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Thermal Post-buckling Analysis of Laminated Composite Plates Embedded with Shape Memory Alloy Fibers Using Semi-analytical Finite Strip Method

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Abstract

The thermal buckling and post-buckling of geometrically perfect and imperfect hybrid laminated composite plates reinforced with shape memory alloys (SMA) subjected to a uniform thermal loading are investigated by a semi-analytical finite strip method. In this method, because of applying trigonometric functions, the energy integrations can be computed analytically. The first-order shear deformation theory in conjunction with von Karman nonlinear strain–displacement formulation is implemented. The solution procedure is based on minimization of the total potential energy and solving the eigenvalue problem or a set of nonlinear equations by using an iterative Newton–Raphson method for linear buckling and post-buckling analysis, respectively. By using 1-D simplified Brinson’s model, the effect of SMA fibers on thermal buckling and post-buckling of composite plates with various boundary conditions is studied.

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References

  1. H. Asadi, Y. Kiani, M. Shakeri, M.R. Eslami, Exact solution for nonlinear thermal stability of hybrid laminated composite Timoshenko beams reinforced with SMA fibers. Compos. Struct. 108, 811–822 (2014)

    Article  Google Scholar 

  2. L.C. Brinson, One-dimensional constitutive behavior of shape memory alloys: thermo mechanical derivation with non-constant material functions and redefined martensite internal variable. J. Intell. Mater. Syst. Struct. 4, 229–242 (1993)

    Article  Google Scholar 

  3. L.C. Shiau, S.Y. Kuo, S.Y. Chang, Free vibration of buckled SMA reinforced composite laminates. Compos. Struct. 93, 2678–2684 (2011)

    Article  Google Scholar 

  4. Z. KabirM, B.T. Tehrani, Closed-form solution for thermal, mechanical, and thermo-mechanical buckling and post-buckling of SMA composite plates. Compos. Struct. 168, 535–548 (2017)

    Article  Google Scholar 

  5. S.K. Kumar, B.N. Singh, Thermal buckling analysis of SMA fiber-reinforced composite plates using layerwise model. ASCE J. Aerosp. Eng. 22, 342–353 (2009)

    Article  Google Scholar 

  6. S.K. Panda, B.N. Singh, Nonlinear Finite element analysis of thermal post-buckling vibration of laminated composite shell panel embedded with SMA fibre. Aerosp. Sci. Technol. 29, 47–57 (2013)

    Article  Google Scholar 

  7. S.Y. Kuo, L.C. Shiau, K.H. Chen, Buckling analysis of shape memory alloy reinforced composite laminates. Compos. Struct. 90, 188–195 (2009)

    Article  Google Scholar 

  8. S.P. Thompson, J. Loughlan, Adaptive post-buckling response of carbon fibre composite plates employing SMA actuators. Compos. Struct. 38(1-4), 667–678 (1997)

    Article  Google Scholar 

  9. S.P. Thompson, J. Loughlan, Enhancing the post-buckling response of a composite panel structure utilising shape memory alloy actuators—a smart structural concept. Compos. Struct. 51(1), 21–36 (2001)

    Article  Google Scholar 

  10. H.J. Lee, J.J. Lee, A numerical analysis of the buckling and post buckling behavior of laminated composite shells with embedded shape memory alloy wire actuators. Smart Mater. Struct. 9, 780–787 (2000)

    Article  Google Scholar 

  11. H.R. Ovesy, J. Fazilati, Stability analysis of composite laminated plate and cylindrical shell structures using semi-analytical finite strip method. Compos. Struct. 89(3), 467–474 (2009)

    Article  Google Scholar 

  12. D.J. Dawe, S. Wang, S.S.E. Lam, Finite strip analysis of imperfect laminated plates under end shortening and normal pressure. Int. J. Numer. Methods Eng. 38(24), 4193–4205 (1995)

    Article  Google Scholar 

  13. T.H. Lui, S.S.E. Lam, Finite strip analysis of laminated plates with general initial imperfection under end shortening. Eng. Struct. 23(6), 673–686 (2001)

    Article  Google Scholar 

  14. H.R. Ovesy, A. Totounferoush, S.A.M. Ghannadpour, Dynamic buckling analysis of delaminated composite plates using semi-analytical finite strip method. J. Sound Vib. 343, 131–143 (2015)

    Article  Google Scholar 

  15. H.R. Ovesy, S.A.M. Ghannadpour, G. Morada, Geometric non-linear analysis of composite laminated plates with initial imperfection under end shortening using two versions of finite strip method. Compos. Struct. 71(3), 307–314 (2005)

    Article  Google Scholar 

  16. S.A.M. Ghannadpour, H.R. Ovesy, M. Nassirnia, Buckling analysis of functionally graded plates under thermal loadings using the finite strip method. Comput. Struct. 108–109, 93–99 (2012)

    Article  Google Scholar 

  17. D.J. Dawe, S. Ge, Thermal buckling of shear-deformable composite laminated plates by the spline finite strip method. Comput. Methods Appl. Mech. Eng. 185, 347–366 (2000)

