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Compensation of stress intensity factors in hollow cylinders containing several cracks under torsion by electro-elastic coating 被引量:1

Compensation of stress intensity factors in hollow cylinders containing several cracks under torsion by electro-elastic coating
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摘要 In this article, a formulation for a hollow cylinder reinforced with an electroelastic layer is investigated. The hollow cylinder and its electro-elastic coating are under the Saint-Venant torsional loading. First, the solution to the problem containing a Volterra-type screw dislocation is obtained by using the Fourier transform. The problem is then reduced to a set of Cauchy singular integral equations by the distributed dislocation method. Finally, several examples are presented to show the effect of the electro-elastic coating on the reduction of the stress intensity factors at the crack tips. In this article, a formulation for a hollow cylinder reinforced with an electroelastic layer is investigated. The hollow cylinder and its electro-elastic coating are under the Saint-Venant torsional loading. First, the solution to the problem containing a Volterra-type screw dislocation is obtained by using the Fourier transform. The problem is then reduced to a set of Cauchy singular integral equations by the distributed dislocation method. Finally, several examples are presented to show the effect of the electro-elastic coating on the reduction of the stress intensity factors at the crack tips.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第9期1335-1360,共26页 应用数学和力学(英文版)
关键词 HOLLOW cylinder electro-elastic COATING stress intensity factor multiple arbitrarily oriented cracks Saint-Venant TORSION electric displacement hollow cylinder electro-elastic coating stress intensity factor multiple arbitrarily oriented cracks Saint-Venant torsion electric displacement
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