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Samenvatting
Adaptive joints are structural joints made of materials with enhanced transduction properties that can vary their stiffness via solid-state actuation (e.g. thermal, mechanical). In this work, stiffness tuning is used to switch the joint between a ‘locked’ (e.g. a moment connection) and a ‘released’ (e.g. pin) state. Previous work has looked into the feasibility of using variable stiffness joints during shape and force control in order to reduce actuation work. This paper focuses on control of the structure dynamic response to loading. The natural frequency of the structure is tuned to escape dangerous resonance conditions in two ways: 1) a geometric reconfiguration via large shape changes or 2) via the change of stiffness of the joints. Two case studies are considered: 1) an active frame integrated with four actuators fitted on tubular elements which are connected by a shape memory polymer joint 2) a planar truss structure. Experimental tests on the active frame have shown that by varying the length of the linear actuators, large shape changes can be employed to effectively change the natural frequency of the structure. During shape change, the joint stiffness is lowered to ease geometric reconfiguration. For the planar truss case study, simulations have shown that the ‘release’ or ‘locking’ of multiple joints can be employed to change the eigenfrequencies, the more so the higher the eigenmode.
Originele taal-2 | Engels |
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Titel | Proceedings of IASS Annual Symposia, IASS 2018 Boston Symposium: Transformables |
Uitgeverij | International Association for Shell and Spatial Structures (IASS) |
Pagina's | 1-8 |
Aantal pagina's | 8 |
Status | Gepubliceerd - 2018 |
Evenement | IASS Symposium 2018 Creativity in Structural Design - Massachusetts Institute of Technology (MIT), Boston, Verenigde Staten van Amerika Duur: 16 jul. 2018 → 20 jul. 2018 http://iass2018.org/ |
Congres
Congres | IASS Symposium 2018 Creativity in Structural Design |
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Land/Regio | Verenigde Staten van Amerika |
Stad | Boston |
Periode | 16/07/18 → 20/07/18 |
Internet adres |
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Duik in de onderzoeksthema's van 'A vibration control strategy using variable stiffness joints'. Samen vormen ze een unieke vingerafdruk.Activiteiten
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IASS Symposium 2018 Creativity in Structural Design
Wang, Q. (Deelnemer) & Mueller, C. (Organisator)
16 jul. 2018 → 20 jul. 2018Activiteit: Types deelname aan of organisatie van een evenement › Congres › Wetenschappelijk
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Seismic control performance of a three-story frame prototype equipped with semi-active variable stiffness and damping structural joints
Wang, Q. (Corresponding author), Senatore, G., Jansen, K., Habraken, A. P. H. W. & Teuffel, P., 25 okt. 2021, In: Earthquake Engineering & Structural Dynamics. 50, 13, blz. 3379-3402 24 blz.Onderzoeksoutput: Bijdrage aan tijdschrift › Tijdschriftartikel › Academic › peer review
Open AccessBestand16 Citaten (Scopus)90 Downloads (Pure) -
Design and characterization of variable stiffness structural joints
Wang, Q. (Corresponding author), Senatore, G., Jansen, K., Habraken, A. & Teuffel, P., feb. 2020, In: Materials & Design. 187, 17 blz., 108353.Onderzoeksoutput: Bijdrage aan tijdschrift › Tijdschriftartikel › Academic › peer review
Open AccessBestand19 Citaten (Scopus)275 Downloads (Pure) -
Vibration suppression through variable stiffness and damping structural joints
Wang, Q. (Corresponding author), Senatore, G. (Corresponding author), Jansen, K., Habraken, A. P. H. W. & Teuffel, P., 30 okt. 2020, In: Frontiers in Built Environment. 6, 22 blz., 550864.Onderzoeksoutput: Bijdrage aan tijdschrift › Tijdschriftartikel › Academic › peer review
Open AccessBestand8 Citaten (Scopus)105 Downloads (Pure)