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On Vibration Joint Time-Frequency Investigations of CNC Milling Machines for Tool Trajectory Task Conformity Estimation

机译:数控铣床的振动轨迹时频研究刀具轨迹任务一致性

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摘要

This study deals with estimation of milling shape accuracy and trajectory conformity for small CNC 3D milling machines, based on vibration monitoring during the regular working cycles. The author made a large number of experimental tests, acquiring the acceleration signals, both on the milling tool-holder and on the bed frame. In order to evaluate the appropriate spectral characteristics of different machine parts and their weights on equipment dynamics, it was analyzed both the complete and the partial working cycle (such as forward tool motion, with or without effective milling, with or without tool driving, exclusively the milling cutter transitory/stabilized regime) for different basic milling shapes. The acceleration signals were jointly time-frequency investigated in order to evaluate specific spectral indicators related to the real motion characteristic of milling tool. It was used short time fast Fourier transform (STFFT) and Hough transform (HT) algorithms, along with stochastic evaluation of signal parameters, within time and frequency domains. The results reveal an accurate correlation between the specific transitory dynamics of the machine and the imposed milling shape. Main implications of the results within this analysis involve the noninvasive and facile investigation for milling errors of the CNC machine, conformity of tool head trajectory, identification of potential failure source, or damaged machine part.
机译:这项研究基于常规工作周期中的振动监测,评估小型CNC 3D铣床的铣削形状精度和轨迹一致性。作者进行了大量的实验测试,获得了铣削刀架和床架上的加速度信号。为了评估不同机器零件的适当光谱特征及其对设备动力学的影响,对全部和部分工作循环(例如,向前或向后的刀具运动,有或没有有效铣削,有无工具驱动)进行了分析。 (不同的基本铣削形状)。为了评估与铣削刀具的真实运动特性相关的特定频谱指标,共同进行了时频研究。它在时域和频域中使用了短时快速傅里叶变换(STFFT)和霍夫变换(HT)算法以及信号参数的随机评估。结果表明,机床的特定瞬态动力学与所施加的铣削形状之间具有精确的相关性。该分析结果的主要含义涉及对CNC机床的铣削误差,刀头轨迹的一致性,潜在故障源的识别或损坏的机床零件的无创且简便的调查。

著录项

  • 来源
    《Shock and vibration》 |2018年第9期|7375057.1-7375057.9|共9页
  • 作者

    Nastac Silviu;

  • 作者单位

    Dunarea de Jos Univ Galati, Res Ctr Mech Machines & Technol Equipments Engn &, Fac Braila, Calea Calarasilor 29, Braila 810017, Romania;

  • 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
  • 关键词

  • 入库时间 2022-08-18 04:12:42

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