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Published in: Continuum Mechanics and Thermodynamics 2/2023

16-02-2023 | Original Article

Mechanical behavior analysis of FG-CNT-reinforced polymer composite beams via a hyperbolic shear deformation theory

Authors: Mohamed-Ouejdi Belarbi, Sattar Jedari Salami, Aman Garg, Ahmed-Amine Daikh, Mohamed-Sid-Ahmed Houari, Rossana Dimitri, Francesco Tornabene

Published in: Continuum Mechanics and Thermodynamics | Issue 2/2023

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Abstract

This paper presents a hyperbolic shear deformation theory and discusses its application to investigate the bending and buckling behavior of functionally graded carbon nanotubes-reinforced composite (FG-CNTRC) beams. The proposed theory satisfies the parabolic variation of shear stress distribution throughout the thickness and fulfills the zero condition of shear stress on the upper and bottom surfaces of the FG-CNTRC beams. Therefore, there is no need to use any correction factor concerning conventional equivalent single-layer theories. Five different types of CNTs reinforcement distribution are considered for the analysis while assuming a power-law function variation of the material properties in the thickness direction. The governing equations are solved using a finite element method, where several new numerical results are presented to demonstrate the robustness and reliability of the proposed model. The compartive study shows that the proposed element model is: (a) accurate and comparable with the literature; (b) of a faster rate of convergence to the reference solution; (c) excellent in terms of numerical stability; (d) valid for both symmetric and non-symmetric FG-CNTRC beams. Results also show the validity of the proposed formulation for both thin and thick FG-CNTRC beams. In addition, the effect of various material and geometric parameters such as the CNTs volume fraction, distribution patterns of CNTs, boundary conditions, and the length-to-thickness ratio is investigated on the bending and buckling responses of FG-CNTRC beam structures. Several new referential results are also reported for the first time, which will serve as a benchmark for future studies in a similar direction.

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Literature
1.
go back to reference Harris, P.J.: Carbon Nanotubes and Related Structures: New Materials for the Twenty-First Century. American Association of Physics Teachers, Maryland (2004) Harris, P.J.: Carbon Nanotubes and Related Structures: New Materials for the Twenty-First Century. American Association of Physics Teachers, Maryland (2004)
2.
go back to reference Salvetat-Delmotte, J.P., Rubio, A.: Mechanical properties of carbon nanotubes: a fiber digest for beginners. Carbon 40(10), 1729–1734 (2002) Salvetat-Delmotte, J.P., Rubio, A.: Mechanical properties of carbon nanotubes: a fiber digest for beginners. Carbon 40(10), 1729–1734 (2002)
3.
go back to reference Esawi, A.M., Farag, M.M.: Carbon nanotube reinforced composites: potential and current challenges. Mater. Des. 28(9), 2394–2401 (2007) Esawi, A.M., Farag, M.M.: Carbon nanotube reinforced composites: potential and current challenges. Mater. Des. 28(9), 2394–2401 (2007)
4.
go back to reference Gibson, R.F., Ayorinde, E.O., Wen, Y.F.: Vibrations of carbon nanotubes and their composites: a review. Compos. Sci. Technol. 67(1), 1–28 (2007) Gibson, R.F., Ayorinde, E.O., Wen, Y.F.: Vibrations of carbon nanotubes and their composites: a review. Compos. Sci. Technol. 67(1), 1–28 (2007)
5.
go back to reference Duc, N.D., Lee, J., Nguyen-Thoi, T., Thang, P.T.: Static response and free vibration of functionally graded carbon nanotube-reinforced composite rectangular plates resting on Winkler–Pasternak elastic foundations. Aerosp. Sci. Technol. 68, 391–402 (2017) Duc, N.D., Lee, J., Nguyen-Thoi, T., Thang, P.T.: Static response and free vibration of functionally graded carbon nanotube-reinforced composite rectangular plates resting on Winkler–Pasternak elastic foundations. Aerosp. Sci. Technol. 68, 391–402 (2017)
6.
go back to reference Khadimallah, M.A., Hussain, M.: Effect of power law index for vibration of armchair and zigzag single walled carbon nanotubes. Steel Compos. Struct. 37(5), 621–632 (2020) Khadimallah, M.A., Hussain, M.: Effect of power law index for vibration of armchair and zigzag single walled carbon nanotubes. Steel Compos. Struct. 37(5), 621–632 (2020)
8.
go back to reference Shen, H.S.: Nonlinear bending of functionally graded carbon nanotube-reinforced composite plates in thermal environments. Compos. Struct. 91(1), 9–19 (2009)MathSciNet Shen, H.S.: Nonlinear bending of functionally graded carbon nanotube-reinforced composite plates in thermal environments. Compos. Struct. 91(1), 9–19 (2009)MathSciNet
9.
go back to reference Fiedler, B., Gojny, F.H., Wichmann, M.H.G., Nolte, M.C.M., Schulte, K.: Fundamental aspects of nano-reinforced composites. Compos. Sci. Technol. 66(16), 3115–3125 (2006) Fiedler, B., Gojny, F.H., Wichmann, M.H.G., Nolte, M.C.M., Schulte, K.: Fundamental aspects of nano-reinforced composites. Compos. Sci. Technol. 66(16), 3115–3125 (2006)
10.
go back to reference Liew, K., Lei, Z., Zhang, L.: Mechanical analysis of functionally graded carbon nanotube reinforced composites: a review. Compos. Struct. 120, 90–97 (2015) Liew, K., Lei, Z., Zhang, L.: Mechanical analysis of functionally graded carbon nanotube reinforced composites: a review. Compos. Struct. 120, 90–97 (2015)
11.
