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Explanation of the mushroom effect in the rotary forging of a cylinder

机译:圆柱旋转锻造中蘑菇效应的解释

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Rotary forging is an incremental forging process and is available to form various axisymmetrical parts from cylindrical billets. However, under certain conditions, a cylindrical billet is liable to be formed into a mushroom-shape after rotary forging, but not a dram shape in upsetting. A 3D rigid-plastic finite element method is used to simulate the rotary forging process to reveal the deformation mechanism of the mushroom shape workpiece. The stress, strain rate and strain distributions at different positions of the workpiece and at different times during the process are presented, and then the deformation zones are presented in detail for analyzing the deforming patterns. The reasons why the part with H_0/D = 0.5-1.0 (ratio of initial height to diameter) is formed into a mushroom shape are analyzed and it is concluded that these are non-uniform deformation under the effect of the eccentric loading and the different deforming degrees along the tangential direction at various heights of the workpiece. However, this kind of effect can be used to manufacture a part with a flange from a cylinder, instead of being regarded as a defect.
机译:旋转锻造是一种渐进式锻造工艺,可用于从圆柱坯上形成各种轴对称零件。但是,在一定条件下,圆柱形坯料在旋转锻造后易于形成蘑菇形,而up锻则不能形成钝角形状。采用3D刚塑性有限元方法模拟了旋转锻造过程,揭示了蘑菇形工件的变形机理。给出了工件在不同位置,在不同时间的应力,应变率和应变分布,然后详细给出了变形区域,以分析变形模式。分析了H_0 / D = 0.5-1.0(初始高度与直径之比)的零件形成蘑菇形的原因,并得出结论,这些零件在偏心载荷的作用下是不均匀变形,并且不同在工件的不同高度沿切线方向的变形度。但是,这种效果可以用来从圆柱体制造带有凸缘的零件,而不是被认为是缺陷。

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