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Structural Differences in the Analysis of Mechanical and Electrical Systems

Received: 25 April 2018    Accepted: 22 May 2018    Published: 11 June 2018
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Abstract

Mechanical systems, the description of which differs from the electrical circuits of similar structure, are studied. As an example, the scheme of a spring pendulum with a zero periodic displacement of the point of application of the forcing harmonic force is considered. In contrast to the unique representation of electrical circuits mechanical system with a serial connection of mechanical elements can be modeled by different electrical circuits. In this case, the family of frequency characteristics of such a system contains a singular point, which is at a frequency less than the resonance frequency. The force modulus at this point does not depend on the value of the viscous resistance.

Published in American Journal of Embedded Systems and Applications (Volume 6, Issue 1)
DOI 10.11648/j.ajesa.20180601.12
Page(s) 11-14
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Simulation of Systems, The Method of Analogies, Mechanical Resonance

References
[1] Ivanov V. (et al) Advanced in Design Simulation and Manufacturing. Springer 2018.
[2] Friedrich Pfeiffer The art of modeling Mechanical Systems Springer 2017.
[3] Alexander N. Evgrafov Advanced in Mechanical Engineering Saint Petersburg, Russia, 2016.
[4] Parfentyev N. A., Parfentyeva E. N., Sevastyanov S. I. Pecularity of frequency characteristics of a parallel oscillatory contour. News of higher education institutions. Electronics No. 62014, page 110.
[5] Parfentyev N. A. Invariant one model of a mechanical system with viscous friction, Electronic journal technical acoustics. 2014.
[6] Parfentyev N. A., Parfentyeva N. A., Truchanov S. V.. On the singular point of the frequency characteristics of oscillatory systems. Natural and technical Sciences, №9-10, 2014, с. 31.
[7] Parfentyev N. A., Parfentyeva E. N., Krivolutsrfya N. V. Amazing properties of a parallel electrical circuit. XIX International Scientific and Practical Conference. Russia St. Petersburg, 19-20.02.2016 page.11-15.
[8] Parfentev N. A. New paradoxes the model of an RLC circuit. Science of Europe. N12. Vol. 1, page 19-23.
[9] Parfentev N. A. Paradoxes the Model of an RLC Circuit. Engineering Physics Volume 2, Issue 3, June 2017, Pages: 49-53.
[10] Parfentev N. A., Parfentyeva N. A., A Singular Point in the Characteristics of the Serial RLC Circuit. Journal of Physics and Applications. Vol. 5, No. 6, 2017, pp. 109-112.
Cite This Article
  • APA Style

    Parfentiev Nikolay Andreevich, Parfentieva Natalia Andreevna, Truhanov StepanVinokenievich. (2018). Structural Differences in the Analysis of Mechanical and Electrical Systems. American Journal of Embedded Systems and Applications, 6(1), 11-14. https://doi.org/10.11648/j.ajesa.20180601.12

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    ACS Style

    Parfentiev Nikolay Andreevich; Parfentieva Natalia Andreevna; Truhanov StepanVinokenievich. Structural Differences in the Analysis of Mechanical and Electrical Systems. Am. J. Embed. Syst. Appl. 2018, 6(1), 11-14. doi: 10.11648/j.ajesa.20180601.12

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    AMA Style

    Parfentiev Nikolay Andreevich, Parfentieva Natalia Andreevna, Truhanov StepanVinokenievich. Structural Differences in the Analysis of Mechanical and Electrical Systems. Am J Embed Syst Appl. 2018;6(1):11-14. doi: 10.11648/j.ajesa.20180601.12

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  • @article{10.11648/j.ajesa.20180601.12,
      author = {Parfentiev Nikolay Andreevich and Parfentieva Natalia Andreevna and Truhanov StepanVinokenievich},
      title = {Structural Differences in the Analysis of Mechanical and Electrical Systems},
      journal = {American Journal of Embedded Systems and Applications},
      volume = {6},
      number = {1},
      pages = {11-14},
      doi = {10.11648/j.ajesa.20180601.12},
      url = {https://doi.org/10.11648/j.ajesa.20180601.12},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajesa.20180601.12},
      abstract = {Mechanical systems, the description of which differs from the electrical circuits of similar structure, are studied. As an example, the scheme of a spring pendulum with a zero periodic displacement of the point of application of the forcing harmonic force is considered. In contrast to the unique representation of electrical circuits mechanical system with a serial connection of mechanical elements can be modeled by different electrical circuits. In this case, the family of frequency characteristics of such a system contains a singular point, which is at a frequency  less than the resonance frequency. The force modulus at this point does not depend on the value of the viscous resistance.},
     year = {2018}
    }
    

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    T1  - Structural Differences in the Analysis of Mechanical and Electrical Systems
    AU  - Parfentiev Nikolay Andreevich
    AU  - Parfentieva Natalia Andreevna
    AU  - Truhanov StepanVinokenievich
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    JF  - American Journal of Embedded Systems and Applications
    JO  - American Journal of Embedded Systems and Applications
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    AB  - Mechanical systems, the description of which differs from the electrical circuits of similar structure, are studied. As an example, the scheme of a spring pendulum with a zero periodic displacement of the point of application of the forcing harmonic force is considered. In contrast to the unique representation of electrical circuits mechanical system with a serial connection of mechanical elements can be modeled by different electrical circuits. In this case, the family of frequency characteristics of such a system contains a singular point, which is at a frequency  less than the resonance frequency. The force modulus at this point does not depend on the value of the viscous resistance.
    VL  - 6
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Author Information
  • All-Russian Research Institute for Optophysical Measurements (VNIIOFI), Moscow, Russia

  • Departamebt of Physics, Moscw State University of Civil Engineering, Moscow, Russia

  • Departamebt of Physics, Moscw State University of Civil Engineering, Moscow, Russia

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