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Improved substructure synthesis method using experimental modal analysis technique to solve analysis and design problems based on security issues
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dc.contributor.authorAn, Byung Hun-
dc.contributor.authorLee, Jin Woo-
dc.date.issued2020-11-01-
dc.identifier.urihttps://dspace.ajou.ac.kr/dev/handle/2018.oak/31306-
dc.description.abstractA substructure synthesis method based on frequency response functions is improved to solve a security-issue-based analysis problem and is applied to an optimal design problem for a finished product consisting of two substructures. While geometry information is provided for one substructure, a limited number of frequency response functions are provided for the other substructure instead of its geometry information. The dynamic stiffness matrix of the latter is estimated from the provided frequency response functions using an experimental modal analysis technique. It is combined with the mass and stiffness matrices of the former to predict the vibration natural frequency of a finished product. The improved substructure synthesis method is used to predict the frequency response functions of a T-shaped beam consisting of a doubly clamped beam and a cantilever beam. Additionally, in a vehicle steering module, it is applied to a size optimization problem that is formulated to maximize its natural frequency. Numerical analysis and design results indicate the effectiveness of the improved substructure synthesis method for industrial applications.-
dc.description.sponsorshipThis research was supported by the Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education (No. 2016R1D1A1B03932357 ) and by the Technology Innovation Program (10048305, Launching Plug-in Digital Analysis Framework for Modular System Design) funded by the Ministry of Trade, Industry, & Energy (MI, Korea) .-
dc.language.isoeng-
dc.publisherAcademic Press-
dc.subject.meshDoubly clamped beam-
dc.subject.meshDynamic stiffness matrix-
dc.subject.meshExperimental modal analysis-
dc.subject.meshFinished products-
dc.subject.meshFrequency response functions-
dc.subject.meshGeometry information-
dc.subject.meshStiffness matrices-
dc.subject.meshSubstructure synthesis method-
dc.titleImproved substructure synthesis method using experimental modal analysis technique to solve analysis and design problems based on security issues-
dc.typeArticle-
dc.citation.titleMechanical Systems and Signal Processing-
dc.citation.volume145-
dc.identifier.bibliographicCitationMechanical Systems and Signal Processing, Vol.145-
dc.identifier.doi10.1016/j.ymssp.2020.106934-
dc.identifier.scopusid2-s2.0-85084941486-
dc.identifier.urlhttp://www.elsevier.com/inca/publications/store/6/2/2/9/1/2/index.htt-
dc.subject.keywordFrequency response function-
dc.subject.keywordNatural frequency-
dc.subject.keywordSecurity issue-
dc.subject.keywordSize optimization problem-
dc.subject.keywordSubstructure synthesis method-
dc.description.isoafalse-
dc.subject.subareaControl and Systems Engineering-
dc.subject.subareaSignal Processing-
dc.subject.subareaCivil and Structural Engineering-
dc.subject.subareaAerospace Engineering-
dc.subject.subareaMechanical Engineering-
dc.subject.subareaComputer Science Applications-
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