期刊文献+

TC4钛合金激光增材复合制造研究进展

Research Progress of Laser Additive Composite Manufacturing of TC4 Titanium Alloy
下载PDF
导出
摘要 近年来,随着激光增材制造技术的发展,国内外学者对TC4钛合金的激光增材技术进行了更深入的研究,但是针对TC4钛合金激光复合制造的深入研究还较少,本文从复合制造工艺、复合件组织性能及热处理三个方面介绍了目前TC4激光增材复合制造的研究进展,并提出对TC4钛合金复合制造进一步的研究方向。 In recent years,with the development of laser additive manufacturing technology,scholars at home and abroad have conducted more in-depth researches on the laser additive technology of TC4 titanium alloy,but there are few in-depth studies on the laser composite manufacturing.The current research progress of TC4 laser additive composite manufacturing is introduced in three aspects:manufacturing process,composite structure and properties and heat treatment,and further research directions for TC4 titanium alloy composite manufacturing are proposed.
作者 王欢 张泽磊 吴代建 Wang Huan;Zhang Zelei;Wu Daijian(Sichuan Engineering Technical College,Deyang,Sichuan,618000,China)
出处 《装备制造与教育》 2022年第3期28-31,共4页 Equipment Manufacturing and Education
基金 德阳市重点研发科技计划项目(2020SZZ050)。
关键词 TC4钛合金 激光增材复合制造 研究进展 TC4 titanium alloy laser additive composite manufacturing Research progress
  • 相关文献

参考文献9

二级参考文献78

  • 1李晓娜.激光工程化净成形促进添加制造与修复技术的发展[J].现代焊接,2007(4):84-88. 被引量:3
  • 2Yong Luo~(1,2) Shi-rong Ge~1 Zhong-min Jin~21.Institute of Tribology and Reliability Engineering,School of Material Science and Engineering,China University of Mining and Technology,Xuzhou 221008,P.R China2.Institute of Medical and Biological Engineering,School of Mechanical Engineering,University of Leeds,Leeds LS2 9JT,UK.Wettability Modification for Biosurface of Titanium Alloy by Means of Sequential Carburization[J].Journal of Bionic Engineering,2009,6(3):219-223. 被引量:7
  • 3张海鸥,熊新红,王桂兰,陈竞.等离子熔积成形与铣削光整复合直接制造金属零件技术[J].中国机械工程,2005,16(20):1863-1866. 被引量:20
  • 4张海鸥,钱应平,王桂兰,郑启光.等离子体激光复合直接成形的弧柱形态与成形特性[J].中国科学(E辑),2006,36(5):497-506. 被引量:3
  • 5Banerjee R., Collins P.C., Bhattacharyya D., Banerjee S., and Fraser H.L., Microstructural evolution in laser deposited compositionally graded α/β titanium-vanadium alloys, Acta Mater., 2003, 51: 3277.
  • 6Banerjee R., Bhattacharyya D., Collins P.C., Viswanathan G.B., and Fraser H.L., Precipitation of grain boundary α in a laser deposited compositionally graded Ti-SAl-xV alloy--an orientation microscopy study, Acta Mater., 2004, 52: 377.
  • 7Zeng L. and Bieler T.R., Effects of working, heat treatment, and aging on microstructural evolution and crystallographic texture of α, α′, α ″and β phases in Ti-6Al-4V wire, Mater. Sci. Eng. A, 2005, 392: 403.
  • 8Lutjering G., Influence of processing on microstructure and mechanical properties of (α + β) titanium alloys, Mater. Sci. Eng. A, 1998, 243: 32.
  • 9Semiatin S.L., Seetharaman V., and Weiss I., Flow behavior and globularization kinetics during hot working of Ti-6Al-4V with a colony alpha microstructure, Mater. Sci. Eng. A, 1999, 263: 257.
  • 10Stefansson N., Semiatin S.L., and Eylon D., Mechanisms of globularization of Ti-6Al-4V during static heat treatment, Metall. Mater. Trans. A, 2003, 34 (3): 691.

共引文献76

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部