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淬火45钢激光微加工工艺试验研究

Research on Process of Laser Micro-Texturing on Quenching 45 Steel
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摘要 采用激光表面微造型技术(LST),利用"单脉冲同点间隔多次"激光微造型工艺,在淬火45钢试样表面进行激光微造型工艺试验。主要进行脉冲重复次数与凹腔深度、脉冲重复频率与扫描速度对加工质量影响的试验研究,分析激光参数对加工质量的影响规律,得到了较优化的激光工艺参数组合。 Adopt the technology of Laser surface micro-xexturing (LST), and carry out LST process experiments with the help of new technique called "single pulse at the same point and interval more times" The influence of laser pulse repetition times on micro-pores" depth, laser pulse repetition frequency on scanning velocity was acquired through laser process experiment, and finally got the optimized laser processing parameters.
出处 《新技术新工艺》 2010年第5期82-84,共3页 New Technology & New Process
基金 国家自然科学基金资助项目(50475122) 中国博士后基金资助项目(20070420190)
关键词 激光微造型 工艺试验 激光参数 Laser micro-texturing, Process experiment, Laser parameters
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参考文献8

  • 1Anno J N,Walowit J A,Allen C M. Microasperity lubrication[J]. ASME Journal of Lubrication Technology, 1968, 91(2) :351-355.
  • 2Peterson U,Jaeobson S. Tribological texturing of steel surfaces with a novel diamond embossing tool technique[J]. Tribol Int,2006,39 : 695-700.
  • 3Peterson U,Jacobson S. Influence of surface texture on boundary lubricated sliding contact[J]. Tribol Int, 2003,36 : 857-864.
  • 4McGeough J A, Rasmusse H. A theoretical model of electrodischarge texturing [J]. J Master Process Technol, 1997,68:172-178.
  • 5Etsion I. State of the art in laser surface texturing[J]. Journal of Tribology,2005,127(1): 248-253.
  • 6Etsion I, Kligerman Y. Analytical and Experimental Investigation of Laser-Textured Mechanical Seal Faces[J]. Tribology Transaction, 1999,42(3) : 511-516.
  • 7Bolander N W, Farshid Sadeghi,Gerber G R. Piston Ring Friction Reduction Through Surface Modification[C]. Proceedings of ICEF2005,2005.
  • 8符永宏,纪敬虎,杨超君,华希俊,蔡兰.新型零泄漏非接触式机械密封及其激光表面微造型跨尺度加工工艺研究[J].润滑与密封,2008,33(1):27-32. 被引量:19

二级参考文献14

  • 1[1]D B Hamilton,J A Walowit,C M Allen.A Theory of Lubrication by Microasperities[J].ASME J Basic Eng,1966,88(1):177-185.
  • 2[2]J Sedy.High Pressure Upstream Pumping Seal Combination:US 4290611[P].1981-09-22.
  • 3[3]J P Netzel.Symmetrical Seal Design:A Sealing Concept for Today[C].Proceeding of the Third International Pump Symposium.Texas A & M University,1984.
  • 4[4]A Ali.Up-Stream Pumping:New Developments in Mechanical Seal Design[C].Proceedings of the Sixth International Pump Users Symposium.Texas A & M University,1989:53-58.
  • 5[5]G S Buck,D Volden.Upstream Pumping:A New Concept in Mechanical Sealing Technology[J].Lub Engr,1990,46(4):213-217.
  • 6[6]J P Netzel.Sealing Technology:A Control for Industrial Pollution[J].Lubrication Engineering,1990,46(8):483-493.
  • 7[7]Lai Tom.Development of Non-Contacting,Non-leaking Spiral Groove Liquid Face Seal[J].Lubricating Engineering,1994,50(8):625-631.
  • 8[8]I Etsion,O Micheal.Enhancing Sealing and Dynamic Performance with Paratially Porous Mechanical Face Seals[J].Tribology Transactions,1994,37(4):701-710.
  • 9[9]I Etsion,Burstein.A Model Mechanical Seals with Microsurface Structure[J].Tribology Transactions,1996,39(3):667-683.
  • 10[10]I Etsion,Y Kligeiman,G Halperin.Analytical and Experimental Investigation of Laser-Textured Mechanical Seal Faces[J].Tribol Trans,1999,42:511-516.

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