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首页> 外文期刊>Journal of Materials Processing Technology >Modelling wall boundary conditions in an elasto-viscoplastic material forming process
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Modelling wall boundary conditions in an elasto-viscoplastic material forming process

机译:在弹粘塑性材料成型过程中模拟壁边界条件

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The numerical simulation of a hot metal or soft material processing operation, for optimising the design and operating variables, critically depends on the boundary conditions associated with the walls of the equipment. With advancements in finite element methods, more accurate determination of the field variables governing material flow in forming processes involving complex interfacial boundary conditions and realistic material constitutive models has become feasible.This paper describes a finite element study of the effect of wall boundary conditions on the upsetting of plasticine as a model for hot metal. The wall boundary and intrinsic flow characteristics for the model material are then used to investigate the effects of introducing a vibration assisted tooling method. The aim was to modify the wall boundary conditions in a way that reduced the forming force.A comparison between experimental and computed results, for the relationship between the forming force and tool displacement and for flow visualisation, demonstrate very close agreement. if deformation is performed under superimposed vibration, the mean stress necessary to maintain plastic flow decreases appreciably in comparison with that for purely static deformation, and this decrease is accurately predicted by the FE models.
机译:为了优化设计和操作变量,铁水或软材料加工操作的数值模拟主要取决于与设备壁相关的边界条件。随着有限元方法的发展,在涉及复杂界面边界条件和实际材料本构模型的成形过程中,更精确地确定控制材料流动的场变量变得可行。本文描述了有限元研究壁边界条件对壁面条件的影响。橡皮泥作为铁水的典范而令人沮丧。然后使用模型材料的壁边界和固有流动特性来研究引入振动辅助工具方法的效果。目的是通过减小壁面成形力的方式来修改壁边界条件。在实验结果和计算结果之间进行比较,以比较成形力与工具位移之间的关系以及流动可视化显示出非常接近的一致性。如果在叠加振动下进行变形,则与纯静态变形相比,保持塑性流动所需的平均应力会明显降低,并且这种降低可以通过有限元模型准确地预测。

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