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Free, publicly-accessible full text available February 1, 2023
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Malakooti, Sadeq ; Hatamleh, Mohammad I. ; Zhang, Rui ; Taghvaee, Tahereh ; Miller, Max ; Ren, Yao ; Xiang, Ning ; Qian, Dong ; Sotiriou-Leventis, Chariklia ; Leventis, Nicholas ; et al ( , Soft Matter)We report a mechanical metamaterial-like behavior as a function of the micro/nanostructure of otherwise chemically identical aliphatic polyurea aerogels. Transmissibility varies dramatically with frequency in these aerogels. Broadband vibration mitigation is provided at low frequencies (500–1000 Hz) through self-assembly of locally resonant metastructures wherein polyurea microspheres are embedded in a polyurea web-like network. A micromechanical constitutive model based on a discrete element method is established to explain the vibration mitigation mechanism. Simulations confirm the metamaterial-like behavior with a negative dynamic material stiffness for the micro-metastructured aerogels in a much wider frequency range than the majority of previously reported locally resonantmore »metamaterials.« less
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Foucart, Francois ; Chernoglazov, Alexander ; Boyle, Michael ; Hinderer, Tanja ; Miller, Max ; Moxon, Jordan ; Scheel, Mark A. ; Deppe, Nils ; Duez, Matthew D. ; Hébert, Francois ; et al ( , Physical Review D)