Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology
The spindle vibrations of the high-speed grinding motorized spindle largely determine the machining quality and precision. In order to accurately predict the spindle vibrations of the PMSM high-speed grinding motorized spindle, the vibration causes are explored and analyzed. The radial vibration, in...
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doaj-5820687615b04f8481a1dae8cb116e3c2020-11-25T02:15:21ZengSciendoMeasurement Science Review1335-88712019-06-0119310912510.2478/msr-2019-0017msr-2019-0017Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain TechnologyCheng Mingke0Gao Feng1Li Yan2Lab. of NC Machine Tools and Integrated Manufacturing Equipment of the Education Ministry & Key Lab of Manufacturing Equipment of Shaanxi Province, Xi’an University of Technology, Xi’an710048, China.Lab. of NC Machine Tools and Integrated Manufacturing Equipment of the Education Ministry & Key Lab of Manufacturing Equipment of Shaanxi Province, Xi’an University of Technology, Xi’an710048, China.Lab. of NC Machine Tools and Integrated Manufacturing Equipment of the Education Ministry & Key Lab of Manufacturing Equipment of Shaanxi Province, Xi’an University of Technology, Xi’an710048, China.The spindle vibrations of the high-speed grinding motorized spindle largely determine the machining quality and precision. In order to accurately predict the spindle vibrations of the PMSM high-speed grinding motorized spindle, the vibration causes are explored and analyzed. The radial vibration, inclined vibration, and axial vibration model are established. The experimental modal analysis method is proposed to analyze the dynamic response of the spindle and to identify the modal parameters of the spindle structure. Thereafter, the frequency response function (FRF) is calculated by self-power spectrum and cross-power spectrum. It is transformed into the vibration spectrum analysis of the spindle. The least-square method is used to fit the radial trajectory of the spindle. This paper aims to propose double standard spheres for 5- DOF spindle vibrations used to detect the spindle vibrations. In the experiment, the method proposed in this paper can effectively and accurately determine the causes of the spindle vibrations. The spectrum analysis and the trajectory are common tools in the spindle vibration detection.http://www.degruyter.com/view/j/msr.2019.19.issue-3/msr-2019-0017/msr-2019-0017.xml?format=INTMotorized spindlevibration analysisvibration spectrumtrajectoryexperiment |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Cheng Mingke Gao Feng Li Yan |
spellingShingle |
Cheng Mingke Gao Feng Li Yan Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology Measurement Science Review Motorized spindle vibration analysis vibration spectrum trajectory experiment |
author_facet |
Cheng Mingke Gao Feng Li Yan |
author_sort |
Cheng Mingke |
title |
Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology |
title_short |
Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology |
title_full |
Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology |
title_fullStr |
Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology |
title_full_unstemmed |
Vibration Detection and Experiment of PMSM High Speed Grinding Motorized Spindle Based on Frequency Domain Technology |
title_sort |
vibration detection and experiment of pmsm high speed grinding motorized spindle based on frequency domain technology |
publisher |
Sciendo |
series |
Measurement Science Review |
issn |
1335-8871 |
publishDate |
2019-06-01 |
description |
The spindle vibrations of the high-speed grinding motorized spindle largely determine the machining quality and precision. In order to accurately predict the spindle vibrations of the PMSM high-speed grinding motorized spindle, the vibration causes are explored and analyzed. The radial vibration, inclined vibration, and axial vibration model are established. The experimental modal analysis method is proposed to analyze the dynamic response of the spindle and to identify the modal parameters of the spindle structure. Thereafter, the frequency response function (FRF) is calculated by self-power spectrum and cross-power spectrum. It is transformed into the vibration spectrum analysis of the spindle. The least-square method is used to fit the radial trajectory of the spindle. This paper aims to propose double standard spheres for 5- DOF spindle vibrations used to detect the spindle vibrations. In the experiment, the method proposed in this paper can effectively and accurately determine the causes of the spindle vibrations. The spectrum analysis and the trajectory are common tools in the spindle vibration detection. |
topic |
Motorized spindle vibration analysis vibration spectrum trajectory experiment |
url |
http://www.degruyter.com/view/j/msr.2019.19.issue-3/msr-2019-0017/msr-2019-0017.xml?format=INT |
work_keys_str_mv |
AT chengmingke vibrationdetectionandexperimentofpmsmhighspeedgrindingmotorizedspindlebasedonfrequencydomaintechnology AT gaofeng vibrationdetectionandexperimentofpmsmhighspeedgrindingmotorizedspindlebasedonfrequencydomaintechnology AT liyan vibrationdetectionandexperimentofpmsmhighspeedgrindingmotorizedspindlebasedonfrequencydomaintechnology |
_version_ |
1724897078457401344 |