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Assessment of the effectiveness of a spindle power signal for tool condition monitoring in machining processes

机译:评估主轴功率信号在加工过程中监控刀具状态的有效性

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摘要

Less expensive and 'readily available' process monitoring techniques are needed to be effective in industrial machining processes. Spindle motors on modern computer numerical control machine tools allow easy access to the monitoring of spindle power. Whilst a spindle power signal fulfils the requirements for simple process monitoring, such a signal can trigger 'machine alarms' when process malfunctions occur. Little analysis has been done to assess the sensitivity of a spindle power signal relative to interrupted/continuous cutting processes. This paper aims to assess the effectiveness of a spindle power signal for tool condition monitoring in three machining processes: milling, drilling and turning. Based on cutting force/torque, the cutting power was calculated and a comparison between the theoretical cutting power and the spindle power signal was performed. Tool condition monitoring using spindle power could be successful in continuous machining processes (turning and drilling), while for discontinuous machining operations (milling), the spindle power signal showed reduced sensitivity to detect small uneven events such as chipping of one tooth. The results were used to define the sensitivity limitations when using a spindle power signal for tool condition monitoring on different computer numerical control machining centres where continuous and discontinuous machining operations are performed.
机译:为了在工业加工过程中有效,需要较便宜且“现成的”过程监控技术。现代计算机数控机床上的主轴电机可轻松访问对主轴功率的监控。主轴功率信号满足简单过程监控的要求时,当过程故障发生时,该信号会触发“机器警报”。很少有分析可以评估主轴功率信号相对于中断/连续切削过程的灵敏度。本文旨在评估铣削,钻孔和车削三个加工过程中主轴功率信号对刀具状态监控的有效性。基于切削力/转矩,计算出切削力,并对理论切削力与主轴功率信号进行比较。在连续加工(车削和钻削)过程中,使用主轴功率进行刀具状态监控可能是成功的,而对于不连续的加工操作(铣削),主轴功率信号显示出降低的灵敏度,可以检测到较小的不均匀事件,例如一颗牙齿的碎裂。当使用主轴功率信号在执行连续和不连续加工操作的不同计算机数控加工中心上进行刀具状态监视时,将结果用于定义灵敏度极限。

著录项

  • 来源
    《International Journal of Production Research》 |2004年第13期|p.2679-2691|共13页
  • 作者

    D. AXINTE; N. GINDY;

  • 作者单位

    School of Mechanical, Materials, Manufacturing Engineering and Management, University of Nottingham, University Park, Nottingham NG7 2RD, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 管理学;
  • 关键词

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