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Journal Article

Citation

Nielsen SRK, Sørensen JD, Thoft-Christensen P. Reliab. Eng. 1983; 4(2): 85-103.

Copyright

(Copyright © 1983, Elsevier Publishing)

DOI

10.1016/0143-8174(83)90002-1

PMID

unavailable

Abstract

A method is presented for life-time reliability estimates of randomly excited yielding systems, assuming the structure to be safe, when the plastic deformations are confined below certain limits. The accumulated plastic deformations during any single significant loading history are considered to be outcome of identically distributed, independent stochastic variables, for which a model is suggested. Further assuming the interarrival times of the elementary loading histories to be specified by a Poisson process, and the duration of these to be small compared to the designed life-time, the accumulated plastic deformation during several loadings can be modelled as a filtered Poisson process. Using the Markov property of this quantity the considered first-passage problem as well as the related extreme distribution problems are then solved numerically, and the results are compared to simulation studies.

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