go back to reference Garg, A., Chalak, H.D., Belarbi, M.O., Zenkour, A.M., Sahoo, R.: Estimation of carbon nanotubes and their applications as reinforcing composite materials-An engineering review. Compos. Struct. 272, 114234 (2021) Garg, A., Chalak, H.D., Belarbi, M.O., Zenkour, A.M., Sahoo, R.: Estimation of carbon nanotubes and their applications as reinforcing composite materials-An engineering review. Compos. Struct. 272, 114234 (2021)
12.
go back to reference Garg, A., Belarbi, M.O., Chalak, H.D., Chakrabarti, A.: A review of the analysis of sandwich FGM structures. Compos. Struct. 258, 113427 (2021) Garg, A., Belarbi, M.O., Chalak, H.D., Chakrabarti, A.: A review of the analysis of sandwich FGM structures. Compos. Struct. 258, 113427 (2021)
13.
go back to reference Thostenson, E.T., Ren, Z., Chou, T.W.: Advances in the science and technology of carbon nanotubes and their composites: a review. Compos. Sci. Technol. 61(13), 1899–1912 (2001) Thostenson, E.T., Ren, Z., Chou, T.W.: Advances in the science and technology of carbon nanotubes and their composites: a review. Compos. Sci. Technol. 61(13), 1899–1912 (2001)
14.
go back to reference Yengejeh, S.I., Kazemi, S.A., Öchsner, A.: Carbon nanotubes as reinforcement in composites: a review of the analytical, numerical and experimental approaches. Comput. Mater. Sci. 136, 85–101 (2017) Yengejeh, S.I., Kazemi, S.A., Öchsner, A.: Carbon nanotubes as reinforcement in composites: a review of the analytical, numerical and experimental approaches. Comput. Mater. Sci. 136, 85–101 (2017)
15.
go back to reference Kumar, A., Sharma, K., Dixit, A.R.: Carbon nanotube-and graphene-reinforced multiphase polymeric composites: review on their properties and applications. J. Mater. Sci. 1–43 (2020) Kumar, A., Sharma, K., Dixit, A.R.: Carbon nanotube-and graphene-reinforced multiphase polymeric composites: review on their properties and applications. J. Mater. Sci. 1–43 (2020)
16.
go back to reference Khaniki, H.B., Ghayesh, M.H.: A review on the mechanics of carbon nanotube strengthened deformable structures. Eng. Struct. 220, 110711 (2020) Khaniki, H.B., Ghayesh, M.H.: A review on the mechanics of carbon nanotube strengthened deformable structures. Eng. Struct. 220, 110711 (2020)
17.
go back to reference Ghannadpour, S., Mohammadi, B., Fazilati, J.: Bending, buckling and vibration problems of nonlocal Euler beams using Ritz method. Compos. Struct. 96, 584–589 (2013) Ghannadpour, S., Mohammadi, B., Fazilati, J.: Bending, buckling and vibration problems of nonlocal Euler beams using Ritz method. Compos. Struct. 96, 584–589 (2013)
18.
go back to reference Nejad, M.Z., Hadi, A., Omidvari, A., Rastgoo, A.: Bending analysis of bi-directional functionally graded Euler-Bernoulli nano-beams using integral form of Eringen’s non-local elasticity theory. Struct. Eng. Mech. 67(4), 417–425 (2018) Nejad, M.Z., Hadi, A., Omidvari, A., Rastgoo, A.: Bending analysis of bi-directional functionally graded Euler-Bernoulli nano-beams using integral form of Eringen’s non-local elasticity theory. Struct. Eng. Mech. 67(4), 417–425 (2018)
19.
go back to reference Medani, M., Benahmed, A., Zidour, M., Heireche, H., Tounsi, A., Bousahla, A.A., Tounsi, A., Mahmoud, S.R.: Static and dynamic behavior of (FG-CNT) reinforced porous sandwich plate using energy principle. Steel Compos. Struct. 32(5), 595–610 (2019) Medani, M., Benahmed, A., Zidour, M., Heireche, H., Tounsi, A., Bousahla, A.A., Tounsi, A., Mahmoud, S.R.: Static and dynamic behavior of (FG-CNT) reinforced porous sandwich plate using energy principle. Steel Compos. Struct. 32(5), 595–610 (2019)
20.
go back to reference Safari, M., Mohammadimehr, M., Ashrafi, H.: Free vibration of electro-magneto-thermo sandwich Timoshenko beam made of porous core and GPLRC. Adv. Nano Res. 10(2), 115–128 (2021) Safari, M., Mohammadimehr, M., Ashrafi, H.: Free vibration of electro-magneto-thermo sandwich Timoshenko beam made of porous core and GPLRC. Adv. Nano Res. 10(2), 115–128 (2021)
21.
go back to reference Yas, M., Samadi, N.: Free vibrations and buckling analysis of carbon nanotube-reinforced composite Timoshenko beams on elastic foundation. Int. J. Press. Vessels Pip. 98, 119–128 (2012) Yas, M., Samadi, N.: Free vibrations and buckling analysis of carbon nanotube-reinforced composite Timoshenko beams on elastic foundation. Int. J. Press. Vessels Pip. 98, 119–128 (2012)
22.
go back to reference Ke, L.L., Yang, J., Kitipornchai, S.: Dynamic stability of functionally graded carbon nanotube-reinforced composite beams. Mech. Adv. Mater. Struct. 20(1), 28–37 (2013) Ke, L.L., Yang, J., Kitipornchai, S.: Dynamic stability of functionally graded carbon nanotube-reinforced composite beams. Mech. Adv. Mater. Struct. 20(1), 28–37 (2013)
23.
go back to reference Nejati, M., Eslampanah, A., Najafizadeh, M.: Buckling and vibration analysis of functionally graded carbon nanotube-reinforced beam under axial load. Int. J. Appl. Mech. 8(01), 1650008 (2016) Nejati, M., Eslampanah, A., Najafizadeh, M.: Buckling and vibration analysis of functionally graded carbon nanotube-reinforced beam under axial load. Int. J. Appl. Mech. 8(01), 1650008 (2016)
24.
