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It has previously been shown that stiffness decrement and plastic strain due to mechanical fatigue loading are closely related, and both depend on the greatest accumulated strain.
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In this study, a simulated engine test rig has been established to evaluate thermal fatigue behavior of a candidate engine combustor material, Haynes 188, under superimposed CO2 laser surface impulsive thermal loads (30 100 Hz) in conjunction with the mechanical fatigue loads (10 Hz).
The overall performance of these composites under isothermal and thermo-mechanical fatigue loading have been examined.
A change from a mainly transgranular crack growth at 673 K to a mostly intergranular fracture at 923 K as well as under thermo-mechanical fatigue loading was found.
Evaluating state of damage in a ductile material as it experiences mechanical fatigue and cyclic loading poses much complexity, and has been the subject of many researches.
A new finite element method is proposed to model the evolution of cracks in a 3D lattice under mechanical and thermal fatigue loading.
This study presents the optimization of the maintenance scheduling of mechanical components under fatigue loading.
The reduced level of energy dissipation for the nano-Ni during the loading-unloading cycle indicates that the nanostructured materials may be able to more readily endure greater mechanical fatigue in cyclic load path changes, a significant discovery of nano-mechanics.
The effects of thermo-mechanical fatigue (TMF) loading on the coating as well as TMF life are the subjects of this paper.
The damage and lifetime behaviour of Ni-base alloy NiCr22Co12Mo9 (comparable to Inconel Alloy 617) under thermo-mechanical fatigue (TMF) loading with varying phase angles between strain and temperature and optional dwell times at the maximum temperature was studied.
First, uniaxial and eccentric compressive fatigue loads were exerted on prism concrete specimens to observe the mechanical properties of concrete under fatigue loading.
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