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The proposed hinge shows good performance and seems promising for the description of low-cycle fracture behavior in cemented materials.
Timing of stimulus, gap size, number of cycles, fracture geometry, and stiffness of the construct are just some of the mechanical factors that affect the healing response.
After each pressurization cycle, the fracture breakdown pressure in the first fracturing cycle is lower than the reopening pressures in the subsequent reopening and step-rate phases.
In this study, the artificial crack length increases with a constant rate with time, which is equal to the crack growth rate at the last cycle before fracture occurs.
For the elbow, plastic collapse and low cycle fatigue fracture by reversed loading have been tested using ten specimens.
Well-defined impact fatigue (S N) behavior, having progressive endurance below the threshold single cycle impact fracture strength, with a limit, has been demonstrated.
Well-defined impact fatigue (S N) behaviour, having a progressive endurance below the threshold single cycle impact fracture strength, with a limit, has been demonstrated.
The experimental part deals with modeling of combined bending -torsion loading and determining the number of cycles to fracture in region low-cycle fatigue and also during of the loading with the sinusoidal wave form under in phase φ = 0°.
Comparisons of the maximum tensile force (Fmax), initial buckling load (Fc), number of cycles to fracture, the total energy dissipated (Wtot) and the energy dissipated at the first cycle of ductility of 4 (Wμ=4) between the numerical models and the physical tests are carried out.
Low-cycle fatigue fracture of metallic glass nanowires was investigated using molecular dynamics simulations.
Load controlled low cycle fatigue fractures in plain cylindrical specimens demonstrate the highly crystallographic nature of the failure process.
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