Experimental Study on Static and Dynamic Characteristics of Annular Plain Seals With Porous Materials

Author:

Kaneko S.1,Kamei H.1,Yanagisawa Y.1,Kawahara H.2

Affiliation:

1. Department of Mechanical Engineering, Nagaoka University of Technology, Kamitomioka, Nagaoka, 940-21, Japan

2. Miura Industries Co., Ltd., 7 Horie, Matsuyama, 799-26, Japan

Abstract

Static and dynamic characteristics are experimentally investigated for annular plain seals with porous materials applied to the seal surface by insertion into the middle of the seal. Experimental results show that annular plain seals with porous materials have a higher leakage flow rate, larger main stiffness coefficients, and smaller cross-coupled stiffness coefficients and main damping coefficients than conventional annular plain seals with solid surfaces. In the porous seals, an increase of approximately 30 percent in the leakage flow rate and reduction of the same amount in the main damping coefficients are obtained, whereas the main stiffness coefficients for the porous seals are four to six times as much as those for the solid seals due to the increase in the hydrostatic force induced by a function of the hydrostatic porous bearing. This suggests that the quantitative effects of the porous materials on the main stiffness coefficients are much more significant than the effects on the leakage flow rate and the other dynamic coefficients. The larger main stiffness coefficients for the porous seals yield larger radial reaction force for a small concentric whirling motion, which would contribute to rotor stability from the viewpoint of increasing speed limits due to a stiffer rotor support.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference21 articles.

1. Black H. F. , 1969, “Effects of Hydraulic Forces in Annular Pressure Seals on the Vibrations of Centrifugal Pump Rotors,” Journal of Mechanical Engineering Science, Vol. 11, pp. 206–213.

2. Black, H. F., and Jenssen, D. N., 1971, “Effects of High Pressure Ring Seals on Pump Rotor Vibrations,” ASME Paper 71-WA/FF-38.

3. Childs D. W. , 1983a, “Dynamic Analysis of Turbulent Annular Seals Based on Hirs’ Lubrication Equation,” ASME JOURNAL OF LUBRICATION TECHNOLOGY, Vol. 105, pp. 429–436.

4. Childs D. W. , 1983b, “Finite Length Solutions for Rotordynamic Coefficients of Turbulent Annular Seals,” ASME JOURNAL OF LUBRICATION TECHNOLOGY, Vol. 105, pp. 437–444.

5. Childs, D. W., 1984, “Finite-Length Solutions for the Rotordynamic Coefficients of Constant-Clearance and Convergent-Tapered Annular Seals,” Proceedings of the Institution of Mechanical Engineers, Paper C276/84, pp. 223–231.

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