Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System

This study attempts to solve the problems such as low efficiency and relatively small range due to the constraints of device and monotony of vibration in ultrasonic assisted rolling of gears. A novel double-roller longitudinal torsional compound gear ultrasonic rolling system including a longitudina...

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Main Authors: Jinhao Gao, Wen Shao, Yuhui He, Jinyuan Tang
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2021-02-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.02.013
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author Jinhao Gao
Wen Shao
Yuhui He
Jinyuan Tang
author_facet Jinhao Gao
Wen Shao
Yuhui He
Jinyuan Tang
author_sort Jinhao Gao
collection DOAJ
description This study attempts to solve the problems such as low efficiency and relatively small range due to the constraints of device and monotony of vibration in ultrasonic assisted rolling of gears. A novel double-roller longitudinal torsional compound gear ultrasonic rolling system including a longitudinal torsional compound horn and its matching tool gear is proposed. Through the theoretically calculation method, the frequency equation of the horn is derived and the relevant design parameters are calculated. The longitudinal torsional compound vibration displacement and trajectory at the tooth surface are calculated by FEM with spiral grooves in the conical section and the assembled gear. The influences of different parameters of spiral groove such as number, depth, width and helical angle of the groove on torsional longitudinal compound vibration is analyzed by univariate method, FEM and an introduced parameter torsional longitudinal vibration ratio. The optimal parameter combination is obtained and the tool the gear is designed by using lightweight design method. The results show that the design of compound horn meets the requirements, and the effective longitudinal torsional compound vibration of the assembled gear is obtained. The longitudinal torsional compound vibration can be generated with spiral grooves in the conical section. The torsional vibration is mainly related to the number, depth, width and helical angle of the grooves. The double-roller gear longitudinal torsional compound ultrasonic rolling system is obtained by assembling with tool gear, it provides a technical support for the performance of the new gear longitudinal-torsional ultrasonic rolling device.
format Article
id doaj-art-94be47b869eb47fe9855f27f9f373cdb
institution Kabale University
issn 1004-2539
language zho
publishDate 2021-02-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-94be47b869eb47fe9855f27f9f373cdb2025-01-10T14:54:04ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392021-02-0145838929799409Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling SystemJinhao GaoWen ShaoYuhui HeJinyuan TangThis study attempts to solve the problems such as low efficiency and relatively small range due to the constraints of device and monotony of vibration in ultrasonic assisted rolling of gears. A novel double-roller longitudinal torsional compound gear ultrasonic rolling system including a longitudinal torsional compound horn and its matching tool gear is proposed. Through the theoretically calculation method, the frequency equation of the horn is derived and the relevant design parameters are calculated. The longitudinal torsional compound vibration displacement and trajectory at the tooth surface are calculated by FEM with spiral grooves in the conical section and the assembled gear. The influences of different parameters of spiral groove such as number, depth, width and helical angle of the groove on torsional longitudinal compound vibration is analyzed by univariate method, FEM and an introduced parameter torsional longitudinal vibration ratio. The optimal parameter combination is obtained and the tool the gear is designed by using lightweight design method. The results show that the design of compound horn meets the requirements, and the effective longitudinal torsional compound vibration of the assembled gear is obtained. The longitudinal torsional compound vibration can be generated with spiral grooves in the conical section. The torsional vibration is mainly related to the number, depth, width and helical angle of the grooves. The double-roller gear longitudinal torsional compound ultrasonic rolling system is obtained by assembling with tool gear, it provides a technical support for the performance of the new gear longitudinal-torsional ultrasonic rolling device.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.02.013Ultrasonic rollingLongitudinal torsional compound hornFinite element analysisGearDouble-roller
spellingShingle Jinhao Gao
Wen Shao
Yuhui He
Jinyuan Tang
Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System
Jixie chuandong
Ultrasonic rolling
Longitudinal torsional compound horn
Finite element analysis
Gear
Double-roller
title Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System
title_full Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System
title_fullStr Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System
title_full_unstemmed Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System
title_short Design and Analysis for the Double-roller Gear Longitudinal Torsional Compound Ultrasonic Rolling System
title_sort design and analysis for the double roller gear longitudinal torsional compound ultrasonic rolling system
topic Ultrasonic rolling
Longitudinal torsional compound horn
Finite element analysis
Gear
Double-roller
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.02.013
work_keys_str_mv AT jinhaogao designandanalysisforthedoublerollergearlongitudinaltorsionalcompoundultrasonicrollingsystem
AT wenshao designandanalysisforthedoublerollergearlongitudinaltorsionalcompoundultrasonicrollingsystem
AT yuhuihe designandanalysisforthedoublerollergearlongitudinaltorsionalcompoundultrasonicrollingsystem
AT jinyuantang designandanalysisforthedoublerollergearlongitudinaltorsionalcompoundultrasonicrollingsystem