Title of article :
Interface crack in sandwich specimen
Author/Authors :
Rasmus C. ?stergaard · Bent F. S?rensen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
Fracture of a sandwich specimen loaded
with axial forces and bending moments is analyzed
in the context of linear elastic fracture mechanics. A
closed form expression for the energy release rate for
interface cracking of a sandwich specimen with isotropic
face sheets is found from analytical evaluation of the
J -integral. An approach is applied, whereby the mode
mixity for any combination of the loads can be calculated
analytically when a load-independent phase angle
has been determined. This load-independent phase
angle is determined for a broad range of sandwich configurations
of practical interest. The load-independent
phase angle is determined using a novel finite element
based method called the crack surface displacement
extrapolation method.
The expression for the energy release rate is based on
the J -integral and certain stress distributions along the
ends of the sandwich specimen. When the stresses from
the crack tip interacts with the stresses at the ends, the
present analytical calculation of the J -integral becomes
inaccurate. The results show that for the analytically
J -integral to be accurate the crack tip must be a certain
distance away from the uncracked end of the specimen.
For a sandwich specimen with face sheet/core stiffness
ratio of 100, this distance is in the order 10 times
the face sheet thickness. For sandwich structures with
Keywords :
Energy release rate · Mode mixity ·Delamination · Adhesive joints
Journal title :
International Journal of Fracture
Journal title :
International Journal of Fracture