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      Hard-sphere displacive model of deformation twinning in hexagonal close-packed metals. Revisiting the case of the (56°, a) contraction twins in magnesium

      Acta Crystallographica Section A Foundations and Advances
      International Union of Crystallography (IUCr)

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          Abstract

          Contraction twinning in magnesium alloys leads to new grains that are misoriented from the parent grain by a rotation (56°, a). The classical shear theory of deformation twinning does not specify the atomic displacements and does not explain why contraction twinning is less frequent than extension twinning. The paper proposes a new displacive model in line with our previous work on martensitic transformations and extension twinning. A continuous angular distortion matrix that transforms the initial hexagonal close-packed (h.c.p.) crystal into a final h.c.p. crystal is determined such that the atoms move as hard spheres and reach the final positions expected by the orientation relationship. The calculations prove that the distortion is not a simple shear when it is considered in its continuity. The ({0{\overline 1}1}) plane is untilted and restored, but it is not fully invariant because some interatomic distances in this plane evolve during the distortion process; the unit volume also increases up to 5% before coming back to its initial value when the twinning distortion is complete. Then, the distortion takes the form of a simple shear on the ({0{\overline 1}1}) plane with a shear along the direction [{18,{\overline 5},{\overline 5}}] of amplitude 0.358. Experiments are proposed to validate or disprove the model.

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          THE CRYSTALLOGRAPHY OF DEFORMATION TWINNING IN TITANIUM

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            Author and article information

            Journal
            ACSAD7
            Acta Crystallographica Section A Foundations and Advances
            Acta Crystallogr A Found Adv
            Acta Crystallogr A
            Acta Crystallogr A Found Crystallogr
            Acta Cryst A
            Acta Cryst A Found Adv
            Acta Cryst Sect A
            Acta Cryst Sect A Found Adv
            Acta Crystallogr Sect A
            Acta Crystallogr Sect A Found Adv
            Acta Crystallogr Sect A Found Crystallogr
            International Union of Crystallography (IUCr)
            2053-2733
            July 2017
            June 21 2017
            July 01 2017
            : 73
            : 4
            : 346-356
            Article
            10.1107/S2053273317005459
            97ff010f-3889-4217-9994-168dfd9b1a4a
            © 2017

            http://journals.iucr.org/services/copyrightpolicy.html

            http://journals.iucr.org/services/copyrightpolicy.html#TDM

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