go back to reference Yang, J., Ke, L.L., Feng, C.: Dynamic buckling of thermo-electro-mechanically loaded FG-CNTRC beams. Int. J. Struct. Stab. Dyn. 15(08), 1540017 (2015)MathSciNetMATH Yang, J., Ke, L.L., Feng, C.: Dynamic buckling of thermo-electro-mechanically loaded FG-CNTRC beams. Int. J. Struct. Stab. Dyn. 15(08), 1540017 (2015)MathSciNetMATH
25.
go back to reference Mirzaei, M., Kiani, Y.: Snap-through phenomenon in a thermally postbuckled temperature dependent sandwich beam with FG-CNTRC face sheets. Compos. Struct. 134, 1004–1013 (2015) Mirzaei, M., Kiani, Y.: Snap-through phenomenon in a thermally postbuckled temperature dependent sandwich beam with FG-CNTRC face sheets. Compos. Struct. 134, 1004–1013 (2015)
26.
go back to reference Wu, H., Kitipornchai, S., Yang, J.: Free vibration and buckling analysis of sandwich beams with functionally graded carbon nanotube-reinforced composite face sheets. Int. J. Struct. Stab. Dyn. 15(07), 1540011 (2015)MathSciNetMATH Wu, H., Kitipornchai, S., Yang, J.: Free vibration and buckling analysis of sandwich beams with functionally graded carbon nanotube-reinforced composite face sheets. Int. J. Struct. Stab. Dyn. 15(07), 1540011 (2015)MathSciNetMATH
27.
go back to reference Shi, Z., Yao, X., Pang, F., Wang, Q.: An exact solution for the free-vibration analysis of functionally graded carbon-nanotube-reinforced composite beams with arbitrary boundary conditions. Sci. Rep. 7(1), 1–18 (2017)ADS Shi, Z., Yao, X., Pang, F., Wang, Q.: An exact solution for the free-vibration analysis of functionally graded carbon-nanotube-reinforced composite beams with arbitrary boundary conditions. Sci. Rep. 7(1), 1–18 (2017)ADS
28.
go back to reference Ebrahimi, F., Farazamandnia, N.: Thermo-mechanical analysis of carbon nanotube-reinforced composite sandwich beams. Coupled Syst. Mech. 6, 207–227 (2017) Ebrahimi, F., Farazamandnia, N.: Thermo-mechanical analysis of carbon nanotube-reinforced composite sandwich beams. Coupled Syst. Mech. 6, 207–227 (2017)
29.
go back to reference Ebrahimi, F., Farazmandnia, N.: Vibration analysis of functionally graded carbon nanotube-reinforced composite sandwich beams in thermal environment. Adv. Aircraft Spacecr. Sci. 5(1), 107 (2018) Ebrahimi, F., Farazmandnia, N.: Vibration analysis of functionally graded carbon nanotube-reinforced composite sandwich beams in thermal environment. Adv. Aircraft Spacecr. Sci. 5(1), 107 (2018)
30.
go back to reference Kiani, Y., Mirzaei, M.: Nonlinear stability of sandwich beams with carbon nanotube reinforced faces on elastic foundation under thermal loading. Proc. Inst. Mech. Eng. Part C J. Mech. Eng. Sci. 233(5), 1701–1712 (2019) Kiani, Y., Mirzaei, M.: Nonlinear stability of sandwich beams with carbon nanotube reinforced faces on elastic foundation under thermal loading. Proc. Inst. Mech. Eng. Part C J. Mech. Eng. Sci. 233(5), 1701–1712 (2019)
31.
go back to reference Mohseni, A., Shakouri, M.: Vibration and stability analysis of functionally graded CNT-reinforced composite beams with variable thickness on elastic foundation. Proc. Inst. Mech. Eng. Part L J. Mater. Design Appl. 233(12), 2478–2489 (2019) Mohseni, A., Shakouri, M.: Vibration and stability analysis of functionally graded CNT-reinforced composite beams with variable thickness on elastic foundation. Proc. Inst. Mech. Eng. Part L J. Mater. Design Appl. 233(12), 2478–2489 (2019)
32.
go back to reference Talebizadehsardari, P., Eyvazian, A., Asmael, M., Karami, B., Shahsavari, D., Mahani, R.B.: Static bending analysis of functionally graded polymer composite curved beams reinforced with carbon nanotubes. Thin-Walled Struct. 157, 107139 (2020) Talebizadehsardari, P., Eyvazian, A., Asmael, M., Karami, B., Shahsavari, D., Mahani, R.B.: Static bending analysis of functionally graded polymer composite curved beams reinforced with carbon nanotubes. Thin-Walled Struct. 157, 107139 (2020)
33.
go back to reference Tong, G., Liu, Y., Cheng, Q., Dai, J.: Stability analysis of cantilever functionally graded material nanotube under thermo-magnetic coupling effect. Eur. J. Mech. A. Solids 80, 103929 (2020)ADSMathSciNetMATH Tong, G., Liu, Y., Cheng, Q., Dai, J.: Stability analysis of cantilever functionally graded material nanotube under thermo-magnetic coupling effect. Eur. J. Mech. A. Solids 80, 103929 (2020)ADSMathSciNetMATH
34.
go back to reference Zghal, S., Frikha, A., Dammak, F.: Large deflection response-based geometrical nonlinearity of nanocomposite structures reinforced with carbon nanotubes. Appl. Math. Mech. 41(8), 1227–1250 (2020)MathSciNetMATH Zghal, S., Frikha, A., Dammak, F.: Large deflection response-based geometrical nonlinearity of nanocomposite structures reinforced with carbon nanotubes. Appl. Math. Mech. 41(8), 1227–1250 (2020)MathSciNetMATH
35.
