Reduction of free edge peeling stress of laminated composites using active piezoelectric layers

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Abstract

An analytical approach is proposed in the reduction of free edge peeling stresses of laminated composites using active piezoelectric layers. The approach is the extended Kantorovich method which is an iterative method. Multiterms of trial function are employed and governing equations are derived by taking the principle of complementary virtual work. The solutions are obtained by solving a generalized eigenvalue problem. By this approach, the stresses automatically satisfy not only the traction-free boundary conditions, but also the free edge boundary conditions. Through the iteration processes, the free edge stresses converge very quickly. It is found that the peeling stresses generated by mechanical loadings are significantly reduced by applying a proper electric field to the piezoelectric actuators. © 2014 Bin Huang and Heung Soo Kim.

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APA

Huang, B., & Kim, H. S. (2014). Reduction of free edge peeling stress of laminated composites using active piezoelectric layers. Scientific World Journal, 2014. https://doi.org/10.1155/2014/439492

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