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◆ SAE technical papers on CD-ROM/SAE technical paper series2026-07-31· Materials science

In-Situ Alloyed Strong and Ductile Titanium Alloy from Blended Metal Powders

Shuai Feng, Shuai Guan, Haohao Kong, Yingxiang Sun, Youpeng Song, Yaqing Hou, Zhongnan Bi, Shaoming Zhang

原始摘要(英文原文)· Original abstract
Blended metal powders offer a compelling alternative to pre-alloyed powders in metal additive manufacturing by providing access to a wider range of alloy compositions and avoiding the high costs in producing pre-alloyed powders. In this work, a new and crack-free Ti-5AlMnScZrMgSiFe alloy (in wt.%) was manufactured by laser powder bed fusion (L-PBF) from mixed powders to investigate the microstructures, mechanical performance of printed parts. Ti-5 AlMnScZrMgSiFe alloy contains both alpha (α) and alpha prime (α′) phases. Further microstructural characterizations show that the L-PBF Ti-5 AlMnScZrMgSiFe contain dense dislocations and twins formed in additive manufacturing process. The as-printed Ti-5 AlMnScZrMgSiFe alloy exhibits a tensile fracture strength of ~950 MPa with a fracture elongation of ~12.5%. The eye-catching properties are attributed to the dense dislocations, nano-twins and solid-solution strengthening.
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In-Situ Alloyed Strong and Ductile Titanium Alloy from Blended Metal Powders — 科研速览 Science Skim