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Design and Numerical Analysis of Locally-Resonant Meta-Lattice Structure for Vibration Attenuation

Authors :
Ünver, H.O.
Görgülüarslan, R.M.
Acar, F.
Lale, M.
Güngör, U.
Kurt, A.A.
Ünver, H.O.
Görgülüarslan, R.M.
Acar, F.
Lale, M.
Güngör, U.
Kurt, A.A.
Publication Year :
2023

Abstract

ASME 2022 International Mechanical Engineering Congress and Exposition, IMECE 2022 -- 30 October 2022 through 3 November 2022 -- 186577<br />Meta-materials are artificial materials that perform superior properties in addition to natural behavior. Regardless of their chemical properties, metamaterials show high performance due to their geometric orientation. There are mechanical metamaterials that are used in vibration and acoustic fields, the main subject of which is wave transmission. The propagation of mechanical waves, which can cause problems such as structural damage, fatigue, poor performance, and discomfort in the industry, can be prevented or reduced by using meta-materials. Mechanical waves of various frequencies can be reduced or eliminated by locally resonant metamaterials obtained by adding various masses to viscoelastic materials. Metamaterials can be designed by modifying various lattice structures. Higher performance metamaterials are designed in this study by modifying the lattice structures used in the literature for vibration isolation. Finite element analyzes are carried out to show the transmissibility performance of the designed meta-lattice structures. Copyright © 2022 by ASME.<br />We would like to express our special gratitude to Simofis, Boğaziçi Yazılım, and especially Berkay Çevik from Simofis for his assistance with Simcenter 3D analyzes.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1426270415
Document Type :
Electronic Resource