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A set of fatigue tests are performed on unstrengthened and strengthened precracked steel plates to verify the proposed model.
A set of fatigue tests were conducted and results indicated that prestressed CFRP technique could increase fatigue crack propagation life 35.57 times longer than that of unrepaired one.
By applying this parameter it is possible to develop a set of fatigue lives for various fibre orientation angles and stress ratios using experimental data obtained from different fibre/load angles and stress ratios.
The authors have adopted a cycle jump approach which allows to calculate a set of fatigue loading cycles at deliberately chosen intervals and to account for the effect of the fatigue loading cycles in between in an accurate manner.
Using the SIF for several points of the crack front and the Paris law of the material, the evolution of any crack front can be estimated after a set of fatigue cycles and, consequently, the fatigue life of the samples under study from a given initial crack can be predicted.
So far, a large number of fatigue experiments for these welded details have been conducted under repeated cyclic loads, and a set of fatigue life curves were produced or fitted according to fatigue experiment result.
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Results are presented for the posterior information about the model parameters together with the uncertainty associated with the model choice from a set of plausible fatigue models.
This approach requires, as a starting point, a fatigue master curve defined in terms of total strain energy density versus number of cycles to failure, which is usually determined from a set of uniaxial fatigue tests using smooth standard specimens.
Finally, to evaluate life time up to crack nucleation, we have achieved a set of experimental fatigue tests using uniaxial tension (UT) and pure shear (PS) test specimens containing a hole in order to localise the crack initiation.
A simple reliability-based framework is applied to calibrate a new set of fatigue design guidelines.
The objective of this manuscript is to provide a complete set of fatigue data on vacuum infused aligned PFCs.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com