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首页> 外文期刊>Journal of Mechanical Science and Technology >Calculation of kinetic locus of upper tool in cold orbital forging machine with two eccentricity rings
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Calculation of kinetic locus of upper tool in cold orbital forging machine with two eccentricity rings

机译:带两个偏心环的冷轨锻造机上工具动力学轨迹的计算

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摘要

In cold orbital forging machine with two eccentricity rings, the kinetic locus of the upper tool includes two types. The first one is the kinetic locus of one point in the axis of the upper tool, which is produced by the motion of the two eccentricity rings. The second one is the kinetic locus of one point in the working surface of the upper tool, which is produced by the first type of kinetic locus. Both types of kinetic locus of the upper tool is critical to cold orbital forging. The first one has great influences on the deformation of cold orbital forged components and the second one can be used to make the intervention examination between the upper tool and components. So this paper aims at obtaining the kinetic locus of the upper tool in cold orbital forging machine with two eccentricity rings so as to better design and check the cold orbital forging tools. Firstly, a model of analyzing the kinetic locus of the upper tool is developed. Then, the general equations of the kinetic locus of the upper tool, which can describe the kinetic locus of the arbitrary point in the upper tool under all kinds of geometric and kinematic relations between the two eccentricity rings in cold orbital forging machine, are achieved. Finally, the characteristics and applications of the kinetic locus of the upper tool are discussed based on these equations. This study has great significances for adjusting the two eccentricity rings of the machine to control the motion of the upper tool and designing and checking the cold orbital forging tools.
机译:在具有两个偏心环的冷轨道锻造机中,上部工具的运动轨迹包括两种类型。第一个是上工具轴线上一个点的运动轨迹,它是由两个偏心环的运动产生的。第二个是上工具的工作表面中一点的运动轨迹,它是由第一类运动轨迹产生的。上部工具的两种动力学轨迹对于冷轨道锻造至关重要。第一个对冷轨锻件的变形有很大的影响,第二个可用于对上部工具和组件之间的干预进行检查。因此,本文旨在获得带有两个偏心环的冷轨锻造机上工具的运动轨迹,以便更好地设计和检查冷轨锻造工具。首先,建立了一种分析上部工具动力学轨迹的模型。然后,建立了上工具动力学轨迹的通用方程,该方程可以描述冷轨道锻造机中两个偏心环之间各种几何和运动学关系下上工具中任意点的运动轨迹。最后,根据这些方程式讨论了上部工具动力学轨迹的特性和应用。这项研究对于调整机器的两个偏心环以控制上部工具的运动以及设计和检查冷轨道锻造工具具有重要意义。

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