go back to reference Truong-Thi, T., Vo-Duy, T., Ho-Huu, V., Nguyen-Thoi, T.: Static and free vibration analyses of functionally graded carbon nanotube reinforced composite plates using CS-DSG3. Int. J. Comput. Meth. 17(03), 1850133 (2020)MathSciNetMATH Truong-Thi, T., Vo-Duy, T., Ho-Huu, V., Nguyen-Thoi, T.: Static and free vibration analyses of functionally graded carbon nanotube reinforced composite plates using CS-DSG3. Int. J. Comput. Meth. 17(03), 1850133 (2020)MathSciNetMATH
36.
go back to reference Xu, Y.: Combined effect of carbon nanotubes distribution and orientation on functionally graded nanocomposite beams using finite element analysis. Mater. Res. Express 8, 015012 (2021) Xu, Y.: Combined effect of carbon nanotubes distribution and orientation on functionally graded nanocomposite beams using finite element analysis. Mater. Res. Express 8, 015012 (2021)
37.
go back to reference Nguyen, T.-K., Nguyen, B.-D.: A new higher-order shear deformation theory for static, buckling and free vibration analysis of functionally graded sandwich beams. J. Sandwich Struct. Mater. 17(6), 613–631 (2015) Nguyen, T.-K., Nguyen, B.-D.: A new higher-order shear deformation theory for static, buckling and free vibration analysis of functionally graded sandwich beams. J. Sandwich Struct. Mater. 17(6), 613–631 (2015)
38.
go back to reference Thai, C.H., Zenkour, A., Wahab, M.A., Nguyen-Xuan, H.: A simple four-unknown shear and normal deformations theory for functionally graded isotropic and sandwich plates based on isogeometric analysis. Compos. Struct. 139, 77–95 (2016) Thai, C.H., Zenkour, A., Wahab, M.A., Nguyen-Xuan, H.: A simple four-unknown shear and normal deformations theory for functionally graded isotropic and sandwich plates based on isogeometric analysis. Compos. Struct. 139, 77–95 (2016)
39.
go back to reference Vo, T.P., Thai, H.-T., Nguyen, T.-K., Inam, F., Lee, J.: A quasi-3D theory for vibration and buckling of functionally graded sandwich beams. Compos. Struct. 119, 1–12 (2015) Vo, T.P., Thai, H.-T., Nguyen, T.-K., Inam, F., Lee, J.: A quasi-3D theory for vibration and buckling of functionally graded sandwich beams. Compos. Struct. 119, 1–12 (2015)
40.
go back to reference Keshtegar, B., Kolahchi, R., Eyvazian, A., Trung, N.T.: Dynamic stability analysis in hybrid nanocomposite polymer beams reinforced by carbon fibers and carbon nanotubes. Polymers 13(1), 106 (2021) Keshtegar, B., Kolahchi, R., Eyvazian, A., Trung, N.T.: Dynamic stability analysis in hybrid nanocomposite polymer beams reinforced by carbon fibers and carbon nanotubes. Polymers 13(1), 106 (2021)
43.
go back to reference Hadji, L., Avcar, M., Civalek, Ö.: An analytical solution for the free vibration of FG nanoplates. J. Braz. Soc. Mech. Sci. Eng. 43(9), 418 (2021) Hadji, L., Avcar, M., Civalek, Ö.: An analytical solution for the free vibration of FG nanoplates. J. Braz. Soc. Mech. Sci. Eng. 43(9), 418 (2021)
44.
go back to reference Hadji, L., Avcar, M.: Nonlocal free vibration analysis of porous FG nanobeams using hyperbolic shear deformation beam theory. Adv. Nano Res. 10(1), 281–293 (2021) Hadji, L., Avcar, M.: Nonlocal free vibration analysis of porous FG nanobeams using hyperbolic shear deformation beam theory. Adv. Nano Res. 10(1), 281–293 (2021)
45.
go back to reference Belarbi, M.O., Houari, M.S.A., Hirane, H., Daikh, A.A., Bordas, S.P.A.: On the finite element analysis of functionally graded sandwich curved beams via a new refined higher order shear deformation theory. Compos. Struct. 279, 114715 (2022) Belarbi, M.O., Houari, M.S.A., Hirane, H., Daikh, A.A., Bordas, S.P.A.: On the finite element analysis of functionally graded sandwich curved beams via a new refined higher order shear deformation theory. Compos. Struct. 279, 114715 (2022)
47.
go back to reference Fan, Y., Wang, H.: The effects of matrix cracks on the nonlinear bending and thermal postbuckling of shear deformable laminated beams containing carbon nanotube reinforced composite layers and piezoelectric fiber reinforced composite layers. Compos. Part B: Eng. 106, 28–41 (2016) Fan, Y., Wang, H.: The effects of matrix cracks on the nonlinear bending and thermal postbuckling of shear deformable laminated beams containing carbon nanotube reinforced composite layers and piezoelectric fiber reinforced composite layers. Compos. Part B: Eng. 106, 28–41 (2016)
48.
go back to reference Fan, Y., Wang, H.: Nonlinear vibration of matrix cracked laminated beams containing carbon nanotube reinforced composite layers in thermal environments. Compos. Struct. 124, 35–43 (2015) Fan, Y., Wang, H.: Nonlinear vibration of matrix cracked laminated beams containing carbon nanotube reinforced composite layers in thermal environments. Compos. Struct. 124, 35–43 (2015)
49.
go back to reference Fan, Y., Wang, H.: Nonlinear bending and postbuckling analysis of matrix cracked hybrid laminated plates containing carbon nanotube reinforced composite layers in thermal environments. Compos. Part B: Eng. 86, 1–16 (2016) Fan, Y., Wang, H.: Nonlinear bending and postbuckling analysis of matrix cracked hybrid laminated plates containing carbon nanotube reinforced composite layers in thermal environments. Compos. Part B: Eng. 86, 1–16 (2016)
50.
