Virtual and Physical Prototyping · 2022 · 103 citations · 49 references
Acoustic MetamaterialsMaterials ScienceElectromagnetic MetamaterialsEngineeringSonic CrystalAcoustic MetamaterialDual Crushing StagesMechanical EngineeringApplied PhysicsMetasurfacesMetamaterialsAcoustic MaterialDual-functional MetamaterialsDynamic MetamaterialsFunctional MaterialsMechanics Of MaterialsSpecific Energy Absorption
Acoustic metamaterials with broadband sound-absorbing capacity open up applications in aerospace, automotive, marine, defense, etc. For such applications, sound-absorbing materials that can withstand complex loading conditions are essential. Hence, to address acoustic and mechanical requirements simultaneously, we propose plate-reinforced dual-functional micro-lattice metamaterials (PDMMs) that exhibit elastic isotropy, dual crushing stages with a specific energy absorption up to 25.82 kJ/kg, and ultra-broadband sound absorption from 0.97 kHz to 6.30 kHz. The remarkable elastic isotropy lies in the topology-induced structural stiffness homogenising effect. The transition from single to dual plateau anti-compression stages is controlled by tailoring the structural local strength. On-demand broadband sound absorption is achieved by modulating the parallel coupling and cascade resonance effects, and the physical mechanism is revealed by examining impedance matching and system damping states. Overall, the presented novel metamaterials exhibit exceptional application potentials by overcoming the trade-offs usually found in traditional mechanical and acoustic metamaterials.
49
Damage-tolerant architected materials inspired by crystal microstructure
Minh‐Son Pham, Chen Liu, Iain Todd et al. · Nature · 2019 · 615 citations
Materials Science, Damage Mechanism, Crystal Microstructure +6
Structured fabrics with tunable mechanical properties
Yifan Wang, Liuchi Li, Douglas C. Hofmann et al. · Nature · 2021 · 354 citations
Materials Science, Engineering, Tunable Mechanical Properties +4