Please use this identifier to cite or link to this item: https://hdl.handle.net/11499/47901
Title: Stress analysis of functionally graded isotropic rotaing discs tress
Authors: Çalho?lu H.
Keywords: Fgm
Isotropic disc
Pressure
Rotating disc
Stress analysis
Elastic moduli
Elasticity
Pressure
Stress analysis
Stress concentration
Elasticity moduli
External pressures
Functionally graded
Gradient parameter
Isotropic disc
Power-law functions
Radial displacements
Rotating disc
Functionally graded materials
Publisher: Adcotec Ltd.
Abstract: The closed-form study deals with stress analysis of annular rotating discs made of functionally graded materials (FGMs) subjected to internal and external pressures. The elasticity modulus and density of the discs are assumed to varies radially according to three diverse power law functions, and it is assumed that the material is of constant Poisson's ratio. A gradient parameter n is chosen between - 0.5 and 1.00. When n equals to zero, the disc becomes isotropic disc case. Dimensionless tangential and radial stresses and radial displacements in the rotating discs are depicted in the Fig.s and tabulated in a table. In present study, it is investigated how to change the distributions of the stresses and displacements with the increasing gradient parameter n (with variation of elasticity modulus and density). For a design problems if someone wants a disc which is of a homogenous stress distribution, he should chose either Disc 3 with n=1.00 or Disc I with n=-0.50 for the lowest stress distribution according to the results of this study for the material producer or applicability of production of the materials.
URI: https://hdl.handle.net/11499/47901
ISSN: 0963-6935
Appears in Collections:Scopus İndeksli Yayınlar Koleksiyonu / Scopus Indexed Publications Collection

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