Wire arc additive manufacturing method for Ti-6Al-4V alloy to improve the grain refinement efficiency and mechanical properties

被引:3
|
作者
Maurya, A. K. [1 ,2 ]
Yeom, Jong-Taek [1 ]
Kim, Jae H. [1 ]
Park, Chan Hee [1 ]
Hong, Jae-Keun [1 ]
Yang, Junha [1 ]
Kang, N. H. [4 ]
Cheon, Seyoung [4 ]
Reddy, N. S. [2 ]
Cheepu, Muralimohan [3 ]
Cho, Sang-Myung [3 ]
机构
[1] Korea Inst Mat Sci, Titanium Dept, Adv Met Div, Chang Won 51508, South Korea
[2] Gyeongsang Natl Univ, Engn Res Inst, Jinju 52828, South Korea
[3] Starwelds Inc, Pusan 46722, South Korea
[4] Pusan Natl Univ, Dept Mat Sci & Engn, Pusan 46241, South Korea
关键词
Wire arc additive manufacturing; Hammer peening; C-Type filler wire; beta grain refinement; Ti-6Al-4V; MICROSTRUCTURAL EVOLUTION; DEPOSITION; ANISOTROPY; TEXTURE; METAL; DEFORMATION; BUILDS; TWINS;
D O I
10.1016/j.jmrt.2024.06.240
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Wire and arc additive manufacturing (WAAM) technique has introduced a novel approach for producing complex Ti-6Al-4V parts with metric dimensions. However, the produced part leads to the development of a strong texture and anisotropic mechanical properties due to the formation of large columnar beta grains. To resolve this issue, the plastic deformation of each deposited track through hammer peening was developed as a means to refine these large beta grains. In this study, we have investigated an innovative approach to further enhance the efficiency of beta grain refinement by minimizing the arc heat input associated with previous deposited layer, which is achieved by employing a C-type filler wire. Our findings reveal a notable enhancement in grain refinement efficiency through the utilization of a C-type filler wire with peening process, as compared to available conventional commercial round shape filler wire. Specifically, the employment of the C-type filler wire results in a reduced melt pool penetration depth of WAAM Ti-6Al-4V (3.3 mm), compared to the commercially available round shape (R-Type) filler wire (4.48 mm). Within the plastically deformed region by peening, fine and randomly oriented beta grains are observed, extending to a depth of deformation reaching 844 +/- 32.65 mu m. Peening WAAM Ti-6Al-4V with the C-type filler wire leads to the development of isotropic mechanical properties in both horizontal and vertical directions, offering high strength due to the presence of small equiaxed beta grains and thin alpha laths (0.56 +/- 0.18 mu m), in contrast to the use of conventional commercial round shape filler wire.
引用
收藏
页码:3003 / 3013
页数:11
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