钨
材料科学
难熔金属
耐火材料(行星科学)
融合
冶金
沉积(地质)
沉积物
语言学
生物
哲学
古生物学
作者
Alberico Talignani,Raiyan Seede,Austin Whitt,Shiqi Zheng,Jianchao Ye,И. Караман,Michael M. Kirka,Yutai Katoh,Yinmin Wang
标识
DOI:10.1016/j.addma.2022.103009
摘要
We review the progress of additive manufacturing effort on refractory metal tungsten and tungsten alloys. These materials are excellent candidates for a variety of high temperature applications but extremely challenging to fabricate via additive manufacturing due to a series of existing issues during the manufacturing. We outline these issues and discuss the current understanding and progress to tackle them. Laser powder-bed-fusion, laser directed-energy-deposition, and electron beam powder-bed-fusion are three common techniques that have been applied to additively manufacture pure tungsten. This overview discusses current observations and understanding on the issues associated with each of these techniques. We identify future research opportunities in additive manufacturing of refractory metals.
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