期刊文献+

激光制造中金属粉末流浓度场的检测 被引量:28

Experimental Measurement of Metal Powder Stream Concentration Field in Laser Manufacturing
原文传递
导出
摘要 研究激光同轴送粉中金属粉末流场的分布特性,对指导激光制造技术应用具有直接指导意义。重点研究了激光制造中同轴送粉条件下金属粉末流的浓度场,建立了同轴送粉嘴金属粉末流的浓度场理论模型,开发了一种新型数字粒子图像检测系统检测粉末流浓度场。该系统主要包括Nd3+∶YAG激光器和CCD相机。它具有非接触测量、检测速度快、能同时给出流场的三维信息等特点。实验结果表明,粉末流的聚焦参数和浓度场分布可以通过数字粒子图像检测技术进行检测,为指导同轴粉嘴设计和激光制造粉末流参数测定提供了新的手段。 The research on the distributions of metal powder stream from co-axial nozzle is very interested in laser manufacturing. The paper was focused in the concentration field of powder stream. Theoretic model of concentration field of powder stream from the co axial nozzle has been established. A new digital particle image measurement technique has been developed to measure the concentration field of powder stream. The system mainly consists of Nd^3+: YAG laser and charge coupled device (CCD) camera. It is shown that focus parameters and concentration distribution of powder stream can be measured by the technique. The system could be a useful device for laser manufacturing after further developed.
出处 《中国激光》 EI CAS CSCD 北大核心 2006年第7期993-997,共5页 Chinese Journal of Lasers
基金 国家自然科学基金(60478004) 天津市科委重点攻关项目(033188011)资助课题
关键词 激光技术 激光制造 粉末流 浓度场 数字粒子图像检测 laser technique laser manufacturing powder stream concentration field digital particle image measurement technique
  • 相关文献

参考文献10

二级参考文献28

  • 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.
  • 7Gary K. Lewis. Eric Schlienger. Practical considerations and capabilities for laser assisted direct metal deposition [J].Materials and Design. 2000, 21:417-423.
  • 8Katrin I. Schwendner, Rajarshi Banerjee. Peter C. Collins et al.. Direct laser deposition of alloys from elemental powder blends [J]. Scripta Materialia. 2001, 45 : 1123 - 1129.
  • 9W. Kurz, B. Giovanola, R. Trivedi. Theory of microstructural developn:ent during rapid solidification [J]. Acta Metallurgic ,1986. 34:823 - 830.
  • 10M. Gaumann , S. Henry, F. Cleton et al.. Epitaxial laser metal forming: analysis of microstructttre formation [J]. .Materials Science & Engineering A.. 1999. 271 : 232 - 211.

共引文献123

同被引文献259

引证文献28

二级引证文献174

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