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Published in: Engineering with Computers 4/2020

22-07-2019 | Original Article

Wave dispersion characteristics of fluid-conveying magneto-electro-elastic nanotubes

Authors: M. Dehghan, F. Ebrahimi, M. Vinyas

Published in: Engineering with Computers | Issue 4/2020

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Abstract

In this paper, the wave propagation analysis of fluid-conveying magneto-electro-elastic (MEE) nanotube incorporating fluid effect is investigated. To take into account the small-scale effects, the nonlocal elasticity theory of Eringen is employed. Nonlocal governing equations of MEE-FG nanotube have been derived utilizing Hamilton’s principle. The results of this study have been verified by checking them with antecedent investigations. An analytical solution of governing equations is used to acquire wave frequencies and phase velocities. The Knudsen number is applied to study the effect of slip boundary wall of nanotube and flow. Effect of Knudsen number, different modes, length parameter, nonlocal parameter, fluid velocity, fluid effect and slip boundary condition on wave propagation characteristics of fluid-conveying MEE nanotube is investigated, and the results are presented in detail.

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Appendix
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Literature
1.
go back to reference Eringen AC (1972) Linear theory of nonlocal elasticity and dispersion of plane waves. Int J Eng Sci 10:425MATH Eringen AC (1972) Linear theory of nonlocal elasticity and dispersion of plane waves. Int J Eng Sci 10:425MATH
2.
go back to reference Eringen AC (1983) On differential equations of nonlocal elasticity and solutions of screw dislocation and surface waves. J Appl Phys 54:4703 Eringen AC (1983) On differential equations of nonlocal elasticity and solutions of screw dislocation and surface waves. J Appl Phys 54:4703
3.
go back to reference Yang F, Chong ACM, Lam DCM, Tong P (2002) Couple stress based strain gradient theory for elasticity. Int J Solids Struct 39:2731MATH Yang F, Chong ACM, Lam DCM, Tong P (2002) Couple stress based strain gradient theory for elasticity. Int J Solids Struct 39:2731MATH
4.
go back to reference Reddy JN (2007) Nonlocal theories for bending, buckling and vibration of beams. Int J Eng Sci 45:288MATH Reddy JN (2007) Nonlocal theories for bending, buckling and vibration of beams. Int J Eng Sci 45:288MATH
5.
go back to reference Tounsi A, Benguediab S, Adda B, Semmah A, Zidour M (2013) Nonlocal effects on thermal buckling properties of double-walled carbon nanotubes. Adv Nano Res 1(1):1–11 Tounsi A, Benguediab S, Adda B, Semmah A, Zidour M (2013) Nonlocal effects on thermal buckling properties of double-walled carbon nanotubes. Adv Nano Res 1(1):1–11
6.
go back to reference Benguediab S, Tounsi A, Zidour M, Semmah A (2014) Chirality and scale effects on mechanical buckling properties of zigzag double walled carbon nanotubes. Compos Part B Eng 57:21–24 Benguediab S, Tounsi A, Zidour M, Semmah A (2014) Chirality and scale effects on mechanical buckling properties of zigzag double walled carbon nanotubes. Compos Part B Eng 57:21–24
7.
go back to reference Tlidji Y, Zidour M, Draiche K, Safa A, Bourada M, Tounsi A, Bousahla AA, Mahmoud SR (2019) Vibration analysis of different material distributions of functionally graded microbeam. Struct Eng Mech 69(6):637–649 Tlidji Y, Zidour M, Draiche K, Safa A, Bourada M, Tounsi A, Bousahla AA, Mahmoud SR (2019) Vibration analysis of different material distributions of functionally graded microbeam. Struct Eng Mech 69(6):637–649
8.
go back to reference Zemri A, Houari MS, Bousahla AA, Tounsi A (2015) A mechanical response of functionally graded nanoscale beam: an assessment of a refined nonlocal shear deformation theory beam theory. Struct Eng Mech 54(4):693–710 Zemri A, Houari MS, Bousahla AA, Tounsi A (2015) A mechanical response of functionally graded nanoscale beam: an assessment of a refined nonlocal shear deformation theory beam theory. Struct Eng Mech 54(4):693–710
9.
