Search Results - "Plekhov, A. S."

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  1. 1

    Electromechanical System of Floating Wave Power Plant by Dar’enkov, A. B., Malyarov, D. A., Plekhov, A. S., Kryukov, E. V.

    Published in Russian engineering research (01-06-2023)
    “…The basic electromechanical system of a floating wave power plant has been developed. Besides generating electricity, the power plant protects coastal…”
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    Journal Article
  2. 2

    Floating Coastal Wave Power Generator: Analysis by Computational Fluid Dynamics by Zhelonkin, M. V., Loskutov, A. B., Plekhov, A. S., Malyarov, D. A.

    Published in Russian engineering research (01-03-2023)
    “…Computational fluid dynamics may be used to simulate a floating coastal wave power generator. The computational fluid dynamic module is described, and its use…”
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    Journal Article
  3. 3

    Calculation of a Magnetorheological Damper for Protection of Towers and Fittings of Overhead Power Lines by Ermolaev, A. I., Panovko, G. Ya, Plekhov, A. S., Tishin, I. V.

    “…This article considers a fundamentally new type of vibration protection devices for improving the reliability of overhead power lines, a magnetorheological…”
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    Journal Article
  4. 4

    Ultrasonic Device for Measuring Shaft Eccentricity by Gordeev, B. A., Okhulkov, S. N., Vanyagin, A. V., Stepanov, K. S., Plekhov, A. S.

    Published in Russian engineering research (01-11-2023)
    “…A method is proposed for measuring the eccentricity of rotating shafts that connect electric motors to various energy transducers. A functional diagram is…”
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    Journal Article
  5. 5

    Production of Magnetorheological Suspensions by Cavitation by Gordeev, B. A., Ivanov, E. G., Okhulkov, S. N., Ermolaev, A. I., Plekhov, A. S.

    Published in Russian engineering research (01-08-2023)
    “…The use of magnetorheological suspensions in damping systems for impact loads is proposed. The physical principles and engineering methods of producing…”
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    Journal Article
  6. 6

    Influence of the Temperature of Magnetorheological Fluid on Vibrational Damping by Hydraulic Mounts by Gordeev, B. A., Ermolaev, A. I., Okhulkov, S. N., Plekhov, A. S., Titov, D. Yu

    Published in Russian engineering research (01-05-2023)
    “…Magnetorheological hydraulic mounts are considered. Methods of controlling their dynamic stiffness and improving their damping properties are discussed. To…”
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    Journal Article
  7. 7

    Measurement of Shaft Deformation in Magnetorheological Couplings by Vanyagin, A. V., Gordeev, B. A., Ermolaev, A. I., Okhulkov, S. N., Plekhov, A. S.

    Published in Russian engineering research (01-05-2023)
    “…A method is proposed for determining the maximum shear strain and stress of elastic shafts in magnetorheological couplings, on the basis of the finite-element…”
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    Journal Article
  8. 8

    Conical Elastic Shell of Hydraulic Vibrational Support by Ermolaev, A. I., Gordeev, B. A., Okhulkov, S. N., Plekhov, A. S., Titov, D. Yu

    Published in Russian engineering research (01-03-2023)
    “…A method based on finite differences is proposed for calculation of the conical rubber casing of a hydraulic support. This method is used in the design of…”
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    Journal Article
  9. 9

    Method for Calculating Deformations and Stresses in an Impact Press Fuse by Gordeev, B. A., Erofeev, V. I., Ermolaev, A. I., Okhulkov, S. N., Plekhov, A. S.

    Published in Russian engineering research (2023)
    “…— A problem of the longitudinal impact of a ram with a punch on a forging for an impact press is solved using the finite difference method. An algorithm is…”
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    Journal Article
  10. 10

    Influence of Working Fluid in the Throttle Channels of Hydraulic Mounts on the Damping Properties by Gordeev, B. A., Okhulkov, S. N., Ivanov, E. G., Osmekhin, A. N., Titov, D. Yu, Plekhov, A. S.

