Structural Engineering and Mechanics
Volume 55, Number 2, 2015, pages 335-348
DOI: 10.12989/sem.2015.55.2.335
The dispersion of the flexural waves in a compound hollow cylinder under imperfect contact between layers
Cengiz Ipek
Abstract
The influence of the interface imperfect bonding on the flexural wave dispersion in the bilayered hollow circular cylinder is studied with utilizing three-dimensional linear theory of elastodynamics. The shear-spring type model is used for describing the imperfect bonding on the interface between the layers and the degree of the imperfectness is estimated through the dimensionless shear-spring parameters which enter the mentioned model. The method for finding the analytical expressions for the sought values and
dispersion equation are discussed and detailed. Numerical results on the lowest first and second modes are
presented and analyzed. These results are obtained for various values of the shear-spring parameters. According to these results, in particular, it is established that as a results of the imperfection of the bonding between the layers the new branches of the dispersion related the first fundamental mode arise and the character of the dispersion curve related to the second mode becomes more complicated.
Key Words
layered structures; debonding; analytical modelling; flexural waves; dispersion
Address
Cengiz Ipek: Member of 2nd Committee of Kocaeli Chamber of Commerce, Kocaeli, Turkey