Journal Article

·2005

Dynamical (harmonic) interface stress field in the half-plane covered by the prestretched layer under a strip load

S. D. Akbarov YTU , Çiğdem Güler YTU

The Journal of Strain Analysis for Engineering Design

Abstract

Within the framework of the piecewise homogeneous body model, by employing the three-dimensional linearized theory of elastic waves in initially stressed bodies the dynamical problem of the stress distribution in a half-plane covered with a prestretched layer is investigated. It is assumed that the free face plane of the covered layer is subjected to a uniformly distributed harmonic load acting on a strip extending to infinity in the x 3 direction, which is perpendicular to the x 1 -x 2 plane and is of width 2a in the x 1 direction. The plane-strain state in the x 1 -x 2 plane is analysed. The corresponding boundary-value problems are investigated by employing the exponential Fourier integral transformation. The numerical results regarding the interface normal stress distribution are presented. The influences of the problem parameters and pre-stretching of the covered layer on this distribution are analysed. Practical engineering application fields of the results are suggested.

Keywords

Plane (geometry) Stress (linguistics) Perpendicular Materials science Mathematical analysis Boundary value problem Stress field Plane stress Geometry Harmonic Piecewise Physics Field (mathematics) Mechanics Distribution (mathematics) Mathematics Finite element method Acoustics

Subject Areas

Elasticity and Wave Propagation ·Mechanics of Materials ·Physical Sciences
Geotechnical and Geomechanical Engineering ·Mechanics of Materials ·Physical Sciences
Material Properties and Failure Mechanisms ·Materials Chemistry ·Physical Sciences

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