Continuous atomic displacements and lattice distortions during martensitic transformations in fcc-bcc-hcp systems
arXiv:1502.07152 · doi:10.1016/j.actamat.2016.01.075
Abstract
This work generalizes our previous works on fcc-bcc martensitic transformations to the larger family of transformations in the fcc-bcc-hcp system and to fcc-fcc mechanical twinning. The analytical expressions of the atomic displacements and lattice distortions are calculated directly from the orientation relationships without any adjustment of free parameter; the unique assumption is that the atoms are hard-spheres that cannot interpenetrate themselves. The habit planes are predicted on the simple criterion that they are unrotated by the distortion, and the results are compared to experimental observations published in literature. It is shown that shuffle is required for transformations implying the hcp phase because the hcp primitive Bravais lattice contains two atoms, instead of one for the fcc and bcc phases. A simple encoding of the lattice distortions and shuffles permits to attribute a groupoid structure to the transformations in the fcc-hcp-bcc system. The analytical expressions of the intermediate states are given and could be used to calculate activation energies. The martensitic distortion occurs in one-step, without shearing, and its accommodation generates orientation gradients in the parent phase, independently of its glide modes. The concept of reversibility is detailed on the basis of crystallographic and morphological arguments. The possibility to apply this approach to diffusion-limited martensitic transformations is discussed.
46 pages, 15 figures
References in corpus (2)
Cited by in corpus (12)
- Over the shear paradigm
- Displacive model of deformation twinning in hexagonal close-packed metals. Case of the (90 deg, a) and (86 deg, a) extension twins in magnesium
- The transformation matrices (distortion, orientation, correspondence), their continuous forms, and their variants
- Evidence of new twinning modes in magnesium questioning the shear paradigm
- A crystallographic model of the {557} habit planes in low-carbon martensitic steels
- The (11-22) and (-12-16) twinning modes modelled by obliquity correction of a (58deg, a+2b) prototype stretch twin
- Band Structure Theory of the BCC to HCP Burgers Distortion
- Crystallography of deformation twinning in hexagonal close-packed metals. Revisiting the case of the (56 deg, a) contraction twins in magnesium
- Densest vs. jammed packings of 2D bent-core trimers
- Densest versus jammed packings of bent-core trimers
- Comment on 'A new nanoscale metastable iron phase in carbon steels'
- Slip-dominated structural transitions