Effect of TiB2 Addition on the Microstructure and Mechanical Properties of Laser-Directed Energy Deposition TiAl Alloy

Author:

Yang Yancheng1,Hu Yi12,Chen Hongyan12,Li Yu12,Wang Jiawei1,Cheng Xu12,Tang Haibo12,Ran Xianzhe12,Liu Dong3

Affiliation:

1. National Engineering Laboratory of Additive Manufacturing for Large Metallic Components, Beijing 100191, China

2. Research Institute for Frontier Science, Beihang University, Beijing 100191, China

3. Beijing Yuding Additive Manufacturing Research Institute Co., Ltd., Beijing 100096, China

Abstract

The microstructure characteristics of TiAl alloy prepared by laser-directed energy deposition (L-DED) are coarse columnar grains parallel to the building direction, which results in serious mechanical properties and anisotropy and limits its application. In the present study, TiB2 can be used as an effective grain refiner due to the extremely high Q value (growth inhibition factor; the larger the Q value of an alloying element, the stronger its grain refinement effect.) of B. With TiB2 addition, TiAl alloys prepared by laser-directed energy deposition with the microstructure of full equiaxed grains were obtained, and the grain size was significantly reduced by about 30% with 0.45 wt.% TiB2. This value has been further increased to 45% when adding 0.9 wt.% TiB2. Moreover, the γm phase was nearly eliminated and the width of (α2 + γ) lamellar was significantly decreased, which has positive effects on mechanical properties. Meanwhile, TiB2 precipitates uniformly distribute in the matrix, as a reinforced particle to increase the hardness and compressive strength of the alloys. The microhardness of the TiAl alloy increased with the increasing content of TiB2. The addition of TiB2 improved the room and high-temperature compressive properties of TiAl alloy while slightly increasing its ductility. These findings have important guiding significance for expanding the application of TiAl alloys.

Funder

National Science and Technology Major Project of China

Basic and Applied Basic Research Foundation of Guangdong Province of China

Publisher

MDPI AG

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