首页> 外文期刊>Materials Transactions, JIM >Control of Lamellar Arrangement in TiAl Alloys by High-Temperature Deformation in α Single Phase and Subsequent Annealing in Two Phase Region
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Control of Lamellar Arrangement in TiAl Alloys by High-Temperature Deformation in α Single Phase and Subsequent Annealing in Two Phase Region

机译:通过单相中的高温变形以及随后在两相区域中的退火来控制TiAl合金中的层状排列

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A method to control the lamellar arrangement in TiAl intermetallic compounds is proposed. It consists of the high-temperature deformation in the α region to construct a texture and the subsequent annealing in the two phase region to precipitate the γ phase in a lamellar form. The method was examined by experiments on Ti-41 mol%Al. The high-temperature deformation resulted in the formation of a fiber texture in the α_2 phase. No significant change was observed in the texture of the α_2 phase after the precipitation treatment of the γ phase. Formation of a fiber texture was found in the γ phase consisting lamellae. Crystallographic analysis revealed that the pole density distribution of the γ phase can be understood by the so called Blackburn's relationship between the α_2 and γ phases. It was concluded that the texture control at the high temperature α phase is effective to obtain the oriented arrangement of lamellae.
机译:提出了一种控制TiAl金属间化合物中层状排列的方法。它包括在α区的高温变形以形成织构,然后在两相区进行退火以使γ相以层状形式析出。通过在Ti-41 mol%Al上进行实验来检验该方法。高温变形导致在α_2相中形成纤维织构。在γ相的沉淀处理之后,没有观察到α_2相的织构的显着变化。在由薄片组成的γ相中发现了纤维织构的形成。晶体学分析表明,可以通过α_2和γ相之间的所谓布莱克本(Blackburn)关系来理解γ相的极密度分布。结论是,在高温α相下的织构控制对于获得薄片的定向排列是有效的。

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