go back to reference Shen, H.S., Xiang, Y.: Nonlinear analysis of nanotube-reinforced composite beams resting on elastic foundations in thermal environments. Eng. Struct. 56, 698–708 (2013) Shen, H.S., Xiang, Y.: Nonlinear analysis of nanotube-reinforced composite beams resting on elastic foundations in thermal environments. Eng. Struct. 56, 698–708 (2013)
51.
go back to reference Shen, H.S.: Nonlinear analysis of functionally graded fiber reinforced composite laminated beams in hygrothermal environments, Part I: Theory and solutions. Compos. Struct. 125, 698–705 (2015) Shen, H.S.: Nonlinear analysis of functionally graded fiber reinforced composite laminated beams in hygrothermal environments, Part I: Theory and solutions. Compos. Struct. 125, 698–705 (2015)
52.
go back to reference Shen, H.S., He, X.Q., Yang, D.Q.: Vibration of thermally postbuckled carbon nanotube-reinforced composite beams resting on elastic foundations. Int. J. Non Linear Mech. 91, 69–75 (2017)ADS Shen, H.S., He, X.Q., Yang, D.Q.: Vibration of thermally postbuckled carbon nanotube-reinforced composite beams resting on elastic foundations. Int. J. Non Linear Mech. 91, 69–75 (2017)ADS
53.
go back to reference Yu, Y., Shen, H.S.: A comparison of nonlinear bending and vibration of hybrid metal/CNTRC laminated beams with positive and negative Poisson’s ratios. Int. J. Struct. Stab. Dyn. 20, 2043007 (2020)MathSciNet Yu, Y., Shen, H.S.: A comparison of nonlinear bending and vibration of hybrid metal/CNTRC laminated beams with positive and negative Poisson’s ratios. Int. J. Struct. Stab. Dyn. 20, 2043007 (2020)MathSciNet
54.
go back to reference Wattanasakulpong, N., Ungbhakorn, V.: Analytical solutions for bending, buckling and vibration responses of carbon nanotube-reinforced composite beams resting on elastic foundation. Comput. Mat. Sci. 71, 201–208 (2013) Wattanasakulpong, N., Ungbhakorn, V.: Analytical solutions for bending, buckling and vibration responses of carbon nanotube-reinforced composite beams resting on elastic foundation. Comput. Mat. Sci. 71, 201–208 (2013)
55.
go back to reference Mayandi, K., Jeyaraj, P.: Bending, buckling and free vibration characteristics of FG-CNT-reinforced polymer composite beam under non-uniform thermal load. Proc. Inst. Mech. Eng. Part L J. Mater. Design Appl. 229(1), 13–28 (2015) Mayandi, K., Jeyaraj, P.: Bending, buckling and free vibration characteristics of FG-CNT-reinforced polymer composite beam under non-uniform thermal load. Proc. Inst. Mech. Eng. Part L J. Mater. Design Appl. 229(1), 13–28 (2015)
56.
go back to reference Lin, F., Xiang, Y.: Vibration of carbon nanotube reinforced composite beams based on the first and third order beam theories. Appl. Math. Model. 38(15–16), 3741–3754 (2014)MathSciNetMATH Lin, F., Xiang, Y.: Vibration of carbon nanotube reinforced composite beams based on the first and third order beam theories. Appl. Math. Model. 38(15–16), 3741–3754 (2014)MathSciNetMATH
57.
go back to reference Tagrara, S., Benachour, A., Bouiadjra, M.B., Tounsi, A.: On bending, buckling and vibration responses of functionally graded carbon nanotube-reinforced composite beams. Steel Compos. Struct. 19(5), 1259–1277 (2015) Tagrara, S., Benachour, A., Bouiadjra, M.B., Tounsi, A.: On bending, buckling and vibration responses of functionally graded carbon nanotube-reinforced composite beams. Steel Compos. Struct. 19(5), 1259–1277 (2015)
58.
go back to reference Salami, S.J.: Extended high order sandwich panel theory for bending analysis of sandwich beams with carbon nanotube reinforced face sheets. Phys. E Low-Dimens. Syst. Nanostruct. 76, 187–197 (2016)ADS Salami, S.J.: Extended high order sandwich panel theory for bending analysis of sandwich beams with carbon nanotube reinforced face sheets. Phys. E Low-Dimens. Syst. Nanostruct. 76, 187–197 (2016)ADS
59.
go back to reference Salami, S.J.: Free vibration analysis of sandwich beams with carbon nanotube reinforced face sheets based on extended high-order sandwich panel theory. J. Sandwich Struct. Mater. 20(2), 219–248 (2018) Salami, S.J.: Free vibration analysis of sandwich beams with carbon nanotube reinforced face sheets based on extended high-order sandwich panel theory. J. Sandwich Struct. Mater. 20(2), 219–248 (2018)
60.
go back to reference Pouresmaeeli, S., Fazelzadeh, S.: Uncertain buckling and sensitivity analysis of functionally graded carbon nanotube-reinforced composite beam. Int. J. Appl. Mech. 9(05), 1750071 (2017) Pouresmaeeli, S., Fazelzadeh, S.: Uncertain buckling and sensitivity analysis of functionally graded carbon nanotube-reinforced composite beam. Int. J. Appl. Mech. 9(05), 1750071 (2017)
61.
go back to reference Mohammadimehr, M., Alimirzaei, S.: Buckling and free vibration analysis of tapered FG-CNTRC micro Reddy beam under longitudinal magnetic field using FEM. Smart Struct. Syst. 19(3), 309–322 (2017) Mohammadimehr, M., Alimirzaei, S.: Buckling and free vibration analysis of tapered FG-CNTRC micro Reddy beam under longitudinal magnetic field using FEM. Smart Struct. Syst. 19(3), 309–322 (2017)
62.
