Full-field Modal Analysis of a Tensegrity Column Using a Three-dimensional Scanning Laser Doppler Vibrometer with a Mirror
dc.contributor.author | Yuan, Ke | |
dc.contributor.author | Yuan, Sichen | |
dc.contributor.author | Zhu, Weidong | |
dc.date.accessioned | 2024-12-11T17:02:25Z | |
dc.date.available | 2024-12-11T17:02:25Z | |
dc.date.issued | 2024-11-05 | |
dc.description.abstract | Tensegrity structures become important components of various engineering structures due to their high stiffness, light weight, and deployable capability. Existing studies on their dynamic analyses mainly focus on responses of their nodal points while overlook deformations of their cable and strut members. This study proposes a non-contact approach for experimental modal analysis of a tensegrity structure to identify its three-dimensional (3D) natural frequencies and full-field mode shapes, which include modes with deformations of its cable and strut members. A 3D scanning laser Doppler vibrometer is used with a mirror for extending its field of view to measure full-field vibration of a novel three-strut metal tensegrity column with free boundaries. Tensions and axial stiffnesses of its cable members are determined using natural frequencies of their transverse and longitudinal modes, respectively, to build its theoretical model for dynamic analysis and model validation purposes. Modal assurance criterion (MAC) values between experimental and theoretical mode shapes are used to identify their paired modes. Modal parameters of the first 15 elastic modes of the tensegrity column identified from the experiment, including those of the overall structure and its cable members, can be classified into five mode groups depending on their types. Modes paired between experimental and theoretical results have MAC values larger than 78%. Differences between natural frequencies of paired modes of the tensegrity column are less than 15%. The proposed non-contact 3D vibration measurement approach allows accurate estimation of 3D full-field modal parameters of the tensegrity column. | |
dc.description.sponsorship | The authors are grateful for the financial support from the National Science Foundation through grant numbers 1763024 and 2104237, and a UMBC Strategic Awards for Research Transitions award. They would like to thank capstone design students Alexzander Hunt, Harman Josan, Manu Mathew, and Sean McDonnell for their contributions in designing and assembling the test structure, and Mohammad Riyaz Rehman and Danny Nelson for their contributions in designing the cable clamping device. | |
dc.description.uri | https://asmedigitalcollection.asme.org/vibrationacoustics/article/doi/10.1115/1.4067079/1208521 | |
dc.format.extent | 11 pages | |
dc.genre | journal articles | |
dc.identifier | doi:10.13016/m2uclp-gm98 | |
dc.identifier.citation | Yuan, Ke, Sichen Yuan, and Weidong Zhu. “Full-Field Modal Analysis of a Tensegrity Column Using a Three-Dimensional Scanning Laser Doppler Vibrometer with a Mirror.” Journal of Vibration and Acoustics, November 5, 2024, 1–11. https://doi.org/10.1115/1.4067079. | |
dc.identifier.uri | https://doi.org/10.1115/1.4067079 | |
dc.identifier.uri | http://hdl.handle.net/11603/37066 | |
dc.language.iso | en_US | |
dc.publisher | ASME | |
dc.relation.isAvailableAt | The University of Maryland, Baltimore County (UMBC) | |
dc.relation.ispartof | UMBC Mechanical Engineering Department | |
dc.relation.ispartof | UMBC Faculty Collection | |
dc.relation.ispartof | UMBC Student Collection | |
dc.rights | © 2024 by ASME. Published by ASME. Non-commercial use only | |
dc.title | Full-field Modal Analysis of a Tensegrity Column Using a Three-dimensional Scanning Laser Doppler Vibrometer with a Mirror | |
dc.type | Text | |
dcterms.creator | https://orcid.org/0000-0003-2707-2533 |
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