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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Formulation of a New Mixed Four-Node Quadrilateral Element for Static Bending Analysis of Variable Thickness Functionally Graded Material Plates
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Formulation of a New Mixed Four-Node Quadrilateral Element for Static Bending Analysis of Variable Thickness Functionally Graded Material Plates

机译:用于可变厚度的静态弯曲分析的新混合四节点四边形元件的配制功能梯度材料板

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A new mixed four-node quadrilateral element (MiQ4) is established in this paper to investigate functionally graded material (FGM) plates with variable thickness. The proposed element is developed based on the first-order shear deformation and mixed finite element technique, so the new element does not need any selective or reduced numerical integration. Numerous basic tests have been carried out to demonstrate the accuracy and convergence of the proposed element. Besides, the numerical examples show that the present element is free of shear locking and is insensitive to the mesh distortion, especially for the case of very thin plates. The present element can be applied to analyze plates with arbitrary geometries; it leads to reducing the computation cost. Several parameter studies are performed to show the roles of some parameters such as the power-law index, side-to-thickness ratio, boundary conditions (BCs), and variation of the plate thickness on the static bending behavior of the FGM plates.
机译:本文建立了一种新的混合四节点四边形元素(MIQ4),以调查具有可变厚度的功能渐变材料(FGM)板。所提出的元件是基于一阶剪切变形和混合有限元技术开发的,因此新的元件不需要任何选择性或减小数值积分。已经进行了许多基本测试以证明所提出的元素的准确性和收敛性。此外,数值示例表明,本元件没有剪切锁定,对网状失真不敏感,特别是对于非常薄的板的情况。本元可以应用于分析具有任意几何形状的平板;它导致降低计算成本。进行几种参数研究以示出一些参数的作用,例如电力法指数,侧向厚度,边界条件(BCS)和板厚的变化在FGM板的静态弯曲行为上。

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