go back to reference Alibeigloo, A., Liew, K.: Elasticity solution of free vibration and bending behavior of functionally graded carbon nanotube-reinforced composite beam with thin piezoelectric layers using differential quadrature method. Int. J. Appl. Mech. 7(01), 1550002 (2015) Alibeigloo, A., Liew, K.: Elasticity solution of free vibration and bending behavior of functionally graded carbon nanotube-reinforced composite beam with thin piezoelectric layers using differential quadrature method. Int. J. Appl. Mech. 7(01), 1550002 (2015)
63.
go back to reference Ebrahimi, F., Farazmandnia, N.: Thermo-mechanical vibration analysis of sandwich beams with functionally graded carbon nanotube-reinforced composite face sheets based on a higher-order shear deformation beam theory. Mech. Adv. Mater. Struct. 24(10), 820–829 (2017) Ebrahimi, F., Farazmandnia, N.: Thermo-mechanical vibration analysis of sandwich beams with functionally graded carbon nanotube-reinforced composite face sheets based on a higher-order shear deformation beam theory. Mech. Adv. Mater. Struct. 24(10), 820–829 (2017)
64.
go back to reference Khelifa, Z., Hadji, L., Daouadji, T.H., Mohamed, B.: Buckling response with stretching effect of carbon nanotube-reinforced composite beams resting on elastic foundation. Struct. Eng. Mech. 67(2), 125–130 (2018) Khelifa, Z., Hadji, L., Daouadji, T.H., Mohamed, B.: Buckling response with stretching effect of carbon nanotube-reinforced composite beams resting on elastic foundation. Struct. Eng. Mech. 67(2), 125–130 (2018)
65.
go back to reference Mohammadimehr, M., Mohammadi-Dehabadi, A., Akhavan Alavi, S.M., Alambeigi, K., Bamdad, M., Yazdani, R., Hanifehlou, S.: Bending, buckling, and free vibration analyses of carbon nanotube reinforced composite beams and experimental tensile test to obtain the mechanical properties of nanocomposite. Steel Compos. Struct. 29(3), 405–422 (2018) Mohammadimehr, M., Mohammadi-Dehabadi, A., Akhavan Alavi, S.M., Alambeigi, K., Bamdad, M., Yazdani, R., Hanifehlou, S.: Bending, buckling, and free vibration analyses of carbon nanotube reinforced composite beams and experimental tensile test to obtain the mechanical properties of nanocomposite. Steel Compos. Struct. 29(3), 405–422 (2018)
66.
go back to reference Daikh, A.A., Drai, A., Houari, M.S.A., Eltaher, M.A.: Static analysis of multilayer nonlocal strain gradient nanobeam reinforced by carbon nanotubes. Steel Compos. Struct. 36(6), 643–656 (2020) Daikh, A.A., Drai, A., Houari, M.S.A., Eltaher, M.A.: Static analysis of multilayer nonlocal strain gradient nanobeam reinforced by carbon nanotubes. Steel Compos. Struct. 36(6), 643–656 (2020)
67.
go back to reference Karami, B., Janghorban, M., Shahsavari, D., Dimitri, R., Tornabene, F.: Nonlocal buckling analysis of composite curved beams reinforced with functionally graded carbon nanotubes. Molecules 24(15), 2750 (2019) Karami, B., Janghorban, M., Shahsavari, D., Dimitri, R., Tornabene, F.: Nonlocal buckling analysis of composite curved beams reinforced with functionally graded carbon nanotubes. Molecules 24(15), 2750 (2019)
68.
go back to reference Hadji, L., Avcar, M., Civalek, Ö.: Free vibration of carbon nanotube–reinforced composite beams under the various boundary conditions. In: Advanced Composite Materials and Structures, CRC Press, pp. 87–108 Hadji, L., Avcar, M., Civalek, Ö.: Free vibration of carbon nanotube–reinforced composite beams under the various boundary conditions. In: Advanced Composite Materials and Structures, CRC Press, pp. 87–108
69.
go back to reference Karamanli, A., Vo, T.P.: Finite element model for carbon nanotube-reinforced and graphene nanoplatelet-reinforced composite beams. Compos. Struct. 264, 113739 (2021) Karamanli, A., Vo, T.P.: Finite element model for carbon nanotube-reinforced and graphene nanoplatelet-reinforced composite beams. Compos. Struct. 264, 113739 (2021)
70.
go back to reference Garg, A., Chalak, H.D., Zenkour, A.M., Belarbi, M.O., Sahoo, R.: Bending and free vibration analysis of symmetric and unsymmetric functionally graded CNT reinforced sandwich beams containing softcore. Thin-Walled Struct. 170, 108626 (2022) Garg, A., Chalak, H.D., Zenkour, A.M., Belarbi, M.O., Sahoo, R.: Bending and free vibration analysis of symmetric and unsymmetric functionally graded CNT reinforced sandwich beams containing softcore. Thin-Walled Struct. 170, 108626 (2022)
71.
go back to reference Sharma, R., Jadon, V., Singh, B.: A review on the finite element methods for heat conduction in functionally graded materials. J. Inst. Eng. (India) Series C. 96(1), 73–81 (2015) Sharma, R., Jadon, V., Singh, B.: A review on the finite element methods for heat conduction in functionally graded materials. J. Inst. Eng. (India) Series C. 96(1), 73–81 (2015)
72.
go back to reference Chareonsuk, J., Vessakosol, P.: Numerical solutions for functionally graded solids under thermal and mechanical loads using a high-order control volume finite element method. Appl. Thermal Eng. 31(2–3), 213–227 (2011) Chareonsuk, J., Vessakosol, P.: Numerical solutions for functionally graded solids under thermal and mechanical loads using a high-order control volume finite element method. Appl. Thermal Eng. 31(2–3), 213–227 (2011)
73.
go back to reference Alibert, J.J., Seppecher, P., dell’Isola, F.: Truss modular beams with deformation energy depending on higher displacement gradients. Math. Mech. Solids 8(1), 51–73 (2003)MathSciNetMATH Alibert, J.J., Seppecher, P., dell’Isola, F.: Truss modular beams with deformation energy depending on higher displacement gradients. Math. Mech. Solids 8(1), 51–73 (2003)MathSciNetMATH
74.
