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No prism slip was observed.
Both basal and prism slip were observed, although prism slip was more prevalent.
The role of basal slip and prism slip is evaluated in load shedding in a rogue grain combination.
The effect of prism slip on cyclic hardening and deformation substructure in Ti3Al single crystals cyclically deformed was examined.
Material flow was found to be close to the simple-shear deformation and arose mainly from the prism slip.
Significant slip system dependent rate sensitivity is observed such that the prism slip has a strikingly higher m value than the basal.
Similar(41)
Traces of basal and prism slips were observed, depending on the position relative to the indentation.
Slip traces of both basal and prism slips were produced on the nanoindented crystal's surface, while only basal slip traces were formed on the surfaces of the nanoimprinted and nanogrooved crystals.
The influences of prism 〈a〉 slip, basal 〈a〉 slip, pyramidal 〈c + a〉 slip and tensile twinning were considered.
The properties of sapphire (α-Al2O3) predeformed at T = 1450 °C by 〈10¯10〉{1¯210} prism plane slip and subsequently deformed in 〈1¯210〉 0 0 0 1) basal slip between 1050 and 1250 °C were investigated.
For route B, prism a slip was the main deformation mechanism.
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