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Empirical power consumption model for rotational axes in machine tools

机译:机床旋转轴的经验功率消耗模型

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A machine-based power consumption model was developed to cope with a wide variety of machine tool configurations. By focusing on machine components, power consumption can be measured readily and reconfigured per individual component. This research focused mainly on feed drive units of machine tools, and particularly the power characteristics of rotational axes. Although numerous studies have investigated power characteristics, the effects of gravitational force have not been discussed fully. Unlike other axes, power consumption of axes along the gravitational direction is influenced significantly by the movement direction, table position, and even by the machine configuration. In this study, power consumption of a five-axis machine was measured and analyzed. Experimental results showed that power consumption of a rotational axis is influenced not only by the position of the center of mass but also showed different characteristics in terms of movement direction. Furthermore, the rotational axis showed backlash characteristics, whereby the power was also influenced by the movement trajectory. With an understanding of power characteristics, a novel power consumption model was suggested for rotational axes. The model developed showed good agreement with measured values during verification with a sample part with various geometric features. By assessing the power characteristics of rotational axes, essential power coefficients for modeling can be determined. Furthermore, potential power saving strategies can be deduced from the power characteristics. Understanding the characteristics of power consumption of machine components can lead to design optimization and the use of phase process optimization to reduce energy consumption and lower environmental impact. (C) 2018 Elsevier Ltd. All rights reserved.
机译:开发了基于机器的功耗模型以应对多种机床配置。通过专注于机器组件,可以轻松测量功耗并针对每个单独的组件进行重新配置。这项研究主要集中于机床的进给驱动单元,尤其是旋转轴的动力特性。尽管许多研究已经研究了功率特性,但是对重力的影响还没有进行充分的讨论。与其他轴不同,沿重力方向的轴的功耗受移动方向,工作台位置甚至机器配置的影响很大。在这项研究中,对五轴机床的功耗进行了测量和分析。实验结果表明,旋转轴的功耗不仅受质心位置的影响,而且在运动方向上也表现出不同的特性。此外,旋转轴显示出游隙特性,因此动力还受到运动轨迹的影响。在了解功率特性的基础上,提出了一种新颖的旋转轴功耗模型。所开发的模型在验证具有各种几何特征的样品零件的过程中显示出与测量值的良好一致性。通过评估旋转轴的功率特性,可以确定用于建模的基本功率系数。此外,可以从功率特性中得出潜在的节能策略。了解机器组件功耗的特征可以导致设计优化和使用相过程优化来减少能耗并降低环境影响。 (C)2018 Elsevier Ltd.保留所有权利。

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