Filtros : "Mechanics of Advanced Materials and Structures" Limpar

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  • Source: Mechanics of Advanced Materials and Structures. Unidade: EESC

    Subjects: TECNOLOGIA MECÂNICA, MATERIAIS COMPÓSITOS DE FIBRAS, MÉTODO DOS ELEMENTOS FINITOS, ENGENHARIA AERONÁUTICA

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    • ABNT

      POSSENTI, Kleison Antonio et al. Detection of changes in dynamic characteristics of composite structures using Kriging metamodeling procedure: Experimental and computational analysis. Mechanics of Advanced Materials and Structures, p. 1-18, 2023Tradução . . Disponível em: https://doi.org/10.1080/15376494.2023.2245816. Acesso em: 23 maio 2024.
    • APA

      Possenti, K. A., Menezes, V. G. S. de, Vandepitte, D., Tita, V., & Medeiros, R. de. (2023). Detection of changes in dynamic characteristics of composite structures using Kriging metamodeling procedure: Experimental and computational analysis. Mechanics of Advanced Materials and Structures, 1-18. doi:10.1080/15376494.2023.2245816
    • NLM

      Possenti KA, Menezes VGS de, Vandepitte D, Tita V, Medeiros R de. Detection of changes in dynamic characteristics of composite structures using Kriging metamodeling procedure: Experimental and computational analysis [Internet]. Mechanics of Advanced Materials and Structures. 2023 ; 1-18.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2023.2245816
    • Vancouver

      Possenti KA, Menezes VGS de, Vandepitte D, Tita V, Medeiros R de. Detection of changes in dynamic characteristics of composite structures using Kriging metamodeling procedure: Experimental and computational analysis [Internet]. Mechanics of Advanced Materials and Structures. 2023 ; 1-18.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2023.2245816
  • Source: Mechanics of Advanced Materials and Structures. Unidade: EESC

    Subjects: SENSOR, MÉTODO DOS ELEMENTOS FINITOS, PIEZOELETRICIDADE, ENGENHARIA MECÂNICA

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    • ABNT

      QUIÑONES VELÁSQUEZ, Jelder e TRINDADE, Marcelo Areias. Finite element modeling and analysis of adhesive layer effects in surface-bonded piezoelectric sensors and actuators including non-uniform thickness. Mechanics of Advanced Materials and Structures, v. 29, n. 25, p. 3658-3673, 2022Tradução . . Disponível em: https://doi.org/10.1080/15376494.2021.1907490. Acesso em: 23 maio 2024.
    • APA

      Quiñones Velásquez, J., & Trindade, M. A. (2022). Finite element modeling and analysis of adhesive layer effects in surface-bonded piezoelectric sensors and actuators including non-uniform thickness. Mechanics of Advanced Materials and Structures, 29( 25), 3658-3673. doi:10.1080/15376494.2021.1907490
    • NLM

      Quiñones Velásquez J, Trindade MA. Finite element modeling and analysis of adhesive layer effects in surface-bonded piezoelectric sensors and actuators including non-uniform thickness [Internet]. Mechanics of Advanced Materials and Structures. 2022 ; 29( 25): 3658-3673.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2021.1907490
    • Vancouver

      Quiñones Velásquez J, Trindade MA. Finite element modeling and analysis of adhesive layer effects in surface-bonded piezoelectric sensors and actuators including non-uniform thickness [Internet]. Mechanics of Advanced Materials and Structures. 2022 ; 29( 25): 3658-3673.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2021.1907490
  • Source: Mechanics of Advanced Materials and Structures. Unidade: ICMC

    Subjects: MECÂNICA DOS FLUÍDOS COMPUTACIONAL, MODELOS MATEMÁTICOS, MÉTODOS NUMÉRICOS, POLÍMEROS (MATERIAIS)

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    • ABNT

      COSTA-HAVEROTH, Thais Clara et al. Aspects on viscoelasticity modeling of HDPE using fractional derivatives: interpolation procedures and efficient numerical scheme. Mechanics of Advanced Materials and Structures, v. 29, n. 25, p. 4343-4358, 2022Tradução . . Disponível em: https://doi.org/10.1080/15376494.2021.1928345. Acesso em: 23 maio 2024.
    • APA

      Costa-Haveroth, T. C., Haveroth, G. A., Kühl, A., Boldrini, J. L., Bittencourt, M. L., Sasse, F. D., et al. (2022). Aspects on viscoelasticity modeling of HDPE using fractional derivatives: interpolation procedures and efficient numerical scheme. Mechanics of Advanced Materials and Structures, 29( 25), 4343-4358. doi:10.1080/15376494.2021.1928345
    • NLM

      Costa-Haveroth TC, Haveroth GA, Kühl A, Boldrini JL, Bittencourt ML, Sasse FD, Polak MA, Muñoz-Rojas PA. Aspects on viscoelasticity modeling of HDPE using fractional derivatives: interpolation procedures and efficient numerical scheme [Internet]. Mechanics of Advanced Materials and Structures. 2022 ; 29( 25): 4343-4358.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2021.1928345
    • Vancouver

      Costa-Haveroth TC, Haveroth GA, Kühl A, Boldrini JL, Bittencourt ML, Sasse FD, Polak MA, Muñoz-Rojas PA. Aspects on viscoelasticity modeling of HDPE using fractional derivatives: interpolation procedures and efficient numerical scheme [Internet]. Mechanics of Advanced Materials and Structures. 2022 ; 29( 25): 4343-4358.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2021.1928345
  • Source: Mechanics of Advanced Materials and Structures. Unidade: EESC

