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Optimum shape design of rotating shaft by ESO method

Authors
Kim, Yong-HanTan, AndyYang, Bo-SukKim, Won-CheolChoi, Byeong-KeunAn, Young-Su
Issue Date
Jul-2007
Publisher
KOREAN SOC MECHANICAL ENGINEERS
Keywords
evolutionary structural optimization; rotating shaft; resonance response; critical speed; Q-factor
Citation
JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, v.21, no.7, pp 1039 - 1047
Pages
9
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY
Volume
21
Number
7
Start Page
1039
End Page
1047
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/28339
DOI
10.1007/BF03027653
ISSN
1738-494X
1976-3824
Abstract
Evolutionary structural optimization (ESO) method is based on a simple idea that the optimal structure can be produced by gradually removing the ineffectively used material from the design domain. ESO seems to have some attractive features in engineering aspects: simple and fast. In this paper, ESO is applied to optimize shaft shape for the rotating machinery by introducing variable size of finite elements in optimization procedure. The goal of this optimization is to reduce total shaft weight and resonance magnification factor (Q factor), and to yield the critical speeds as far from the operating speed as possible. The constraints include restrictions on critical speed, unbalance response and bending stresses. Sensitivity analysis of the system parameters is also investigated. The results Show that new ESO method can be efficiently used to optimize the shape of rotor shaft system with frequency and dynamic constraints.
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해양과학대학 (스마트에너지기계공학과)
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