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Comparison of glide mechanisms in hcp Ti and Ti3Al

机译:hcp Ti和Ti3Al中滑动机理的比较

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摘要

Several dislocation glide mechanisms are studied in Ti and Ti3Al by means of in situ straining experiments in a transmission electron microscope at various temperatures. The prismatic glide of a titanium occurs by the jerky motion of straight screw a-dislocations subjected to a frictional force. An explanation for the discontinuity in the temperature dependence of the corresponding activation area is proposed, on the basis of the experimentally measured variation of the corresponding dislocation jump length. In Ti3Al superlattice 2a-dislocations exhibit two different dissociation modes in prismatic planes corresponding to highly different antiphase boundary energies. The properties of these two types of dislocation are compared and discussed. It is shown that the motion of 2c + a superlattice dislocations in pyramidal planes is controlled by a new mechanism: the self-nucleation of small-size obstacles as the result of irreversible atomic displacements. The tension/compression asymmetry observed between type 1 and type 2 pyramidal planes is finally discussed. (c) 2006 Springer Science + Business Media, Inc.
机译:通过在透射电子显微镜中不同温度下的原位应变实验,研究了Ti和Ti3Al中的几种位错滑动机理。钛的棱柱形滑动是通过承受摩擦力的直螺纹α位错的剧烈运动而发生的。根据实验测得的相应位错跃迁长度的变化,提出了对相应活化区温度依赖性不连续性的解释。在Ti3Al超晶格2a中,位错在棱镜平面中表现出两种不同的解离模式,分别对应于高度不同的反相边界能。比较和讨论了这两种类型的位错的性质。结果表明,锥体平面中2c +超晶格位错的运动受到一种新机制的控制:由于不可逆的原子位移,小尺寸障碍物的自成核。最后讨论了在1型和2型锥体平面之间观察到的拉伸/压缩不对称性。 (c)2006年Springer Science + Business Media,Inc.

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