DYNAMICS FEATURES OF A VIBRATING MACHINE WITH ELASTIC ELEMENT HAVING EXPONENTIAL CHARACTERISTIC OF RESILIENT FORCE

Author:

Altshul Grigory1,Gouskov Alexander1,PanovkoAlexander Shokhin Grigory1,Shokhin Alexander1

Affiliation:

1. Vibromechanics Lab., Mechanical Engineering Research Institute of the Russian Academy of Sciences, Russia

Abstract

The article analyzes the possibility of using nonlinear elastic elements as a suspension of the working element of resonant vibrating machines with two unbalance vibration exciters is analyzed. The elastic characteristic of the suspension is described by an exponential law, which ensures that the natural frequency remains unchanged regardless of the system mass. Static characteristics of the vibration exciter motors are taken into account. A system of differential equations describing movement of the system depending on the processed material mass is obtained. Amplitude-frequency characteristics depending on the power supply voltage, as well as on the debalance rotational speed are obtained for different values of material mass. The stability of the obtained periodic solutions is analyzed. The constancy of resonant amplitude and frequency of the working element vibrations at various values of material mass is shown. The results obtained confirm the advisability of using an equalfrequency suspension of the working element for resonant vibrating machines.

Publisher

Institute for Problems in Mechanical Engineering of the Russian Academy of Sciences - IPME RAS

Subject

Artificial Intelligence,Control and Optimization,Fluid Flow and Transfer Processes,Computer Vision and Pattern Recognition,Physics and Astronomy (miscellaneous),Signal Processing

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1. Formation of Vibration Fields for a Mechatronic Platform Driven by Dual Asynchronous Motors;Electronics;2024-08-10

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3. Periodic solutions in nonlinear mechanical systems vibrations with limited excitation problems by a continuation method;PROCEEDINGS OF INTERNATIONAL CONFERENCE OF YOUNG SCIENTISTS AND STUDENTS “TOPICAL PROBLEMS OF MECHANICAL ENGINEERING” ToPME 2021: Mechanical Engineering Research Institute of the Russian Academy of Sciences (IMASH RAN);2023

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