An analytical model for the characterization of delamination in beams using
flexural wave scattering analysis is presented. In the beam model of wave
propagation, the beam is divided into four regions; to each of them the bea
m theory of wave propagation is applied to obtain the wave fields excited b
y a harmonic load on the beam surface. The solution for the entire beam is
obtained in terms of the solution for the respective regions using continui
ty conditions at the junctions. Numerical results on beam displacement for
various delamination sizes, materials and excitation frequencies are presen
ted. Experiments using a scanning laser vibrometer on specimens containing
simulated delamination are also conducted. The results are then verified by
comparing with those obtained by the Strip Element Method (SEM) and experi
ment. Good agreement is observed between the present model with SEM and exp
eriment.