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Twinning-like lattice reorientation without a crystallographic twinning plane

机译:没有结晶孪晶面的孪晶样晶格取向

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摘要

Twinning on the plane is a common mode of plastic deformation for hexagonal-close-packed metals. Here we report, by monitoring the deformation of submicron-sized single-crystal magnesium compressed normal to its prismatic plane with transmission electron microscopy, the reorientation of the parent lattice to a ‘twin’ lattice, producing an orientational relationship akin to that of the conventional twinning, but without a crystallographic mirror plane, and giving plastic strain that is not simple shear. Aberration-corrected transmission electron microscopy observations reveal that the boundary between the parent lattice and the ‘twin’ lattice is composed predominantly of semicoherent basal/prismatic interfaces instead of the twinning plane. The migration of this boundary is dominated by the movement of these interfaces undergoing basal/prismatic transformation via local rearrangements of atoms. This newly discovered deformation mode by boundary motion mimics conventional deformation twinning but is distinct from the latter and, as such, broadens the known mechanisms of plasticity.
机译:在平面上孪生是六角形密堆积金属的塑性变形的常见模式。在这里,我们通过透射电子显微镜监测通过垂直于其棱柱面压缩的亚微米级单晶镁的变形,将母晶格重新定向为“双晶”晶格,从而产生类似于常规晶格的取向关系。孪晶,但没有结晶镜平面,并产生不简单剪切的塑性应变。像差校正的透射电子显微镜观察表明,母晶格和“孪生”晶格之间的边界主要由半相干基础/棱镜界面而非孪晶面组成。这些界面的迁移以这些界面的运动为主,这些界面通过原子的局部重排经历了基础/棱柱形转换。这种通过边界运动新发现的变形模式模仿了传统的变形孪生,但不同于后者,因此拓宽了已知的塑性机制。

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