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On the use of GDQ for vibration characteristic of non-homogeneous orthotropic rectangular plates of bilinearly varying thickness

机译:GDQ用于双线性变化厚度非均质正交各向异性矩形板振动特性的研究

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摘要

The generalized differential quadrature (GDQ) method is used to analyze the effect of non-homogeneity, orthotropy, and thickness variation on the vibration characteristics of rectangular plates on the basis of Kirchhoff's plate theory. The non-homogeneity of the plate material is assumed to arise due to the exponential variations in Young's moduli, shear modulus, and density of the plate material with the in-plane coordinates. The thickness of the plate is taken as the Cartesian product of linear variations along two concurrent edges of the plate. In the GDQ method, the derivative of a function with respect to a space variable at a given grid point is approximated as a weighted linear sum of the function values at all of the grid points in the computational domain of that variable. Numerical results have been obtained for four different combinations of boundary conditions at the edges, namely: (1) fully clamped; (2) two opposite edges are clamped and the other two are simply supported; (3) two opposite edges are clamped and the other two are free; and (4) two opposite edges are simply supported and the other two are free. The effect of various plate parameters on the natural frequencies is studied for the first three modes of vibration. Three-dimensional mode shapes for a specified plate are plotted. A comparison of results obtained by the present method with those available in the literature is presented.
机译:基于基尔霍夫板理论,采用广义微分正交积分法(GDQ)分析非均匀性,正交性和厚度变化对矩形板振动特性的影响。假定板材的不均匀性是由于板材的杨氏模量,剪切模量和密度与面内坐标的指数变化引起的。板的厚度被视为沿着板的两个同时边缘的线性变化的笛卡尔积。在GDQ方法中,将函数相对于给定网格点处的空间变量的导数近似为该变量的计算域中所有网格点处的函数值的加权线性和。对于边缘处边界条件的四种不同组合,已经获得了数值结果,即:(1)完全夹紧; (2)夹紧两个相对的边缘,另外两个简单地支撑; (3)夹紧两个相对的边缘,另两个自由。 (4)仅支撑两个相对的边缘,而另两个则是自由的。对于前三种振动模式,研究了各种板参数对固有频率的影响。绘制了指定板的三维模式形状。给出了通过本方法获得的结果与文献中可获得的结果的比较。

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