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Metal 3D printing as a disruptive technology for superalloys
Chinnapat Panwisawas, Yuanbo Tony Tang, Roger C. Reed
University of Leicester University of Oxford
来源Nature Communications
年份2020
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摘要与影响
摘要 · 完整
3D printing can allow for the efficient manufacturing of elaborate structures difficult to realise conventionally without waste, such as the hollow geometries of nickel-based superalloy aeronautic components. To fully exploit this method, we must move towards new alloys and processes.
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学术脉络
学科主题
工程Additive Manufacturing Materials and Processes
Additive Manufacturing and 3D Printing Technologies · Manufacturing Process and Optimization
参考文献 17
The Superalloys: Fundamentals and Applications
被引 3,759Roger C. Reed · 2008
Resource recycling of superalloys and hydrometallurgical challenges
被引 129Rajiv Ranjan Srivastava, Min‐seuk Kim, Jae-chun Lee · Journal of Materials Science · 2014
Microstructure of selective laser melted CM247LC nickel-based superalloy and its evolution through heat treatment
被引 284V.D. Divya, R. Muñoz‐Moreno, Olivier M. D. M. Messé · Materials Characterization · 2016
此处列出前 3 条
引用本文 360
Additive manufacturing of structural materials
被引 710Guo Liu, Xiaofeng Zhang, Xuliang Chen · Materials Science and Engineering R Reports · 2021
Alloys-by-design: Application to new superalloys for additive manufacturing
被引 683Yuanbo Tony Tang, Chinnapat Panwisawas, Joseph N. Ghoussoub · Acta Materialia · 2020
Additive manufacturing of nickel-based superalloys: A state-of-the-art review on process-structure-defect-property relationship
被引 536Amir Mostafaei, Reza Ghiaasiaan, I‐Ting Ho · Progress in Materials Science · 2023
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