A virtual acoustic black hole on a cantilever beam
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[1] J. Cheer,et al. Modified Acoustic Black Hole Profile for Improved Fatigue Performance , 2023, INTER-NOISE and NOISE-CON Congress and Conference Proceedings.
[2] A. Erturk,et al. Spatially programmable wave compression and signal enhancement in a piezoelectric metamaterial waveguide , 2022, Physical Review B.
[3] S. Daley,et al. Active control of an acoustic black hole using a feedback strategy , 2022, Journal of Sound and Vibration.
[4] S. Daley,et al. Control of vibration in a plate using active acoustic black holes , 2022, Smart Materials and Structures.
[5] C. Touzé,et al. Energy harvesting efficiency of unimorph piezoelectric acoustic black hole cantilever shunted by resistive and inductive circuits , 2022, International Journal of Solids and Structures.
[6] C. Touzé,et al. Experimental evidence of energy transfer and vibration mitigation in a vibro-impact acoustic black hole , 2021 .
[7] Gaëtan Kerschen,et al. Stepped and swept control-based continuation using adaptive filtering , 2021, Nonlinear Dynamics.
[8] S. Daley,et al. Active feedforward control of flexural waves in an Acoustic Black Hole terminated beam , 2021, Smart Materials and Structures.
[9] G. Kerschen,et al. Electromechanical Coupling and Energy Conversion in a PZT-Coated Acoustic Black Hole Beam , 2020 .
[10] C. Touzé,et al. Combining nonlinear vibration absorbers and the Acoustic Black Hole for passive broadband flexural vibration mitigation , 2020, International Journal of Non-Linear Mechanics.
[11] S. Conlon,et al. The acoustic black hole: A review of theory and applications , 2020, Journal of Sound and Vibration.
[12] Manuel Collet,et al. Programmable metamaterials with digital synthetic impedance circuits for vibration control , 2020, Smart Materials and Structures.
[13] G. Kerschen,et al. A digital nonlinear piezoelectric tuned vibration absorber , 2019, Smart Materials and Structures.
[14] S. Daley,et al. A parametric study of an acoustic black hole on a beam. , 2019, The Journal of the Acoustical Society of America.
[15] Li Cheng,et al. A resonant beam damper tailored with Acoustic Black Hole features for broadband vibration reduction , 2018, Journal of Sound and Vibration.
[16] Massimo Ruzzene,et al. Design and Analysis of Piezoelectric Metamaterial Beams With Synthetic Impedance Shunt Circuits , 2018, IEEE/ASME Transactions on Mechatronics.
[17] Alper Erturk,et al. Analysis of multifunctional piezoelectric metastructures for low-frequency bandgap formation and energy harvesting , 2018 .
[18] Li Cheng,et al. Enhanced Acoustic Black Hole effect in beams with a modified thickness profile and extended platform , 2017 .
[19] W. Jeon,et al. Vibration damping using a spiral acoustic black hole. , 2016, The Journal of the Acoustical Society of America.
[20] Adrien Pelat,et al. Scattering of flexural waves by a pit of quadratic profile inserted in an infinite thin plate , 2016 .
[21] Jinhao Qiu,et al. Characterization of acoustic black hole effect using a one-dimensional fully-coupled and wavelet-decomposed semi-analytical model , 2016 .
[22] Adrien Pelat,et al. Measurement and modelling of the reflection coefficient of an Acoustic Black Hole termination , 2015 .
[23] J. B. Fahnline,et al. Numerical analysis of the vibroacoustic properties of plates with embedded grids of acoustic black holes. , 2015, The Journal of the Acoustical Society of America.
[24] A. Pelat,et al. Modal Overlap Factor of a beam with an acoustic black hole termination , 2014 .
[25] Victor V. Krylov,et al. Acoustic ‘black holes’ for flexural waves as effective vibration dampers , 2004 .
[26] Roger Stanway,et al. Vibration Control of Active Structures — An Introduction , 2004 .
[27] Andrew J. Fleming,et al. Synthetic impedance for implementation of piezoelectric shunt-damping circuits , 2000 .
[28] Nesbitt W. Hagood,et al. Damping of structural vibrations with piezoelectric materials and passive electrical networks , 1991 .
[29] Robert L. Forward,et al. Electronic damping of vibrations in optical structures. , 1979, Applied optics.
[30] M. Bampton,et al. Coupling of substructures for dynamic analyses. , 1968 .
[31] G. Kerschen,et al. Nonlinear features and energy transfer in an Acoustic Black Hole beam through intentional electromechanical coupling , 2022, Mechanical Systems and Signal Processing.
[32] Gaël Matten,et al. Synthetic Impedance for Adaptive Piezoelectric Metacomposite , 2014 .
[33] André Preumont,et al. Collocated versus non-collocated control , 2011 .
[34] D. Rao,et al. A State-Space Approach , 2006 .
[35] Gene F. Franklin,et al. Feedback Control of Dynamic Systems , 1986 .