go back to reference Bouafia K, Kaci A, Houari MS, Benzair A, Tounsi A (2017) A nonlocal quasi-3D theory for bending and free flexural vibration behaviors of functionally graded nanobeams. Smart Struct Syst 19(2):115–126 Bouafia K, Kaci A, Houari MS, Benzair A, Tounsi A (2017) A nonlocal quasi-3D theory for bending and free flexural vibration behaviors of functionally graded nanobeams. Smart Struct Syst 19(2):115–126
10.
go back to reference Youcef DO, Kaci A, Benzair A, Bousahla AA, Tounsi A (2018) Dynamic analysis of nanoscale beams including surface stress effects. Smart Struct Syst 21(1):65–74 Youcef DO, Kaci A, Benzair A, Bousahla AA, Tounsi A (2018) Dynamic analysis of nanoscale beams including surface stress effects. Smart Struct Syst 21(1):65–74
11.
go back to reference Hamza-Cherif R, Meradjah M, Zidour M, Tounsi A, Belmahi S, Bensattalah T (2018) Vibration analysis of nano beam using differential transform method including thermal effect. J Nano Res 54:1–14 Hamza-Cherif R, Meradjah M, Zidour M, Tounsi A, Belmahi S, Bensattalah T (2018) Vibration analysis of nano beam using differential transform method including thermal effect. J Nano Res 54:1–14
12.
go back to reference Wang YQ, Liu YF, Zu JW (2019) Analytical treatment of nonlocal vibration of multilayer functionally graded piezoelectric nanoscale shells incorporating thermal and electrical effect. Eur Phys J Plus 134(2):54 Wang YQ, Liu YF, Zu JW (2019) Analytical treatment of nonlocal vibration of multilayer functionally graded piezoelectric nanoscale shells incorporating thermal and electrical effect. Eur Phys J Plus 134(2):54
13.
go back to reference Liu YF, Wang YQ (2019) Thermo-electro-mechanical vibrations of porous functionally graded piezoelectric nanoshells. Nanomaterials 9(2):301MathSciNet Liu YF, Wang YQ (2019) Thermo-electro-mechanical vibrations of porous functionally graded piezoelectric nanoshells. Nanomaterials 9(2):301MathSciNet
14.
go back to reference Besseghier A, Houari MS, Tounsi A, Mahmoud SR (2017) Free vibration analysis of embedded nanosize FG plates using a new nonlocal trigonometric shear deformation theory. Smart Struct Syst 19(6):601–614 Besseghier A, Houari MS, Tounsi A, Mahmoud SR (2017) Free vibration analysis of embedded nanosize FG plates using a new nonlocal trigonometric shear deformation theory. Smart Struct Syst 19(6):601–614
15.
go back to reference Mouffoki A, Bedia EA, Houari MS, Tounsi A, Mahmoud SR (2017) Vibration analysis of nonlocal advanced nanobeams in hygro-thermal environment using a new two-unknown trigonometric shear deformation beam theory. Smart Struct Syst 20(3):369–383 Mouffoki A, Bedia EA, Houari MS, Tounsi A, Mahmoud SR (2017) Vibration analysis of nonlocal advanced nanobeams in hygro-thermal environment using a new two-unknown trigonometric shear deformation beam theory. Smart Struct Syst 20(3):369–383
16.
go back to reference Wang YQ, Liang C (2019) Wave propagation characteristics in nanoporous metal foam nanobeams. Results Phys 12:287–297 Wang YQ, Liang C (2019) Wave propagation characteristics in nanoporous metal foam nanobeams. Results Phys 12:287–297
17.
go back to reference Wang YQ, Ye C, Zu JW (2019) Nonlinear vibration of metal foam cylindrical shells reinforced with graphene platelets. Aerosp Sci Technol 85:359–370 Wang YQ, Ye C, Zu JW (2019) Nonlinear vibration of metal foam cylindrical shells reinforced with graphene platelets. Aerosp Sci Technol 85:359–370
18.
go back to reference Belkorissat I, Houari MS, Tounsi A, Bedia EA, Mahmoud SR (2015) On vibration properties of functionally graded nano-plate using a new nonlocal refined four variable model. Steel Compos Struct 18(4):1063–1081 Belkorissat I, Houari MS, Tounsi A, Bedia EA, Mahmoud SR (2015) On vibration properties of functionally graded nano-plate using a new nonlocal refined four variable model. Steel Compos Struct 18(4):1063–1081
19.
