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      KCI등재 SCIE SCOPUS

      Higher order free vibration of sandwich curved beams with a functionally graded core

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      https://www.riss.kr/link?id=A104824662

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      다국어 초록 (Multilingual Abstract)

      In this paper, free vibration of a sandwich curved beam with a functionally graded (FG) core was investigated. Closed-form formulations of two-dimensional (2D) refined higher order beam theory (RHOBT) without neglecting the amount of z/R was derived a...

      In this paper, free vibration of a sandwich curved beam with a functionally graded (FG) core was investigated. Closed-form formulations of two-dimensional (2D) refined higher order beam theory (RHOBT) without neglecting the amount of z/R was derived and used. The present RHOBT analysis incorporated a trapezoidal shape factor that arose due to the fact that stresses through the beam thickness were integrated over a curved surface. The solutions presented herein were compared with the available numerical and analytical solutions in the related literature and excellent agreement was obtained. Effects of some dimensionless parameters on the structural response were investigated to show their effects on fundamental natural frequency of the curved beam. In all the cases, variations of the material constant number were calculated and presented. Effect of changing ratio of core to beam thickness on the fundamental natural frequency depended on the amount of the material constant number.

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      참고문헌 (Reference)

      1 Malekzadeh, P., "Two-dimensional in-plane free vibrations of functionally graded circular arches with temperature-dependent properties" 91 : 38-47, 2009

      2 Qatu, M. S., "Theories and analysis of thin and moderately thick laminated composite curved beams" 30 (30): 2743-2756, 1993

      3 Koizumi, M., "The concept of FGM ceramic transactions: functionally gradient materials" 34 : 3-10, 1993

      4 Henrych, J., "The Dynamics of Arches" Elsevier Frames 1981

      5 Kiani, Y., "Static and dynamic analysis of an FGM doubly curved panel resting on the Pasternak type elastic foundation" 94 : 2474-2484, 2012

      6 Birman, V., "Stability of functionally graded hybrid composite plates" 5 : 913-921, 1995

      7 Malekzadeh, P., "Out of plane free vibration of functionally graded circular curved beam in thermal environment" 92 : 541-552, 2010

      8 Golmakani, M.E., "Nonlinear bending analysis of annular FGM plates using higher-order shear deformation plate theories" 93 : 973-982, 2011

      9 Bao, G., "Multiple cracking in functionally graded ceramic/metal coatings" 32 : 2853-2871, 1995

      10 Apetre, N. A., "Low-velocity impact of sandwich beams with functionally graded core" 43 (43): 2479-2496, 2006

      1 Malekzadeh, P., "Two-dimensional in-plane free vibrations of functionally graded circular arches with temperature-dependent properties" 91 : 38-47, 2009

      2 Qatu, M. S., "Theories and analysis of thin and moderately thick laminated composite curved beams" 30 (30): 2743-2756, 1993

      3 Koizumi, M., "The concept of FGM ceramic transactions: functionally gradient materials" 34 : 3-10, 1993

      4 Henrych, J., "The Dynamics of Arches" Elsevier Frames 1981

      5 Kiani, Y., "Static and dynamic analysis of an FGM doubly curved panel resting on the Pasternak type elastic foundation" 94 : 2474-2484, 2012

      6 Birman, V., "Stability of functionally graded hybrid composite plates" 5 : 913-921, 1995

      7 Malekzadeh, P., "Out of plane free vibration of functionally graded circular curved beam in thermal environment" 92 : 541-552, 2010

      8 Golmakani, M.E., "Nonlinear bending analysis of annular FGM plates using higher-order shear deformation plate theories" 93 : 973-982, 2011

      9 Bao, G., "Multiple cracking in functionally graded ceramic/metal coatings" 32 : 2853-2871, 1995

      10 Apetre, N. A., "Low-velocity impact of sandwich beams with functionally graded core" 43 (43): 2479-2496, 2006

      11 Eisenberger, M., "In-plane vibrations of shear deformable curved beams" 52 : 1221-1234, 2001

      12 Tseng, Y. P., "In-plane vibration of laminated curved beams with variable curvature by dynamic stiffness analysis" 50 : 103-114, 2000

      13 Garg, A. K., "Higher-order closed-form solutions for free vibration of laminated composite and sandwich shells" 8 (8): 205-235, 2006

      14 Shen, H. S., "Functionally Graded Materials-Nonlinear Analysis of Plates and Shells" CRC Press 2009

      15 Khalili, S. M. R., "Free vibrations of laminated composite shells with distributed uniformly attached mass using higher order shell theory including stiffness effect" 330 (330): 6355-6371, 2011

      16 Auciello, N.M, "Free vibrations of circular arches : a review" 176 : 433-458, 1994

      17 Krishnan, A, "Free vibration studies of arches" 186 : 856-863, 1995

      18 Marur, S.R., "Free vibration of higher-order sandwich and composite arches, Part I: formulation" 310 (310): 91-109, 2008

      19 Ahmed, K. M., "Free vibration of curved sandwich beams by the method of finite elements" 18 : 61-74, 1971

      20 Sakiyama, T., "Free vibration analysis of sandwich arches with elastic or visco elastic core and various kinds of axis shape and boundary conditions" 203 : 505-522, 1997

      21 Kang, B., "Free vibration analysis of planar curved beams by wave propagation" 260 : 19-44, 2003

      22 Aydogdu, M., "Free vibration analysis of functionally graded beams with simply supported edges" 28 (28): 1651-1656, 2007

      23 Khdeir, A.A, "Free and forced vibration of cross-ply laminated composite shallow arches" 34 : 1217-1234, 1997

      24 Lu, Q, "Exact two-dimensional solutions for in-plane natural frequencies of laminated circular arches" 318 : 982-990, 2008

      25 Chi, S.H., "Cracking in coating substrate composites of multi layered and sigmoid FGM coatings" 70 : 1227-1243, 2003

      26 Mori, T, "Average stress in the matrix and average elastic energy of materials with misfitting inclusions" 21 : 571-574, 1973

      27 Sankar, B. V., "An elasticity solution for functionally graded beams" 61 (61): 689-696, 2001

      28 Li, X. F., "A unified approach for analyzing static and dynamic behaviors of functionally graded Timoshenko and Euler-Bernoulli beams" 318 : 1210-1229, 2008

      29 Krishnan, A., "A simple cubic linear element for static and free vibration analyses of curved beams" 68 : 473-489, 1998

      30 Balasubramanian, T.S., "A field consistent higher-order curved beam element for static and dynamic analysis of stepped arches" 33 : 281-288, 1989

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