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  • Source: Proceedings. Conference titles: AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, TÚNEIS DE VENTO, ENGENHARIA MECÂNICA

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      DE MARQUI JÚNIOR, Carlos e BELO, Eduardo Morgado e MARQUES, Flavio Donizeti. Wind-tunnel model and a controller for flutter suppression. 2004, Anais.. Reston, VA: AIAA, 2004. Disponível em: https://doi.org/10.2514/6.2004-1854. Acesso em: 30 abr. 2024.
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      De Marqui Júnior, C., Belo, E. M., & Marques, F. D. (2004). Wind-tunnel model and a controller for flutter suppression. In Proceedings. Reston, VA: AIAA. doi:10.2514/6.2004-1854
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      De Marqui Júnior C, Belo EM, Marques FD. Wind-tunnel model and a controller for flutter suppression [Internet]. Proceedings. 2004 ;[citado 2024 abr. 30 ] Available from: https://doi.org/10.2514/6.2004-1854
    • Vancouver

      De Marqui Júnior C, Belo EM, Marques FD. Wind-tunnel model and a controller for flutter suppression [Internet]. Proceedings. 2004 ;[citado 2024 abr. 30 ] Available from: https://doi.org/10.2514/6.2004-1854
  • Source: Proceedings. Conference titles: International Conference on Metamaterials, Photonic Crystals and Plasmonics - META. Unidade: EESC

    Subjects: ONDAS ELETROMAGNÉTICAS, FOTÔNICA

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      ROSA, M. I. N. et al. Wave propagation in elastic quasicrystals. 2022, Anais.. Spain: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2022. Disponível em: https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf. Acesso em: 30 abr. 2024.
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      Rosa, M. I. N., Beli, D., De Marqui Júnior, C., & Ruzzene, M. (2022). Wave propagation in elastic quasicrystals. In Proceedings. Spain: Escola de Engenharia de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf
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      Rosa MIN, Beli D, De Marqui Júnior C, Ruzzene M. Wave propagation in elastic quasicrystals [Internet]. Proceedings. 2022 ;[citado 2024 abr. 30 ] Available from: https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf
    • Vancouver

      Rosa MIN, Beli D, De Marqui Júnior C, Ruzzene M. Wave propagation in elastic quasicrystals [Internet]. Proceedings. 2022 ;[citado 2024 abr. 30 ] Available from: https://repositorio.usp.br/directbitstream/2e12a8e5-81cf-491a-b63b-f172b300c2ca/scopus.pdf
  • Source: Physical Review Research. Unidade: EESC

    Subjects: ESTRUTURA DE AERONAVES, TRANSFORMADA DE FOURIER, ENGENHARIA AERONÁUTICA

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      BELI, Danilo et al. Wave beaming and diffraction in quasicrystalline elastic metamaterial plates. Physical Review Research, v. 4, n. 4, p. 1-13, 2022Tradução . . Disponível em: https://doi.org/10.1103/PhysRevResearch.4.043030. Acesso em: 30 abr. 2024.
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      Beli, D., Rosa, M. I. N., De Marqui Júnior, C., & Ruzzene, M. (2022). Wave beaming and diffraction in quasicrystalline elastic metamaterial plates. Physical Review Research, 4( 4), 1-13. doi:10.1103/PhysRevResearch.4.043030
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      Beli D, Rosa MIN, De Marqui Júnior C, Ruzzene M. Wave beaming and diffraction in quasicrystalline elastic metamaterial plates [Internet]. Physical Review Research. 2022 ; 4( 4): 1-13.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1103/PhysRevResearch.4.043030
    • Vancouver

      Beli D, Rosa MIN, De Marqui Júnior C, Ruzzene M. Wave beaming and diffraction in quasicrystalline elastic metamaterial plates [Internet]. Physical Review Research. 2022 ; 4( 4): 1-13.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1103/PhysRevResearch.4.043030
  • Source: Composite Structures. Unidade: EESC

