TY - JOUR
T1 - Singular electro-mechanical fields near the apex of a piezoelectric bonded wedge under antiplane shear
AU - Chen, Chung De
AU - Chue, Ching Hwei
N1 - Funding Information:
The authors are grateful to the National Science Council of the ROC for financial support under the contract NSC91-2212-E-006-077.
PY - 2003/11
Y1 - 2003/11
N2 - This paper presents the explicit forms of singular electro-mechanical field in a piezoelectric bonded wedge subjected to antiplane shear loads. Based on the complex potential function associated with eigenfunction expansion method, the eigenvalue equations are derived analytically. Contrary to the anisotropic elastic bonded wedge, the results of this problem show that the singularity orders are single-root and may be complex. The stress intensity factors of electrical and mechanical fields are dependent. However, when the wedge angles are equal (α = β), the orders become real and double-root. The real stress intensity factors of electrical and mechanical fields are then independent. The angular functions have been validated when they are compared with the results of several degenerated cases in open literatures.
AB - This paper presents the explicit forms of singular electro-mechanical field in a piezoelectric bonded wedge subjected to antiplane shear loads. Based on the complex potential function associated with eigenfunction expansion method, the eigenvalue equations are derived analytically. Contrary to the anisotropic elastic bonded wedge, the results of this problem show that the singularity orders are single-root and may be complex. The stress intensity factors of electrical and mechanical fields are dependent. However, when the wedge angles are equal (α = β), the orders become real and double-root. The real stress intensity factors of electrical and mechanical fields are then independent. The angular functions have been validated when they are compared with the results of several degenerated cases in open literatures.
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U2 - 10.1016/S0020-7683(03)00415-3
DO - 10.1016/S0020-7683(03)00415-3
M3 - Article
AN - SCOPUS:0141795402
SN - 0020-7683
VL - 40
SP - 6513
EP - 6526
JO - International Journal of Solids and Structures
JF - International Journal of Solids and Structures
IS - 23
ER -