The solution of several researches and practical tasks on the oscillation suppression is considered. The purpose of the work is to study the methods of oscillation damping and ways to shift the position of the resonant frequency. Theoretical and practical methods of researching the problem were carried out. The relevance of the topic is confirmed by the fact that many structures (from car structures to multi-storey buildings) are subject to the greatest and undesirable fluctuations, i.e. resonance. The solution of the elementary problem of resonance quenching is proposed. A patent review of various vibration damping systems has been completed. Completed a review of the literature on this subject: both contemporary articles and publications, and classical textbooks. Conducted laboratory experiments to determine the stiffness of the structural element and to find the vibrational characteristics. Based on their results, the necessary calculations were made to determine the characteristics of oscillations of single-mass and two-mass systems. The results showed that an effective way to shift the position of the resonant frequency is to increase the mass of the load of the dynamic absorber. As a damper can act as a solid, and a tank with water, which simplifies and accelerates the adjustment of the mass. This conclusion is a prerequisite for the development of ways to regulate the load.
Skip Nav Destination
,
,
Article navigation
15 November 2019
XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration
28 January–1 February 2019
Moscow, Russia
Research Article|
November 15 2019
Validating vibrations of the vibration table in the presence and absence of a dynamic vibration damper Available to Purchase
E. K. Ufimtsev;
E. K. Ufimtsev
a)
1
Bauman Moscow State Technical University
, Moscow, Russia
, 105005a)Corresponding author: [email protected]
Search for other works by this author on:
A. E. Manushin;
A. E. Manushin
b)
1
Bauman Moscow State Technical University
, Moscow, Russia
, 105005
Search for other works by this author on:
N. A. Chemezov
N. A. Chemezov
c)
1
Bauman Moscow State Technical University
, Moscow, Russia
, 105005
Search for other works by this author on:
E. K. Ufimtsev
1,a)
A. E. Manushin
1,b)
N. A. Chemezov
1,c)
1
Bauman Moscow State Technical University
, Moscow, Russia
, 105005AIP Conf. Proc. 2171, 170023 (2019)
Citation
E. K. Ufimtsev, A. E. Manushin, N. A. Chemezov; Validating vibrations of the vibration table in the presence and absence of a dynamic vibration damper. AIP Conf. Proc. 15 November 2019; 2171 (1): 170023. https://doi.org/10.1063/1.5133334
Download citation file:
Pay-Per-View Access
$40.00
Sign In
You could not be signed in. Please check your credentials and make sure you have an active account and try again.
32
Views
Citing articles via
Effect of coupling agent type on the self-cleaning and anti-reflective behaviour of advance nanocoating for PV panels application
Taha Tareq Mohammed, Hadia Kadhim Judran, et al.
Design of a 100 MW solar power plant on wetland in Bangladesh
Apu Kowsar, Sumon Chandra Debnath, et al.
With synthetic data towards part recognition generalized beyond the training instances
Paul Koch, Marian Schlüter, et al.
Related Content
Rheological properties of bi-dispersed magnetorheological fluids based on plate-like iron particles with application to a small-sized damper
J. Appl. Phys. (May 2014)
Мultiobjective H2-control design for semi-active vehicle suspension with Magneto-Rheological damper – Part2: Linear quadratic Gaussian regulator synthesis
AIP Conf. Proc. (April 2024)
Vibration impact dampers features
AIP Conf. Proc. (March 2023)
Experimental investigation of nonlinear characteristics of a smart fluid damper
AIP Conf. Proc. (May 2018)
Sensitivity study of the steel footbridge response to the damper parameters
AIP Conf. Proc. (September 2023)