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      Longitudinal vibration of double nanorod systems using doublet mechanics theory

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      https://www.riss.kr/link?id=A106515057

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      다국어 초록 (Multilingual Abstract)

      This paper investigates the free and forced longitudinal vibration of a double nanorod system using doublet mechanics theory. The doublet mechanics theory is a multiscale theory spanning between lattice dynamics and continuum mechanics. Equations of m...

      This paper investigates the free and forced longitudinal vibration of a double nanorod system using doublet mechanics theory. The doublet mechanics theory is a multiscale theory spanning between lattice dynamics and continuum mechanics. Equations of motion and boundary conditions for the double nanorod system are obtained using Hamilton’s principle. Clamped-clamped and clamped-free boundary conditions are considered. Frequencies and dynamic displacements are determined to demonstrate the effects of length scale parameter of considered material and geometry of the nanorods. It is shown that frequencies obtained by the doublet mechanics theory are bounded from above (van Hove singularity) and unlike classical elasticity theory doublet mechanics theory predicts finite number of modes depending on the length of the nanotube. The present doublet mechanics results have been compared to molecular dynamics, experimental and nonlocal theory results and good agreement is observed between the present and other mentioned results. The difference between wave frequencies of graphite is less than 10% between doublet mechanics and experimental results near to the end of the first Brillouin zone.

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      참고문헌 (Reference)

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      2 Wu, J., "Wave equations, dispersion relations, and van Hove singularities for applications of doublet mechanics to ultrasound propagation in bio-and nanomaterials" 115 (115): 893-900, 2004

      3 Mohammad Rezaiee-Pajand, "Vibration suppression of a double-beam system by a two-degree-of-freedom mass-spring system" 국제구조공학회 21 (21): 349-358, 2018

      4 Mao, Q., "Vibration and stability of a double-beam system interconnected by an elastic foundation under conservative and nonconservative axial forces" 93 : 1-7, 2015

      5 Gul, U., "Vibration and buckling analysis of nanotubes(nanofibers)embedded in an elastic medium using Doublet Mechanics" 109 (109): 85-111, 2018

      6 Dirote, E. V., "Trends in Nanotechnology Research" Nova Science Publishers 2004

      7 Vajari, A. F., "Torsional vibration of single-walled carbon nanotubes using doublet mechanics" 67 : 81-, 2016

      8 Cao, G., "Thermal vibration and apparent thermal contraction of single-walled carbon nanotubes" 54 : 1206-1236, 2006

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      10 Wang, D. H., "Surface effects on the vibration and buckling of double-nanobeam-systems" 2011

      1 Gul, U., "Wave propagation in double walled carbon nanotubes by using doublet mechanics theory" 93 : 345-357, 2017

      2 Wu, J., "Wave equations, dispersion relations, and van Hove singularities for applications of doublet mechanics to ultrasound propagation in bio-and nanomaterials" 115 (115): 893-900, 2004

      3 Mohammad Rezaiee-Pajand, "Vibration suppression of a double-beam system by a two-degree-of-freedom mass-spring system" 국제구조공학회 21 (21): 349-358, 2018

      4 Mao, Q., "Vibration and stability of a double-beam system interconnected by an elastic foundation under conservative and nonconservative axial forces" 93 : 1-7, 2015

      5 Gul, U., "Vibration and buckling analysis of nanotubes(nanofibers)embedded in an elastic medium using Doublet Mechanics" 109 (109): 85-111, 2018

      6 Dirote, E. V., "Trends in Nanotechnology Research" Nova Science Publishers 2004

      7 Vajari, A. F., "Torsional vibration of single-walled carbon nanotubes using doublet mechanics" 67 : 81-, 2016

      8 Cao, G., "Thermal vibration and apparent thermal contraction of single-walled carbon nanotubes" 54 : 1206-1236, 2006

      9 Hove, V. L., "The occurrence of singularities in the elastic frequency distribution of a crystal" 89 : 1189-1193, 1953

      10 Wang, D. H., "Surface effects on the vibration and buckling of double-nanobeam-systems" 2011

      11 Cosserat, E., "Sur la théorie des corps déformables" Hermann et fils 1909

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      18 Karličić, D., "Nonlocal vibration and stability of a multiple-nanobeam system coupled by the Winkler elastic medium" 40 (40): 1599-1614, 2016