    Subjects: PIEZOELETRICIDADE, MATERIAIS, ACÚSTICA, ENGENHARIA MECÂNICA

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      SCHIMIDT, Camila Sanches e OLIVEIRA, Leopoldo Pisanelli Rodrigues de e DE MARQUI JÚNIOR, Carlos. Vibro-acoustic performance of graded piezoelectric metamaterial plates. Composite Structures, v. 327, p. 1-10, 2024Tradução . . Disponível em: http://dx.doi.org/10.1016/j.compstruct.2023.117656. Acesso em: 30 abr. 2024.
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      Schimidt, C. S., Oliveira, L. P. R. de, & De Marqui Júnior, C. (2024). Vibro-acoustic performance of graded piezoelectric metamaterial plates. Composite Structures, 327, 1-10. doi:10.1016/j.compstruct.2023.117656
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      Schimidt CS, Oliveira LPR de, De Marqui Júnior C. Vibro-acoustic performance of graded piezoelectric metamaterial plates [Internet]. Composite Structures. 2024 ; 327 1-10.[citado 2024 abr. 30 ] Available from: http://dx.doi.org/10.1016/j.compstruct.2023.117656
    • Vancouver

      Schimidt CS, Oliveira LPR de, De Marqui Júnior C. Vibro-acoustic performance of graded piezoelectric metamaterial plates [Internet]. Composite Structures. 2024 ; 327 1-10.[citado 2024 abr. 30 ] Available from: http://dx.doi.org/10.1016/j.compstruct.2023.117656
  • Source: Journal of Intelligent Material Systems and Structures. Unidade: EESC

    Subjects: VIBRAÇÕES, PIEZOELETRICIDADE, ENERGIA, ENGENHARIA AERONÁUTICA

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      SILVA, Tarcísio Marinelli Pereira et al. Vibration attenuation in a nonlinear flexible structure via nonlinear switching circuits and energy harvesting implications. Journal of Intelligent Material Systems and Structures, v. 30, n. 7, p. 965-976, 2019Tradução . . Disponível em: https://doi.org/10.1177/1045389X19828835. Acesso em: 30 abr. 2024.
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      Silva, T. M. P., Tan, D., De Marqui Júnior, C., & Erturk, A. (2019). Vibration attenuation in a nonlinear flexible structure via nonlinear switching circuits and energy harvesting implications. Journal of Intelligent Material Systems and Structures, 30( 7), 965-976. doi:10.1177/1045389X19828835
    • NLM

      Silva TMP, Tan D, De Marqui Júnior C, Erturk A. Vibration attenuation in a nonlinear flexible structure via nonlinear switching circuits and energy harvesting implications [Internet]. Journal of Intelligent Material Systems and Structures. 2019 ; 30( 7): 965-976.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X19828835
    • Vancouver

      Silva TMP, Tan D, De Marqui Júnior C, Erturk A. Vibration attenuation in a nonlinear flexible structure via nonlinear switching circuits and energy harvesting implications [Internet]. Journal of Intelligent Material Systems and Structures. 2019 ; 30( 7): 965-976.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X19828835
  • Source: Applied Physics Letters. Unidade: EESC

    Subjects: FEIXES, VIBRAÇÕES, ENGENHARIA AERONÁUTICA

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      SOUSA, Vagner Candido de et al. Tunable metamaterial beam with shape memory alloy resonators: theory and experiment. Applied Physics Letters, v. 113, p. 1-5, 2018Tradução . . Disponível em: https://doi.org/10.1063/1.5050213. Acesso em: 30 abr. 2024.
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      Sousa, V. C. de, Tan, D., De Marqui Júnior, C., & Erturk, A. (2018). Tunable metamaterial beam with shape memory alloy resonators: theory and experiment. Applied Physics Letters, 113, 1-5. doi:10.1063/1.5050213
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      Sousa VC de, Tan D, De Marqui Júnior C, Erturk A. Tunable metamaterial beam with shape memory alloy resonators: theory and experiment [Internet]. Applied Physics Letters. 2018 ; 113 1-5.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1063/1.5050213
    • Vancouver

      Sousa VC de, Tan D, De Marqui Júnior C, Erturk A. Tunable metamaterial beam with shape memory alloy resonators: theory and experiment [Internet]. Applied Physics Letters. 2018 ; 113 1-5.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1063/1.5050213
  • Source: Anais. Conference titles: Simpósio do Programa de Pós-Graduação em Engenharia Mecânica - SIPGEM. Unidade: EESC

