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Stress distribution in a lap joint under tension-shear
Authors:Dick J Chang  R Muki
Institution:Mechanics and Structures Department, School of Engineering and Applied Science, University of California, Los Angeles, CA 90024, U.S.A.
Abstract:This paper deals with the elastostatic load transfer of a tensile load in a model of an adhesive lap joint (tension-shear problem). The adhesive layer is regarded as infinitesimally thin and the displacement and traction vectors in the adherends are assumed to be continuous across the bond. The problem is reduced to a pair of Fredholm integral equations of the second kind which involve the mean angle between the deformed bond line and the tensile load. This angle, in turn, is determined by means of a scheme due to Goland and Reissner. Numerical results for the bond line stresses and the stress intensity factors at the ends of the bonded region are presented.
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