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      Magneto-thermo-elastic response of a rotating functionally graded cylinder

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      https://www.riss.kr/link?id=A104823970

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      다국어 초록 (Multilingual Abstract)

      In this paper, an analytical solution of displacement, strain and stress field for rotating thick-walled cylinder made of functionally graded material subjected to the uniform external magnetic field and thermal field in plane strain state has been studied. Stress, strain and displacement field as a function of radial coordinates considering magneto-thermo-elasticity are derived analytically. According to the Maxwell electro-dynamic equations, Lorentz force in term of displacement is obtained in cylindrical coordinates. Also, symmetric temperature distribution along the thickness of hollow cylinder is obtained by solving Fourier heat transfer equation in cylindrical coordinates. Using equation of equilibrium and thermo-mechanical constitutive equations associated with Lorentz force, a second-order inhomogeneous differential equation in term of displacement is obtained and will be solved analytically. Except Poisson's ratio, other mechanical properties such as elasticity modulus, density, magnetic permeability coefficient, heat conduction coefficient and thermal expansion coefficient are assumed to vary through the thickness according to a power law. In results analysis, non-homogeneity parameter has been chosen arbitrary and inner and outer surface of cylinder are assumed to be rich metal and rich ceramic, respectively. The effect of rotation, thermal, magnetic field and non-homogeneity parameter of functionally graded material which indicates percentages of cylinder's constituents are studied on displacement, Von Mises equivalent stress and Von Mises equivalent strain fields.
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      In this paper, an analytical solution of displacement, strain and stress field for rotating thick-walled cylinder made of functionally graded material subjected to the uniform external magnetic field and thermal field in plane strain state has been st...

      In this paper, an analytical solution of displacement, strain and stress field for rotating thick-walled cylinder made of functionally graded material subjected to the uniform external magnetic field and thermal field in plane strain state has been studied. Stress, strain and displacement field as a function of radial coordinates considering magneto-thermo-elasticity are derived analytically. According to the Maxwell electro-dynamic equations, Lorentz force in term of displacement is obtained in cylindrical coordinates. Also, symmetric temperature distribution along the thickness of hollow cylinder is obtained by solving Fourier heat transfer equation in cylindrical coordinates. Using equation of equilibrium and thermo-mechanical constitutive equations associated with Lorentz force, a second-order inhomogeneous differential equation in term of displacement is obtained and will be solved analytically. Except Poisson's ratio, other mechanical properties such as elasticity modulus, density, magnetic permeability coefficient, heat conduction coefficient and thermal expansion coefficient are assumed to vary through the thickness according to a power law. In results analysis, non-homogeneity parameter has been chosen arbitrary and inner and outer surface of cylinder are assumed to be rich metal and rich ceramic, respectively. The effect of rotation, thermal, magnetic field and non-homogeneity parameter of functionally graded material which indicates percentages of cylinder's constituents are studied on displacement, Von Mises equivalent stress and Von Mises equivalent strain fields.

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      참고문헌 (Reference)

      1 Reddy, J.N., "Thermomechanical analysis of functionally graded cylinders and plates" 21 (21): 593-626, 1998

      2 Ruhi, M., "Thermoelastic analysis of thick-walled finite-length cylinders of functionally graded materials" 28 (28): 391-408, 2005

      3 Peng, X. L., "Thermoelastic analysis of a cylindrical vessel of functionally graded materials" 87 (87): 203-210, 2010

      4 Lutz, M. P., "Thermal stresses and effective thermal expansion coefficient of a functionally gradient sphere" 19 (19): 39-54, 1996

      5 Eslami, M. R., "Thermal and mechanical stresses in a functionally graded thick sphere" 82 (82): 522-527, 2005

      6 Obata, Y., "Steady thermal stresses in a hollow circular cylinder and a hollow sphere of a functionally gradient material" 17 (17): 471-487, 1994

      7 Chattopadhyay, S., "Pressure Vessels: Design and Practice" CRC Press 2004

      8 Jabbari, M., "Mechanical and thermal stresses in a functionally graded hollow cylinder due to radially symmetric loads" 79 (79): 493-497, 2002

      9 Tutuncu, N., "Exact solutions for stresses in functionally graded pressure vessels" 32 (32): 683-686, 2001

      10 Dai, H. L., "Exact solutions for functionally graded pressure vessels in a uniform magnetic field" 43 (43): 5570-5580, 2006

      1 Reddy, J.N., "Thermomechanical analysis of functionally graded cylinders and plates" 21 (21): 593-626, 1998

      2 Ruhi, M., "Thermoelastic analysis of thick-walled finite-length cylinders of functionally graded materials" 28 (28): 391-408, 2005

      3 Peng, X. L., "Thermoelastic analysis of a cylindrical vessel of functionally graded materials" 87 (87): 203-210, 2010

      4 Lutz, M. P., "Thermal stresses and effective thermal expansion coefficient of a functionally gradient sphere" 19 (19): 39-54, 1996

      5 Eslami, M. R., "Thermal and mechanical stresses in a functionally graded thick sphere" 82 (82): 522-527, 2005

      6 Obata, Y., "Steady thermal stresses in a hollow circular cylinder and a hollow sphere of a functionally gradient material" 17 (17): 471-487, 1994

      7 Chattopadhyay, S., "Pressure Vessels: Design and Practice" CRC Press 2004

      8 Jabbari, M., "Mechanical and thermal stresses in a functionally graded hollow cylinder due to radially symmetric loads" 79 (79): 493-497, 2002

      9 Tutuncu, N., "Exact solutions for stresses in functionally graded pressure vessels" 32 (32): 683-686, 2001

      10 Dai, H. L., "Exact solutions for functionally graded pressure vessels in a uniform magnetic field" 43 (43): 5570-5580, 2006

      11 M. Saadatfar, "Electromagnetothermoelastic behavior of a rotating imperfect hybrid functionally graded hollow cylinder" 국제구조공학회 15 (15): 1411-1437, 2015

      12 Kraus, J. D., "Electromagnetic" McGraw-Hill Inc 1984

      13 M. Ghannad, "Elastic analysis of pressurized thick truncated conical shells made of functionally graded materials" 국제구조공학회 43 (43): 105-126, 2012

      14 Dai, H.L., "Dynamic responses of piezoelectric hollow cylinders in an axial magnetic field" 41 (41): 5231-5246, 2004

      15 Mehdi Ghannad, "Displacements and stresses in pressurized thick FGM cylinders with exponentially varying properties based on FSDT" 국제구조공학회 51 (51): 939-953, 2014

      16 Tokovyy, Y.V., "Analysis of 2D non-axisymmetric elasticity and thermoelasticity problems for radially inhomogeneous hollow cylinders" 61 (61): 171-184, 2007

      17 Naghdabadi, R., "A finite element formulation for analysis of functionally graded plates and shells" 74 (74): 375-386, 2005

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