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- W1994475737 abstract "The formation process of L1o γ lamellae in the hcp α phase of a Ti-40at.%Al alloy solution-treated at 1473 K for 86.4 ks followed by isothermal decomposition at 1273 K has been analysed in terms of morphology and crystallography. The α phase was ordered to D019 α2 phase during cooling. The γ lamella with the orientation relationships, {111}γ//(0001)α2 and 〈1bar10]γ//〈11bar20〉α2, nucleated at a grain boundary γ allotriomorph / α2 matrix interface and exhibited 90° domain relationship with the γ allotriomorph. Both sharp surface reliefs and the overlapping stacking faults with almost regularly spaced (Remark: Graphics omitted.) partial dislocations on every two close-packed layers formed during the growth of the γ lamellae, inheritting the anti-phase domain boundaries (APBs) in the α2 phase. The C-curve for the γ lamellae nucleation indicated the diffusional nature. The phase transition processes are as follows: homogeneous α phase→homogeneous α2 phase with thermal APBs→the formation of γ allotriomorph at grain boundary→the nucleation of γ lamella at γ allotriomorph / α2 matrix interface. The formation of γ allotriomorph induces an elastic strain field around it due to the semicoherency at γ allotriomorph/α2 matrix interface. The γ lamella with the 90° domain relationship to a γ allotriomorph nucleates at this interface to relax the elastic strain field. The growth of γ lamella is due to the glides of (Remark: Graphics omitted.) partial dislocations with short-range rearrangements between Ti and Al atoms at an (0001)α2//{111}γ interphase boundary." @default.
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- W1994475737 date "1996-01-01" @default.
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- W1994475737 title "Formation Process of Lamellar γ Phase in a Ti-40at.%Al Alloy" @default.
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- W1994475737 doi "https://doi.org/10.2320/matertrans1989.37.813" @default.
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