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http://dx.doi.org/10.12656/jksht.2019.32.6.256

Microstructure Control and Tensile Property Measurements of Hot-deformed γ-TiAl alloy  

Park, Sung-Hyun (School of Materials Science and Engineering, Kumoh National Institute of Technology (KIT))
Kim, Jae-Kwon (School of Materials Science and Engineering, Kumoh National Institute of Technology (KIT))
Kim, Seong-Woong (Titanium Department, Korea Institute of Materials Science (KIMS))
Kim, Seung-Eon (Titanium Department, Korea Institute of Materials Science (KIMS))
Park, No-Jin (School of Materials Science and Engineering, Kumoh National Institute of Technology (KIT))
Oh, Myung-Hoon (School of Materials Science and Engineering, Kumoh National Institute of Technology (KIT))
Publication Information
Journal of the Korean Society for Heat Treatment / v.32, no.6, 2019 , pp. 256-262 More about this Journal
Abstract
The microstructural features and texture development by both hot rolling and hot forging in ${\gamma}-TiAl$ alloy were investigated. In addition, additional heat treatment after hot forging was conducted to recognize change of the microstructure and texture evolution. The obtained microstructural features through dynamic recrystallization after hot deformed ${\gamma}-TiAl$ were quite different because two kinds of formation process were occurred depending on deformation condition. However, analyzed texture tends to be random orientation due to intermediate annealing up to ${\alpha}+{\beta}$ region during the hot deformation process. After additional heat treatment, microstructure transformed into fully lamellar microstructure and randomly oriented texture was also observed due to the same reason as before. Tensile test at room temperature demonstrated that anisotropy of mechanical properties were not appeared and transgranular fracture was occurred between interface of ${\alpha}_2/{\gamma}$. As a result, it could be suggested that microstructural features influenced much more than texture development on mechanical properties at room temperature.
Keywords
${\gamma}-TiAl$; Microstructure; Dynamic recrystallization; Texture development; Mechanical properties;
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