Browse > Article

Reliability-Based Design Optimization of Slider Air Bearings  

Yoon, Sang-Joon (Center of Innovative Design Optimization Technology, Hanyang university)
Choi, Dong-Hoon (Center of Innovative Design Optimization Technology, Hanyang university)
Publication Information
Journal of Mechanical Science and Technology / v.18, no.10, 2004 , pp. 1722-1729 More about this Journal
Abstract
This paper presents a design methodology for determining configurations of slider air bearings considering the randomness of the air-bearing surface (ABS) geometry by using the iSIGHT. A reliability-based design optimization (RBDO) problem is formulated to minimize the variations in the mean values of the flying heights from a target value while satisfying the desired probabilistic constraints keeping the pitch and roll angles within a suitable range. The reliability analysis is employed to estimate how the fabrication tolerances of individual slider parameters affect the final flying attitude tolerances. The proposed approach first solves the deterministic optimization problem. Then, beginning with this solution, the RBDO is continued with the reliability constraints affected by the random variables. Reliability constraints overriding the constraints of the deterministic optimization attempt to drive the design to a reliability solution with minimum increase in the objective. The simulation results of the RBDO are listed in comparison with the values of the initial design and the results of the deterministic optimization, respectively. To show the effectiveness of the proposed approach, the reliability analyses are simply carried out by using the mean value first-order second-moment (MVFO) method. The Monte Carlo simulation of the RBDO's results is also performed to estimate the efficiency of the proposed approach. Those results are demonstrated to satisfy all the desired probabilistic constraints, where the target reliability level for constraints is defined as 0.8.
Keywords
Slider Air Bearings; Optimization; Air-Bearing Surface; Reliability-Based Design;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Zhu, H. and Bogy, D. B., 2002, 'DIRECT Algorithm and Its Application to Slider Air-Bearing Surface Optimization,' IEEE Transactions on Magnetics, Vol. 38, pp. 2168-2170   DOI   ScienceOn
2 Yoon, S.-J., Kim, M.-S. and Choi, D.-H., 2002b, 'Topological Design Sensitivity on the Air Bearing Surface of Head Slider,' KSME International Journal, Vol. 16, No. 8, pp. 1102-1108   과학기술학회마을
3 Youn. B. D., Choi. K. K. and Park. Y. H.. 2003, 'Hybrid Analysis Method for Reliability-Based Design Optimization,' ASME Journal of Mechanical Design, Vol. 125, pp.221-232   DOI
4 Vanderplaats, G. N., 1985, ADS-A Fortran Program for Automated Design Synthesis Version 1.10, Engineering Design Optimization, Inc.
5 Yoon, S.-J., Kim, D.-I., Jeong, T.-G. and Choi, D.-H., 2002a, 'Optimizations of Air-Lubricated Slider Bearings Using the Reduced-Basis Concept,' IEEE Transactions on Magnetics, Vol. 38, pp. 2174-2176   DOI   ScienceOn
6 Tu, J., Choi, K. K. and Park, Y. H., 1999, 'A New Study on Reliability Based Design Optimization,' ASME Journal of Mechanical Design, Vol. 121, pp. 557-564   DOI   ScienceOn
7 Stenberg, H., Wahl, M. H. and Talke, F. E., 1995, 'Comparison of Numerical and Experimental Flying Characteristics of Tri-Pad Sliders,' IEEE Transactions on Magnetics, Vol. 31, pp.2970-2972   DOI   ScienceOn
8 Hanke, A. V. and Talke, F. E., 2003, 'A New Universal Approach for Slider Optimization,' ASME/STLE Joint International Tribology Conference, 2002-TRIB-263
9 Kang, T.-S., Choi, D.-H. and Jeong, T. G., 2001, 'Optimal design of HDD air-lubricated slider bearings for improving dynamic characteristics and operating performance,' ASME Journal of Tribology, Vol. 123, pp. 541-547   DOI   ScienceOn
10 Chen, X., Hasselman, T. K. and Neill, D. J., 1997, 'Reliability Based Structural Design Optimization for Practical Applications,' AIAA-97-1043, pp.2724-2732
11 Fukui, S. and Kaneko, R., 1990, 'A Database for the Interpolation of Poiseuille Flow Rate for the High Knudsen Number Lubrication Problems,' ASME Journal of Tribology, Vol. 112, pp. 78-83   DOI
12 Chandu, S. V. L. and Grandhi, R. V., 1995, 'General Purpose Procedure for Reliability Structural Optimization under Parametric Uncertainties,' Advanced Eng. Soft, Vol. 23, pp. 7-14   DOI   ScienceOn