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Plastic deformation behaviour and deformation substructure in Al-rich TiAl single crystals deformed at high temperatures

机译:高温变形的富Al TiAl单晶的塑性变形行为和变形子结构

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Plastic deformation behaviour in Ti–54.7?at.%Al and Ti–58.0?at.%Al single crystals was examined around and above the anomalous strengthening peak temperature (Tp) focusing on the effect of Al5Ti3 superstructure. The Al5Ti3 superstructure developed in the L10 matrix of Ti–58.0?at.%Al, and the size of the Al5Ti3 phase once increased during annealing at 800°C and then decreased with increasing temperature, while no significant evidence of the Al5Ti3 particles was obtained in Ti–54.7?at.%Al from TEM observation although diffuse scattering corresponding to the spots for the Al5Ti3 superstructure was observed. The transition of slip plane for ? 110] ordinary dislocations from {111} to {110) and/or (001) occurred at and above Tp due to anisotropy of anti-phase boundary energies on {111}, {110) and (001) in the Al5Ti3 superstructure. Anomalous strengthening is related to the development of this superstructure which may assist the cross-slip of some parts of ? 110] ordinary dislocations onto {110) and/or (001) resulting in the formation of dragging points to the motion of the dislocations.
机译:在异常强化峰值温度(T p )附近和上方,研究了Ti-54.7at。%Al和Ti-58.0at。%Al单晶的塑性变形行为,重点研究了Al的影响。 5 Ti 3 上层建筑。 Al 5 Ti 3 上层结构在Ti–58.0?at%Al的L1 0 基质中形成,Al < SUB> 5 Ti 3 相在800°C的退火过程中一次升高,然后随温度升高而降低,而没有显着证据表明Al 5 Ti 3 颗粒,尽管对应于Al 5 Ti 3 上层结构斑点的扩散散射为观测到的。滑移面的过渡为? 110]由于{111},{110)和(110)上的反相边界能的各向异性,在T p 处和上方发生了从{111}至{110)和/或(001)的普通位错。 001)中的Al 5 Ti 3 超结构。异常加固与该上部结构的发展有关,这可能有助于某些部分的交叉滑动。 [110]和(或)(001)上的普通位错导致形成位错运动的拖曳点。

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