期刊文献+

激光熔覆工艺理论与试验研究 被引量:2

Process Theory and Experimental Study on Laser Cladding
下载PDF
导出
摘要 通过理论和试验研究了激光熔覆过程中粉末流对激光功率的衰减、激光熔覆所需的激光功率及形成熔池的宽度、形貌、熔覆带横截面轮廓等。试验结果发现:在激光熔覆过程中,粉末对激光功率的衰减程度取决于送粉率、气流速度、激光束、粉末流的发散角、腰斑的位置与直径、粉末颗粒直径和激光束穿过粉末流的深度;激光功率下限值与光斑直径、扫描速度及材料熔点等热物理特性有关;在一定的简化条件下,激光单道熔覆形成的熔池宽度是工艺参数和材料特性的函数,较低功率的激光在基板上熔覆时,熔覆带横截面轮廓上各点的高度由粉末浓度分布及熔池内相应点处于液态的时间决定。 Attenuation of powder flow on laser power,laser power and width,appearance,cross section outline of cladding zone required by laser cladding are studied in the theory and experiment. The experimental results show that in the caurse of laser cladding,degree of powder attenuation on laser power depend on the powder feeding efficiency, air flow rate, scattered angle of laser beam and powder flow, position and diameter of waist spot, powder diameter, depth of laser beam shot into powder flow. The lower limit volue of laser power relate to rot physical natures,such as the spot diameter,the scanning rate and the melting point of material. Under the certain simplified condition, molten width by laser single way cladding is function of the process parameter and the material characteristics. Cladding by lower laser power ,height of each points on cross section outline of cladding zone depend on the distribution of powder consistency and time placed in liquid state on corresponding points of molten.
作者 刘继常
出处 《电加工与模具》 2014年第4期46-53,共8页 Electromachining & Mould
基金 国家自然科学基金资助项目(51075134)
关键词 激光熔覆 激光功率 衰减 熔池 熔覆带横截面轮廓 laser cladding laser power attenuation molten cross section outline of cladding zone
  • 相关文献

参考文献2

二级参考文献10

  • 1V M Weerasinghe, W M Steen. Transport Phenomena in Materials Processing [M]. ASME, New York, NY, 1983. 15-23.
  • 2C L Chan. J Mazumder. M M Chen. Effect of surface tension gradient driven convection in a laser melt pool: Three-dimensional perturbation model [ J]. J.Appl. Phys.. 1988, 64(11):6166-6174.
  • 3C Chan. J Mazumder. M M Chen. A two-dimensional transient model for convection in laser melted pool [J]. Metallurgical Transactions A. 1984, 15A(12) :2175-2184.
  • 4S Kou. H Wang. Three-dimensional convection in laser melted pools [J]. Metallurgical Transactions A.1986. 17A(12) :2265-2269.
  • 5M. Picasso. C. F. Marsden. J. D. Wagniere et al . A simple but realistic model for laser cladding [J].Metallurgical and Meterials Transactions B. 1994. 25B(4) :281-291.
  • 6A F A Hoadley, M. Rappaz. A thermal model of laser cladding by powder injection[J]. Metall. Trans.B, 1992, 23B(10):631-642.
  • 7曾大文,谢长生.激光熔覆温度场和流场数值模拟研究现状和发展趋势[J].材料科学与工程,1997,15(4):1-8. 被引量:25
  • 8杨永强,宋永伦.送粉激光熔覆时激光与粉末的交互作用[J].中国激光,1998,25(3):280-284. 被引量:23
  • 9高瑞平,吴厚政.计算机辅助陶瓷无模制造方法进展[J].材料导报,1998,12(4):13-17. 被引量:14
  • 10刘振侠,黄卫东,杨森,刘建睿.激光熔凝温度场的数值计算[J].西北大学学报(自然科学版),2001,31(3):199-202. 被引量:8

共引文献25

同被引文献5

引证文献2

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