MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE

With the increasing requirements of the high-speed CNC machine tools for the motion accuracy of the spindle,it is necessary to study the accuracy of the permanent magnet synchronous( PMS) grinding motorized spindle. Based on the spindle vibration error and thermal analysis,mathematical models of rad...

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Main Authors: GAO Feng, CHENG MingKe, LI Yan, HE PingPing, JIA WeiTao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2020-01-01
Series:Jixie qiangdu
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Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.01.025
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author GAO Feng
CHENG MingKe
LI Yan
HE PingPing
JIA WeiTao
author_facet GAO Feng
CHENG MingKe
LI Yan
HE PingPing
JIA WeiTao
author_sort GAO Feng
collection DOAJ
description With the increasing requirements of the high-speed CNC machine tools for the motion accuracy of the spindle,it is necessary to study the accuracy of the permanent magnet synchronous( PMS) grinding motorized spindle. Based on the spindle vibration error and thermal analysis,mathematical models of radial error motion,tilt error motion and axial error motion are established. The least squares approximation algorithm is applied to fit the radial trajectory of the spindle,and then the inclination error is modeled to obtain the tilt angle of the spindle’s axis of rotation. Combined with the time domain and frequency domain signal analysis methods,the axial motion error trajectory is analyzed. To achieve a radial and axial error displacement of the spindle and obtain the spindle thermal error,a typical double standard ball 5-DOF measuring spindle error device is used.Experiments were carried out on the spindle rotation error during the test run by the PMS motorized spindle developed by a domestic machine tool factory. The results show that when the speed increases to the maximum speed,the radial error and the axial error increase,the centrifugal force has a more obvious effect on the spindle accuracy; when there is the spindle eccentricity,the radial error motion trajectory gradually transitions from the approximate circle to the petal state. The double standard ball five-point test method can not only judge the manufacturing,assembly and other problems of the electric spindle manufacturing,and the experimental method can be applied to the experiment of the electric spindle error motion,while satisfying the inclination error,the axial error motion and the spindle temperature deformation test.
format Article
id doaj-art-27eaf92880664c1a876f4b6629891430
institution Kabale University
issn 1001-9669
language zho
publishDate 2020-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-27eaf92880664c1a876f4b66298914302025-01-15T02:28:42ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692020-01-014216116830607124MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLEGAO FengCHENG MingKeLI YanHE PingPingJIA WeiTaoWith the increasing requirements of the high-speed CNC machine tools for the motion accuracy of the spindle,it is necessary to study the accuracy of the permanent magnet synchronous( PMS) grinding motorized spindle. Based on the spindle vibration error and thermal analysis,mathematical models of radial error motion,tilt error motion and axial error motion are established. The least squares approximation algorithm is applied to fit the radial trajectory of the spindle,and then the inclination error is modeled to obtain the tilt angle of the spindle’s axis of rotation. Combined with the time domain and frequency domain signal analysis methods,the axial motion error trajectory is analyzed. To achieve a radial and axial error displacement of the spindle and obtain the spindle thermal error,a typical double standard ball 5-DOF measuring spindle error device is used.Experiments were carried out on the spindle rotation error during the test run by the PMS motorized spindle developed by a domestic machine tool factory. The results show that when the speed increases to the maximum speed,the radial error and the axial error increase,the centrifugal force has a more obvious effect on the spindle accuracy; when there is the spindle eccentricity,the radial error motion trajectory gradually transitions from the approximate circle to the petal state. The double standard ball five-point test method can not only judge the manufacturing,assembly and other problems of the electric spindle manufacturing,and the experimental method can be applied to the experiment of the electric spindle error motion,while satisfying the inclination error,the axial error motion and the spindle temperature deformation test.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.01.025Motorized spindleSpindle accuracyMotion errorThe least squares approximationAlgorithm double standard ball 5-DOF method
spellingShingle GAO Feng
CHENG MingKe
LI Yan
HE PingPing
JIA WeiTao
MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE
Jixie qiangdu
Motorized spindle
Spindle accuracy
Motion error
The least squares approximation
Algorithm double standard ball 5-DOF method
title MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE
title_full MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE
title_fullStr MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE
title_full_unstemmed MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE
title_short MOTION PRECISION ANALYSIS OF PERMANENT MAGNET SYBCHRONOUS GRINDING MOTORIZED SPINDLE
title_sort motion precision analysis of permanent magnet sybchronous grinding motorized spindle
topic Motorized spindle
Spindle accuracy
Motion error
The least squares approximation
Algorithm double standard ball 5-DOF method
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.01.025
work_keys_str_mv AT gaofeng motionprecisionanalysisofpermanentmagnetsybchronousgrindingmotorizedspindle
AT chengmingke motionprecisionanalysisofpermanentmagnetsybchronousgrindingmotorizedspindle
AT liyan motionprecisionanalysisofpermanentmagnetsybchronousgrindingmotorizedspindle
AT hepingping motionprecisionanalysisofpermanentmagnetsybchronousgrindingmotorizedspindle
AT jiaweitao motionprecisionanalysisofpermanentmagnetsybchronousgrindingmotorizedspindle