저주파 대역 진동 저감을 위한 다중 국부 공진 메타물질의 최적 설계
Optimal Design of Multiple Locally Resonant Metamaterials for Vibration Reduction in Low-frequency Bands

초록

The multi-local resonance metamaterial is based on the local resonance mechanism of resonators, effectively blocking wave propagation within multiple resonant frequency ranges, a phenomenon known as band gaps. In practical applications for vibration reduction, the goal is to achieve wide-band vibration attenuation at low frequencies. Therefore, this study aims to improve the vibration reduction performance of multi-local resonance metamaterials by lowering the band gap frequency and expanding the band gap width. To achieve this, an objective function was formulated in the optimization problem, considering both the frequency and width of the band gap, with the geometric shapes of the multiple local resonators selected as design variables. The Sequential Quadratic Programming (SQP) technique was employed for optimization. The results confirmed that the band gap was generated at lower frequencies and that the band gap width was expanded.

키워드

MetamaterialMulti-local ResonatorBand GapVibration ReductionDesign Optimization메타물질다중 국부 공진기밴드 갭진동 저감설계 최적화
제목
저주파 대역 진동 저감을 위한 다중 국부 공진 메타물질의 최적 설계
제목 (타언어)
Optimal Design of Multiple Locally Resonant Metamaterials for Vibration Reduction in Low-frequency Bands
저자
김광진국정환
발행일
2024-12
저널명
한국기계기술학회지
26
6
페이지
1208 ~ 1213