The hypersingular integral equation approach is suggested to solve the plane elasticity crack problem with circular boundary. The complex variable function method is used in the formulation. In the equation the crack opening displacement function is used as the unknown function, and the traction on
An alternative fredholm integral equation approach for multiple crack problem and multiple rigid line problem in plane elasticity
โ Scribed by Chen Yi-Zhou; Hasebe Norio
- Publisher
- Elsevier Science
- Year
- 1992
- Tongue
- English
- Weight
- 820 KB
- Volume
- 43
- Category
- Article
- ISSN
- 0013-7944
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โฆ Synopsis
An alternative Fredholm integral equation approach for the multiple crack problem and the multiple rigid line problem in plane elasticity is suggested in this paper. After using some operators on both sides of the singular integral equation for the relevant problem, an alternative Fredholm integral equation is obtainable. The solutions of the suggested integral equations satisfy the single-valuedness condition of displacement (for the multiple crack problem) and the zero resultant force condition (for the multiple rigid line problem), respectively. The obtained integral equation is compact in form and easy for computation. A technique for evaluating the rotation in the multiple rigid line problem is also proposed. Numerical examples are given to demonstrate the efficiency of the proposed approach.
๐ SIMILAR VOLUMES
The problems of two bonded half planes containing multiple cracks in arbitrary positions and directions is considered. In order to solve the proposed problem, an elementary solution is presented. Physically, the elementary solution is a particular solution for the bonded half planes containing one