Readers will find here an excellent monograph that examines the
theoretical foundations of the spectral method for fatigue life
determination.
The authors discuss a rule of description of random loading states with
the matrix of power spectral density functions of the stress/strain
tensor components.
Some chosen criteria of multiaxial fatigue failure are analyzed. The
formula proposed in this book enables readers to determine power
spectral density of the equivalent history directly from the components
of the power spectral density matrix of the multidimensional stochastic
process.
It presents the assumptions and the procedure of determination of basic
relationships of the spectral method.
The authors work out equations determining the fatigue life according to
the spectral method using various linear hypotheses of fatigue damage
accumulation.
The algorithm of fatigue life contains five blocks: determination of
loading; determination of the critical plane position for the assumed
multiaxial fatigue failure criterion; determination of power spectral
density of the equivalent stress or strain; determination of statistical
parameters of the equivalent parameter responsible for fatigue damage;
and fatigue life calculation according to a suitable hypothesis of
damage accumulation.