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Twin boundaries themselves present obstacles for twin boundary motion.
The strength increases monotonically as the twin boundary spacing decreases.
The twin boundary cohesion strengthening/embrittling tendency was evaluated, considering segregation ability of randomly distributed solutes into twin boundary and free surface.
The twin boundary plays an important role in inducing structural relaxation: the strain recovery becomes slower with increasing distance from the twin boundary.
The stable increase of strain is ascribed to the steady movement of twin boundary.
However, Nu does not seem to affect strain behavior or twin boundary movement.
With the stain increasing, the twin boundary density in the deformed microstructures increases indistinctively.
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Based on this twin boundary-dislocation interaction, the strength of twinned materials increases as the twin thickness decreases10.
Twin-boundary engineered specimens were given two potential sensitisation treatments at 575 and 675 °C for 1 h.
However, some nanowires exhibit a bi-crystalline structure with a twin-boundary along their growth direction.
Reversible twin-boundary motion activated in the frequency range up to 600 Hz is directly observed.
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