2022
DOI: 10.1016/j.intermet.2021.107434
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Influence of alloying elements and the state of order on the formation of antiphase boundaries in B2 phases

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Cited by 4 publications
(2 citation statements)
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“…This spatial configuration arrangement increased the lattice plane distortions but was restricted by the "out-of-phase" or defect interfaces on either boundary side of the structure, known as the anti-phase boundary (APB) [86]. This phase also began to dislocate into the disordered state or matrix that was stacking fault energies needed to break the strong anisotropy deformation [81].…”
Section: Discussion Of Spatial Configuration Arrangements and Lattice...mentioning
confidence: 99%
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“…This spatial configuration arrangement increased the lattice plane distortions but was restricted by the "out-of-phase" or defect interfaces on either boundary side of the structure, known as the anti-phase boundary (APB) [86]. This phase also began to dislocate into the disordered state or matrix that was stacking fault energies needed to break the strong anisotropy deformation [81].…”
Section: Discussion Of Spatial Configuration Arrangements and Lattice...mentioning
confidence: 99%
“…This phase also began to dislocate into the disordered state or matrix that was stacking fault energies needed to break the strong anisotropy deformation [81]. This energy per unit area of interface was referred to as APB energy, γ APB , and it could be isotropic or anisotropic [78,86]. This APB energy was calculated based on the energy differences solely due to the defect between the APB and the non-APB pristine atomic structures [87].…”
Section: Discussion Of Spatial Configuration Arrangements and Lattice...mentioning
confidence: 99%