    Subjects: PIEZOELETRICIDADE, TOPOLOGIA, ENGENHARIA MECÂNICA

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      THOMES, Renan Lima e MOSQUERA SÁNCHEZ, Jaime Alberto e DE MARQUI JÚNIOR, Carlos. Topology optimization of the electrodes of locally resonant electromechanical metastructures. 2019, Anais.. São Carlos, SP: EESC-USP, 2019. Disponível em: http://soac.eesc.usp.br/index.php/SiPGEM/ivsipgem/paper/view/1890/1040. Acesso em: 30 abr. 2024.
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      Thomes, R. L., Mosquera Sánchez, J. A., & De Marqui Júnior, C. (2019). Topology optimization of the electrodes of locally resonant electromechanical metastructures. In Anais. São Carlos, SP: EESC-USP. Recuperado de http://soac.eesc.usp.br/index.php/SiPGEM/ivsipgem/paper/view/1890/1040
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      Thomes RL, Mosquera Sánchez JA, De Marqui Júnior C. Topology optimization of the electrodes of locally resonant electromechanical metastructures [Internet]. Anais. 2019 ;[citado 2024 abr. 30 ] Available from: http://soac.eesc.usp.br/index.php/SiPGEM/ivsipgem/paper/view/1890/1040
    • Vancouver

      Thomes RL, Mosquera Sánchez JA, De Marqui Júnior C. Topology optimization of the electrodes of locally resonant electromechanical metastructures [Internet]. Anais. 2019 ;[citado 2024 abr. 30 ] Available from: http://soac.eesc.usp.br/index.php/SiPGEM/ivsipgem/paper/view/1890/1040
  • Source: AIAA Journal. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, VIBRAÇÕES DE AERONAVES, ENGENHARIA AERONÁUTICA

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      DIAS, José Augusto de Carvalho e DE MARQUI JÚNIOR, Carlos e ERTURK, Alper. Three-degree-of-freedom hybrid piezoelectric-inductive aeroelastic energy harvester exploiting a control surface. AIAA Journal, v. 53, n. 2, p. 394-404, 2015Tradução . . Disponível em: https://doi.org/10.2514/1.J053108. Acesso em: 30 abr. 2024.
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      Dias, J. A. de C., De Marqui Júnior, C., & Erturk, A. (2015). Three-degree-of-freedom hybrid piezoelectric-inductive aeroelastic energy harvester exploiting a control surface. AIAA Journal, 53( 2), 394-404. doi:10.2514/1.J053108
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      Dias JA de C, De Marqui Júnior C, Erturk A. Three-degree-of-freedom hybrid piezoelectric-inductive aeroelastic energy harvester exploiting a control surface [Internet]. AIAA Journal. 2015 ; 53( 2): 394-404.[citado 2024 abr. 30 ] Available from: https://doi.org/10.2514/1.J053108
    • Vancouver

      Dias JA de C, De Marqui Júnior C, Erturk A. Three-degree-of-freedom hybrid piezoelectric-inductive aeroelastic energy harvester exploiting a control surface [Internet]. AIAA Journal. 2015 ; 53( 2): 394-404.[citado 2024 abr. 30 ] Available from: https://doi.org/10.2514/1.J053108
  • Source: Journal of Vibration and Acoustics. Unidade: EESC

    Subjects: SISTEMAS MECÂNICOS, VIBRAÇÕES, ENGENHARIA AERONÁUTICA

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      VIEIRA, Wander Gustavo Rocha e NITZSCHE, Fred e DE MARQUI JÚNIOR, Carlos. The use of damping based semi-active control algorithms in the mechanical smart-spring system. Journal of Vibration and Acoustics, v. 140, p. 1-11, 2018Tradução . . Disponível em: https://doi.org/10.1115/1.4038034. Acesso em: 30 abr. 2024.
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      Vieira, W. G. R., Nitzsche, F., & De Marqui Júnior, C. (2018). The use of damping based semi-active control algorithms in the mechanical smart-spring system. Journal of Vibration and Acoustics, 140, 1-11. doi:10.1115/1.4038034
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      Vieira WGR, Nitzsche F, De Marqui Júnior C. The use of damping based semi-active control algorithms in the mechanical smart-spring system [Internet]. Journal of Vibration and Acoustics. 2018 ; 140 1-11.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1115/1.4038034
    • Vancouver

      Vieira WGR, Nitzsche F, De Marqui Júnior C. The use of damping based semi-active control algorithms in the mechanical smart-spring system [Internet]. Journal of Vibration and Acoustics. 2018 ; 140 1-11.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1115/1.4038034
  • Conference titles: AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, DINÂMICA DAS ESTRUTURAS, TEMPO-REAL

