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首页> 外文期刊>Journal of Materials Processing Technology >Influence of dynamic boundary conditions on preform design for deformation uniformity in backward simulation
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Influence of dynamic boundary conditions on preform design for deformation uniformity in backward simulation

机译:动态边界条件对瓶胚设计的变形均匀性的影响

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摘要

Backward simulation using the finite element method (FEM) is an important approach for preform design. Different preforms can be obtained by imposing different dynamic boundary conditions in the backward simulation. In this paper, boundary conditions in the backward simulation are controlled by altering the time of boundary node separating from dies. And the relative non-uniform deformation degree is adopted to assess the preform design for deformation uniformity. Preform designs for the forging process of an airfoil section blade were obtained by using backward simulation approach and the influence of dynamic boundary conditions on preform design for deformation uniformity was investigated. The results are the followings: (1) shorting the separating time by a constant proportion leads to the slight change of the relative non-uniform deformation degree, which has a little effect on preform design for deformation uniformity; (2) decreasing the separating time of the nodes with large equivalent strain and increasing the separating time of the nodes with small equivalent strain simultaneously lead to the decrease of the relative non-uniform deformation degree, which may benefit the preform design.
机译:使用有限元方法(FEM)进行向后仿真是瓶坯设计的重要方法。通过在后向仿真中施加不同的动态边界条件,可以获得不同的预成型坯。本文通过改变边界节点与模具的分离时间来控制后向仿真中的边界条件。并采用相对不均匀变形程度来评估瓶坯设计的变形均匀性。通过后向仿真的方法获得了翼型截面叶片锻造工艺的瓶坯设计,并研究了动态边界条件对瓶坯设计变形均匀性的影响。结果如下:(1)以恒定的比例缩短分离时间导致相对不均匀变形程度的细微变化,这对用于变形均匀性的预成型坯设计影响很小; (2)减小等效应变大的节点的分离时间,增大等效应变小的节点的分离时间,可同时降低相对不均匀变形程度,有利于瓶坯的设计。

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