VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR

According to the structure characteristics and motion principle of traditional machine tools,the spiral bevel gear is virtual machined by Catia. By comparing the machining accuracy with the theoretical model,the rationality and accuracy of the modeling are proved. Hypermesh is used to mesh the gears...

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Main Authors: WANG ZhongHou, HUANG CongYang, SHI ZhaoYao, LIU HeTao, QIAN XiaoQi, AIZOH Kubo
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2021-01-01
Series:Jixie qiangdu
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Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2021.04.020
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author WANG ZhongHou
HUANG CongYang
SHI ZhaoYao
LIU HeTao
QIAN XiaoQi
AIZOH Kubo
author_facet WANG ZhongHou
HUANG CongYang
SHI ZhaoYao
LIU HeTao
QIAN XiaoQi
AIZOH Kubo
author_sort WANG ZhongHou
collection DOAJ
description According to the structure characteristics and motion principle of traditional machine tools,the spiral bevel gear is virtual machined by Catia. By comparing the machining accuracy with the theoretical model,the rationality and accuracy of the modeling are proved. Hypermesh is used to mesh the gears,which is imported into ABAQUS for finite element analysis to extract the curve of transmission error and contact wire with the increase of load,the amplitude of transmission error fluctuation decreases,but the amplitude of deviation from zero line increases. It shows that the transmission of spiral bevel gear is more stable and the transmission accuracy decreases with the increase of load,which is consistent with the dynamic characteristics of spiral bevel gear,indicating that the performance of virtual machining gear is good. When the contact performance and transmission error curve of the gear formed by virtual machining are not ideal in the finite element analysis,according to the principle of modification, the machining parameters can be adjusted and gear is reprocessed in Catia. The contact and transmission performance of the reconstructed gear can be improved in the analysis. In Catia simulation machining,the error can be added artificially to provide a model for the finite element analysis of the gear with error,which is convenient for people to study the dynamic characteristics of the gear with error. In the gear design stage,the finite element method is used to study the contact performance and transmission characteristics of the gear,so as to predict and evaluate the quality of the virtual machining gear,analyze the relationship between the gear performance and the adjustment parameters of the machine tool,and play an important role in the reverse adjustment of the processing adjustment parameters of the spiral bevel gear.
format Article
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institution Kabale University
issn 1001-9669
language zho
publishDate 2021-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-30ac8ab8666746acbd4095960dfc2d0a2025-01-15T02:25:42ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692021-01-014390691230611360VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEARWANG ZhongHouHUANG CongYangSHI ZhaoYaoLIU HeTaoQIAN XiaoQiAIZOH KuboAccording to the structure characteristics and motion principle of traditional machine tools,the spiral bevel gear is virtual machined by Catia. By comparing the machining accuracy with the theoretical model,the rationality and accuracy of the modeling are proved. Hypermesh is used to mesh the gears,which is imported into ABAQUS for finite element analysis to extract the curve of transmission error and contact wire with the increase of load,the amplitude of transmission error fluctuation decreases,but the amplitude of deviation from zero line increases. It shows that the transmission of spiral bevel gear is more stable and the transmission accuracy decreases with the increase of load,which is consistent with the dynamic characteristics of spiral bevel gear,indicating that the performance of virtual machining gear is good. When the contact performance and transmission error curve of the gear formed by virtual machining are not ideal in the finite element analysis,according to the principle of modification, the machining parameters can be adjusted and gear is reprocessed in Catia. The contact and transmission performance of the reconstructed gear can be improved in the analysis. In Catia simulation machining,the error can be added artificially to provide a model for the finite element analysis of the gear with error,which is convenient for people to study the dynamic characteristics of the gear with error. In the gear design stage,the finite element method is used to study the contact performance and transmission characteristics of the gear,so as to predict and evaluate the quality of the virtual machining gear,analyze the relationship between the gear performance and the adjustment parameters of the machine tool,and play an important role in the reverse adjustment of the processing adjustment parameters of the spiral bevel gear.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2021.04.020Spiral bevel gearVirtual machiningCAETransmission ErrorGear accuracy
spellingShingle WANG ZhongHou
HUANG CongYang
SHI ZhaoYao
LIU HeTao
QIAN XiaoQi
AIZOH Kubo
VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR
Jixie qiangdu
Spiral bevel gear
Virtual machining
CAE
Transmission Error
Gear accuracy
title VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR
title_full VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR
title_fullStr VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR
title_full_unstemmed VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR
title_short VIRTUAL MACHINING AND FINITE ELEMENT ANALYSIS OF SPIRAL BEVEL GEAR
title_sort virtual machining and finite element analysis of spiral bevel gear
topic Spiral bevel gear
Virtual machining
CAE
Transmission Error
Gear accuracy
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2021.04.020
work_keys_str_mv AT wangzhonghou virtualmachiningandfiniteelementanalysisofspiralbevelgear
AT huangcongyang virtualmachiningandfiniteelementanalysisofspiralbevelgear
AT shizhaoyao virtualmachiningandfiniteelementanalysisofspiralbevelgear
AT liuhetao virtualmachiningandfiniteelementanalysisofspiralbevelgear
AT qianxiaoqi virtualmachiningandfiniteelementanalysisofspiralbevelgear
AT aizohkubo virtualmachiningandfiniteelementanalysisofspiralbevelgear