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A penny-shaped crack in transversely isotropic magneto-electro-thermo-elastic medium subjected to uniform symmetric heat flux

机译:均质对称热流作用下横观各向同性磁电热弹性介质中的细小裂纹

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The problem of a penny-shaped crack subjected to symmetric uniform heat flux in an infinite transversely isotropic magneto-electro-thermo-elastic medium is investigated. The exact solution in the full space is in terms of line integrals and the exact solution in the crack plane also is obtained. Although we start our derivations with magneto-electro-thermo-elastic, the solution presented in this paper is also applicable for linear transversely isotropic thermopiezoelectric, thermomagnetoelastic,thermoelastic materials (see Appendix E). The solution in the crack plane, which shows a great agreement with the solution for a transversely isotropic medium obtained by Tsai (1983), indicates that σ_x;σ_y;D_x;D_y; B_x, and B_y along the crack rim are of the same singularity of the normal stress or its equivalent quantities. To illustrate how the applied symmetric heat fluxes affect the whole fields, a numerical example is also given.
机译:研究了无限大的横观各向同性的磁电热弹性介质中的一角形裂纹在对称均匀热流作用下的问题。整个空间中的精确解取决于线积分,并且还获得了裂纹平面中的精确解。尽管我们从磁电热弹性开始推导,但本文提出的解决方案也适用于线性横向各向同性的热压电,热磁弹性,热弹性材料(请参见附录E)。裂纹平面中的解与Tsai(1983)获得的横向各向同性介质的解非常吻合,表明σ_x;σ_y; D_x; D_y;。沿裂纹边缘的B_x和B_y具有与法向应力相同的奇异度或等效值。为了说明所施加的对称热通量如何影响整个场,还给出了一个数值示例。

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