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Frequency-tunable electromagnetic energy harvester using magneto-rheological elastomer

Authors
Sun, WanJung, JeehyunSeok, Jongwon
Issue Date
Apr-2016
Publisher
SAGE PUBLICATIONS LTD
Keywords
Energy harvester; frequency-tuning; magneto-rheological elastomer; electromagnetic; vibration
Citation
JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, v.27, no.7, pp 959 - 979
Pages
21
Journal Title
JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES
Volume
27
Number
7
Start Page
959
End Page
979
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/19039
DOI
10.1177/1045389X15590274
ISSN
1045-389X
1530-8138
Abstract
This article proposes an idea for the development of a novel frequency-tunable electromagnetic energy harvester, which mainly consists of a frequency-tuning system component and an electromagnetic energy-harvesting component. A magneto-rheological elastomer, a kind of smart material, was utilized in the design of the frequency-tuning part using its unique rheological characteristic that its shear modulus can be altered by changing the strength of an external magnetic field. When external excitation is provided to the system, the tip magnet oscillates relative to the coil to produce electricity. The stiffness of the system's equivalent torsional spring composed of magneto-rheological elastomer blocks can be altered by changing the gap distance between two tuning magnets, which results in a shift in the primary natural frequency of the system and significant improvement of energy-harvesting efficiency. This article presents the detailed process for the design, simulation, experiment, and fabrication of the proposed energy harvester. Experiments and numerical simulations were also conducted under band-limited random excitation to support the validity of the present system.
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공과대학 (기계공학부)
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