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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Method for identifying feed-drive system dynamic properties using a motor current
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Method for identifying feed-drive system dynamic properties using a motor current

机译:利用电动机电流识别进给驱动系统动态特性的方法

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摘要

The dynamics of a machine tool ball screw is an important topic in high-precision machining. Capturing the axial and torsional dynamics of the ball screw has an important guiding significance to the stable processing of the machine tool. The traditional methods mainly involve a mounted sensor or direct embedment into the structure and hybrid finite element methods (FEMs), which are inconvenient. The FEM accuracy is limited by the accuracy of the model. This paper reports that feed-drive system vibration is excited by the interactive impact of a screw, ball, and nut, whose interaction is the core of the feed drive system dynamics. Under the action of current, the ball screw serves as the transmission component of the executive component to control the working condition of the sliding table. This paper proposes a new method that uses the inertia force sequence caused by random idle running of the sliding table to identify the natural frequency of a feed-drive system based on the feed motor current response. First, the corresponding relationship between the current and the vibration of the feed-drive system is studied. The accuracy of the new method based on the current response is analysed by the experiment, which is performed to identify the natural frequency of the feed-drive system. Then, the incentive region is changed to study the identification effect under different interactive impact conditions, where the contact condition of the ball screw is different. (C) 2016 Elsevier Ltd. All rights reserved.
机译:机床滚珠丝杠的动力学特性是高精度加工中的重要课题。捕获滚珠丝杠的轴向和扭转动力学特性对稳定加工机床具有重要的指导意义。传统方法主要涉及安装传感器或直接嵌入结构中以及混合有限元方法(FEM),这很不方便。 FEM精度受模型精度的限制。本文报告说,进给驱动系统的振动是由螺杆,滚珠和螺母的相互作用所激发的,它们的相互作用是进给驱动系统动力学的核心。在电流的作用下,滚珠丝杠用作执行部件的传动部件,以控制滑台的工作状态。本文提出了一种新方法,该方法利用滑台随机空转产生的惯性力序列,根据进给电机电流响应来识别进给驱动系统的固有频率。首先,研究了电流与进给驱动系统振动之间的对应关系。通过实验分析了基于电流响应的新方法的准确性,该实验旨在确定进给驱动系统的固有频率。然后,改变激励区域以研究在滚珠丝杠的接触条件不同的不同交互冲击条件下的识别效果。 (C)2016 Elsevier Ltd.保留所有权利。

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