Journal Article

·2023 OPEN ACCESS

On a New Method of Quasi-static and Dynamic Analysis of Viscoelastic Plate on Elastic Foundation

Gülçin Tekin YTU , Fethi Kadıoğlu

Turkish Journal of Civil Engineering

Abstract

In the present work, an alternative solution technique based on mixed finite element (MFE) formulation in the Laplace-Carson domain is proposed for quasi-static and dynamic analyses of viscoelastic plate (VEP) resting on an elastic foundation (EF). This work contributed a numerical solution to the problem of a viscoelastic Kirchhoff plate supported on a Winkler foundation. VEP-EF interaction problems are taken into account under different wave-type loadings. The viscoelastic material behavior of the plate is modeled by the Zener rheological solid model. A four-nodded linear isoparametric element containing sixteen degrees of freedom is used to model the VEP. Developed functional in the Laplace-Carson domain based on the Gâteaux differential method is transformed to the real time domain by utilizing the Dubner and Abate (D&A) inverse Laplace transform technique (ILTT). To evaluate the applicability of the results, five numerical samples are considered. Further analyzes are performed on different wave type loadings to offer a new perspective on the time-dependent behavior of VEP on EF.

Keywords

Viscoelasticity Laplace transform Standard linear solid model Inverse Laplace transform Foundation (evidence) Correspondence principle (sociology) Finite element method Domain (mathematical analysis) Work (physics) Time domain Rheology Mathematical analysis Type (biology) Frequency domain Mathematics Structural engineering Physics Engineering Computer science Geology Mechanical engineering Thermodynamics

Subject Areas

Composite Structure Analysis and Optimization ·Mechanics of Materials ·Physical Sciences
Vibration and Dynamic Analysis ·Control and Systems Engineering ·Physical Sciences
Numerical methods in engineering ·Mechanics of Materials ·Physical Sciences

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