作者
CJ Todaro, MA Easton, Dong Qiu, Duyao Zhang, MJ Bermingham, EW Lui, Milan Brandt, DH StJohn, Ma Qian
发表日期
2020/1/9
期刊
Nature communications
卷号
11
期号
1
页码范围
142
出版商
Nature Publishing Group UK
简介
Additive manufacturing (AM) of metals, also known as metal 3D printing, typically leads to the formation of columnar grain structures along the build direction in most as-built metals and alloys. These long columnar grains can cause property anisotropy, which is usually detrimental to component qualification or targeted applications. Here, without changing alloy chemistry, we demonstrate an AM solidification-control solution to printing metallic alloys with an equiaxed grain structure and improved mechanical properties. Using the titanium alloy Ti-6Al-4V as a model alloy, we employ high-intensity ultrasound to achieve full transition from columnar grains to fine (~100 µm) equiaxed grains in AM Ti-6Al-4V samples by laser powder deposition. This results in a 12% improvement in both the yield stress and tensile strength compared with the conventional AM columnar Ti-6Al-4V. We further demonstrate the generality of …
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