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      REBOLHO, Daniela Cristina e BELO, Eduardo Morgado e DE MARQUI JÚNIOR, Carlos. The EERA method for real time modal parameter identification. 2008, Anais.. Reston: AIAA, 2008. . Acesso em: 30 abr. 2024.
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      Rebolho, D. C., Belo, E. M., & De Marqui Júnior, C. (2008). The EERA method for real time modal parameter identification. In . Reston: AIAA.
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      Rebolho DC, Belo EM, De Marqui Júnior C. The EERA method for real time modal parameter identification. 2008 ;[citado 2024 abr. 30 ]
    • Vancouver

      Rebolho DC, Belo EM, De Marqui Júnior C. The EERA method for real time modal parameter identification. 2008 ;[citado 2024 abr. 30 ]
  • Source: Anais. Conference titles: Simpósio do Programa de Pós-Graduação em Engenharia Mecânica - SIPGEM. Unidade: EESC

    Subjects: VIBRAÇÕES, ENGENHARIA MECÂNICA

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      SILVA, Tarcísio Marinelli Pereira e DE MARQUI JÚNIOR, Carlos. Suppression of nonlinear bifurcations in flexible structures using nonlinear switching shunt damping circuits. 2017, Anais.. São Carlos, SP: EESC-USP, 2017. Disponível em: http://www.eventos.eesc.usp.br/index.php/SiPGEM/iisipgem/paper/view/437/373. Acesso em: 30 abr. 2024.
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      Silva, T. M. P., & De Marqui Júnior, C. (2017). Suppression of nonlinear bifurcations in flexible structures using nonlinear switching shunt damping circuits. In Anais. São Carlos, SP: EESC-USP. Recuperado de http://www.eventos.eesc.usp.br/index.php/SiPGEM/iisipgem/paper/view/437/373
    • NLM

      Silva TMP, De Marqui Júnior C. Suppression of nonlinear bifurcations in flexible structures using nonlinear switching shunt damping circuits [Internet]. Anais. 2017 ;[citado 2024 abr. 30 ] Available from: http://www.eventos.eesc.usp.br/index.php/SiPGEM/iisipgem/paper/view/437/373
    • Vancouver

      Silva TMP, De Marqui Júnior C. Suppression of nonlinear bifurcations in flexible structures using nonlinear switching shunt damping circuits [Internet]. Anais. 2017 ;[citado 2024 abr. 30 ] Available from: http://www.eventos.eesc.usp.br/index.php/SiPGEM/iisipgem/paper/view/437/373
  • Source: Mechanical Systems and Signal Processing. Unidade: EESC

    Subjects: PIEZOELETRICIDADE, FEIXES, ENGENHARIA AERONÁUTICA

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      THOMES, Renan Lima e BELI, Danilo e DE MARQUI JÚNIOR, Carlos. Space–time wave localization in electromechanical metamaterial beams with programmable defects. Mechanical Systems and Signal Processing, v. 167, p. 1-15, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.ymssp.2021.108550. Acesso em: 30 abr. 2024.
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      Thomes, R. L., Beli, D., & De Marqui Júnior, C. (2022). Space–time wave localization in electromechanical metamaterial beams with programmable defects. Mechanical Systems and Signal Processing, 167, 1-15. doi:10.1016/j.ymssp.2021.108550
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      Thomes RL, Beli D, De Marqui Júnior C. Space–time wave localization in electromechanical metamaterial beams with programmable defects [Internet]. Mechanical Systems and Signal Processing. 2022 ; 167 1-15.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1016/j.ymssp.2021.108550
    • Vancouver

      Thomes RL, Beli D, De Marqui Júnior C. Space–time wave localization in electromechanical metamaterial beams with programmable defects [Internet]. Mechanical Systems and Signal Processing. 2022 ; 167 1-15.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1016/j.ymssp.2021.108550
  • Source: Anais. Conference titles: International Congress of Mechanical Engineering - COBEM. Unidade: EESC

