Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive

Focus on the problem exiting in the key rotating parts of the worm gear drive on MAX<sub> </sub>DOAS,the multi- objective optimization model is established,the objective functions is transformed into the evaluation function by using the linear weighted sum method. The objective functions...

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Main Authors: Shen Wei, Chen Jiexiang, Xu Mingming, Xue Hui, Wang Yong, Wu Yi, Chen Sujuan, Luo Xiaole
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.1004.2539.2016.08.019
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author Shen Wei
Chen Jiexiang
Xu Mingming
Xue Hui
Wang Yong
Wu Yi
Chen Sujuan
Luo Xiaole
author_facet Shen Wei
Chen Jiexiang
Xu Mingming
Xue Hui
Wang Yong
Wu Yi
Chen Sujuan
Luo Xiaole
author_sort Shen Wei
collection DOAJ
description Focus on the problem exiting in the key rotating parts of the worm gear drive on MAX<sub> </sub>DOAS,the multi- objective optimization model is established,the objective functions is transformed into the evaluation function by using the linear weighted sum method. The objective functions weight coefficient is determined according to importance of demand in engineering application technology. The multi- objective optimization problem is solved and the optimization structure is analyzed to verify the reasonability of the optimization results in one kind of engineering application environment through scientific computing software. The results show that the optimized structure can achieve the design requirements,and the reasonability of the optimization method is proved.
format Article
id doaj-art-5efffa4bd33d40018d6f506d1d996135
institution Kabale University
issn 1004-2539
language zho
publishDate 2016-01-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-5efffa4bd33d40018d6f506d1d9961352025-01-10T14:16:09ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392016-01-0140868929925452Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear DriveShen WeiChen JiexiangXu MingmingXue HuiWang YongWu YiChen SujuanLuo XiaoleFocus on the problem exiting in the key rotating parts of the worm gear drive on MAX<sub> </sub>DOAS,the multi- objective optimization model is established,the objective functions is transformed into the evaluation function by using the linear weighted sum method. The objective functions weight coefficient is determined according to importance of demand in engineering application technology. The multi- objective optimization problem is solved and the optimization structure is analyzed to verify the reasonability of the optimization results in one kind of engineering application environment through scientific computing software. The results show that the optimized structure can achieve the design requirements,and the reasonability of the optimization method is proved.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2016.08.019MAXDOASWorm and gearMulti-objective optimizationLinear weighted sum method
spellingShingle Shen Wei
Chen Jiexiang
Xu Mingming
Xue Hui
Wang Yong
Wu Yi
Chen Sujuan
Luo Xiaole
Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive
Jixie chuandong
MAXDOAS
Worm and gear
Multi-objective optimization
Linear weighted sum method
title Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive
title_full Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive
title_fullStr Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive
title_full_unstemmed Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive
title_short Multi-objective Optimal Design of the MAX<sub>D</sub>OAS Worm Gear Drive
title_sort multi objective optimal design of the max sub d sub oas worm gear drive
topic MAXDOAS
Worm and gear
Multi-objective optimization
Linear weighted sum method
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2016.08.019
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