go back to reference Phung-Van, P., Lieu, Q.X., Nguyen-Xuan, H., Abdel Wahab, M.: Size-dependent isogeometric analysis of functionally graded carbon nanotube-reinforced composite nanoplates. Compos. Struct. 166, 120–135 (2017) Phung-Van, P., Lieu, Q.X., Nguyen-Xuan, H., Abdel Wahab, M.: Size-dependent isogeometric analysis of functionally graded carbon nanotube-reinforced composite nanoplates. Compos. Struct. 166, 120–135 (2017)
75.
go back to reference Thanh, C.L., Phung-Van, P., Thai, C.H., Nguyen-Xuan, H., Abdel Wahab, M.: Isogeometric analysis of functionally graded carbon nanotube reinforced composite nanoplates using modified couple stress theory. Compos. Struct. 184, 633–649 (2018) Thanh, C.L., Phung-Van, P., Thai, C.H., Nguyen-Xuan, H., Abdel Wahab, M.: Isogeometric analysis of functionally graded carbon nanotube reinforced composite nanoplates using modified couple stress theory. Compos. Struct. 184, 633–649 (2018)
76.
go back to reference De Angelo, M., Placidi, L., Nejadsadeghi, N., Misra, A.: Non-standard Timoshenko beam model for chiral metamaterial: identification of stiffness parameters. Mech. Res. Commun. 103, 103462 (2020) De Angelo, M., Placidi, L., Nejadsadeghi, N., Misra, A.: Non-standard Timoshenko beam model for chiral metamaterial: identification of stiffness parameters. Mech. Res. Commun. 103, 103462 (2020)
77.
go back to reference Giorgio, I.: A discrete formulation of Kirchhoff rods in large-motion dynamics. Math. Mech. Solids. 25(5), 1081–1100 (2020)MathSciNetMATH Giorgio, I.: A discrete formulation of Kirchhoff rods in large-motion dynamics. Math. Mech. Solids. 25(5), 1081–1100 (2020)MathSciNetMATH
78.
go back to reference Schulte, J., Dittmann, M., Eugster, S.R., Hesch, S., Reinicke, T., dell’Isola, F., Hesch, C.: Isogeometric analysis of fiber reinforced composites using Kirchhoff–Love shell elements. Comput. Methods Appl. Mech. Eng. 362, 112845 (2020)ADSMathSciNetMATH Schulte, J., Dittmann, M., Eugster, S.R., Hesch, S., Reinicke, T., dell’Isola, F., Hesch, C.: Isogeometric analysis of fiber reinforced composites using Kirchhoff–Love shell elements. Comput. Methods Appl. Mech. Eng. 362, 112845 (2020)ADSMathSciNetMATH
79.
go back to reference Turco, E., Barchiesi, E., Giorgio, I., dell’Isola, F.: A Lagrangian Hencky-type non-linear model suitable for metamaterials design of shearable and extensible slender deformable bodies alternative to Timoshenko theory. Int. J. Non-Linear Mech. 123, 103481 (2020)ADS Turco, E., Barchiesi, E., Giorgio, I., dell’Isola, F.: A Lagrangian Hencky-type non-linear model suitable for metamaterials design of shearable and extensible slender deformable bodies alternative to Timoshenko theory. Int. J. Non-Linear Mech. 123, 103481 (2020)ADS
81.
go back to reference Garg, A., Chalak, H.D., Li, L., Belarbi, M.O., Sahoo, R., Mukhopadhyay, T.: Vibration and buckling analyses of sandwich plates containing functionally graded metal foam core. Acta Mech. Solida Sin. 35, 1–16 (2022) Garg, A., Chalak, H.D., Li, L., Belarbi, M.O., Sahoo, R., Mukhopadhyay, T.: Vibration and buckling analyses of sandwich plates containing functionally graded metal foam core. Acta Mech. Solida Sin. 35, 1–16 (2022)
83.
go back to reference Civalek, Ö., Avcar, M.: Free vibration and buckling analyses of CNT reinforced laminated non-rectangular plates by discrete singular convolution method. Eng. Comput. 38(1), 489–521 (2022) Civalek, Ö., Avcar, M.: Free vibration and buckling analyses of CNT reinforced laminated non-rectangular plates by discrete singular convolution method. Eng. Comput. 38(1), 489–521 (2022)
85.
go back to reference Ciallella, A., Giorgio, I., Eugster, S.R., Rizzi, N.L., dell’Isola, F.: Generalized beam model for the analysis of wave propagation with a symmetric pattern of deformation in planar pantographic sheets. Wave Motion 113, 102986 (2022)MathSciNetMATH Ciallella, A., Giorgio, I., Eugster, S.R., Rizzi, N.L., dell’Isola, F.: Generalized beam model for the analysis of wave propagation with a symmetric pattern of deformation in planar pantographic sheets. Wave Motion 113, 102986 (2022)MathSciNetMATH
86.
go back to reference Vinh, P.V., Belarbi, M.O., Tounsi, A.: Wave propagation analysis of functionally graded nanoplates using nonlocal higher-order shear deformation theory with spatial variation of the nonlocal parameters. Waves Random Complex Media. 1–21 (2022) Vinh, P.V., Belarbi, M.O., Tounsi, A.: Wave propagation analysis of functionally graded nanoplates using nonlocal higher-order shear deformation theory with spatial variation of the nonlocal parameters. Waves Random Complex Media. 1–21 (2022)
87.
go back to reference Alizada, A.N., Sofiyev, A.H.: On the mechanics of deformation and stability of the beam with a nanocoating. J. Reinf. Plast. Compos. 30, 1583–1595 (2011)ADS Alizada, A.N., Sofiyev, A.H.: On the mechanics of deformation and stability of the beam with a nanocoating. J. Reinf. Plast. Compos. 30, 1583–1595 (2011)ADS
88.