    Subjects: VIBRAÇÕES DE AERONAVES, PIEZOELETRICIDADE, ENGENHARIA AERONÁUTICA

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      D'ASSUNÇÃO, Douglas e DE MARQUI JÚNIOR, Carlos. Semi-passive control of linear aeroelastic vibrations using shunted piezoelectric materials. 2013, Anais.. Rio de Janeiro, RJ: ABCM, 2013. Disponível em: https://repositorio.usp.br/directbitstream/0b71fcb7-fe39-48f9-9289-eeca80b701d0/trabalho%2031%20-%20SEMI-PASSIVE%20CONTROL%20OF%20LINEAR%20AEROELASTIC%20VIBRATIONS%20USING%20SHUNTED%20PIEZOELECTRIC%20MATERIALS%20%28COBEM%202013%29.pdf. Acesso em: 30 abr. 2024.
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      D'Assunção, D., & De Marqui Júnior, C. (2013). Semi-passive control of linear aeroelastic vibrations using shunted piezoelectric materials. In Anais. Rio de Janeiro, RJ: ABCM. Recuperado de https://repositorio.usp.br/directbitstream/0b71fcb7-fe39-48f9-9289-eeca80b701d0/trabalho%2031%20-%20SEMI-PASSIVE%20CONTROL%20OF%20LINEAR%20AEROELASTIC%20VIBRATIONS%20USING%20SHUNTED%20PIEZOELECTRIC%20MATERIALS%20%28COBEM%202013%29.pdf
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      D'Assunção D, De Marqui Júnior C. Semi-passive control of linear aeroelastic vibrations using shunted piezoelectric materials [Internet]. Anais. 2013 ;[citado 2024 abr. 30 ] Available from: https://repositorio.usp.br/directbitstream/0b71fcb7-fe39-48f9-9289-eeca80b701d0/trabalho%2031%20-%20SEMI-PASSIVE%20CONTROL%20OF%20LINEAR%20AEROELASTIC%20VIBRATIONS%20USING%20SHUNTED%20PIEZOELECTRIC%20MATERIALS%20%28COBEM%202013%29.pdf
    • Vancouver

      D'Assunção D, De Marqui Júnior C. Semi-passive control of linear aeroelastic vibrations using shunted piezoelectric materials [Internet]. Anais. 2013 ;[citado 2024 abr. 30 ] Available from: https://repositorio.usp.br/directbitstream/0b71fcb7-fe39-48f9-9289-eeca80b701d0/trabalho%2031%20-%20SEMI-PASSIVE%20CONTROL%20OF%20LINEAR%20AEROELASTIC%20VIBRATIONS%20USING%20SHUNTED%20PIEZOELECTRIC%20MATERIALS%20%28COBEM%202013%29.pdf
  • Source: Journal of Intelligent Material Systems and Structures. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, VIBRAÇÕES DE AERONAVES, PIEZOELETRICIDADE, ENGENHARIA AERONÁUTICA

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      SILVA, Tarcísio Marinelli Pereira e DE MARQUI JÚNIOR, Carlos. Self-powered active control of elastic and aeroelastic oscillations using piezoelectric material. Journal of Intelligent Material Systems and Structures, v. 28, n. Ja 2017, p. 2023-2035, 2017Tradução . . Disponível em: https://doi.org/10.1177/1045389X16685448. Acesso em: 30 abr. 2024.
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      Silva, T. M. P., & De Marqui Júnior, C. (2017). Self-powered active control of elastic and aeroelastic oscillations using piezoelectric material. Journal of Intelligent Material Systems and Structures, 28( Ja 2017), 2023-2035. doi:10.1177/1045389X16685448
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      Silva TMP, De Marqui Júnior C. Self-powered active control of elastic and aeroelastic oscillations using piezoelectric material [Internet]. Journal of Intelligent Material Systems and Structures. 2017 ; 28( Ja 2017): 2023-2035.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X16685448
    • Vancouver

      Silva TMP, De Marqui Júnior C. Self-powered active control of elastic and aeroelastic oscillations using piezoelectric material [Internet]. Journal of Intelligent Material Systems and Structures. 2017 ; 28( Ja 2017): 2023-2035.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X16685448
  • Source: Journal of Intelligent Material Systems and Structures. Unidade: EESC

