The Deformation of O-Rings Compressed by Smooth Rigid Plates

Author:

Warren W. E.1,Weese J. A.2

Affiliation:

1. Department of Civil Engineering, Texas A&M University, College Station, TX 77843

2. Department of Engineering Technology, Texas A&M University, College Station, TX 77843

Abstract

Three-dimensional effects of symmetrically compressing an O-ring with rigid plates are investigated. The O-ring is assumed to be an incompressible elastic material and the mixed boundary value problem is formulated within the framework of classical the linear elasticity theory. Transversely compressing the O-ring between flat rigid plates increases the toroidal radius and induces a reduction in the O-ring cross-sectional radius. This reduction depends strongly on the conditions of contact between plate and O-ring, and the reduced contact pressure may threaten the integrity of the seal. For O-rings compressed radially inward compressed radially inward or outward, most of the radial displacement is accommodated by a change in the toroidal radius with very little actual compression of the ring material. If this effect is not accounted for in the design of the seal, the contact pressure may not be sufficient to secure the seal.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference6 articles.

1. Morse, P. M., and Feshbach, H., 1953, Methods of Theoretical Physics, McGraw-Hill Book Co., New York, NY.

2. Timoshenko, S., 1936, Theory of Elastic Stability, McGraw-Hill Book Co., New York, NY, p. 216.

3. Warren W. E. , CurroJ. G., and AmosD. E., 1988, “On the Nature of O-Rings in Contact with Rough Surfaces,” ASME Journal of Tribology, Vol. 110, pp. 632–637.

4. Warren W. E. , and AmosD. E., 1991, “Closing of Surface Flaws During Compressive Loading,” ASME Journal of Electrical Packaging, Vol. 113, pp. 63–67.

5. Warren W. E. , WeeseJ. A., and MitchellT. P., 1994, “Asymptotic Analysis of the Elastic Solid Torus,” Developments in Theoretical and Applied Mechanics, Vol. 17, eds., I. C. Jong and F. A. Aki, LSU and VA Press, pp. 75–91.

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