Hostname: page-component-78c5997874-v9fdk Total loading time: 0 Render date: 2024-11-11T00:06:46.625Z Has data issue: false hasContentIssue false

Estimation de la fiabilité par les essais accélérés

Published online by Cambridge University Press:  21 April 2005

Ouahiba Tebbi
Affiliation:
LASQUO EA 3858 : Laboratoire en Sûreté de fonctionnement, Qualité et Organisation, Institut des Sciences et Techniques de l'Ingénieur d'Angers, 62 avenue Notre Dame du Lac, 49000 Angers, France
Fabrice Guérin
Affiliation:
LASQUO EA 3858 : Laboratoire en Sûreté de fonctionnement, Qualité et Organisation, Institut des Sciences et Techniques de l'Ingénieur d'Angers, 62 avenue Notre Dame du Lac, 49000 Angers, France
Bernard Dumon
Affiliation:
LASQUO EA 3858 : Laboratoire en Sûreté de fonctionnement, Qualité et Organisation, Institut des Sciences et Techniques de l'Ingénieur d'Angers, 62 avenue Notre Dame du Lac, 49000 Angers, France
Get access

Abstract

Dans cet article nous présentons quelques plans d'essais accélérés pour estimer la fiabilité des produits. Les plans étudiés sont basés sur le modèle standard de vie accélérée (SVA) en considérant des estimations paramétrique et non-paramétrique. Des applications sur des trombones, soumis à de la fatigue oligocyclique, sont présentées pour illustrer ces différents plans.

Type
Research Article
Copyright
© AFM, EDP Sciences, 2005

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

M.S. Phadke, Quality engineering using robust design, Prentice-Hall, 1989
F. Guérin, B. Dumon, R. Hambli, Determining the shape parameter of a Weibull distribution from Mechanical-Damage Model, Annual Reliability and Maintainability symposium, Proceedings, 2001, pp. 156–160
F. Guérin, B. Dumon, R. Hambli, O. Tebbi, Accelerated Testing based on a Mechanical-Damage Model, Annual Reliability and Maintainability symposium, Proceedings, 2001, pp. 372–376
O. Tebbi, F. Guérin, B. Dumon, Reliability testing of Mechanical products-Application of statistical accelerated life testing models, 9th International Conference on Applications of Statistics and Probability in Civil Engineering, July 6–9, 2003, University of California, Berkeley
W. Nelson, Accelerated Testing: Statistical Models, Test Plans and Data Analysis, Wiley Series in Probability and Mathematical Statistics, New York, 1990
Bagdonavicius, V., Nikulin, M., On accelerated testing of systems, Europ. J. Diagnosis Safety Automation 5(3) (1995) 307316
J.H. Bompas-Smith, Mechanical Survival: the use of reliability data, Mc Graw Hill book, 1973
Bagdonavicius, V., Nikulin, M., Transfer functional and semi-parametric regression, Biometrika V 84(2) (1997) 365378 CrossRef
D. Kececioglu, M. Jiang, F.-B. Sun, A unified approach to random fatigue reliability quantification under random loading, Proc. IEEE Reliability and Maintenability, 1998
V. Bagdonavicius, M. Nikulin, Semi-parametrics Models in Accelerated Life Testing, Queen's papers in pure and applied mathematics, Queen's University, Kingston, Ontario, Canada, 1995, p. 70
Hank Caruso, Abhijit Dasgupta, A Fundamental Overview of Accelerated Testing Analytical Models, Proceedings Annual Reliability and Maintainability Symposium, 1998, pp. 389–393
K. Devarajan, N. Ebrahimi, Non-parametric Approach to Accelerated Life Testing under Multiple Stress, Naval Research Logistics, John Wiley & Sons, 1998, Inc 45, pp. 629–644
R.L. Doyle, Mechanical Reliability, RAMS Tutorial Notes, 1991
D.G. Ford, D.G. Graff, A.O. Payne, Some statistical aspects of fatigue life variation, Fatigue aircraft structure, Proc. 2nd ICAF Symposium, 1961, Paris, pp. 179–208
Pantelis Vassilious, Adamantios Mettas, Understanding Accelerated Life-Testing Analysis, Annual Reliability and Maintainability symposium, Tutorial Notes, 2001, pp. 1–21
Shyur, H.-J., Elsayed, E.A., Luxhoj, J.T., A general model for Accelerated Life Testing with time-dependent covariates, Naval Research Logistics 46 (1999) 303321 3.0.CO;2-4>CrossRef
Zhang, C., Mechanical component lifetime estimation based on accelerated life testing with singurality extrapolation, Mechanical Systems and Signal Processing 16 (2002) 705718 CrossRef
Owen, W.J., Padgett, W.J., Accelerated test models for system strength based on Birnbaum-Saunders distributions, Lifetim Data Analysis, 5 (1998) 133147 CrossRef
O'Connor, P., Testing for reliability, Quality and Reliability Engineering international 19 (2003) 7384 CrossRef
Hoang Phan, Handbook of reliability engineering, Springer, 2003
Basu, A.P., Ebrahimi, N., Non-parametric Accelerated Life Testing, IEEE Trans. Reliab. 31(5) (1982) 432435 CrossRef
V. Bagdonavicius, L. Gerville-Reache, V. Nikoulina, M. Nikoulin, Expériences accélérées : analyse statistique du modèle standard de vie accélérée, Revue de Statistique Appliquée, Vol. XLVIII, septembre 2000, 5–38
V. Bagdonavicius, M. Nikulin, Mathematical models in the theory of accelerated experiments, 2001 World Scientific Publishing Co., pp. 271–303
Christian Lalanne, Dommage par fatigue, Tome 4, Hermes Science Publications, Paris, 1999
J. Lemaitre, J.L. Chaboche, Mécanique des matériaux solides, Dunod, Paris, 1996
R.E. Little, J.C. Ekvall, Statistical Analysis of Fatigue Data, American Society for Testing and Materials, STP744, 1979
J.E. Shigley, Mechanical Engineering Design, Mc Graw Hill, 1972