A yttrium-containing high-temperature titanium alloy additively manufactured by selective electron beam melting

被引:0
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作者
Sheng-lu Lu
Hui-ping Tang
M. Qian
Quan Hong
Li-ying Zeng
D. H. StJohn
机构
[1] Northeastern University,School of Materials and Metallurgy
[2] State Key Laboratory of Porous Metal Materials (Northwest Institute for Nonferrous Metal Research),Centre for Advanced Materials Processing and Manufacturing, School of Mechanical and Mining Engineering
[3] The University of Queensland,Centre for Additive Manufacturing, School of Aerospace, Mechanical and Manufacturing Engineering
[4] RMIT University,undefined
来源
关键词
titanium alloys; additive manufacturing; rare earth elements; yttrium; selective electron beam melting;
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摘要
A yttrium-containing high-temperature titanium alloy (Ti-6Al-2.7Sn-4Zr-0.4Mo-0.45Si-0.1Y, mass fraction, %) has been additively manufactured using selective electron beam melting (SEBM). The resulting microstructure and textures were studied using scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and electron backscattered diffraction (EBSD) and compared with the conventionally manufactured form. A notable distinct difference of microstructures is that additive manufacturing by SEBM enables homogeneous precipitation of fine Y2O3 dispersoids in the size range of 50-250 nm throughout the as-fabricated alloy, despite the presence of just trace levels of oxygen (7×10-4, mass fraction) and yttrium (10-3, mass fraction) in the alloy. In contrast, the conventionally manufactured alloy shows inhomogeneously distributed coarse Y2O3 precipitates, including cracked or debonded Y2O3 particles.
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页码:2857 / 2863
页数:6
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