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Development of a fine tool servo with force monitoring system for nanomachining applications

机译:开发具有力监控系统的精细工具伺服系统,用于纳米加工

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摘要

The strong demand for ultraprecision components in today's industries has gradually delivered focus in the research area of diamond turning. A new technique called tool servosystem, an auxiliary servoaxis of the lathe, has become the best solution in machining the ultraprecision surfaces more effectively. This article presents a newly developed piezoelectric-based fine tool servo (FTS) system for a miniature ultraprecision lathe. The FTS system is specially designed by installing a small-size and high sensitivity force transducer which measures the thrust force along the in-feed direction during diamond turning, and also detects the initial contact point of tool/workpiece. A new flexure mechanism of the FTS is presented which is built to measure the cutting force and guide the piezoelectric actuator movement. By employing this flexure mechanism, the cutting force can be measured accurately without sacrificing the desired displacement of the cutting tool during turning process. In order to achieve the optimized tracking performance, the FTS system is controlled by the proportional-integral-derivative feedback and feedforward algorithm that is available with the motion controller. The nonferrous workpiece materials such as aluminum alloys and brass have been machined in this study to investigate the performance characteristics of the developed FTS system. In addition, an example of a nanosurface with microfeatures has been machined and thereby successfully verified the capability of the FTS system. The results show a significant improvement in the surface finish of the machined workpiece and also confirm that this system can successfully generate nanosurfaces effectively.
机译:在当今行业中,对超精密组件的强烈需求已逐渐将重点放在金刚石车削的研究领域。一种称为工具伺服系统的新技术,即车床的辅助伺服轴,已成为更有效地加工超精密表面的最佳解决方案。本文介绍了一种新开发的用于微型超精密车床的基于压电的精细工具伺服(FTS)系统。 FTS系统是通过安装小型,高灵敏度的力传感器而专门设计的,该传感器可测量金刚石车削过程中沿进给方向的推力,还可以检测工具/工件的初始接触点。提出了FTS的一种新的挠曲机构,该挠曲机构用于测量切削力并引导压电致动器的运动。通过采用这种挠曲机构,可以在不牺牲车削过程中所需的切削工具位移的情况下精确地测量切削力。为了获得最佳的跟踪性能,FTS系统由运动控制器提供的比例积分微分反馈和前馈算法控制。在这项研究中,对铝合金和黄铜等有色工件材料进行了加工,以研究已开发的FTS系统的性能特征。另外,已经加工出具有微特征的纳米表面的实例,从而成功验证了FTS系统的功能。结果表明,加工后的工件的表面光洁度得到了显着改善,并且证实了该系统可以成功地成功生成纳米表面。

著录项

  • 来源
    《Journal of Vacuum Science & Technology 》 |2009年第3期| 1272-1277| 共6页
  • 作者

    S. W. Gan; M. Rahman; H. S. Lim;

  • 作者单位

    Department of Mechanical Engineering, National University of Singapore, 21 Lower Kent Ridge Road, Singapore 119077;

    Department of Mechanical Engineering, National University of Singapore, 21 Lower Kent Ridge Road, Singapore 119077;

    Department of Mechanical Engineering, National University of Singapore, 21 Lower Kent Ridge Road, Singapore 119077;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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