Selection of the optimal hydraulic drive for the press

A. Antsifirov, V. Krivoshein
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Abstract

The research presented in the article is devoted to the selection of the electric motor of the hydraulic press drive with a nominal force of 5MN. The article presents the main characteristics and the description of the press operation using the means of mechanization of the technological process of pressure treatment. Using the Deform-3D software package, the process of stamping the crosspiece of the ZIL-130 cardan shaft was simulated. Based on the presented hydraulic scheme of the press, its topological model was formed in the PA-9 software package. The deformation force obtained in the course of modeling the technological process of stamping was used in the topological model of the press. Using a tabular cyclogram, the sequence of actuation of the end switches and hydraulic distributors during the stamping process is shown. In the article, two variants of engine operation were analyzed. Based on the results of the conducted research, it is necessary to focus on the second version of the 55 kW engine, the operation of which will provide the required characteristics of the hydraulic drive of the press, which in turn will allow for technological stamping operations. The simulation tools allow providing estimated information when selecting the necessary tools to ensure the optimal characteristics of hydraulic press drives. The article considered the variation of electric motors that differ from each other in nominal characteristics, with constant characteristics of the pump. For more accurate estimates of energy savings during the operation of the hydraulic drive, it is necessary to vary the characteristics of the pump in the simulation, and the best option is to form an experiment planning matrix when combining the characteristics of the electric motor and the hydraulic pump. This approach ultimately allows forming a function for which one can select a hydraulic drive from existing brands of electric motors and hydraulic pumps for presses of the corresponding range of nominal force.
为压力机选择最佳的液压传动装置
本文研究的是公称力为5MN的液压机传动电动机的选型问题。本文介绍了采用压力处理工艺过程机械化手段的压机操作的主要特点和说明。利用Deform-3D软件对ZIL-130万向轴横件的冲压过程进行了仿真。根据提出的压力机液压方案,在PA-9软件包中建立了压力机的拓扑模型。将冲压工艺过程建模过程中得到的变形力用于压力机的拓扑模型中。在冲压过程中,使用表格环图,显示了末端开关和液压分配器的驱动顺序。本文对发动机的两种工况进行了分析。根据所进行的研究结果,有必要将重点放在55kw发动机的第二个版本上,该发动机的运行将提供压力机液压驱动所需的特性,这反过来将允许技术冲压操作。仿真工具允许在选择必要的工具时提供估计信息,以确保液压机驱动器的最佳特性。本文考虑了在泵的特性不变的情况下,标称特性不同的电动机的变化。为了更准确地估计液压驱动运行过程中的节能效果,需要在仿真中改变泵的特性,最好的选择是在结合电动机和液压泵的特性时形成实验规划矩阵。这种方法最终允许形成一种功能,人们可以从现有品牌的电动机和液压泵中选择液压驱动器,用于相应公称力范围的压力机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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