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Formation of slip bands plays an important role in deformation and fatigue processes of duplex Ti 6Al 4V.
The formation of slip surfaces in the context of this work should not be interpreted as collapse or catastrophic failure; rather it signifies the development of an active wedge.
Under cyclic loading conditions regions within grains that experience high values of tensile residual stress are more prone to damage processes that lead to the formation of slip bands, defects, micro-voids and fissures that induce crack nucleation and propagation.
The present paper presents results, using the developed computer code, for the simulation of one specific observed breakout mode in laboratory experiments, the one associated with the formation of slip lines.
The results reveal that fatigue damage in the VHCF regime indeed causes the formation of slip bands followed by initiation and propagation of microstructurally short cracks in a very localized manner, manifesting itself by heat generation.
From theoretical calculation and quantitative measurement prospective, the large size and density of unshearable T1 phases can retard dislocation shearing and motion, thereby suppressing the formation of slip bands.
Similar(49)
That is, low concentrations of SSB result in a mixed population of full length and partial genomes whereas high concentrations can prevent the formation of slipped genome altogether [ 65].
During the formation of persistent slip bands, cross slip bands between primary slip bands were often observed.
Through dissection of the existing literature we address key questions regarding fatigue crack initiation, e.g., the apparent role of a critical hydrogen concentration in fatigue crack initiation, the effects of micro-notches in reducing crack initiation lives, and the effects of hydrogen on slip localization and early formation of persistent slip bands.
Cross-slip is shown to be easy and multiplication of dislocations by a double cross-slip mechanism occurs extensively, leading to the formation of large slip bands.
The dislocation structure of the persistent slip bands and the evolution of the surface relief resulting in the formation of persistent slip markings during cyclic loading are documented.
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