TECHNICAL PAPERS
Jan 1, 2000

Two Tangential Forces and a Penny-Shaped Crack: A Complete Solution

Publication: Journal of Engineering Mechanics
Volume 126, Issue 1

Abstract

The following problem is considered: A penny-shaped crack is located in the plane z = 0 of a transversely isotropic elastic space and interacts with two equal tangential forces, acting in the same direction, which are located arbitrarily, but symmetrically with respect to the plane of the crack. An exact closed-form solution is obtained here. Some of the stresses and displacements in the whole space are expressed in terms of elementary functions. Two methods of solution are considered. The first method considers superposition of an uncracked space subjected to two forces and a space weakened by a crack and subjected to a specially defined loading. The second method reduces the problem to that of a half-space, one force is acting inside this half-space, and its surface is loaded by a pressure, providing zero displacements outside the crack. It is shown that both methods give the same results.

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References

1.
Elliott, H. A. (1948). “Three-dimensional stress distributions in hexagonal aeolotropic crystals.” Proc. Cambridge Phil. Soc., 44, 522–533.
2.
Fabrikant, V. I. (1970). “Effect of concentrated force on a transversely isotropic elastic body.” Izvestiia Vysshikh Uchebnykh Zavedenii, Mashinostroenie, 3, 9–12 (in Russian).
3.
Fabrikant, V. I. (1989). Applications of potential theory in mechanics. Selection of new results. Kluwer, Dordrecht, The Netherlands.
4.
Fabrikant, V. I. (1991). Mixed boundary value problems of potential theory and their applications in engineering. Kluwer, Dordrecht, The Netherlands.
5.
Sneddon, I. N. (1951). Fourier transforms. McGraw-Hill, New York.
6.
Westmann, R. A. (1965). “Asymmetric mixed boundary-value problem of the elastic half-space.” J. Appl. Mech., 32, 411–417.

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Go to Journal of Engineering Mechanics
Journal of Engineering Mechanics
Volume 126Issue 1January 2000
Pages: 102 - 111

History

Received: Feb 4, 1999
Published online: Jan 1, 2000
Published in print: Jan 2000

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V. I. Fabrikant
Prisoner #167932 D, Cowansville Jail, Cowansville, Que., Canada J2K 3N7.

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