    Published in Russian engineering research (2022)
    “…The influence of the reduced mass of the working fluid in the throttle channels of a hydraulic mount on its motion and damping is considered. The acceleration…”
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    Journal Article
  11. 11

    Applicability of Linear Models Describing Acoustic-Wave Propagation by Gordeev, B. A., Erofeev, V. I., Okhulkov, S. N., Plekhov, A. S., Vanyagin, A. V.

    Published in Russian engineering research (01-09-2021)
    “…The applicability of linear models describing the interaction of probing acoustic waves with vibrational and acoustic fields is considered. Parameters…”
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    Journal Article
  12. 12

    Amplitude–Frequency Characteristics of Magnetically Controlled Hydraulic Bearings with Added Mass by Vanyagin, A. V., Gordeev, B. A., Okhulkov, S. N., Titov, D. Yu, Plekhov, A. S.

    Published in Russian engineering research (01-12-2020)
    “…The amplitude–frequency characteristic of magnetically controlled hydraulic bearings is considered in the case where a constant magnetic field acts on a…”
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    Journal Article
  13. 13

    Torque on a Shaft Connected to the Driveshaft by a Magnetorheological Coupling by Gordeev, B. A., Okhulkov, S. N., Plekhov, A. S., Shokhin, A. E.

    Published in Russian engineering research (01-12-2018)
    “…New approaches to measuring the viscosity of magnetorheological fluids in two or more shafts in the presence of a magnetic field are considered. These…”
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    Journal Article
  14. 14

    Impact-load damping by integral hydraulic bearings by Gordeev, B. A., Leont’eva, A. V., Plekhov, A. S., Gordeev, A. B.

    Published in Russian engineering research (01-08-2016)
    “…To reduce vibration and impact loads, a gas–hydraulic damper is proposed. Its working element is a magnetic rheological liquid…”
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    Journal Article
  15. 15

    Damping of vibrations at resonant frequencies of electrical systems by Aibinder, R. M., Gordeev, B. A., Okhulkov, S. N., Osmekhin, A. N., Plekhov, A. S.

    Published in Russian engineering research (01-04-2017)
    “…Attention focuses on reducing the vibration of energy-intensive electrical systems, such as the power units of autonomous vehicles. The amplitude–frequency…”
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    Journal Article
  16. 16

    Semiconductor converter for field magnets of hydromounts with a magnetorheological transformer by Ermolaev, A. I., Okhulkov, S. N., Plekhov, A. S., Titov, D. Y.

    “…Vibration damping on a protected mechanism resonance frequencies is best carried out by hydromounts with managed damping ratio. Such hydromounts have a…”
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    Conference Proceeding
  17. 17

    Measuring the torque of rotating shafts by Gordeev, B. A., Okhulkov, S. N., Plekhov, A. S., Bugaiskii, V. V., Gorskov, V. P.

    Published in Russian engineering research (18-05-2015)
    “…Measurement of the torque of elastic beams on the basis of the beat frequency is considered. The beat frequency is determined by means of broad-band frequency…”
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    Journal Article
  18. 18

    Electromagnetic field mathematical model to control the magnetorheological damper by Gordeev, B. A., Okhulkov, S. N., Plekhov, A. S., Titov, D. Yu, Chernov, E. A.

    “…This paper studies the mathematical model of the low frequency electromagnetic field magnetorheological damper (MR-damper) with the conductive ferromagnetic…”
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    Conference Proceeding
  19. 19

    Magnetorheological transformer physical model by Gordeev, B. A., Okhulkov, S. N., Plekhov, A. S., Titov, D. Yu, Chernov, E. A.

    “…Use of the powerful machines leads to increased levels of vibration and expansion of the oscillations spectrum. This is the reason for improving of the…”
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    Conference Proceeding
  20. 20

    Parameters of electromechanical complex mode at its foundation vibration by Dar'enkov, A. B., Plekhov, A. S., Titov, D. Yu, Gordeev, B. A.

    “…This article presents the approach to determine the mutual influence of moment pulsation on the electromechanical transducer shaft and the current in the net,…”
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    Conference Proceeding