Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools
A new spindle’s axial thermal growth model based on temperature variation is proposed considering the limitations of spindle’s axial thermal growth model based on rotating speed. The model based on temperature variation is thereafter derived, and its mechanism is analyzed. It is found that model bas...
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Online Access: | https://doi.org/10.1177/1687814016657733 |
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doaj-2aa32f83ffa647e09772ba4d392cadf62020-11-25T03:20:35ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402016-08-01810.1177/168781401665773310.1177_1687814016657733Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine toolsKuo Liu0Fei Chen1Tiejun Zhu2Yuliang Wu3Mingjia Sun4College of Mechanical Science and Engineering, Jilin University, Changchun, P.R. ChinaCollege of Mechanical Science and Engineering, Jilin University, Changchun, P.R. ChinaState Key Laboratory, Shenyang Machine Tool (Group) Co., Ltd, Shenyang, P.R. ChinaState Key Laboratory, Shenyang Machine Tool (Group) Co., Ltd, Shenyang, P.R. ChinaState Key Laboratory, Shenyang Machine Tool (Group) Co., Ltd, Shenyang, P.R. ChinaA new spindle’s axial thermal growth model based on temperature variation is proposed considering the limitations of spindle’s axial thermal growth model based on rotating speed. The model based on temperature variation is thereafter derived, and its mechanism is analyzed. It is found that model based on temperature variation is more robust. In the proposed model, a filtering method for calculating error and the identification process for parameters are also presented. The environmental temperature variation error and the repeatability of thermal growth at a constant rotating speed were investigated using a drilling center. Thereafter, the thermal growths at different rotating speeds were investigated using the same drilling center. Furthermore, the thermal growth with the disturbance of cooler was investigated using a milling center. The comparison of model based on rotating speed and model based on temperature variation is simulated, and the results indicate that the robustness of model based on temperature variation for rotating speeds and disturbance of cooler is stronger than model based on rotating speed. Finally, the experimental verification is carried out.https://doi.org/10.1177/1687814016657733 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kuo Liu Fei Chen Tiejun Zhu Yuliang Wu Mingjia Sun |
spellingShingle |
Kuo Liu Fei Chen Tiejun Zhu Yuliang Wu Mingjia Sun Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools Advances in Mechanical Engineering |
author_facet |
Kuo Liu Fei Chen Tiejun Zhu Yuliang Wu Mingjia Sun |
author_sort |
Kuo Liu |
title |
Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools |
title_short |
Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools |
title_full |
Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools |
title_fullStr |
Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools |
title_full_unstemmed |
Compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools |
title_sort |
compensation for spindle’s axial thermal growth based on temperature variation on vertical machine tools |
publisher |
SAGE Publishing |
series |
Advances in Mechanical Engineering |
issn |
1687-8140 |
publishDate |
2016-08-01 |
description |
A new spindle’s axial thermal growth model based on temperature variation is proposed considering the limitations of spindle’s axial thermal growth model based on rotating speed. The model based on temperature variation is thereafter derived, and its mechanism is analyzed. It is found that model based on temperature variation is more robust. In the proposed model, a filtering method for calculating error and the identification process for parameters are also presented. The environmental temperature variation error and the repeatability of thermal growth at a constant rotating speed were investigated using a drilling center. Thereafter, the thermal growths at different rotating speeds were investigated using the same drilling center. Furthermore, the thermal growth with the disturbance of cooler was investigated using a milling center. The comparison of model based on rotating speed and model based on temperature variation is simulated, and the results indicate that the robustness of model based on temperature variation for rotating speeds and disturbance of cooler is stronger than model based on rotating speed. Finally, the experimental verification is carried out. |
url |
https://doi.org/10.1177/1687814016657733 |
work_keys_str_mv |
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