4.8 Article

Rapid Synthesis and Sintering of Metals from Powders

期刊

ADVANCED SCIENCE
卷 8, 期 12, 页码 -

出版社

WILEY
DOI: 10.1002/advs.202004229

关键词

intermetallic compounds; powder metallurgy; refractory metals; ultrafast sintering

资金

  1. Maryland NanoCenter, its Surface Analysis Center
  2. AIM Lab

向作者/读者索取更多资源

Powder to bulk processing techniques like additive manufacturing and metal injection molding have revolutionized complex metal design and manufacturing. However, they often face challenges like residue stress and slow sintering processes. The ultrafast high-temperature sintering process offers a quick solution for synthesizing and sintering bulk metals and alloys, allowing for rapid screening and development of new metal compositions and structures.
Powder to bulk processes, such as additive manufacturing and metal injection molding (MIM), have enabled great potential for complex metal designing and manufacturing. However, additive manufacturing process normally introduces a high residue stress and textures due to the locally intense temperature. MIM is an excellent batch manufacturing process; nevertheless, it is not suitable for rapid screening and development of new metal compositions and structures due to the slow sintering process. Herein, an ultrafast high-temperature sintering (UHS) process is reported that enables the rapid synthesis and sintering of bulk metals/alloys and intermetallic compounds. In this process, elemental powders are mixed and pressed into pellets, followed by UHS sintering in just seconds at a temperature between 1000 and 3000 degrees C. Three representative compositions, including pure metals, intermetallics, and multielement alloys, are demonstrated with a broad range of melting points. The UHS process for metal sintering is nonmaterials specific, in addition to being extremely rapid, which make it suitable for materials discovery. Furthermore, the sintering method does not apply pressure to the samples, making it compatible with 3D printing and other additive manufacturing processes of complex structures. This rapid sintering technique will greatly facilitate the development and manufacturing of metals and alloys.

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