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A four-node C-0 tetrahedral element based on the node-based smoothing technique for the modified couple stress theory

机译:一种基于基于节点的平滑技术的四节点C-0四面体元素,用于改进的耦合应力理论

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In this paper, a four-node C0 tetrahedral element for the modified couple stress theory is proposed. Since the governing equations are the fourth-order differential equations, the first-order derivative of displacement or rotation should be approximated by a continuous function. In the proposed element, nodal rotations are defined using the node-based smoothing technique. Continuous rotation fields are defined with the shape functions and nodal rotations. Both the displacement field and the rotation field are expressed solely in terms of the displacement degrees of freedom. The element stiffness matrix is calculated using the newly defined rotation field. To prevent the increase of calculation cost due to increase of the bandwidth of the stiffness matrix, the preconditioned conjugate gradient method is introduced. The performance of the proposed element is evaluated through various numerical examples.
机译:本文提出了一种用于改进的耦合应力理论的四节点C0四面体元件。 由于控制方程是第四阶微分方程,因此应通过连续功能近似位移或旋转的一阶导数。 在所提出的元素中,使用基于节点的平滑技术来定义节点旋转。 连续旋转字段定义为具有形状功能和节点旋转。 位移场和旋转字段都仅以位移自由度方面表达。 使用新定义的旋转字段计算元素刚度矩阵。 为了防止由于刚度矩阵的带宽的增加而增加计算成本,引入了预处理的共轭梯度方法。 通过各种数值示例评估所提出的元件的性能。

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