JOURNAL ARTICLE

Dynamics of Viscoelastic Structures—A Time-Domain, Finite Element Formulation

Dheeraj GollaP. C. Hughes

Year: 1985 Journal:   Journal of Applied Mechanics Vol: 52 (4)Pages: 897-906   Publisher: ASM International

Abstract

Mathematical models of elastic structures have become very sophisticated: given the crucial material properties (mass density and the several elastic moduli), computer-based techniques can be used to construct exotic finite element models. By contrast, the modeling of damping is usually very primitive, often consisting of no more than mere guesses at “modal damping factors.” The aim of this paper is to raise the modeling of viscoelastic structures to a level consistent with the modeling of elastic structures. Appropriate material properties are identified which permit the standard finite element formulations used for undamped structures to be extended to viscoelastic structures. Through the use of “dissipation” coordinates, the canonical “M, K” form of the undamped motion equations is expanded to encompass viscoelastic damping. With this formulation finite element analysis can be used to model viscoelastic damping accurately.

Keywords:
Viscoelasticity Finite element method Dynamics (music) Domain (mathematical analysis) Time domain Element (criminal law) Computer science Mathematics Mathematical analysis Engineering Structural engineering Physics Materials science Acoustics Composite material

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Topics

Vibration and Dynamic Analysis
Physical Sciences →  Engineering →  Control and Systems Engineering
Dynamics and Control of Mechanical Systems
Physical Sciences →  Engineering →  Control and Systems Engineering
Rheology and Fluid Dynamics Studies
Physical Sciences →  Chemical Engineering →  Fluid Flow and Transfer Processes

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