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Optimization of 3D lattice metastructures based on distorted Kelvin cell for low-frequency vibration suppression
KTH, Skolan för teknikvetenskap (SCI), Centra, VinnExcellence Center for ECO2 Vehicle design. KTH, Skolan för teknikvetenskap (SCI), Teknisk mekanik, Farkostteknik och Solidmekanik.ORCID-id: 0000-0001-9980-0144
Department of Engineering Mechanics and Center for X-Mechanics, Zhejiang University, 310027 Hangzhou, China.
KTH, Skolan för teknikvetenskap (SCI), Centra, VinnExcellence Center for ECO2 Vehicle design. KTH, Skolan för teknikvetenskap (SCI), Teknisk mekanik, Farkostteknik och Solidmekanik.ORCID-id: 0000-0002-4905-606X
Department of Engineering Mechanics and Center for X-Mechanics, Zhejiang University, 310027 Hangzhou, China.
Vise andre og tillknytning
2024 (engelsk)Inngår i: Proceedings of ISMA 2024 - International Conference on Noise and Vibration Engineering and USD 2024 - International Conference on Uncertainty in Structural Dynamics, KU Leuven, Departement Werktuigkunde , 2024, s. 2703-2713Konferansepaper, Publicerat paper (Fagfellevurdert)
Abstract [en]

This paper presents a novel 3D lattice metastructure featuring customizable elastic moduli in all three dimensions, achieved through distorted Kelvin cells. These structures are fabricated using thermoplastic polyurethane (TPU) materials through selective laser sintering (SLS) additive manufacturing techniques. Static compression tests reveal significant recoverable deformations and near-zero Poisson effects. Numerical simulations indicate that distorted Kelvin cells (DKCs) exhibit lower transmission in the longitudinal direction compared to standard Kelvin cells within the frequency range of interest. Additionally, DKCs demonstrate increased coupling between longitudinal and transverse directions at resonant frequencies. Parametric studies explore various lattice sizes, face configurations (closed or open), twisting angles, and matrix materials. Optimization studies, focusing on different twisting angles on each pair's faces, aim to minimize the response under 400 Hz, showcasing the potential for tuning these structures for specific applications.

sted, utgiver, år, opplag, sider
KU Leuven, Departement Werktuigkunde , 2024. s. 2703-2713
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Identifikatorer
URN: urn:nbn:se:kth:diva-358127Scopus ID: 2-s2.0-85212237655OAI: oai:DiVA.org:kth-358127DiVA, id: diva2:1924752
Konferanse
31st International Conference on Noise and Vibration Engineering, ISMA 2024 and 10th International Conference on Uncertainty in Structural Dynamics, USD 2024, Leuven, Belgium, Sep 9 2024 - Sep 11 2024
Merknad

Part of ISBN 9789082893175

QC 20250114

Tilgjengelig fra: 2025-01-07 Laget: 2025-01-07 Sist oppdatert: 2025-02-14bibliografisk kontrollert

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Mao, HuinaLarsson, JohanRumpler, RomainTibert, GunnarGöransson, Peter

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