Powder Metallurgy Route to Ultrafine‐Grained Refractory Metals

难熔金属 材料科学 烧结 粉末冶金 冶金 耐火材料(行星科学)
作者
Lin Zhang,Xingyu Li,Xuanhui Qu,Mingli Qin,Zhongyou Que,Zichen Wei,Chenguang Guo,Xin Lu,Yanhao Dong
出处
期刊:Advanced Materials [Wiley]
卷期号:35 (50) 被引量:34
标识
DOI:10.1002/adma.202205807
摘要

Abstract Ultrafine‐grained (UFG) refractory metals are promising materials for applications in aerospace, microelectronics, nuclear energy, and many others under extreme environments. Powder metallurgy (PM) allows to produce such materials with well‐controlled chemistry and microstructure at multiple length scales and near‐net shape manufacturing. However, sintering refractory metals to full density while maintaining a fine microstructure is still challenging due to the high sintering temperature and the difficulty to separate the kinetics of densification versus grain growth. Here an overview of the sintering issues, microstructural design rules, and PM practices towards UFG and nanocrystalline refractory metals are sought to be provided. The previous efforts shall be reviewed to address the processing challenges, including the use of fine/nanopowders, second‐phase grain growth inhibitors, and field‐assisted sintering techniques. Recently, pressureless two‐step sintering has been successfully demonstrated in producing dense UFG refractory metals down to ≈300 nm average grain size with a uniform microstructure and this technological breakthrough shall be reviewed. PM progresses in specific materials systems shall be next reviewed, including elementary metals (W and Mo), refractory alloys (W‐Re), refractory high‐entropy alloys, and their composites. Last, future developments and the endeavor towards UFG and nanocrystalline refractory metals with exceptionally uniform microstructure and improved properties are outlined.
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