      19 Karlicic, D., "Nonlocal longitudinal vibration of viscoelastic coupled double-nanorod systems" 49 : 183-196, 2015

      20 Murmu, T., "Nonlocal elasticity based vibration of initially pre-stressed coupled nanobeam systems" 34 : 52-62, 2012

      21 Murmu, T., "Nonlocal effects in the longitudinal vibration of double-nanorod systems" 43 : 415-422, 2010

      22 Eringen, A. C., "Nonlocal Polar Field Models" Academic Press 1976

      23 Besseghier, A., "Nonlinear vibration properties of a zigzag single-walled carbon nanotube embedded in a polymer matrix" 3 (3): 29-37, 2015

      24 Ali Ghorbanpour Arani, "Nonlinear vibration analysis of piezoelectric plates reinforced with carbon nanotubes using DQM" 국제구조공학회 18 (18): 787-800, 2016

      25 Rosa, M. A. D., "Non-classical boundary conditions and DQM for double-beams" 34 : 538-544, 2007

      26 Granik, V. T., "Microstructural mechanics of granular media" 15 : 301-322, 1993

      27 Granik, V. T., "Microstructural mechanics of granular media" Institute of Mechanics, Moscow State University 78-241, 1978

      28 Mindlin, R. D., "Micro-structure in linear elasticity" 16 : 51-78, 1964

      29 Oveissi, S., "Longitudinal wave propagation analysis of stationary and axially moving carbon nanotubes conveying fluid" 8 (8): 107-115, 2015

      30 Erol, H., "Longitudinal vibrations of a double-rod system coupled by springs and dampers" 276 : 431-438, 2004

      31 Oveissi, S., "Longitudinal vibration and stability analysis of carbon nanotubes conveying viscous fluid" 83 : 275-283, 2016

      32 Oveissi, S., "Longitudinal vibration and instabilities of carbon nanotubes conveying fluid considering size effects of nanoflow and nanostructure" 83 : 164-173, 2016

      33 Oveissi, S., "Investigation on the effect of axially moving carbon nanotube, nanoflow, and Knudsen number on the vibrational behavior of the system" 45 (45): 171-186, 2018

      34 Iijima, S., "Helical microtubules of graphitic carbon" 354 : 56-58, 1991

      35 Cao, Q., "Gate capacitance coupling of single-walled carbon nanotube thin-film transistors" 90 : 2007

      36 Oniszczuk, Z., "Free transverse vibrations of elastically connected simply supported double-beams complex system" 232 : 419-430, 2000

      37 Arani, A. G., "Flow-induced vibration of double bonded visco-CNTs under magnetic fields considering surface effect" 86 : 144-154, 2014

      38 Li Jun, "Dynamic stiffness matrix of an axially loaded slender double-beam element" 국제구조공학회 35 (35): 717-733, 2010

      39 Saffari, S., "Dynamic stability of functionally graded nanobeam based on nonlocal Timoshenko theory considering surface effects" 520 : 97-105, 2017

      40 Ebbesen, T. W., "Carbon Nanotubes Preparation and Properties" CRC Press 1997

      41 Aizawa, T., "Bond softening in monolayer graphite formed on transition-metal carbide surfaces" 43 : 11469-, 1991

      42 S.C. Pradhan, "Bending, buckling and vibration analyses of nonhomogeneous nanotubes using GDQ and nonlocal elasticity theory" 국제구조공학회 33 (33): 193-213, 2009

      43 Narendar, S., "Axial wave propagation in coupled nanorod system with nonlocal small scale effects" 42 : 2013-2023, 2011

      44 Aydogdu, M., "Axial vibration of the nanorods with the nonlocal continuum rod model" 41 (41): 861-864, 2009

      45 Vajari, A. F., "Axial vibration of single-walled carbon nanotubes using doublet mechanics" 90 (90): 447-455, 2016

      46 Gul, U., "Axial dynamics of a nanorod embedded in an elastic medium using doublet mechanics" 160 : 1268-1278, 2017

      47 Oveissi, S., "Analysis of transverse vibrational response and instabilities of axially moving CNT conveying fluid" 44 (44): 115-129, 2017

      48 Ferrari, M., "Advances in Doublet Mechanics" Springer 1997

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