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Investigation of the cold orbital forging process of an AlMgSi alloy bevel gear

机译:AlMgSi合金锥齿轮冷轨锻造工艺研究

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摘要

Orbital forging is a metal forming process in which one of the dies performs a complex rocking motion. It ensures reduction in required load and allows for the cold forming of a workpiece. One of the mechanical parts formed by means of this technology is a bevel gear. However, a numerical analysis of orbital forging bevel gears is very difficult to perform due to the complex rocking motion of the die, which is confirmed by numerous works investigating the orbital forging process. In the present work, investigation results of the cold orbital forging of aluminum alloy bevel gears are presented. In contrast to other works devoted to the process, this study proposes a new procedure for forming bevel gears and the workpiece used has a shape which is different from the previously applied ones. The obtained results apply to both theoretical and technological aspects of orbital forging. The FEM simulation results have been successfully verified in laboratory conditions using the industrial PXW-100A press.
机译:轨道锻造是一种金属成型过程,其中一个模具进行复杂的摇摆运动。它确保减少所需的负载,并允许工件的冷成型。通过这种技术形成的机械零件之一是锥齿轮。然而,由于模具的复杂摇摆运动,很难对轨道锻造锥齿轮进行数值分析,这一点已被许多研究轨道锻造过程的工作所证实。在目前的工作中,提出了铝合金锥齿轮冷轨道锻造的研究结果。与致力于该过程的其他工作相反,本研究提出了一种新的锥齿轮成形程序,所用工件的形状与以前使用的形状不同。所得结果适用于轨道锻造的理论和技术方面。使用工业PXW-100A压力机已在实验室条件下成功验证了FEM模拟结果。

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