首页> 外文期刊>Journal of Applied Mechanical Engineering >Transient Thermoelectroelastic Response of a Functionally GradedPiezoelectric Material Strip with Two Parallel Cracks in ArbitraryPositions
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Transient Thermoelectroelastic Response of a Functionally GradedPiezoelectric Material Strip with Two Parallel Cracks in ArbitraryPositions

机译:任意位置有两个平行裂纹的功能梯度压电材料带的瞬态热电弹性响应

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In this article, the problem of two parallel cracks in arbitrary positions of a functionally graded piezoelectric material (FGPM) strip is analyzed under transient thermal loading conditions. It is assumed that the thermoelectroelastic properties of the strip vary continuously along the thickness of the strip, and that the crack faces are supposed to be insulated thermally and electrically. By using both the Laplace transform and the Fourier transform, the thermal and electromechanical problems are reduced to two systems of singular integral equations. The singular integral equations are solved numerically, and a numerical method is then employed to obtain the time dependent solutions by way of a Laplace inversion technique. The intensity factors versus time for various geometric and material parameters are calculated and presented in graphical forms. Temperature change, the stress and electric displacement distributions in a transient state are also included.
机译:在本文中,分析了在瞬态热载荷条件下功能梯度压电材料(FGPM)条带任意位置出现两个平行裂纹的问题。假定带的热电弹性性质沿带的厚度连续变化,并且假定裂纹面是热绝缘和电绝缘的。通过同时使用拉普拉斯变换和傅立叶变换,将热和机电问题简化为两个奇异积分方程组。对奇异积分方程进行数值求解,然后采用数值方法通过拉普拉斯反演技术获得时间相关解。计算各种几何和材料参数的强度因子与时间的关系,并以图形形式显示。还包括瞬态的温度变化,应力和电位移分布。

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