Controlling Intermetallic Compound Distribution in Additively Manufactured Ti-Cu Alloys by Heat Treatment

被引:0
|
作者
Hanada H. [1 ]
Kariya S. [2 ]
Shitara K. [3 ]
Umeda J. [2 ]
Kondoh K. [2 ]
机构
[1] Dept. Mechanical Engineering, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita
[2] Joining and Welding Research Institute, Osaka University, 11-1 Mihogaoka, Ibaraki
[3] Japan Fine Ceramics Center, 2-4-1 Mutsuno, Atsuta-ku, Nagoya
关键词
heat-treatment; intermetallic compounds; laser powder bed fusion; microstructure control; precipitation strengthening;
D O I
10.2497/jjspm.70.290
中图分类号
学科分类号
摘要
Intermetallic compounds (IMCs), known for their hardness, play an important role in the precipitation strengthening of alloys. However, precipitation in excessive amounts or as large particles can result in embrittlement of the material. Thus, controlling the distribution of IMCs among the matrix is crucial for the design of strong and ductile alloys. In this research, a supersaturated Ti-Cu alloy formed by Laser Powder Bed Fusion (L-PBF) was heat-treated at different phase regions to produce lamellar, network, and dispersed distributions of Ti2Cu IMC precipitates. To comprehensively understand the formation mechanisms of each IMC distribution structure, in-situ microstructure observation was performed during the heat-treatments. The lamellar IMC structure obtained from heat treatment above the beta-transus temperature, was found to derive from the rejection of Cu atoms towards the boundaries of lamellar alpha grains formed during cooling. The network IMC structure obtained from heat-treatment in the α+β phase region involved the formation of a Cu-rich β-Ti layer between α-Ti grains during heating, and subsequent precipitation of Ti2Cu into an α-encapsulating network upon cooling. Finally, the dispersed structure of IMCs was observed to result from regular nucleation and growth of Ti2Cu during heat treatment in the α+IMC region. ©2023 Japan Society of Powder and Powder Metallurgy.
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页码:290 / 297
页数:7
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