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Three-dimensional thermoviscoelastic analysis of a FGM cylindrical panel using state space differential quadrature method

机译:FGM圆柱面板的三维热粘弹性状态空间微分正交分析

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摘要

Mechanical behavior of a viscoelastic cylindrical panel with various edge boundary conditions, made up of functionally graded material (FGM) and subjected to thermal or mechanical load is investigated. For cases of simply supported boundary conditions, analytical solution is presented through Fourier series expansion along the axial and circumferential coordinates as well as state space method along the radial coordinate. For nonsimply supported conditions, semi-analytical solution is performed using differential quadrature method instead of Fourier series solution. Governing differential equations are transformed to Laplace transform domain and using inverse Laplace transform, obtained solutions are converted to time domain. In the present work, relaxation modulus of FGM is supposed to be according to the Prony series with power law variations along the radial direction. Numerical comparison was made with the available published results to assess the validity of present technique. Effect of relaxation time constant, thickness to mid-radius ratio, edges boundary condition and outer surface temperature on stress and displacement fields are discussed. Besides, time history of stresses for different relaxation time constant and for various boundary conditions is presented.
机译:研究了由功能梯度材料(FGM)组成并经受热或机械载荷的具有各种边缘边界条件的粘弹性圆柱板的机械性能。对于简单支持的边界条件,通过沿轴向和圆周坐标的傅立叶级数展开以及沿径向坐标的状态空间方法给出解析解。对于非简单条件,使用微分求积法代替傅立叶级数解进行半解析解。将控制微分方程转换为Laplace变换域,并使用逆Laplace变换将获得的解转换为时域。在目前的工作中,FGM的弛豫模量被认为是根据Prony级数,其幂律沿径向方向变化。与可用的公开结果进行了数值比较,以评估本技术的有效性。讨论了弛豫时间常数,厚度与中半径比,边缘边界条件和外表面温度对应力和位移场的影响。此外,给出了不同松弛时间常数和各种边界条件下的应力时程。

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