Fatigue and Stress |
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Propagation of fatigue cracks through residual stress fields | 9 |
Influence of the specimen size on fatigue crack initiation in welded | 27 |
On the characterization of fatigue crack growth behaviour from a statistical viewpoint via | 48 |
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aluminium analysis annealed anodic applied arc air gouging autofrettaged axial ballized bending brake calculated carbonitriding coefficients components compressive residual stresses compressive stresses corrosion fatigue crack growth rate crack initiation crack length crack propagation curve cyclic cylinders decrease depth determined disc effect Ellyin epoxy equation evaluation experimental fatigue crack growth fatigue failure fatigue limit fatigue strength fatigue tests FCGR fracture function galvanised gradient heat increase intensity factor range layer load machined material maximum mechanical metal method neutron diffraction notch number of cycles obtained parameters peak plane plastic deformation powder predicted prestrain residual compressive stress residual stress distribution residual stress measurement rolling contact fatigue S-N curve sampling volume shot peened shown in Fig shows slip ratio specimen surface steel strain gauge strain tensor stress intensity factor structure sucker rod string superalloys tangential force technique temperature tensile stress thermal fatigue thickness ungalvanised values variation weld