Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions

Volume: 8 Number: 1 June 3, 2016
  • V. Yıldırım
EN

Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions

Abstract

The exact elastic response of a convergent/divergent hyperbolic rotating disc made of a power-law graded material is studied under different boundary conditions. Soundness of the formulas derived is verified with the literature. A parametric study is performed to investigate elastic responses of those discs under four boundary conditions such as a stationary disc subjected to internal/external pressures, a rotating disc: both surfaces may expand freely, a rotating disc mounted a rigid shaft: outer surface either may freely expand or contains a rigid casing

Keywords

References

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  2. Horgan C. and Chan A., The stress response of functionally graded isotropic linearly elastic rotating disks. Journal of Elasticity, 55, 219-230, 1999.
  3. Zenkour A.M., Analytical solutions for rotating exponentially-graded annular disks with various boundary conditions. International Journal of Structural Stability and Dynamics, 5, 557-577, 2005.
  4. Eraslan A.N. and Akiş T., On the plane strain and plane stress solutions of functionally graded rotating solid shaft and solid disk problems, Acta Mechanica, 181 (1–2), 43–63, 2006.
  5. Zenkour A.M., Elastic deformation of the rotating functionally graded annular disk with rigid casing, Journal of Materials Science, 42, 9717-9724, 2007.
  6. Bayat M., Saleem M., Sahari B., Hamouda A. and Mahdi E., Analysis of functionally graded rotating disks with variable thickness, Mechanics Research Communications, 35, 283-309, 2008.
  7. Peng X.L. and Li X.F., Thermoelastic analysis of a functionally graded annulus with an arbitrary gradient, Appl Math Mech, 30, 1211–1220, 2009.
  8. Zenkour A.M. and Daoud S.M., Stress function of a rotating variable-thickness annular disk using exact and numerical methods, Engineering, 3, 422-430, 2011.

Details

Primary Language

English

Subjects

Engineering

Journal Section

-

Authors

V. Yıldırım This is me
University of Çukurova, Department of Mechanical Engineering, ana, Turkey

Publication Date

June 3, 2016

Submission Date

March 1, 2016

Acceptance Date

-

Published in Issue

Year 2016 Volume: 8 Number: 1

APA
Yıldırım, V. (2016). Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions. International Journal of Engineering and Applied Sciences, 8(1), 38-52. https://doi.org/10.24107/ijeas.251262
AMA
1.Yıldırım V. Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions. IJEAS. 2016;8(1):38-52. doi:10.24107/ijeas.251262
Chicago
Yıldırım, V. 2016. “Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions”. International Journal of Engineering and Applied Sciences 8 (1): 38-52. https://doi.org/10.24107/ijeas.251262.
EndNote
Yıldırım V (March 1, 2016) Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions. International Journal of Engineering and Applied Sciences 8 1 38–52.
IEEE
[1]V. Yıldırım, “Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions”, IJEAS, vol. 8, no. 1, pp. 38–52, Mar. 2016, doi: 10.24107/ijeas.251262.
ISNAD
Yıldırım, V. “Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions”. International Journal of Engineering and Applied Sciences 8/1 (March 1, 2016): 38-52. https://doi.org/10.24107/ijeas.251262.
JAMA
1.Yıldırım V. Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions. IJEAS. 2016;8:38–52.
MLA
Yıldırım, V. “Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions”. International Journal of Engineering and Applied Sciences, vol. 8, no. 1, Mar. 2016, pp. 38-52, doi:10.24107/ijeas.251262.
Vancouver
1.V. Yıldırım. Analytic Solutions To Power-Law Graded Hyperbolic Rotating Discs Subjected To Different Boundary Conditions. IJEAS. 2016 Mar. 1;8(1):38-52. doi:10.24107/ijeas.251262

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