go back to reference Bounouara F, Benrahou KH, Belkorissat I, Tounsi A (2016) A nonlocal zeroth-order shear deformation theory for free vibration of functionally graded nanoscale plates resting on elastic foundation. Steel Compos Struct 20(2):227–249 Bounouara F, Benrahou KH, Belkorissat I, Tounsi A (2016) A nonlocal zeroth-order shear deformation theory for free vibration of functionally graded nanoscale plates resting on elastic foundation. Steel Compos Struct 20(2):227–249
20.
go back to reference Karami B, Shahsavari D, Janghorban M, Tounsi A (2019) Resonance behavior of functionally graded polymer composite nanoplates reinforced with graphene nanoplatelets. Int J Mech Sci 156:94–105 Karami B, Shahsavari D, Janghorban M, Tounsi A (2019) Resonance behavior of functionally graded polymer composite nanoplates reinforced with graphene nanoplatelets. Int J Mech Sci 156:94–105
21.
go back to reference Bouadi A, Bousahla AA, Houari MS, Heireche H, Tounsi A (2018) A new nonlocal HSDT for analysis of stability of single layer graphene sheet. Adv Nano Res 6(2):147–162 Bouadi A, Bousahla AA, Houari MS, Heireche H, Tounsi A (2018) A new nonlocal HSDT for analysis of stability of single layer graphene sheet. Adv Nano Res 6(2):147–162
22.
go back to reference Yazid M, Heireche H, Tounsi A, Bousahla AA, Houari MS (2018) A novel nonlocal refined plate theory for stability response of orthotropic single-layer graphene sheet resting on elastic medium. Smart Struct Syst 21(1):15–25 Yazid M, Heireche H, Tounsi A, Bousahla AA, Houari MS (2018) A novel nonlocal refined plate theory for stability response of orthotropic single-layer graphene sheet resting on elastic medium. Smart Struct Syst 21(1):15–25
23.
go back to reference Bellifa H, Benrahou KH, Bousahla AA, Tounsi A, Mahmoud SR (2017) A nonlocal zeroth-order shear deformation theory for nonlinear postbuckling of nanobeams. Struct Eng Mech 62(6):695–702 Bellifa H, Benrahou KH, Bousahla AA, Tounsi A, Mahmoud SR (2017) A nonlocal zeroth-order shear deformation theory for nonlinear postbuckling of nanobeams. Struct Eng Mech 62(6):695–702
24.
go back to reference Mokhtar Y, Heireche H, Bousahla AA, Houari MS, Tounsi A, Mahmoud SR (2018) A novel shear deformation theory for buckling analysis of single layer graphene sheet based on nonlocal elasticity theory. Smart Struct Syst 21(4):397–405 Mokhtar Y, Heireche H, Bousahla AA, Houari MS, Tounsi A, Mahmoud SR (2018) A novel shear deformation theory for buckling analysis of single layer graphene sheet based on nonlocal elasticity theory. Smart Struct Syst 21(4):397–405
25.
go back to reference Semmah A, Heireche H, Bousahla AA, Toumsi A (2019) Thermal buckling analysis of SWBNNT on Winkler foundation by non local FSDT. Adv Nano Res 7(2):89–98 Semmah A, Heireche H, Bousahla AA, Toumsi A (2019) Thermal buckling analysis of SWBNNT on Winkler foundation by non local FSDT. Adv Nano Res 7(2):89–98
26.
go back to reference Khetir H, Bouiadjra MB, Houari MS, Tounsi A, Mahmoud SR (2017) A new nonlocal trigonometric shear deformation theory for thermal buckling analysis of embedded nanosize FG plates. Struct Eng Mech 64(4):391–402 Khetir H, Bouiadjra MB, Houari MS, Tounsi A, Mahmoud SR (2017) A new nonlocal trigonometric shear deformation theory for thermal buckling analysis of embedded nanosize FG plates. Struct Eng Mech 64(4):391–402
27.
go back to reference Kadari B, Bessaim A, Tounsi A, Heireche H, Bousahla AA, Houari MS (2018) Buckling analysis of orthotropic nanoscale plates resting on elastic foundations. J Nano Res 55:42–56 Kadari B, Bessaim A, Tounsi A, Heireche H, Bousahla AA, Houari MS (2018) Buckling analysis of orthotropic nanoscale plates resting on elastic foundations. J Nano Res 55:42–56
28.
