Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer

Focusing on the difficulty of the combination optimization of modal from transmission system and vibration from structure system,taking the vertical mill reducer gearbox structural system geometrical parameter and transmission system parameter as design variables,to avoid the nature frequency and sp...

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Main Authors: Lin Sheng, Lu Yingrong
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2016-01-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2016.11.035
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author Lin Sheng
Lu Yingrong
author_facet Lin Sheng
Lu Yingrong
author_sort Lin Sheng
collection DOAJ
description Focusing on the difficulty of the combination optimization of modal from transmission system and vibration from structure system,taking the vertical mill reducer gearbox structural system geometrical parameter and transmission system parameter as design variables,to avoid the nature frequency and specific frequency overlapped and minimum the vibration of the reducer gearbox as the objective function,the volume,Von Mises stress and comprehensive displacement of the reducer gearbox as constraint condition,based on the multi- objective optimization theory,the weigh- adding of modal and vibration optimization is carried out. The modal- vibration combined optimization finite element model is built,the model is solved by using zero- order and first- order optimization methods. The optimization results indicate that the gap of nature frequency and specific frequency is reached at 20. 7%,and the vibration is attenuated by 28. 4%,the effective results is found for the combined optimization,which can provide method for multi- objective optimization and significant reference for practical issues of vibration and noise reduction.
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spelling doaj.art-77afedddc9b047a892187216ab6b0ef92023-05-26T09:42:44ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392016-01-014012713029926965Modal and Vibration Combined Optimization Analysis of Vertical Mill ReducerLin ShengLu YingrongFocusing on the difficulty of the combination optimization of modal from transmission system and vibration from structure system,taking the vertical mill reducer gearbox structural system geometrical parameter and transmission system parameter as design variables,to avoid the nature frequency and specific frequency overlapped and minimum the vibration of the reducer gearbox as the objective function,the volume,Von Mises stress and comprehensive displacement of the reducer gearbox as constraint condition,based on the multi- objective optimization theory,the weigh- adding of modal and vibration optimization is carried out. The modal- vibration combined optimization finite element model is built,the model is solved by using zero- order and first- order optimization methods. The optimization results indicate that the gap of nature frequency and specific frequency is reached at 20. 7%,and the vibration is attenuated by 28. 4%,the effective results is found for the combined optimization,which can provide method for multi- objective optimization and significant reference for practical issues of vibration and noise reduction.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2016.11.035Vertical mill reducer;Modal;Vibration;Combined optimization
spellingShingle Lin Sheng
Lu Yingrong
Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer
Jixie chuandong
Vertical mill reducer;Modal;Vibration;Combined optimization
title Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer
title_full Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer
title_fullStr Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer
title_full_unstemmed Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer
title_short Modal and Vibration Combined Optimization Analysis of Vertical Mill Reducer
title_sort modal and vibration combined optimization analysis of vertical mill reducer
topic Vertical mill reducer;Modal;Vibration;Combined optimization
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2016.11.035
work_keys_str_mv AT linsheng modalandvibrationcombinedoptimizationanalysisofverticalmillreducer
AT luyingrong modalandvibrationcombinedoptimizationanalysisofverticalmillreducer