Buckling analysis of truncated conical sandwich shells with Nano-FG face sheets using improved high-order theory

سال انتشار: 1393
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 1,301

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شناسه ملی سند علمی:

ELEMECHCONF02_286

تاریخ نمایه سازی: 22 مهر 1394

چکیده مقاله:

In this study, an improved high-order theory is presented for temperature-dependent buckling analysis of sandwich conical shell with thin Nano-FG face sheets and homogenous soft core. First shear deformation theory (FSDT) used for the face sheets and cubic functions are assumed for the transverse and in-plane displacements of the core. The nonlinear Von-Karman type relations are used to obtain the strain components. The equilibrium equations are derived via principle of minimum potential energy. Analytical solution for static analysis of simply supported sandwich conical shells under axial in-plane compressive loads and in the temperature environments is performed by using Galerkin’s solution. The comparisons show that the present results are in the good and better agreement with the results in the literature.

کلیدواژه ها:

Truncated conical sandwich shell ، buckling analysis ، Nano- FGM

نویسندگان

jamal Seidi

Department of Technical and Engineering, Ilam Branch, Islamic Azad University, Ilam, Iran

S.M.R Khalili

Center of Excellence for Research in Advanced Materials and Structures, Faculty of Mechanical Engineering , K.N. Toosi University of Technology, Tehran, Iran

csondos Bahadori

Islamic Azad University of Ilam branch, Ilam, Iran

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  • " National Conference on Applied Researches in Electrical, Mechanical and ...
  • Plantema FG. Sandwich construction, New York: Johen Wiley & Sons ...
  • Allen HG. Analysis and design of structural sandwich panels. New ...
  • Zenkert D. An introduction t sandwich construction. London: Chameleon Press, ...
  • Frostig Y, Baruch M, Wilnay O and Shieman I. High-order ...
  • Frostig Y and Baruch M, Vibration of sandwich beams-a high-order ...
  • Bozhevolnaya E and Frostig Y. Free vibration of curved sandwich ...
  • Bozhevolnaya E and Sun JQ. Free vibration analysis of curved ...
  • Frostig Y and Thomsen OT. High-order free vibration of sandwich ...
  • SchwartsGivl H, Rabinovitch O and Frostig Y. Free vibrationof delaminated ...
  • Noor, A, K, Peters, J.M., Burton, W.S., 1994. Thre e-dimensional ...
  • Kardomateas, G. A, 2005. Wrinkling of wide sandwich panels/Beams with ...
  • Ji, W., Wass, A. M., 2007. Global and local buckling ...
  • Ji, W., Wass, A. M., 2010. 2D elastic analysis of ...
  • Kant, T., Swaminathan, K., , 2002. Analytical solutions for the ...
  • Nayak, A.K., Shenoi, R.A. Moy, S.S.J., 2006. Dynamic response of ...
  • Dafedar, J.B., Desai, Y.M., Mufti, A.A., 2003. Stability of sandwich ...
  • M. Koizumi, FGM activities in Japan, Composites, Part B 28(1997) ...
  • M. Koizumi, Niino, overview ofFGM research activities in Japan, Material ...
  • K. Ichikawa, Functionally graded materials in the 21" century, Workshop ...
  • S. Suresh, A. Mortensen, Fundementals of functionally graded materials, IOM ...
  • B. V. Sankar, J. T. Tzeng, Thermal stress in functionally ...
  • Niordson FIN Buckling of conical shells subjected to uniform external ...
  • Mushtari KM Sachenkov AV. Stability of cylindrical and conical shells ...
  • Sofeyv AH. The stability of functionally graded trucated conical shells ...
  • Patel Bp, Shukla KK, Nath Y. Thermal -elastic buckling analysis ...
  • Bhangale RK Ganesan RK, p admanabhan C, linear thermo-elastic buckling ...
  • Sofeyv AH, Deniz A. Akcay IH, Yusufoglu E. The vibration ...
  • Sofeyv AH. Thermo-elastc stability of functionally graded truncated conical shells. ...
  • S. Y. Lu, L.K Chang, Thermal buckling of conical shells. ...
  • S. Y. Lu, L.K Chang, Nonlinear thermal buckling of conical ...
  • P. C. Dumir, G.P. Dube, A. Mullick, Axisymmetric static and ...
  • D. Bushnell, S. Smith, Stress and buckling of nonuiniformly heated ...
  • Wang. C. M. and Xlang, Y. Deducing buckling loads of ...
  • Sharma, A. and Sharda, H. B. Stability and vibration of ...
  • Sharma, A. and Sharda, H. B, . Nath Y. Stability ...
  • Aiello, M. A. and Ombres, L. Buckling and vibration of ...
  • Niordson FIN Buckling of conical shells subjected to uniform external ...
  • Mushtari KM, Sachenko AV Stability of cylindrical and conical shells ...
  • Seidi P. On the buckling of truncated conical shells under ...
  • Singer J. Buckling of circular conical shells under axisymmetrical external ...
  • Singer J. The effect of axial constraint on the instability ...
  • Thurston Ga. Effect boundary condition On the buckling of conical ...
  • Baruch M, HarariO, Singer J. Infuence of in-plane boundary condition ...
  • Wang H, Wang TK. Stability of laminated composite circular conical ...
  • Tong L, Tabarrok B, Wang Tk. Simple solution for buckling ...
  • M.M. Kheirikhah, S.M.R. Khalili. K. Malekzadeh Fard. Biaxial buckling analysis ...
  • B.S. Golzan, H. Showkati. Buckling of thin-walled conical shells under ...
  • Javad, Faraji. _ _ Haj mohammadi _ Study Effect of ...
  • Reddy. J. N. 1998. Thermal Mechanical Behavior of Functionally Graded ...
  • Ping-Hei Chen, Cheng-Hao Yang. Young's Modulus of High Aspect Ratio ...
  • Lukasz Zych, Radoslaw Lach. The effect of nanometri zirconia particle ...
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