go back to reference Al-Basyouni KS, Tounsi A, Mahmoud SR (2015) Size dependent bending and vibration analysis of functionally graded micro beams based on modified couple stress theory and neutral surface position. Compos Struct 125:621–630 Al-Basyouni KS, Tounsi A, Mahmoud SR (2015) Size dependent bending and vibration analysis of functionally graded micro beams based on modified couple stress theory and neutral surface position. Compos Struct 125:621–630
29.
go back to reference Chaht FL, Kaci A, Houari MS, Tounsi A, Bég OA, Mahmoud SR (2015) Bending and buckling analyses of functionally graded material (FGM) size-dependent nanoscale beams including the thickness stretching effect. Steel Compos Struct 18(2):425–442 Chaht FL, Kaci A, Houari MS, Tounsi A, Bég OA, Mahmoud SR (2015) Bending and buckling analyses of functionally graded material (FGM) size-dependent nanoscale beams including the thickness stretching effect. Steel Compos Struct 18(2):425–442
30.
go back to reference Ahouel M, Houari MS, Bedia EA, Tounsi A (2016) Size-dependent mechanical behavior of functionally graded trigonometric shear deformable nanobeams including neutral surface position concept. Steel Compos Struct 20(5):963–981 Ahouel M, Houari MS, Bedia EA, Tounsi A (2016) Size-dependent mechanical behavior of functionally graded trigonometric shear deformable nanobeams including neutral surface position concept. Steel Compos Struct 20(5):963–981
32.
go back to reference Karami B, Janghorban M, Tounsi A (2018) Nonlocal strain gradient 3D elasticity theory for anisotropic spherical nanoparticles. Steel Compos Struct 27(2):201–216 Karami B, Janghorban M, Tounsi A (2018) Nonlocal strain gradient 3D elasticity theory for anisotropic spherical nanoparticles. Steel Compos Struct 27(2):201–216
33.
go back to reference Karami B, Janghorban M, Tounsi A (2017) Effects of triaxial magnetic field on the anisotropic nanoplates. Steel Compos Struct 25(3):361–374 Karami B, Janghorban M, Tounsi A (2017) Effects of triaxial magnetic field on the anisotropic nanoplates. Steel Compos Struct 25(3):361–374
34.
go back to reference Ke LL, Wang Y-S, Yang J, Kitipornchai S (2014) The size-dependent vibration of embedded magneto-electro-elastic cylindrical nanoshells. Smart Mater Struct 23:12 Ke LL, Wang Y-S, Yang J, Kitipornchai S (2014) The size-dependent vibration of embedded magneto-electro-elastic cylindrical nanoshells. Smart Mater Struct 23:12
35.
go back to reference Ebrahimi F, Barati MR, Dabbagh A (2016) Wave dispersion characteristics of axially loaded magneto-electro-elastic nanobeams. Appl Phys A 122:949 Ebrahimi F, Barati MR, Dabbagh A (2016) Wave dispersion characteristics of axially loaded magneto-electro-elastic nanobeams. Appl Phys A 122:949
36.
go back to reference Ebrahimi F, Barati MR (2017) Buckling analysis of smart size-dependent higher order magneto-electro-thermo-elastic functionally graded nanosize beams. J Mech 33(1):23 Ebrahimi F, Barati MR (2017) Buckling analysis of smart size-dependent higher order magneto-electro-thermo-elastic functionally graded nanosize beams. J Mech 33(1):23
37.
go back to reference Arefi M, Zenkour AM (2017) Wave propagation analysis of a functionally graded magneto-electro-elastic nanobeam rest on Visco-Pasternak foundation. Mech Res Commun 79:51 Arefi M, Zenkour AM (2017) Wave propagation analysis of a functionally graded magneto-electro-elastic nanobeam rest on Visco-Pasternak foundation. Mech Res Commun 79:51
39.
go back to reference Wang YQ (2018) Electro-mechanical vibration analysis of functionally graded piezoelectric porous plates in the translation state. Acta Astronaut 143:263–271 Wang YQ (2018) Electro-mechanical vibration analysis of functionally graded piezoelectric porous plates in the translation state. Acta Astronaut 143:263–271
40.
go back to reference Wang YQ, Zu JW (2017) Porosity-dependent nonlinear forced vibration analysis of functionally graded piezoelectric smart material plates. Smart Mater Struct 26(10):105014 Wang YQ, Zu JW (2017) Porosity-dependent nonlinear forced vibration analysis of functionally graded piezoelectric smart material plates. Smart Mater Struct 26(10):105014
41.
