Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear

In order to solve the problem that the drum length is too large and the hardness of the tooth surface is less than the requirement of noise,vibration and acceleration of the gear pair,the DEFORM-HT finite element software is used to simulate the spiral bevel gear. The effects of the four main parame...

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Main Authors: Liu Fuyang, Liu Ganhua, Xie Xianfeng, Zou Yang
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2018-01-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2018.03.011
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author Liu Fuyang
Liu Ganhua
Xie Xianfeng
Zou Yang
author_facet Liu Fuyang
Liu Ganhua
Xie Xianfeng
Zou Yang
author_sort Liu Fuyang
collection DOAJ
description In order to solve the problem that the drum length is too large and the hardness of the tooth surface is less than the requirement of noise,vibration and acceleration of the gear pair,the DEFORM-HT finite element software is used to simulate the spiral bevel gear. The effects of the four main parameters such as the temperature of the cooling medium,the inlet speed of the quenching tank,the temperature of the gear insulation and the carbon potential of the cooling and diffusion stage on the drum length and tooth surface hardness are studied. Secondly,the orthogonal experimental design and analysis method is used to optimize the index of gear drum length and tooth surface hardness. The optimum process parameters are obtained by numerical analysis of variance and variance. Finally,the results show that when the medium temperature is 100 ℃,the inlet speed is1. 5 m/s,the holding temperature is 835 ℃,the carbon potential is 1. 0%,the drum length is the smallest,the hardness of tooth surface satisfies the hardness requirement of the actual production.
format Article
id doaj-art-48c95ca3198b457b8c2c7c5d2beef063
institution Kabale University
issn 1004-2539
language zho
publishDate 2018-01-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-48c95ca3198b457b8c2c7c5d2beef0632025-01-10T14:43:03ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392018-01-0142454829935409Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel GearLiu FuyangLiu GanhuaXie XianfengZou YangIn order to solve the problem that the drum length is too large and the hardness of the tooth surface is less than the requirement of noise,vibration and acceleration of the gear pair,the DEFORM-HT finite element software is used to simulate the spiral bevel gear. The effects of the four main parameters such as the temperature of the cooling medium,the inlet speed of the quenching tank,the temperature of the gear insulation and the carbon potential of the cooling and diffusion stage on the drum length and tooth surface hardness are studied. Secondly,the orthogonal experimental design and analysis method is used to optimize the index of gear drum length and tooth surface hardness. The optimum process parameters are obtained by numerical analysis of variance and variance. Finally,the results show that when the medium temperature is 100 ℃,the inlet speed is1. 5 m/s,the holding temperature is 835 ℃,the carbon potential is 1. 0%,the drum length is the smallest,the hardness of tooth surface satisfies the hardness requirement of the actual production.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2018.03.011Spiral bevel gearDynamic thermal boundaryCarburizing quenchingOrthogonal experimental design
spellingShingle Liu Fuyang
Liu Ganhua
Xie Xianfeng
Zou Yang
Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear
Jixie chuandong
Spiral bevel gear
Dynamic thermal boundary
Carburizing quenching
Orthogonal experimental design
title Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear
title_full Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear
title_fullStr Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear
title_full_unstemmed Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear
title_short Optimization Design of Dynamic Thermal Boundary Carburizing Quenching Process for Spiral Bevel Gear
title_sort optimization design of dynamic thermal boundary carburizing quenching process for spiral bevel gear
topic Spiral bevel gear
Dynamic thermal boundary
Carburizing quenching
Orthogonal experimental design
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2018.03.011
work_keys_str_mv AT liufuyang optimizationdesignofdynamicthermalboundarycarburizingquenchingprocessforspiralbevelgear
AT liuganhua optimizationdesignofdynamicthermalboundarycarburizingquenchingprocessforspiralbevelgear
AT xiexianfeng optimizationdesignofdynamicthermalboundarycarburizingquenchingprocessforspiralbevelgear
AT zouyang optimizationdesignofdynamicthermalboundarycarburizingquenchingprocessforspiralbevelgear