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dc.contributor.authorAsai, Takehikoen
dc.contributor.authorKomori, Kentaroen
dc.date.accessioned2025-01-20T02:05:46Z-
dc.date.available2025-01-20T02:05:46Z-
dc.date.issued2024-07-
dc.identifier.urihttp://hdl.handle.net/2433/291258-
dc.description15th International Workshop on Advanced Smart Materials and Smart Structures Technology (ANCRiSST 2024) to be held in July 2024 at Kyoto University, Japan.en
dc.description.abstractVarious kinds of devices employing inerter technologies, which can produce an amplified inertial force proportional to the relative acceleration of both ends, have been proposed for the purposes of structural control and energy harvesting. In these devices, generally, a viscous damping element to absorb vibration energy is employed along with the inerter. In the conventional inerter mechanism, however, the velocity of the inerter decays to zero when the direction of vibration changes, resulting in a reduction in the energy absorption capability of the viscous damping element. To address this issue, inerter-integrated devices that use a mechanical motion rectifier (MMR) to constrain the behavior of the inerter in one direction have been proposed in the field of vibration energy harvesting. In this research, a prototype of an inertial mass electromagnetic transducer with MMR is fabricated. The inertial mass electromagnetic transducer has the same configuration as an inertial mass damper (IMD) and consists of an inerter and a motor instead of a viscous damper. Sinusoidal waves are input to the prototype using an actuator, and the behaviors of the proposed mechanism under various conditions are examined. The obtained results show that the prototype behaves as expected and can absorb vibration energy efficiently.en
dc.language.isoeng-
dc.publisherAsian-Pacific Network of Centers for Research in Smart Structures Technology (ANCRiSST)en
dc.publisherInfrastructure Innovation Engineering, Department of Civil and Earth Resources Engineering, Kyoto Universityen
dc.subjectInerteren
dc.subjectMechanical motion rectifieren
dc.subjectOne-way clutchen
dc.subjectStructural controlen
dc.subjectElectromagnetic transduceren
dc.titleExperimental verification of an inertial mass electromagnetic transducer with mechanical motion rectifieren
dc.typeconference paper-
dc.type.niitypeConference Paper-
dc.identifier.jtitleProceedings of the 15th International Workshop on Advanced Smart Materials and Smart Structures Technology (ANCRiSST 2024)en
dc.identifier.spage1-
dc.identifier.epage7-
dc.textversionauthor-
dc.identifier.artnum11-
dc.sortkey07-
dc.addressInstitute of Systems and Information Engineering, University of Tsukubaen
dc.addressGraduate School of Science and Technology, University of Tsukubaen
dc.relation.urlhttp://infra.kuciv.kyoto-u.ac.jp/ANCRISST2024/-
dc.identifier.selfDOI10.14989/ancrisst_2024_11-
dcterms.accessRightsopen access-
jpcoar.conferenceNameInternational Workshop on Advanced Smart Materials and Smart Structures Technology (ANCRiSST)en
jpcoar.conferenceSequence15-
jpcoar.conferenceSponsorAsian-Pacific Network of Centers for Research in Smart Structures Technology (ANCRiSST); Department of Civil and Earth Resources Engineering, Kyoto Universityen
jpcoar.conferenceDateJuly 10-11, 2024en
jpcoar.conferenceStartDate2024-07-10-
jpcoar.conferenceEndDate2024-07-11-
jpcoar.conferenceVenueCampus Plaza Kyotoen
jpcoar.conferencePlaceKyotoen
jpcoar.conferenceCountryJPN-
出現コレクション:Proceedings of the 15th International Workshop on Advanced Smart Materials and Smart Structures Technology (ANCRiSST 2024)

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