go back to reference Fourn H, Atmane HA, Bourada M, Bousahla AA, Tounsi A, Mahmoud SR (2018) A novel four variable refined plate theory for wave propagation in functionally graded material plates. Steel Compos Struct 27(1):109–122 Fourn H, Atmane HA, Bourada M, Bousahla AA, Tounsi A, Mahmoud SR (2018) A novel four variable refined plate theory for wave propagation in functionally graded material plates. Steel Compos Struct 27(1):109–122
42.
go back to reference Boukhari A, Atmane HA, Tounsi A, Adda B, Mahmoud SR (2016) An efficient shear deformation theory for wave propagation of functionally graded material plates. Struct Eng Mech 57(5):837–859 Boukhari A, Atmane HA, Tounsi A, Adda B, Mahmoud SR (2016) An efficient shear deformation theory for wave propagation of functionally graded material plates. Struct Eng Mech 57(5):837–859
43.
go back to reference Yahia SA, Atmane HA, Houari MS, Tounsi A (2015) Wave propagation in functionally graded plates with porosities using various higher-order shear deformation plate theories. Struct Eng Mech 53(6):1143–1165 Yahia SA, Atmane HA, Houari MS, Tounsi A (2015) Wave propagation in functionally graded plates with porosities using various higher-order shear deformation plate theories. Struct Eng Mech 53(6):1143–1165
44.
go back to reference Enoksson P, Stemme G, Stemme E (1996) Silicon tube structures for a fluid-density sensor. Sens Actuators A 54:558–562 Enoksson P, Stemme G, Stemme E (1996) Silicon tube structures for a fluid-density sensor. Sens Actuators A 54:558–562
45.
go back to reference Kim KH, Moldovan N, Espinosa HD (2005) A nano fountain probe with sub-100 nm molecular writing resolution. Small 1:632–635 Kim KH, Moldovan N, Espinosa HD (2005) A nano fountain probe with sub-100 nm molecular writing resolution. Small 1:632–635
46.
go back to reference Najmzadeh M, Haasl S, Enoksson P (2007) A silicon straight tube fluid density sensor. J Micromech Microeng 17:1657–1663 Najmzadeh M, Haasl S, Enoksson P (2007) A silicon straight tube fluid density sensor. J Micromech Microeng 17:1657–1663
47.
go back to reference Wu ZJ, Luo Z, Rastogia A, Stavchansky S, Bowman PD, Ho PS (2011) Micro-fabricated perforated polymer devices for longterm drug delivery. Biomed Microdevices 13:485–491 Wu ZJ, Luo Z, Rastogia A, Stavchansky S, Bowman PD, Ho PS (2011) Micro-fabricated perforated polymer devices for longterm drug delivery. Biomed Microdevices 13:485–491
48.
go back to reference Zhang YL, Gorman DG, Reese JM (2001) A finite element method for modelling the vibration of initially tensioned thin-walled orthotropic cylindrical tubes conveying fluid. J Sound Vib 245(1):93MATH Zhang YL, Gorman DG, Reese JM (2001) A finite element method for modelling the vibration of initially tensioned thin-walled orthotropic cylindrical tubes conveying fluid. J Sound Vib 245(1):93MATH
49.
go back to reference Amabili M, Pellicano F, Paidoussis MP (1999) Non-linear dynamics and stability of circular cylindrical shells containing flowing fluid. Part I: stability. J Sound Vib 225(4):655–699 Amabili M, Pellicano F, Paidoussis MP (1999) Non-linear dynamics and stability of circular cylindrical shells containing flowing fluid. Part I: stability. J Sound Vib 225(4):655–699
50.
go back to reference Wang L (2009) Vibration and instability analysis of tubular nano and micro beams conveying fluid using nonlocal elastic theory. Phys E Low Dimens Syst Nanostruct 41:1835–1840 Wang L (2009) Vibration and instability analysis of tubular nano and micro beams conveying fluid using nonlocal elastic theory. Phys E Low Dimens Syst Nanostruct 41:1835–1840
51.
go back to reference Wang X, Dong K, Liu BY (2008) Wave propagation in fluid-filled multi-walled carbon nanotubes embedded in elastic matrix. Comput Mater Sci 42:139–148 Wang X, Dong K, Liu BY (2008) Wave propagation in fluid-filled multi-walled carbon nanotubes embedded in elastic matrix. Comput Mater Sci 42:139–148
52.