    Subjects: AEROFÓLIOS, AERODINÂMICA DE AERONAVES, MECÂNICA DOS FLUÍDOS, ENGENHARIA AERONÁUTICA

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      BILGEN, Onur et al. Piezoceramic composite actuators for flow control in low reynolds number airflow. Journal of Intelligent Material Systems and Structures, v. 21, n. 2, p. Se 2010, 2010Tradução . . Disponível em: https://doi.org/10.1177/1045389X10381656. Acesso em: 30 abr. 2024.
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      Bilgen, O., De Marqui Júnior, C., Kochersberger, K. B., & Inman, D. J. (2010). Piezoceramic composite actuators for flow control in low reynolds number airflow. Journal of Intelligent Material Systems and Structures, 21( 2), Se 2010. doi:10.1177/1045389X10381656
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      Bilgen O, De Marqui Júnior C, Kochersberger KB, Inman DJ. Piezoceramic composite actuators for flow control in low reynolds number airflow [Internet]. Journal of Intelligent Material Systems and Structures. 2010 ; 21( 2): Se 2010.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X10381656
    • Vancouver

      Bilgen O, De Marqui Júnior C, Kochersberger KB, Inman DJ. Piezoceramic composite actuators for flow control in low reynolds number airflow [Internet]. Journal of Intelligent Material Systems and Structures. 2010 ; 21( 2): Se 2010.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X10381656
  • Source: Journal of Intelligent Material Systems and Structures. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, PIEZOELETRICIDADE, ENERGIA, AERONAVES NÃO TRIPULADAS, ENGENHARIA AERONÁUTICA

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      DE MARQUI JÚNIOR, Carlos e ERTURK, Alper e INMAN, Daniel J. Piezoaeroelastic modeling and analysis of a generator wing with continuous and segmented electrodes. Journal of Intelligent Material Systems and Structures, v. 21, n. 10, p. 983-993, 2010Tradução . . Disponível em: https://doi.org/10.1177/1045389X10372261. Acesso em: 30 abr. 2024.
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      De Marqui Júnior, C., Erturk, A., & Inman, D. J. (2010). Piezoaeroelastic modeling and analysis of a generator wing with continuous and segmented electrodes. Journal of Intelligent Material Systems and Structures, 21( 10), 983-993. doi:10.1177/1045389X10372261
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      De Marqui Júnior C, Erturk A, Inman DJ. Piezoaeroelastic modeling and analysis of a generator wing with continuous and segmented electrodes [Internet]. Journal of Intelligent Material Systems and Structures. 2010 ; 21( 10): 983-993.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X10372261
    • Vancouver

      De Marqui Júnior C, Erturk A, Inman DJ. Piezoaeroelastic modeling and analysis of a generator wing with continuous and segmented electrodes [Internet]. Journal of Intelligent Material Systems and Structures. 2010 ; 21( 10): 983-993.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1177/1045389X10372261
  • Source: Proceedings. Conference titles: International Conference on Composite Materials. Unidade: EESC

    Subjects: GERAÇÃO DE ENERGIA ELÉTRICA, ENGENHARIA AERONÁUTICA, PIEZOELETRICIDADE, AEROELASTICIDADE DE AERONAVES

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      DE MARQUI JÚNIOR, Carlos e ERTURK, Alper e INMAN, Daniel J. Piezo-aero-elastically coupled modeling and analysis of electrical power generation and shunt damping for a cantilever plate. 2009, Anais.. Edinburgh, United Kingdom: Escola de Engenharia de São Carlos, Universidade de São Paulo, 2009. . Acesso em: 30 abr. 2024.
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      De Marqui Júnior, C., Erturk, A., & Inman, D. J. (2009). Piezo-aero-elastically coupled modeling and analysis of electrical power generation and shunt damping for a cantilever plate. In Proceedings. Edinburgh, United Kingdom: Escola de Engenharia de São Carlos, Universidade de São Paulo.
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      De Marqui Júnior C, Erturk A, Inman DJ. Piezo-aero-elastically coupled modeling and analysis of electrical power generation and shunt damping for a cantilever plate. Proceedings. 2009 ;[citado 2024 abr. 30 ]
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      De Marqui Júnior C, Erturk A, Inman DJ. Piezo-aero-elastically coupled modeling and analysis of electrical power generation and shunt damping for a cantilever plate. Proceedings. 2009 ;[citado 2024 abr. 30 ]
  • Source: Proceedings of SPIE. Conference titles: SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, PIEZOELETRICIDADE, VIBRAÇÕES DE AERONAVES, ENGENHARIA AERONÁUTICA

