. Moscow,

DMK-Press Publ, 2008. 574 p.

[10]

Matveyev V.A., Basarab M.A., Lunin B.S. Approximation of density distribution of solid-

state wave gyro resonator with respect to measured disbalance parameters.

Pribory i sistemy.

Upravleniye, kontrol', diagnostika

[Instruments and Systems: Monitoring, Control, and Diag-

nostics], 2015, no. 10, pp. 9–16.

[11]

Matveev V.A., Lipatnikov V.I., Alekhin A.V. Proektirovanie volnovogo tverdotel'nogo giros-

kopa [Design of the hemispherical resonator gyro]. Moscow, BaumanMSTU Publ., 1998. 168 p.

[12]

Belyaev Yu.N. Methods for computing a transfer matrices of elastic deformations.

Vestnik PNIPU. Mekhanika

[PNRPU Mechanics Bulletin], 2013, no. 3, pp. 63–110 (in Russ.).

Naraykin O.S.

— Dr. Sc. (Eng.), Professor, Corresponding Member of the Russian Academy

of Sciences, Head of Applied Mechanics Department, Bauman Moscow State Technical

University (2-ya Baumanskaya ul. 5, str. 1, Moscow, 105005 Russian Federation); Vice Presi-

dent, National Research Centre Kurchatov Institute (Akademika Kurchatova ploschad 1, Mos-

cow, 123182 Russian Federation).

Sorokin F.D.

— Dr. Sc. (Eng.), Professor, Applied Mechanics Department, Bauman Moscow

State Technical University (2-ya Baumanskaya ul. 5, str. 1, Moscow, 105005 Russian Fede-

ration).

Kozubnyak S.A.

— Assist. Professor, Applied Mechanics Department, Bauman Moscow State

Technical University (2-ya Baumanskaya ul. 5, str. 1, Moscow, 105005 Russian Federation);

Member of the National Research Centre Kurchatov Institute (Akademika Kurchatova

ploschad 1, Moscow, 123182 Russian Federation).

Vakhlyarskiy D.S.

— post-graduate student, Applied Mechanics Department, Bauman Mos-

cow State Technical University (2-ya Baumanskaya ul. 5, str. 1, Moscow, 105005 Russian

Federation).

Please cite this article in English as:

Naraykin O.S., Sorokin F.D., Kozubnyak S.A., Vakhlyarskiy D.S. Numerical Simulation of

Elastic Wave Precession in the Cylindrical Resonator of a Hemispherical Resonator Gyroscope

Featuring a Non-Homogeneous Density Distribution.

Vestn. Mosk. Gos. Tekh. Univ.

im. N.E. Baumana, Mashinostr.

[Herald of the Bauman Moscow State Tech. Univ., Mech. Eng.],

2017, no. 5, pp. 41–51. DOI: 10.18698/0236-3941-2017-5-41-51