go back to reference Hu YG, Liew KM, Wang Q, He XQ, Yakobson BI (2008) Nonlocal shell model for elastic wave propagation in single- and double-walled carbon nanotubes. J Mech Phys Solids 56:3475–3485MATH Hu YG, Liew KM, Wang Q, He XQ, Yakobson BI (2008) Nonlocal shell model for elastic wave propagation in single- and double-walled carbon nanotubes. J Mech Phys Solids 56:3475–3485MATH
53.
go back to reference Xia W, Wang L (2010) Vibration characteristics of fluid-conveying carbon nanotubes with curved longitudinal shape. Comput Mater Sci 49(1):99–103MathSciNet Xia W, Wang L (2010) Vibration characteristics of fluid-conveying carbon nanotubes with curved longitudinal shape. Comput Mater Sci 49(1):99–103MathSciNet
54.
go back to reference Kaviani F, Mirdamadi HR (2013) Wave propagation analysis of carbon nano-tube conveying fluid including slip boundary condition and strain/inertia gradient theory. Comput Struct 116:75–87 Kaviani F, Mirdamadi HR (2013) Wave propagation analysis of carbon nano-tube conveying fluid including slip boundary condition and strain/inertia gradient theory. Comput Struct 116:75–87
55.
go back to reference Ghasemi A, Dardel M, Ghasemi MH, Barzegari MM (2013) Analytical analysis of buckling and post-buckling of fluid conveying multi-walled carbon nanotubes. Appl Math Model 37(7):4972MathSciNetMATH Ghasemi A, Dardel M, Ghasemi MH, Barzegari MM (2013) Analytical analysis of buckling and post-buckling of fluid conveying multi-walled carbon nanotubes. Appl Math Model 37(7):4972MathSciNetMATH
56.
go back to reference Arani AG, Maraghi ZK, Kolahchi R, Amir S, Bagheri MR (2013) Nonlocal vibration and instability of embedded DWBNNT conveying viscose fluid. Compos Part B Eng 45:423–432 Arani AG, Maraghi ZK, Kolahchi R, Amir S, Bagheri MR (2013) Nonlocal vibration and instability of embedded DWBNNT conveying viscose fluid. Compos Part B Eng 45:423–432
58.
go back to reference Daiab HL, Abdelkefi A, Wang L (2014) Modeling and nonlinear dynamics of fluid-conveying risers under hybrid excitations. Int J Eng Sci 81:1–14MathSciNetMATH Daiab HL, Abdelkefi A, Wang L (2014) Modeling and nonlinear dynamics of fluid-conveying risers under hybrid excitations. Int J Eng Sci 81:1–14MathSciNetMATH
59.
go back to reference Ansari R, Norouzzadeh A, Gholami R, Shojaei MF, Hosseinzadeh M (2014) Size-dependent nonlinear vibration and instability of embedded fluid-conveying SWBNNTs in thermal environment. Phys E Low Dimens Syst Nanostruct 61:148 Ansari R, Norouzzadeh A, Gholami R, Shojaei MF, Hosseinzadeh M (2014) Size-dependent nonlinear vibration and instability of embedded fluid-conveying SWBNNTs in thermal environment. Phys E Low Dimens Syst Nanostruct 61:148
60.
go back to reference Nahvi H, Oveissi S (2015) Transverse vibration and instability of fluid conveying triple-walled carbon nanotubes based on strain-inertia gradient theory. J Theor Appl Vib Acoust 1(2):62–72 Nahvi H, Oveissi S (2015) Transverse vibration and instability of fluid conveying triple-walled carbon nanotubes based on strain-inertia gradient theory. J Theor Appl Vib Acoust 1(2):62–72
61.
go back to reference Filiz S, Aydogdu M (2015) Wave propagation analysis of embedded (coupled) functionally graded nanotubes conveying fluid. Compos Struct 132:1260 Filiz S, Aydogdu M (2015) Wave propagation analysis of embedded (coupled) functionally graded nanotubes conveying fluid. Compos Struct 132:1260
62.
go back to reference Sadeghi-Goughari M, Hosseini M (2015) The effects of non-uniform flow velocity on vibrations of single-walled carbon nanotube conveying fluid. J Mech Sci Technol 29(2):723–732 Sadeghi-Goughari M, Hosseini M (2015) The effects of non-uniform flow velocity on vibrations of single-walled carbon nanotube conveying fluid. J Mech Sci Technol 29(2):723–732
65.
