Analysis of cracked functionally graded piezoelectric strip |
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Authors: | S.M. Mousavi J. Paavola |
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Affiliation: | Aalto University, Department of Civil and Structural Engineering, Rakentajanaukio 4 A, Otaniemi, FI-02150 Espoo, Finland |
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Abstract: | The fracture behavior of a cracked strip under antiplane mechanical and inplane electrical loading is studied. A functionally graded piezoelectric strip with exponential material gradation is under consideration. The mechanical and electrical loading is combined via loading coupling factor. The problem of a graded piezoelectric strip containing a screw dislocation is solved. This solution results in stress and electric displacement components with Cauchy singularity. Based on the solution achieved for the dislocation, the distributed dislocation technique (DDT) is utilized to form any geometry of multiple cracks and analyze the behavior of a cracked strip under antiplane mechanical and inplane electrical loading. This technique is capable of the analysis of a strip with a system of interacting cracks. Several examples including strips with single crack, two straight cracks and two curved cracks are presented. |
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Keywords: | Functionally graded piezoelectric Crack Strip Distributed dislocation technique |
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