Journal Article

·2019 OPEN ACCESS

On internal stability loss of a row unidirected periodically located fibers in the visco-elastic matrix

Reşat Köşker YTU

Thermal Science

Abstract

In the present paper, the microbuckling or internal stability loss in the viscoelastic composites containing unidirected fibers under compression along the fibers is studied by use of piecewise homogeneous body model. In this model, it is used the 3-D geometrically non-linear exact equations of viscoelasticity theory. The composite material was considered as an infinite viscoelastic body with a row unidirected periodically located elastic fibers that have an initial infinitesimal imperfection. When the initial imperfection starts to increase and becomes indefinitely, this is taken as a stability loss criterion and co-phase microbuckling mode out of plane are taken into account. The numerical results about the influence of the interaction between the fibers on the values of the critical time are obtained and presented.

Keywords

Viscoelasticity Materials science Piecewise Composite number Stability (learning theory) Compression (physics) Infinitesimal Matrix (chemical analysis) Composite material Homogeneous Mechanics Mathematics Mathematical analysis Physics Thermodynamics

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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