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      Mechanism of plastic deformation of Mn-added TiAl L 10 -type intermetallic compound

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      Journal of Materials Research
      Cambridge University Press (CUP)

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          Abstract

          Titanium aluminum intermetallic compound is a possible candidate for a high-temperature structural material, except for a problem of lack of room-temperature ductility. Recently, this problem was found to be overcome possibly by the addition of Mn, but this mechanism has not been fully understood yet. In order to understand the fundamental mechanism of the ductility improvement by Mn addition, microanalyses have been carried out. The results are as follows. Twin structures in a TiAl intermetallic compound in the as-cast state can be climinated by high-temperature annealing, while those in Mn-added TiAl are thermally more stable and exist even after annealing for 86.4 ks at 1273 K. The reason for this thermal stabilization of twin structures is considered to be due to the pinning effect of twin dislocations by Mn addition. The enhancement of twin deformation in TiAl by Mn addition is regarded to be caused by two factors. One is the stabilization of twin partial dislocations, becoming the nucleation sites for twin formation. The other is the decrease in stacking fault energy, which makes twin deformation energetically easier.

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          The deformation and fracture of TiAl at elevated temperatures

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            Positive temperature dependence of the yield stress in TiAl L10 type superlattice intermetallic compound single crystals at 293–1273 K

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              Nature and dissociation of the dislocations in TiAl deformed at room temperature

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                Author and article information

                Journal
                Journal of Materials Research
                J. Mater. Res.
                Cambridge University Press (CUP)
                0884-2914
                2044-5326
                August 1988
                January 31 2011
                August 1988
                : 3
                : 4
                : 656-664
                Article
                10.1557/JMR.1988.0656
                19e70f70-e7db-4b08-b612-e7ad9628db7f
                © 1988

                https://www.cambridge.org/core/terms

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