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钛合金电弧增材制造国内外研究的发展现状 被引量:4

Research Status and Prospect of Wire and Arc Additive Manufactured Titanium Alloy
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摘要 随着增材制造技术的创新和不断发展,钛合金电弧增材制造广泛应用于各个领域,涉及航空航天、船舶、汽车、生物医疗、化工以及模具制造等。当前,很多研究学者对钛合金增材制造技术进行了深入研究,在钛合金电弧增材制造研究方面已取得了一定成果。基于此,综述当前国内外钛合金电弧增材制造技术研究现状,并对钛合金电弧增材制造技术的运用以及未来发展前景进行了总结和展望。 With the innovation and continuous development of additive manufacturing technology,the application fields of titanium alloy arc additive manufacturing are also very wide,involving aerospace,shipbuilding,and automobiles.At present,many researchers have made in-depth research on the manufacturing technology of titanium alloy arc-adding materials,and some achievements have been made.This article briefly reviews the current research status of titanium alloy wire and arc additive manufacturing technology at home and abroad,and summarizes and looks forward to the application and future development prospects of titanium alloy wire and arc additive manufacturing technology.
作者 吴随松 郭纯 刘武猛 WU Suisong;GUO Chun;LIU Wumeng(College of Mechanical Engineering,Anhui Polytechnic University,Wuhu 241000;College of Mechanical Engineering,Anhui University of Science and Technology,Fengyang 233100)
出处 《现代制造技术与装备》 2021年第3期204-205,共2页 Modern Manufacturing Technology and Equipment
基金 安徽省高校协同创新项目(GXXT-2019-022) 安徽省自然科学基金项目(1908085QE174) 安徽科技学院人才项目(RCYJ201905)。
关键词 钛合金 电弧增材制造 研究进展 titanium alloy wire and arc additive manufacture research progress
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  • 1Kruth J, Badrossamay M, Yasa E, et al. Part and material properties in selective laser melting of metals: in 16th InternationalSymposium on Electromaehining (ISEM XVI), ShangHai-China, 2010[C]. 被引量:1
  • 2Slotwinski J A, Garboczi E J, Hebenstreit K M. Porosity Measurements and Analysis for Metal Additive Manufacturing ProcessControl[J]. Journal of Research of the National Institute of Standards and Technology, 2014,119:494-528. 被引量:1
  • 3Frazier W E. Metal Additive Manufacturing: A Review[J]. Journal Of Materials Engineering And Performance, 2014,23(6): 1917-1928. 被引量:1
  • 4Pinkerton A J, Syed W U H, Li L. Theoretical analysis of the coincident wire-powder laser deposition process.(Teehnical report) [J]. Journal of Manufacturing Science and Engineering, 2007, 129 (6):1019. 被引量:1
  • 5Li R, Li Z, Zhu Y, et al. A comparative study of laser beam welding and Iaser-MIG hybrid welding of Ti-A1-Zr-Fe titanium alloy[J]. Materials Science and Engineering A, 2011,528(3):1138- 1142. 被引量:1
  • 6Baufeld B, van der Biest O. Mechanical properties of Ti-6AI- 4V specimens produced by shaped metal deposition[J]. Science And Technology Of Advanced Materials, 2009,10(1): 1-10. 被引量:1
  • 7Baufeld B, Brandl E, van der Biest O. Wire based additive layer manufacturing: Comparison of microstructure and mechanical properties of Ti-6AI-4V components fabricated by laser-beam deposition and shaped metal deposition[J]. Journal Of Materials Processing Technology, 2011,211(6):1146-1158. 被引量:1
  • 8Baufeld B, van der Biest O, Gault R, et al. Manufacturing Ti- 6A1-4V components by Shaped Metal Deposition: Micrestructure and mechanical properties: 2011 IOP Conf. SCr.: Mater. Sci. Eng, 2011[C]. 被引量:1
  • 9Eseobar-Palafox G, Gault R, Ridgway K. Robotic manufacturing by shaped metal deposition: State of the art[J]. Industrial Robot, 2011,38(6):622-628. 被引量:1
  • 10Muscam G, Spampinato G, Cantelli L. A Closed Loop Welding Controller for a Rapid Manufacturing Process: Proceedings of the ETFA-13th IEEE Conference on Emerging Technologies & Factory Automation, Hamburg, 2008[C]. 被引量:1

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