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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Milling machine spindle analysis using FEM and non-contact spindle excitation and response measurement
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Milling machine spindle analysis using FEM and non-contact spindle excitation and response measurement

机译:使用FEM和非接触式主轴励磁和响应测量的铣床主轴分析

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In this paper a method for analysing lateral vibrations in a milling machine spindle is presented including finite-element modelling (FEM), magnetic excitation and inductive displacement measurements of the spindle response. The measurements can be conducted repeatedly without compromising safety procedures regarding human interaction with rotating high speed spindles. The measurements were analysed and compared with the FEM simulations which incorporated a spindle speed sensitive bearing stiffness, a separate mass and stiffness radius and a stiffness radius sensitive shear deformation factor. The effect of the gyroscopic moment and the speed dependent bearing stiffness on the system dynamics were studied for different spindle speeds. Simulated mode shapes were experimentally verified by a scanning laser doppler vibrometer. With increased spindle speed, a substantial change of the eigenfrequencies of the bearing-related eigenmodes was detected both in the simulations and in the measurements. The centrifugal force that acted on the bearing balls resulted in a softening of the bearing stiffness. This softening was shown to be more influential on the system dynamics than the gyroscopic moment of the rotor. The study performed indicates that predictions of high speed milling stability based on 0 rpm tap-test can be inadequate.
机译:本文提出了一种用于分析铣床主轴横向振动的方法,其中包括有限元建模(FEM),磁激励和主轴响应的感应位移测量。可以重复进行测量,而不会影响有关人与旋转高速主轴交互作用的安全程序。分析了测量结果并与FEM模拟进行了比较,FEM模拟包括了主轴转速敏感的轴承刚度,单独的质量和刚度半径以及刚度半径敏感的剪切变形因子。研究了不同主轴转速下陀螺力矩和速度相关轴承刚度对系统动力学的影响。模拟模式形状通过扫描激光多普勒振动计进行了实验验证。随着主轴转速的增加,在模拟和测量中都检测到了与轴承相关的本征模式的本征频率的显着变化。作用在轴承球上的离心力导致轴承刚度的减弱。与转子的陀螺力矩相比,这种软化对系统动力学的影响更大。进行的研究表明,基于0 rpm敲击试验的高速铣削稳定性预测可能不够充分。

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