Wire Rope with Complex Cross Sections
Publication: Journal of Engineering Mechanics
Volume 110, Issue 3
Abstract
A theory is developed to predict the static response of a wire rope with complex cross sections. The solutions of the nonlinear equations of equilibrium are linearized, and the results are applied to a Seale rope with an independent wire rope core. The linearization permits a considerable simplification in the theory so that the results can readily be applied to other types of cross sections. Expressions are presented for the stresses in the rope, and the maximum tensile stress is also determined. A load‐deformation curve of a Seale rope is obtained experimentally, and the results are compared with the theory.
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References
1.
Costello, G. A., and Phillips, J. W., “Effective Modulus of Twisted Wire Cables,” Journal of the Engineering Mechanics Division, ASCE, Vol. 102, No. EM1, Paper 11944, Feb., 1976, pp. 171–181.
2.
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3.
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4.
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6.
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7.
Smith, H. L., Stonesiter, F. K., and Seibert, E. R., “Increased Fatigue Life of Wire Rope through Periodic Overloads,” paper 3256, presented at the May, 1981, 10th Annual Offshore Technology Conference, held at Houston, Tex.
8.
Velinsky, S. A., “Analysis of Wire Ropes with Complex Cross Sections,” thesis presented to the University of Illinois, at Urbana, Ill., in 1981, in partial fulfillment of the requirements for the degree of Doctor of Philosophy.
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Copyright © 1984 ASCE.
History
Published online: Mar 1, 1984
Published in print: Mar 1984
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