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首页> 外文期刊>Ironmaking & Steelmaking >Optimisation of open die forging condition and tool design for ensuring both internal quality and dimensional precision by three-dimensional rigid-plastic finite element analysis
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Optimisation of open die forging condition and tool design for ensuring both internal quality and dimensional precision by three-dimensional rigid-plastic finite element analysis

机译:优化开模锻造条件和工具设计,通过三维刚塑性有限元分析确保内部质量和尺寸精度

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摘要

Focusing on the rough forging stage of the hot open die forging process, the influences of anvil design and pass schedule on the internal quality of forged billet have been numerically analysed using a three dimensional rigid-plastic finite element method. By analysing the strain distribution newly added by one forging stroke, it has been clarified that the region where a workpiece contacts an anvil can be divided into four zones according to the deformation and, in the zone where a dead metal region arises at the surface, high strain is obtained at the centre. As a result, as regards the anvil edge shape design, it was found that it is effective to select an arc of small radius to obtain high strain at the centre. Moreover, in order to ensure both internal quality and dimensional precision of a forged surface, it has been revealed that it is effective to apply a small curvature to the flat surface of an anvil. The results have enabled a fundamental scheme to optimise tool design for ensuring both internal quality and dimensional precision to be established.
机译:针对热开模锻造过程中的粗锻阶段,采用三维刚塑性有限元方法,数值分析了砧座设计和通过时间对锻坯内部质量的影响。通过分析一个锻造行程新增加的应变分布,可以清楚地了解到,工件与砧座接触的区域可以根据变形分为四个区域,并且在表面出现死金属区域的区域中,在中心获得高应变。结果,关于砧座边缘形状设计,发现有效的是选择小半径的弧以在中心处获得高应变。此外,为了确保锻造表面的内部质量和尺寸精度,已经揭示了在砧座的平坦表面上施加小的曲率是有效的。结果使基本方案能够优化工具设计,从而确保建立内部质量和尺寸精度。

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