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(021008)Energy Consumption of Feed Drive Systems Based on Workpiece Setting Position in Five-Axis Machining Center

机译:(021008)基于五轴加工中心的工件设定位置的饲料驱动系统能耗

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摘要

Energy consumption of numerical control (NC) machine tools is one of the key issues in modern industrial field. This study focuses on reducing the energy consumed by a five-axis machining center by changing only the workpiece setting position. Previous studies show that the movements along each axis in five-axis machining centers depend on the workpiece setting position, regardless of whether the same operation is performed. In addition, the energy consumptions required for the movements are different along each axis. From these considerations, an optimum workpiece setting position that can minimize the energy consumed during these motions is assumed to exist. To verify this assumption, in this study, the energy consumed by the feed drive systems of an actual five-axis machining center is first measured and then estimated using the proposed model in this study. The model for estimating the energy consumption comprises the friction, motor, and amplifier losses along each axis. The total energy consumption can be estimated by adding the energy consumptions along each axis. The effect of the workpiece setting position on the energy consumption is investigated by employing the cone-frustum cutting motion with simultaneous five-axis motions. The energy consumption that depends on the workpiece setting position is first measured and then estimated. The results confirm that the proposed model can estimate the energy consumption accurately. Moreover, the energy consumption is confirmed to depend on the workpiece setting position; the minimum energy consumption is found to be 20% lower than the maximum one.
机译:数值控制的能耗(NC)机床是现代工业领域的关键问题之一。本研究专注于通过仅改变工件设定位置来降低五轴加工中心消耗的能量。以前的研究表明,无论是否执行相同的操作,沿着五轴加工中心中的每个轴沿每个轴的运动取决于工件设置位置。另外,运动所需的能量消耗沿着每个轴不同。从这些考虑中,假设存在可以最小化这些运动期间消耗的能量的最佳工件设定位置。为了验证这种假设,在本研究中,首先测量实际五轴加工中心的馈送驱动系统消耗的能量,然后使用本研究中的提出模型估计。用于估计能量消耗的模型包括沿着每个轴的摩擦,电动机和放大器损耗。通过沿着每个轴添加能量消耗来估计总能量消耗。通过使用具有同时五轴运动的锥形截头切割运动来研究工件设定位置对能量消耗的影响。首先测量取决于取决于工件设定位置的能量消耗,然后估计。结果证实,所提出的模型可以准确估算能量消耗。此外,确认能量消耗取决于工件设定位置;最小能耗被发现比最大值低20%。

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