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首页> 外文期刊>Journal of Zhejiang University. Science, A >Adaptive finite element-element-free Galerkin coupling method for bulk metal forming processes
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Adaptive finite element-element-free Galerkin coupling method for bulk metal forming processes

机译:自适应有限元 - 无元素的Galerkin耦合方法,用于散装金属成型工艺

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An adaptive finite element-element-free Galerkin (FE-EFG) coupling method is proposed and developed for the numerical simulation of bulk metal forming processes. This approach is able to adaptively convert distorted FE elements to EFG domain in analysis. A new scheme to implement adaptive conversion and coupling is presented. The coupling method takes both advantages of finite element method (FEM) and meshless methods. It is capable of handling large deformations with no need of remeshing procedures, while it is computationally more efficient than those full meshless methods. The effectiveness of the proposed method is demonstrated with the numerical simulations of the bulk metal forming processes including forging and extrusion.
机译:提出了一种自适应有限元元素 - 元素的Galerkin(Fe-EFG)耦合方法,并开发用于散装金属形成工艺的数值模拟。这种方法能够在分析中自适应地将扭曲的FE元素转换为EFG域。提出了一种实现自适应转换和耦合的新方案。耦合方法采用有限元方法(FEM)和无丝毫的方法。它能够处理大的变形,无需倒闭程序,而这比这些完整的无网格方法更有效。所提出的方法的有效性通过散装和挤出的散装金属成形方法的数值模拟来证明。

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