谭毅,石爽. 高纯材料电子束精炼制备技术研究现状与发展趋势[J]. 航空制造技术, 2018, 61(23/24): 28-36. TAN Yi, SHI Shuang. Progress in Research and Development of Preparation of High-Purity Materials by Electron Beam Melting[J]. Aeronautical Manufacturing Technology, 2018, 61(23/24): 28-36.
TAN Yi, SHI Shuang. Progress in Research and Development of Preparation of High-Purity Materials by Electron Beam Melting[J]. Aeronautical Manufacturing Technology, 2018, 61(23/24).
谭毅,石爽. 高纯材料电子束精炼制备技术研究现状与发展趋势[J]. 航空制造技术, 2018, 61(23/24): 28-36. TAN Yi, SHI Shuang. Progress in Research and Development of Preparation of High-Purity Materials by Electron Beam Melting[J]. Aeronautical Manufacturing Technology, 2018, 61(23/24): 28-36. DOI: 10.16080/j.issn1671–833x.2018.23/24.028.
TAN Yi, SHI Shuang. Progress in Research and Development of Preparation of High-Purity Materials by Electron Beam Melting[J]. Aeronautical Manufacturing Technology, 2018, 61(23/24). DOI: 10.16080/j.issn1671–833x.2018.23/24.028.
Progress in Research and Development of Preparation of High-Purity Materials by Electron Beam Melting
With the continuous development of science and technology
the demand for high-purity materials becomes more and more urgent. The high purity material industry has penetrated into various fields of national economy
national defense construction and social life
which plays an important role in economic and social development. The preparation technology for high-purity materials is an important symbol to measure the development level of metallurgical technology in a country. Compared with other melting technologies
electron beam melting technology has the characteristics of high vacuum
high temperature
good controllability
and it is not limited by the shape of the raw material. Therefore
this technology is possible to solve the problems in preparation of high-purity materials. This paper reviews the research status of electron beam melting technology in preparation of high-purity simple substance and multicomponent alloy. Meanwhile
the current major problems and development directions are discussed
which provide ideas for the development of electron beam melting technology with high efficiency