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      SILVA, Tarcísio Marinelli Pereira e DE MARQUI JÚNIOR, Carlos. Passive and hybrid piezoelectric circuits to reduce induced-atmospheric turbulence vibration of a plate-like wing. Proceedings of SPIE. Bellingham, WA, USA: International Society for Optical Engineering - SPIE. Disponível em: https://doi.org/10.1117/12.2009822. Acesso em: 30 abr. 2024. , 2013
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      Silva, T. M. P., & De Marqui Júnior, C. (2013). Passive and hybrid piezoelectric circuits to reduce induced-atmospheric turbulence vibration of a plate-like wing. Proceedings of SPIE. Bellingham, WA, USA: International Society for Optical Engineering - SPIE. doi:10.1117/12.2009822
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      Silva TMP, De Marqui Júnior C. Passive and hybrid piezoelectric circuits to reduce induced-atmospheric turbulence vibration of a plate-like wing [Internet]. Proceedings of SPIE. 2013 ; 8688 868821-1-868821-17.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1117/12.2009822
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      Silva TMP, De Marqui Júnior C. Passive and hybrid piezoelectric circuits to reduce induced-atmospheric turbulence vibration of a plate-like wing [Internet]. Proceedings of SPIE. 2013 ; 8688 868821-1-868821-17.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1117/12.2009822
  • Source: Applied Physics Letters. Unidade: EESC

    Subjects: AEROELASTICIDADE DE AERONAVES, AEROFÓLIOS, VIBRAÇÕES DE AERONAVES, ENGENHARIA AERONÁUTICA

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      ERTURK, Alper et al. On the energy harvesting potential of piezoaeroelastic systems. Applied Physics Letters, v. 96, p. 184103 ( 1-3), 2010Tradução . . Disponível em: https://doi.org/10.1063/1.3427405. Acesso em: 30 abr. 2024.
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      Erturk, A., Vieira, W. G. R., De Marqui Júnior, C., & Inman, D. J. (2010). On the energy harvesting potential of piezoaeroelastic systems. Applied Physics Letters, 96, 184103 ( 1-3). doi:10.1063/1.3427405
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      Erturk A, Vieira WGR, De Marqui Júnior C, Inman DJ. On the energy harvesting potential of piezoaeroelastic systems [Internet]. Applied Physics Letters. 2010 ; 96 184103 ( 1-3).[citado 2024 abr. 30 ] Available from: https://doi.org/10.1063/1.3427405
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      Erturk A, Vieira WGR, De Marqui Júnior C, Inman DJ. On the energy harvesting potential of piezoaeroelastic systems [Internet]. Applied Physics Letters. 2010 ; 96 184103 ( 1-3).[citado 2024 abr. 30 ] Available from: https://doi.org/10.1063/1.3427405
  • Source: Journal of Fluids and Structures. Unidade: EESC

    Subjects: ENERGIA, PIEZOELETRICIDADE, AEROELASTICIDADE DE AERONAVES, ENGENHARIA AERONÁUTICA

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      DE MARQUI JÚNIOR, Carlos e TAN, David e ERTURK, Alper. On the electrode segmentation for piezoelectric energy harvesting from nonlinear limit cycle oscillations in axial flow. Journal of Fluids and Structures, v. 82, p. 492-504, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.jfluidstructs.2018.07.020. Acesso em: 30 abr. 2024.
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      De Marqui Júnior, C., Tan, D., & Erturk, A. (2018). On the electrode segmentation for piezoelectric energy harvesting from nonlinear limit cycle oscillations in axial flow. Journal of Fluids and Structures, 82, 492-504. doi:10.1016/j.jfluidstructs.2018.07.020
    • NLM

      De Marqui Júnior C, Tan D, Erturk A. On the electrode segmentation for piezoelectric energy harvesting from nonlinear limit cycle oscillations in axial flow [Internet]. Journal of Fluids and Structures. 2018 ; 82 492-504.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1016/j.jfluidstructs.2018.07.020
    • Vancouver

      De Marqui Júnior C, Tan D, Erturk A. On the electrode segmentation for piezoelectric energy harvesting from nonlinear limit cycle oscillations in axial flow [Internet]. Journal of Fluids and Structures. 2018 ; 82 492-504.[citado 2024 abr. 30 ] Available from: https://doi.org/10.1016/j.jfluidstructs.2018.07.020

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