    Subjects: MATERIAIS COMPÓSITOS, FADIGA DOS MATERIAIS, CISALHAMENTO, MATERIAIS

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    • ABNT

      TONATTO, Maikson Luiz Passaia e TARPANI, José Ricardo e AMICO, Sandro Campos. Short-beam shear fatigue behavior of round curved pultruded composite. Mechanics of Advanced Materials and Structures, v. 29, n. 26, p. 5579-5587, 2022Tradução . . Disponível em: https://doi.org/10.1080/15376494.2021.1959968. Acesso em: 23 maio 2024.
    • APA

      Tonatto, M. L. P., Tarpani, J. R., & Amico, S. C. (2022). Short-beam shear fatigue behavior of round curved pultruded composite. Mechanics of Advanced Materials and Structures, 29( 26), 5579-5587. doi:10.1080/15376494.2021.1959968
    • NLM

      Tonatto MLP, Tarpani JR, Amico SC. Short-beam shear fatigue behavior of round curved pultruded composite [Internet]. Mechanics of Advanced Materials and Structures. 2022 ; 29( 26): 5579-5587.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2021.1959968
    • Vancouver

      Tonatto MLP, Tarpani JR, Amico SC. Short-beam shear fatigue behavior of round curved pultruded composite [Internet]. Mechanics of Advanced Materials and Structures. 2022 ; 29( 26): 5579-5587.[citado 2024 maio 23 ] Available from: https://doi.org/10.1080/15376494.2021.1959968
  • Source: Mechanics of Advanced Materials and Structures. Unidade: EESC

    Subjects: PIEZOELETRICIDADE, MÉTODO DOS ELEMENTOS FINITOS, VIBRAÇÕES DE MÁQUINAS

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    • ABNT

      TRINDADE, Marcelo Areias e BENJEDDOU, Ayech. Effective electromechanical coupling coefficients of piezoelectric adaptive structures: critical evaluation and optimization. Mechanics of Advanced Materials and Structures, v. 16, n. 3, p. 210-223, 2009Tradução . . Disponível em: http://pdfserve.informaworld.com/382114_751308322_910231585.pdf. Acesso em: 23 maio 2024.
    • APA

      Trindade, M. A., & Benjeddou, A. (2009). Effective electromechanical coupling coefficients of piezoelectric adaptive structures: critical evaluation and optimization. Mechanics of Advanced Materials and Structures, 16( 3), 210-223. Recuperado de http://pdfserve.informaworld.com/382114_751308322_910231585.pdf
    • NLM

      Trindade MA, Benjeddou A. Effective electromechanical coupling coefficients of piezoelectric adaptive structures: critical evaluation and optimization [Internet]. Mechanics of Advanced Materials and Structures. 2009 ; 16( 3): 210-223.[citado 2024 maio 23 ] Available from: http://pdfserve.informaworld.com/382114_751308322_910231585.pdf
    • Vancouver

      Trindade MA, Benjeddou A. Effective electromechanical coupling coefficients of piezoelectric adaptive structures: critical evaluation and optimization [Internet]. Mechanics of Advanced Materials and Structures. 2009 ; 16( 3): 210-223.[citado 2024 maio 23 ] Available from: http://pdfserve.informaworld.com/382114_751308322_910231585.pdf
  • Source: Mechanics of Advanced Materials and Structures. Unidade: EESC

    Subjects: PIEZOELETRICIDADE, MÉTODO DOS ELEMENTOS FINITOS

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    • ABNT

      TRINDADE, Marcelo Areias e BENJEDDOU, Ayech. On higher-order modelling of smart beams with embedded shear-mode piezoceramic actuators and sensors. Mechanics of Advanced Materials and Structures, v. 13, n. 5, p. Se/Oct. 2006, 2006Tradução . . Disponível em: http://taylorandfrancis.metapress.com/media/np330r1arq1qxp41fray/contributions/k/p/5/8/kp58p16p48683820.pdf. Acesso em: 23 maio 2024.
    • APA

      Trindade, M. A., & Benjeddou, A. (2006). On higher-order modelling of smart beams with embedded shear-mode piezoceramic actuators and sensors. Mechanics of Advanced Materials and Structures, 13( 5), Se/Oct. 2006. Recuperado de http://taylorandfrancis.metapress.com/media/np330r1arq1qxp41fray/contributions/k/p/5/8/kp58p16p48683820.pdf
    • NLM

      Trindade MA, Benjeddou A. On higher-order modelling of smart beams with embedded shear-mode piezoceramic actuators and sensors [Internet]. Mechanics of Advanced Materials and Structures. 2006 ; 13( 5): Se/Oct. 2006.[citado 2024 maio 23 ] Available from: http://taylorandfrancis.metapress.com/media/np330r1arq1qxp41fray/contributions/k/p/5/8/kp58p16p48683820.pdf
    • Vancouver

      Trindade MA, Benjeddou A. On higher-order modelling of smart beams with embedded shear-mode piezoceramic actuators and sensors [Internet]. Mechanics of Advanced Materials and Structures. 2006 ; 13( 5): Se/Oct. 2006.[citado 2024 maio 23 ] Available from: http://taylorandfrancis.metapress.com/media/np330r1arq1qxp41fray/contributions/k/p/5/8/kp58p16p48683820.pdf

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