Faculty of Mechanical Engineering, Department of Mechanics and Applied Computer Science, Bialystok University of Technology ul. Wiejska Street 45C, 15-351 Bialystok, Poland
The three-dimensional problem of elasticity concerning inhomogeneous half-space under normal and tangential loading applied in circular region was considered. The half-space is composed of the homogeneous body and double-layer coating which includes a homogeneous top coat and a gradient interlayer. The solution method is based on the two-dimensional integral Fourier transform. The influence of mechanical properties of coatings component and coefficient of friction on the first principal stress distribution was considered.
REFERENCES(23)
1.
Aizikovich S.M., Alexandrov V.M., Kalker J.J., Krenev L.I., Trubchik I.S. (2002) Analytical solution of the spherical indentation problem for a half-space with gradients with the depth elastic properties, Int. J. Solids Struct., 39, 2745-2772.
Choi H. J. (2009) On the plane contact problem of a functionally graded elastic layer loaded by a frictional sliding flat punch, Mechanics Research Communications, Arch Appl Mech, 78, 267-282.
Diao D.F., Sawaki Y., Suzuki H. (1996) Effect of interlayer on maximum contact stresses of hard coating under sliding contact, Surface and Coatings Technology, 86-87, 480-485.
Fischer-Cripps A.C. (2003) Analysis of instrumented indentation test data for functionally graded materials, Surface & Coatings Technology, 168, 136-141.
Giannakopoulos A.E., Suresh S. (1997) Indentation of solids with gradients in elastic properties: Part II. Axisymetric indenters, Int. J. Solids and Structures, 34, 2392-428.
Guler M.A., Erdogan F. (2007) The frictional sliding contact problems of rigid parabolic and cylindrical stamps on graded coatings, Int. J. Mech. Sci., 49, 161-182.
Kashtalyan M., Menshykova M. (2009) Effect of a functionally graded interlayer on three-dimensional elastic deformation of coated plates subjected to transverse loading, Composite Structures, 89, 167-176.
Kashtalyan M., Menshykova M., Guz I.A. (2009) Use of a Functionally Graded Interlayer to Improve Bonding in Coated Plates, Journal of Adhesion Science and Technology, 23, 1591-1601.
Ke L.L., Wang Y.S. (2006) Two-dimensional contact mechanics of functionally graded materials with arbitrary spatial variations of material properties, Int. J. Solids Struct., 43, 5779-5798.
Kulchytsky-Zhyhailo R., Bajkowski A. (2011) Elastic half space with inhomogeneous coating under the action of tangential forces, Materials Science, 46(6), 735-746.
Kulchytsky-Zhyhailo R., Bajkowski A. (2012) Analytical and numerical methods of solution of three-dimensional problem of elasticity for functionally graded coated half-space, Int. J. Mech. Sci., 54, 105-112.
Kulchytsky-Zhyhailo R., Rogowski G. (2009) Axially symmetric contact problem of pressing of an absolutely rigid ball into an elastic half space with inhomogeneous coating, Materials Science, 45(6), 845-858.
Kulchytsky-Zhyhailo R., Rogowski G. (2010) Stresses in hard coating due to a rigid spherical indenter on a layered elastic halfspace, Tribology International, 43(9), 1592-1601.
Lijesh K.P., Amirthagadeswaran K.S. (2010) Optimizing interlayer and coated film thickness for minimum stress distribution under elastohydrodynamic lubrication condition, Proceedings of the International Conference on Frontiers in Automobile and Mechanical Engineering, 328-334.
Liu T.J., Wang Y.S. (2008) Axisymmetric frictionless contact problem of a functionally graded coating with exponentially varying modulus, Acta Mechanica, 199, 151-165.
Liu T.J., Wang Y.S. (2009) Reissner-Sagoci problem for functionally graded materials with arbitrary spatial variation of material properties, Mechanics Research Communications, 36, 322-329.
Liu T.J., Wang Y.S., Zhang C. (2008) Axisymmetric frictionless contact of functionally graded materials, Mechanics Research Communications, Arch Appl Mech, 78, 267-282.
Schwarzer N., Richter F., Hecht G. (1999) The elastic field in a coated half-space under Hertzian pressure distribution, Surf. Coat. Technol., 114, 292-304.
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