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Magneto-thermo-elastic analysis of a functionally graded conical shell

机译:功能梯度圆锥壳的磁热弹性分析

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In this paper, magneto-thermo-elastic problem of a thick truncated conical shell immersed in a uniform magnetic field and subjected to internal pressure is investigated. Material properties of the shell including the elastic modulus, magnetic permeability, coefficients of thermal expansion and conduction arc assumed to be isotropic and graded through the thickness obeying the simple power law distribution, while the poison's ratio is assumed to be constant. The temperature distribution is assumed to be a function of the thickness direction. Governing equations of the truncated conical shell are derived in terms of components of displacement and thermal fields and discretised with the help of differential quadrature (DQ) method. Results are obtained for different values of power law index of material properties and effects of thermal load on displacement, stress, temperature and magnetic fields are studied. Results of the present method are compared with those of the finite element method.
机译:本文研究了浸没在均匀磁场中并受到内压的厚截头圆锥壳的磁热弹性问题。壳的材料特性包括弹性模量,磁导率,热膨胀系数和传导电弧,被认为是各向同性的,并且通过遵循简单幂律分布的厚度分级,而毒物的比率则假定为常数。假定温度分布是厚度方向的函数。截顶圆锥壳的控制方程是根据位移和热场的分量导出的,并借助微分正交(DQ)方法离散化。获得了材料特性的幂律指数的不同值的结果,并研究了热载荷对位移,应力,温度和磁场的影响。将本方法的结果与有限元方法的结果进行比较。

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