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Twinning nucleation in Cu-8 at.% Al single crystals

机译:Cu-8 at。%Al单晶中的孪晶成核

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Transmission electron microscopy observations of the dislocation substructure in Cu-8 at.% Al single crystals deformed in tension have been carried out to elucidate the origin of the twinning dislocation which produces conjugate twinning in this alloy. It is argued that the 'correct' Heidenreich- Shockley dislocation is obtained in the reaction of the primary dislocation with the faulted (Frank) dipole. These interactions are expected to occur frequently during the deformation. Different configurations of the twinning sources are analysed with respect to the nucleation and the growth of the twin. Geometrical issues related to the pinning of the component dislocations at the nodes formed, the motion of the single twinning dislocation and the non-coherent twinning front and the passing barriers encountered during twin growth are analysed. It is shown that there are no geometrical and energetic obstacles to the development of a macroscopic twin by the pole mechanism from the source proposed here. [References: 30]
机译:透射电子显微镜观察了Cu-8 at。%Al单晶在拉伸中变形的位错亚结构,以阐明孪晶位错的起源,该位错在该合金中产生共轭孪晶。有人认为,“正确的” Heidenreich-Shockley位错是在原位错与有缺陷的(弗兰克)偶极子的反应中获得的。预计这些相互作用在变形过程中经常发生。关于孪晶的成核和生长,分析了孪晶源的不同构型。分析了与位错在形成的节点处钉扎,单晶孪晶位错和非相干孪晶锋面的运动以及孪晶生长过程中遇到的通过障碍有关的几何问题。从这里提出的资料表明,通过极点机构对宏观孪生的发展没有几何和能量上的障碍。 [参考:30]

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