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Dual mesh control domain analysis of functionally graded circular plates accounting for moderate rotations

机译:功能渐变圆形板的双网眼控制域分析核算中等旋转

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摘要

Nonlinear analysis of the axisymmetric bending of circular plates, accounting for through-thickness power-law variation of a two-constituent material and the von Karman nonlinearity is presented using the dual mesh control domain methods (DMCDM). The classical and first-order shear deformation theory kinematics are used and displacement and mixed models are developed using the DMCDM. The DMCDM predicts displacements as accurate as the finite element method (FEM), but has the advantage of predicting the stress resultants more accurately than the FEM. The developed computational models are used to determine the effect of the geometric nonlinearity and power-law index on the bending deflections and stress resultants of functionally graded circular and annular plates with different boundary conditions. It is found that the power-law index, which dictates the material distribution through the thickness, has two different regions of response, one with steep increase in deflections followed by relatively slow increase with respect to the power-law index.
机译:圆形板轴对称弯曲的非线性分析,使用双网状控制域方法(DMCDM)呈现双组成材料的贯通厚度功率差异和von Karman非线性的轴对称电力定律。使用经典和一阶剪切变形理论运动学,使用DMCDM开发出位移和混合模型。 DMCDM将位移预测为有限元方法(FEM),但具有比FEM更精确地预测应力结果的优点。开发的计算模型用于确定几何非线性和功率法指数对具有不同边界条件的功能渐变圆形和环形板的弯曲偏转和应力结果的影响。结果发现,通过厚度决定材料分布的电力法指数具有两个不同的响应区域,偏转的陡峭增加之后,相对于电力法指数相对缓慢地增加。

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