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- W2419314488 abstract "The rod model of the resonant vibro-impact module with an electromagnetic drive is considered. Construction's design implemented an asymmetrical elastic characteristic by one flat spring with two absolutely rigid intermediate supports. Eigenfrequency is defined for corresponding location intermediate supports based on the finite element method. Stress-strain state of the elastic element is graphically represented at the expense of static displacement of local mass. Contact task is considered and contact force between the flat spring and cylindrical support is calculated. Also, contact stiffness is determinate. The parameters of volumetric stress state of the contact, calculated analytically and by modeling in SolidWorks Simulation are shown. The dynamics of the vibro-impact rod system with kinematic's disturbance is modeled. Contact and equivalent stresses during operation of the vibro-impact rod system are determined. 1. Introduction. Vibro-impact systems are the basis of technological machines and processes of environments with challenging physical and mechanical characteristics. This is due the presence challenging modes as imposing the main and sub-harmonic oscillations, acceleration polyfrequency range by asymmetry of displacement of the operating mass. The resulting polyfrequency system generates wave processes, resonance phenomena and power conversion in environments more effective than harmonic movement law of worker mass. So, the use of frequency vibro-impact processes and systems is almost justified and promising. However, this requires challenging practical solutions for the implementation of nonlinear systems and special theoretical analysis to evaluation the relevant modes." @default.
- W2419314488 created "2016-06-24" @default.
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- W2419314488 date "2016-05-01" @default.
- W2419314488 modified "2023-09-23" @default.
- W2419314488 title "Strength Analysis of Flat Spring of the Resonant Vibro-Impact Module" @default.
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- W2419314488 doi "https://doi.org/10.13140/rg.2.1.2504.0240" @default.
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