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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >A stable node-based smoothed finite element method for metal forming analysis
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A stable node-based smoothed finite element method for metal forming analysis

机译:一种基于稳定节点的平滑有限元金属成形分析方法

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In this paper, a stable node-based smoothed finite element method (SNS-FEM) is presented for analyzing metal forming problems using linear triangular or tetrahedral elements. In present method, the numerical integration domains are approximately circular or spherical regions of the node-based smoothing domains generated by the node-based smoothed finite element method (NS-FEM). Four or six supplementary integration points, which are symmetrically located at the crossover points of the region and the coordinate axis, are employed for each node to form the stabilization items associated with the variance of smoothed shape function gradient. Through this operation without the introducing of any uncertain parameter, the SNS-FEM not only significantly cures the temporal instability of NS-FEM but also performs better in effectiveness and efficiency than FEM, which is well validated by several numerical examples containing benchmark cases. Additionally, a simple but effective contact algorithm including contact searching and contact force computation is presented.
机译:本文提出了一种基于稳定节点的平滑有限元方法(SNS-FEM),用于分析线性三角形或四面体单元的金属成形问题。本方法中,数值积分域近似为基于节点的平滑有限元法(NS-FEM)生成的基于节点的平滑域的圆形或球形区域。每个节点采用4个或6个补充积分点,对称地位于区域和坐标轴的交叉点,形成与平滑形状函数梯度方差相关的稳定项。通过这种操作,在不引入任何不确定参数的情况下,SNS-FEM不仅显著地解决了NS-FEM的时间不稳定性,而且在有效性和效率方面也优于FEM,这得到了几个包含基准案例的数值实例的充分验证。此外,还提出了一种简单而有效的接触算法,包括接触搜索和接触力计算。

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