Journal Article

·2012 OPEN ACCESS

The Nonlinear Behavior of Vibrational Conveyers with Single‐Mass Crank‐and‐Rod Exciters

G. Füsun Alışverişçi YTU

Mathematical Problems in Engineering

Abstract

The single‐mass, crank‐and‐rod exciters vibrational conveyers have a trough supported on elastic stands which are rigidly fastened to the trough and a supporting frame. The trough is oscillated by a common crank drive. This vibration causes the load to move forward and upward. The moving loads jump periodically and move forward with relatively small vibration. The movement is strictly related to vibrational parameters. This is applicable in laboratory conditions in the industry which accommodate a few grams of loads, up to those that accommodate tons of loading capacity. In this study I explore the transitional behavior across resonance, during the starting of a single degree of freedom vibratory system excited by crank‐and‐rod. A loaded vibratory conveyor is more safe to start than an empty one. Vibrational conveyers with cubic nonlinear spring and ideal vibration exciter have been analyzed analytically for primary and secondary resonance by the Method of Multiple Scales, and numerically. The approximate analytical results obtained in this study have been compared with the numerical results and have been found to be well matched.

Keywords

Crank Vibration Nonlinear system Exciter Structural engineering Trough (economics) Engineering Resonance (particle physics) Control theory (sociology) Mechanics Physics Computer science Acoustics Mechanical engineering

Subject Areas

Magnetic Bearings and Levitation Dynamics ·Control and Systems Engineering ·Physical Sciences
Vibration and Dynamic Analysis ·Control and Systems Engineering ·Physical Sciences
Dynamics and Control of Mechanical Systems ·Control and Systems Engineering ·Physical Sciences

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