    Article  Google Scholar 

  18. M.S. Cheung, G. Akhras, W. Li, Thermal buckling analysis of thick anisotropic composite plates by finite strip method. Struct. Eng. Mech. 7(5), 473–484 (1999)

    Article  Google Scholar 

  19. F. Auricchio, E. Sacco, A one-dimensional model for superelastic shape memory alloys with different elastic properties between austenite and martensite Int. J. Non Linear Mech. 32, 1101–1114 (1997)

    Article  Google Scholar 

  20. C. Liang., The constitutive modeling of shape memory alloys. Ph.D. Thesis Virginia Tech (1990)

  21. C.C. Chamis, Simplified Composite Micromechanics Equation for Hygral, Thermal and Mechanical Properties NASA TM-83320 (1983)

  22. Hui-Shen Shen, Thermal postbuckling behavior of imperfect shear deformable laminated plates with temperature-dependent properties. Comput. Methods Appl. Mech. Eng. 190(40), 5377–5390 (2001)

    Article  Google Scholar 

  23. H. Asadi, M. Eynbeygi, Q. Wang, Nonlinear thermal stability of geometrically imperfect shape memory alloy hybrid laminated composite plates. Smart Mater. Struct. 23(7), 075012 (2014)

    Article  Google Scholar 

  24. X. Wang, A. Khameneian, P. Dice, B. Chen, M. Shahbakhti, J.D. Naber, C. Archer, Q. Qu, C. Glugla, G. Huberts. Model-based combustion duration and ignition timing prediction for combustion phasing control of a spark-ignition engine using in-cylinder pressure sensors. in International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, vol. 59292, p. V009T12A033. American Society of Mechanical Engineers (2019)

  25. X. Wang, A. Khameneian, P. Dice, B. Chen, M. Shahbakhti, J.D. Naber, C. Archer, Q. Qu, C. Glugla, G. Huberts. Control-oriented model-based burn duration and ignition timing prediction with recursive-least-square adaptation for closed-loop combustion phasing control of a spark ignition engine. in Dynamic Systems and Control Conference, vol. 59155, p. V002T12A004. American Society of Mechanical Engineers (2019)

  26. H. Khaleghi, M. Ahmadi, H.F. Sani, Effects of two-way turbulence interaction on the evaporating fuel sprays. J. Appl. Fluid Mech. 12(5), 1407–1415 (2019)

    Article  Google Scholar 

  27. H. Khaleghi, H. Farani, M. Ahmadi. A comparative study of breakup models in diesel fuel spray. Iran. Soc. Mech. Eng. (ISME) (2017)

  28. Hamid Reza Bahrami, Behnam Ahmadi Talesh, Hamid Saffari, Optimal condition for fabricating superhydrophobic copper surfaces with controlled oxidation and modification processes. Mater. Lett. 189, 62–65 (2017)

    Article  Google Scholar 

  29. H.R.T. Bahrami, B. Ahmadi, H. Saffari, Preparing superhydrophobic copper surfaces with rose petal or lotus leaf property using a simple etching approach. Mater. Res. Express 4(5), 055014 (2017)

    Article  Google Scholar 

  30. Behnam Ahmadi, Hamid Reza Talesh Bahrami, Hamid Saffari, Production of superhydrophobic copper surfaces by fabricating micro-nano features using wet etching process. Modares Mech. Eng. 16(5), 389–395 (2016)

    Google Scholar 

  31. Adel Asadi, Application of artificial neural networks in prediction of uniaxial compressive strength of rocks using well logs and drilling data. Procedia Eng. 191, 279–286 (2017)

    Article  Google Scholar 

  32. A. Asadi. Application of adaptive neuro-fuzzy inference system for the assessment of excavation damaged zone using uniaxial compressive strength data. in ISRM Regional Symposium-EUROCK 2015. International Society for Rock Mechanics and Rock Engineering (2015)

  33. M. Rashidi, A. Asadi, B.M. Biltayib. Correlation between uniaxial compressive and shear strength data of limestone rocks by regression analysis and ANFIS model. in Conference of the Arabian Journal of Geosciences, pp. 165–167. Springer, Cham (2018)

  34. A. Asadi, A. Abbasi, A. Bagheri. Application of artificial neural networks in estimation of drilling rate index using data of rock brittleness and mechanical properties. in 3rd Nordic Rock Mechanics Symposium-NRMS 2017. International Society for Rock Mechanics and Rock Engineering (2017)

  35. M. Jamali, A. Rostamijavanani, N.M. Nouri, M. Navidbakhsh, An experimental study of cavity and Worthington jet formations caused by a falling sphere into an oil film on water. Appl. Ocean Res. 102, 102319 (2020)

    Article  Google Scholar 

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Rostamijavanani, A., Ebrahimi, M.R. & Jahedi, S. Thermal Post-buckling Analysis of Laminated Composite Plates Embedded with Shape Memory Alloy Fibers Using Semi-analytical Finite Strip Method. J Fail. Anal. and Preven. 21, 290–301 (2021). https://doi.org/10.1007/s11668-020-01068-5

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  • DOI: https://doi.org/10.1007/s11668-020-01068-5

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