go back to reference Zeighampour H, Beni YT, Karimipour I (2017) Wave propagation in double-walled carbon nanotube conveying fluid considering slip boundary condition and shell model based on nonlocal strain gradient theory. Microfluid Nanofluidics 21:85 Zeighampour H, Beni YT, Karimipour I (2017) Wave propagation in double-walled carbon nanotube conveying fluid considering slip boundary condition and shell model based on nonlocal strain gradient theory. Microfluid Nanofluidics 21:85
66.
go back to reference Esmailzadeh E, Askari H (2017) Forced vibration of fluid conveying carbon nanotubes considering thermal effect and nonlinear foundations. Compos Part B Eng 113:31–43 Esmailzadeh E, Askari H (2017) Forced vibration of fluid conveying carbon nanotubes considering thermal effect and nonlinear foundations. Compos Part B Eng 113:31–43
67.
go back to reference Zhen Y, Zhou L (2017) Wave propagation in fluid-conveying viscoelastic carbon nanotubes under longitudinal magnetic field with thermal and surface effect via nonlocal strain gradient theory. Mod Phys Lett B 31(8):1750069MathSciNet Zhen Y, Zhou L (2017) Wave propagation in fluid-conveying viscoelastic carbon nanotubes under longitudinal magnetic field with thermal and surface effect via nonlocal strain gradient theory. Mod Phys Lett B 31(8):1750069MathSciNet
68.
go back to reference Sheng GG, Wang X (2017) Nonlinear response of fluid-conveying functionally graded cylindrical shells subjected to mechanical and thermal loading conditions. Compos Struct 168:675–684 Sheng GG, Wang X (2017) Nonlinear response of fluid-conveying functionally graded cylindrical shells subjected to mechanical and thermal loading conditions. Compos Struct 168:675–684
69.
go back to reference Wang YQ, Li HH, Zhang YF, Zu JW (2018) A nonlinear surface-stress-dependent model for vibration analysis of cylindrical nanoscale shells conveying fluid. Appl Math Model 64:55–70MathSciNetMATH Wang YQ, Li HH, Zhang YF, Zu JW (2018) A nonlinear surface-stress-dependent model for vibration analysis of cylindrical nanoscale shells conveying fluid. Appl Math Model 64:55–70MathSciNetMATH
70.
go back to reference Wang YQ, Wan YH, Zu JW (2019) Nonlinear dynamic characteristics of functionally graded sandwich thin nanoshells conveying fluid incorporating surface stress influence. Thin Walled Struct 135:537–547 Wang YQ, Wan YH, Zu JW (2019) Nonlinear dynamic characteristics of functionally graded sandwich thin nanoshells conveying fluid incorporating surface stress influence. Thin Walled Struct 135:537–547
71.
go back to reference Wang YQ, Zu JW (2017) Nonlinear steady-state responses of longitudinally traveling functionally graded material plates in contact with liquid. Compos Struct 164:130–144 Wang YQ, Zu JW (2017) Nonlinear steady-state responses of longitudinally traveling functionally graded material plates in contact with liquid. Compos Struct 164:130–144
72.
go back to reference Wang YQ, Liang L, Guo XH (2013) Internal resonance of axially moving laminated circular cylindrical shells. J Sound Vib 332(24):6434–6450 Wang YQ, Liang L, Guo XH (2013) Internal resonance of axially moving laminated circular cylindrical shells. J Sound Vib 332(24):6434–6450
73.
74.
go back to reference Farajpour A, Rastgoo A, Farajpour MR (2017) Nonlinear buckling analysis of magneto-electro-elastic CNT-MT hybrid nanoshells based on the nonlocal continuum mechanics. Compos Struct 180:179–191 Farajpour A, Rastgoo A, Farajpour MR (2017) Nonlinear buckling analysis of magneto-electro-elastic CNT-MT hybrid nanoshells based on the nonlocal continuum mechanics. Compos Struct 180:179–191
Metadata
Title
Wave dispersion characteristics of fluid-conveying magneto-electro-elastic nanotubes
Authors
M. Dehghan
F. Ebrahimi
M. Vinyas
Publication date
22-07-2019
Publisher
Springer London
Published in
Engineering with Computers / Issue 4/2020
Print ISSN: 0177-0667
Electronic ISSN: 1435-5663
DOI
https://doi.org/10.1007/s00366-019-00790-5

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