go back to reference Sofiyev, A.H.: On the vibration and stability behaviors of heterogeneous- CNTRC-truncated conical shells under axial load in the context of FSDT. Thin-Wall. Struct. 151, 106747 (2020) Sofiyev, A.H.: On the vibration and stability behaviors of heterogeneous- CNTRC-truncated conical shells under axial load in the context of FSDT. Thin-Wall. Struct. 151, 106747 (2020)
89.
go back to reference Zhang, J., Chen, S., Zheng, W.: Dynamic buckling analysis of functionally graded material cylindrical shells under thermal shock. Continuum Mech. Thermodyn. 32, 1095–1108 (2020)ADSMathSciNet Zhang, J., Chen, S., Zheng, W.: Dynamic buckling analysis of functionally graded material cylindrical shells under thermal shock. Continuum Mech. Thermodyn. 32, 1095–1108 (2020)ADSMathSciNet
90.
go back to reference Kiarasi, F., Babaei, M., Dimitri, R., Tornabene, F.: Hygrothermal modeling of the buckling behavior of sandwich plates with nanocomposite face sheets resting on a Pasternak foundation. Continuum Mech. Thermodyn. 33, 911–932 (2021)ADSMathSciNet Kiarasi, F., Babaei, M., Dimitri, R., Tornabene, F.: Hygrothermal modeling of the buckling behavior of sandwich plates with nanocomposite face sheets resting on a Pasternak foundation. Continuum Mech. Thermodyn. 33, 911–932 (2021)ADSMathSciNet
91.
go back to reference Sofiyev, A.H., Avey, M., Kuruoglu, N.: An approach to the solution of nonlinear forced vibration problem of structural systems reinforced with advanced materials in the presence of viscous damping. Mech. Syst. Sig. Process. 161, 107991 (2021) Sofiyev, A.H., Avey, M., Kuruoglu, N.: An approach to the solution of nonlinear forced vibration problem of structural systems reinforced with advanced materials in the presence of viscous damping. Mech. Syst. Sig. Process. 161, 107991 (2021)
92.
go back to reference Phi, B.G., Hieu, D.V., Sedighi, H.M., Sofiyev, A.H.: Size-dependent nonlinear vibration of functionally graded composite micro-beams reinforced by carbon nanotubes with piezoelectric layers in thermal environments. Acta Mech. 233, 2249–2270 (2022)MathSciNetMATH Phi, B.G., Hieu, D.V., Sedighi, H.M., Sofiyev, A.H.: Size-dependent nonlinear vibration of functionally graded composite micro-beams reinforced by carbon nanotubes with piezoelectric layers in thermal environments. Acta Mech. 233, 2249–2270 (2022)MathSciNetMATH
93.
go back to reference Avey, M., Fantuzzi, N., Sofiyev, A.H.: Vibration of laminated functionally graded nanocomposite structures considering the transverse shear stresses and rotary inertia. Compos. Struct. 301, 116209 (2022) Avey, M., Fantuzzi, N., Sofiyev, A.H.: Vibration of laminated functionally graded nanocomposite structures considering the transverse shear stresses and rotary inertia. Compos. Struct. 301, 116209 (2022)
94.
go back to reference Sofiyev, A.H. Kadioglu, F., Khalilov, I. A., Sedighi, H. M., Vergul, T., Yenialp, R.: On the torsional buckling moment of cylindrical shells consisting of functionally graded materials resting on the Pasternak-type soil. In: Socar Proceedings Trends and Prospects in the Oil & Gas Industry. Special Issue, vol. 1, pp. 016–022 (2022) Sofiyev, A.H. Kadioglu, F., Khalilov, I. A., Sedighi, H. M., Vergul, T., Yenialp, R.: On the torsional buckling moment of cylindrical shells consisting of functionally graded materials resting on the Pasternak-type soil. In: Socar Proceedings Trends and Prospects in the Oil & Gas Industry. Special Issue, vol. 1, pp. 016–022 (2022)
95.
go back to reference Ke, L.L., Yang, J., Kitipornchai, S.: Nonlinear free vibration of functionally graded carbon nanotube-reinforced composite beams. Compos. Struct. 92(3), 676–683 (2010) Ke, L.L., Yang, J., Kitipornchai, S.: Nonlinear free vibration of functionally graded carbon nanotube-reinforced composite beams. Compos. Struct. 92(3), 676–683 (2010)
96.
go back to reference Han, Y., Elliott, J.: Molecular dynamics simulations of the elastic properties of polymer/carbon nanotube composites. Comput. Mat. Sci. 39(2), 315–323 (2007) Han, Y., Elliott, J.: Molecular dynamics simulations of the elastic properties of polymer/carbon nanotube composites. Comput. Mat. Sci. 39(2), 315–323 (2007)
97.
go back to reference Shen, H.S., Xiang, Y.: Nonlinear analysis of nanotube-reinforced composite beams resting on elastic foundations in thermal environments. Eng. Struct. 56, 698–708 (2013) Shen, H.S., Xiang, Y.: Nonlinear analysis of nanotube-reinforced composite beams resting on elastic foundations in thermal environments. Eng. Struct. 56, 698–708 (2013)
Metadata
Title
Mechanical behavior analysis of FG-CNT-reinforced polymer composite beams via a hyperbolic shear deformation theory
Authors
Mohamed-Ouejdi Belarbi
Sattar Jedari Salami
Aman Garg
Ahmed-Amine Daikh
Mohamed-Sid-Ahmed Houari
Rossana Dimitri
Francesco Tornabene
Publication date
16-02-2023
Publisher
Springer Berlin Heidelberg
Published in
Continuum Mechanics and Thermodynamics / Issue 2/2023
Print ISSN: 0935-1175
Electronic ISSN: 1432-0959
DOI
https://doi.org/10.1007/s00161-023-01191-2

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