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A fatigue damage accumulation formula that has the capacity of predicting the load sequencing effect correctly and can be applied very conveniently in engineering practice is further deduced by using equivalent-loading postulate.
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The power load sequence contains relatively obvious white noise.
A two-block cyclic loading is considered with high low and low high load sequence.
A significant load sequence effect was observed for both tensile and compressive loading.
However, this hypothesis cannot explain many load sequence effects observed in practice.
The criterion also ranked the severeness of three load sequences with respect to fatigue risk.
Fatigue tests were conducted on both the composites under WISPERX load sequence.
Lifetimes differ by a factor 6 for different block lengths indicating a strong load sequence effect.
Simulation results confirm the ability of the algorithm to take into account load sequence effects.
The load pattern and the load sequence have no significant effects on the above SLOC.
This is identified using constant load tests, then evaluated for variable load sequences.
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