期刊文献+

应用多传感器技术测量微孔几何参量 被引量:8

Microhole Geometry Measurement Applying Multi-Sensor Technology
下载PDF
导出
摘要 基于多传感器技术,提出了一种将接触式和非接触式传感器集成到坐标测量机上研究微孔几何参量测量的理论和方法,可对喷墨打印机啧嘴、生物医学仪器孔、燃气涡轮叶片的致冷喷口和柴油机喷油器喷孔等微孔进行实时测量。介绍了系统的组成和测量原理,讨论了微孔测量步骤。实验中,以直径0.16 mm、深0.9 mm的三个柴油机喷油嘴喷孔做测试,根据测量结果,分析了微孔的圆柱度、直径、圆度、直线度和锥度五个特征参量,并对测量系统的重复性和再现性进行了分析,对于微孔加工过程中的质量控制具有指导作用。 Based on multi-sensor technology, a photoelectric inspecting system for form measurement of micro-holes is presented, which can achieve the measurement of micro-holes such as ink-jet printer nozzles, orifices for biomedical device, cooling vents for gas turbine blade, and diesel fuel injector spray holes. In this paper, the composition of the system and the principle of the measurement are introduced, and the measurement procedure is discussed as well. In the experiment, three diesel fuel injector spray holes about 0. 9 mm in depth and 160μm in diameter are taken as samples. According to the results of measurement, five form characteristics including the cylindricity, diameter, roundness, straightness, and taper of the micro-hole are analyzed from the measurement points. The gage repeatability and reproducibility test are conducted to determine the micro-hole form measurement capability and to calculate the tolerance specifications for each characteristic.
出处 《光学与光电技术》 2009年第4期79-82,共4页 Optics & Optoelectronic Technology
关键词 形体测量 多传感器技术 重复性 再现性 form measurement multi-sensor technology repeatability reproducibility
  • 相关文献

参考文献9

  • 1Masuzawa T,Hamasaki Y,Fujino M.Vibroscanning method for nondestructive measurement of small holes[J].Annals of CIRP,1993,42(1):589-592.
  • 2Yamamoto M,Karmo I,Aoki S.Profile measurement of high aspect ratio micro structures using tungsten carbide micro cantilever coated with PZT thin films[J].Micro Electro Mechanical Systems,1991,29(2):357-374.
  • 3Diver C,Atkinson J,Helml H J,et al.Micro-EDM drilling of tapered holes for industrial applications[J].Journal of Materials Processing Technology,2004,149(1-3):296-303.
  • 4汤晓君,刘君华.多传感器技术的现状与展望[J].仪器仪表学报,2005,26(12):1309-1313. 被引量:20
  • 5McGeough J A,Leu M C,Rajurkar K P J.EDM process electroforming process and application to micro/Macro manufacturing[J].Annals of CIRP,2001,50(2):499-514.
  • 6郑军,张伟,施克仁,徐春广.基于环形光切法的复杂深孔图像检测[J].清华大学学报(自然科学版),2004,44(11):1456-1459. 被引量:4
  • 7VChen-Chun Kao,Albert J Shih.Form measure ments of micro-boles[J].Measurement Science and Technology,2007,18 (1):3603-3611.
  • 8Pourciel J B,Lebrasseur E,Bourouina T,et al.Microsystem tool for microsystems characterization profile measurement of high aspect-ratio microstruetures[J].Device and Process Technologies for MEMS and Microelectronies Ⅱ,2001,4295 (1):244-251.
  • 9Pourciel J B,Jalabert L,Masuzawa T.Profile and surface measurement tool for high aspect-ratio microstructures[J].Machine Elements and Manufacturing,2003,46(3):916-922.

二级参考文献23

  • 1方崇智 萧德云.过程辨识[M].北京:清华大学出版社,1998..
  • 2王旭辉,朱森元,唐成辉,段武堂.炮管毛坯超声图形无损检测系统[J].兵工自动化,1997,16(1):27-33. 被引量:2
  • 3刘君华.智能传感器系统[M].西安电子科技大学出版社,2000,6..
  • 4Yang Dongyong, Y.Yuzo. Multi-sensor data fusion and its application to industrial control. SICE 2000, Iizuka, 2000, 215~220.
  • 5Y.Zhang, J.H.Liu, Y.H.Zhang, X.J.Tang. Cross sensitivity reduction of gas sensors using genetic algorithm neural network. Optical Engineering, 2002, 41(3):615~625.
  • 6B.V.Dasarathy. Information fusion-a new journal for the new millennium. Information Fusion, 2000, 1:1~2.
  • 7F.Zee, J.W.Judy. Micromachined polymer-based chemical gas sensor array. Sensors Actuators B, 2001, 72:120~128.
  • 8C.Wang, Y.C.Chan, L.P.Zhao. Design of diffractive optical elements array with wide field of view for integration with photodetectors. Optics Communications, 2001, 195:63~70.
  • 9N.Xiong, P.Svensson. Multi-sensor management for information fusion: issues and approaches. Information Fusion, 2002, 3:163~186.
  • 10郑军. 火炮身管内膛光电检测技术研究 [D]. 北京: 北京理工大学, 2003.ZHENG Jun. The Photoelectric Measurement Technique on the Artillery Pipe's Inner Wall [D]. Beijing: Beijing Institute of Technology, 2003. (in Chinese)

共引文献22

同被引文献94

引证文献8

二级引证文献40

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