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It is observed that using test results of constant cyclic loading to predict the ELCF behavior under random loading may be not effective.
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This paper presents work on short crack initiation and growth behaviour under random loading conditions.
Fatigue crack growth and closure behavior under random loadings in 7475-T7351 alloynum alloy is investigated by performing various random loading tests.
The reliability evaluation of structural components under random loading is affected by several uncertainties.
Tests under random loading were also far from the PM predictions.
The fatigue crack growth under random loading can be well described by the crack closure concept.
In this paper, the problem of overload failure of a structural component under random loading and under random crack propagation is addressed.
The proposed method can be easily applied to dynamic stresses prediction for engineering structures under random loading.
This paper proposes an accurate and efficient computational method to obtain the dynamic stresses of structures under random loading.
The H∞ control design is employed to suppress the large amplitude vibrations of composites plates under random loading.
Fatigue life under two-level loading and under random loading is found analytically and relations between micro-parameters and macro stress-life results are revealed.
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