期刊文献+

以修正量为基础的定位点间接测量技术 被引量:1

Indirect measurement technology of locating points based on correction
在线阅读 下载PDF
导出
摘要 为解决自动钻铆系统离线编程过程中定位点的偏置问题,提出了以修正量为基础的定位点间接测量方法。该方法首先采用代理技术获取定位点,并通过可视化交互平台实现定位点的批量定义,然后采用AUTO-MATION接口对定位点实施偏置,并基于模板文件实现定位点的整体偏移,进而通过线性规划方法求出最终的定位点。以某型钣金零件为例,实现了定位点的间接测量。 To solve the locating points'offset problem in the off-line program process of the automatic drilling riveting system,the indirect measurement method of the locating points based on correction was proposed.Firstly,the locating points were obtained by Agent technology.And a visual interactive definition platform was set up to define the locating points interactively.Secondly,the AUTOMATION interface was applied to correct the locating points and a template document was used to manage the global offset of the locating points.Then,the final locating points were determined by linear programming.Finally,an example of sheet metal parts was presented to demonstrate the implementation of the proposed method.
出处 《计算机集成制造系统》 EI CSCD 北大核心 2010年第6期1215-1220,共6页 Computer Integrated Manufacturing Systems
基金 国家863/CIMS主题资助项目(2007AA041903)~~
关键词 定位点 间接测量 修正量 整体偏移 线性规划 钣金零件 计算机辅助设计 locating points indirect measurement correction global offset linear programming sheet metal parts computer aided design
  • 相关文献

参考文献5

二级参考文献13

共引文献17

同被引文献15

  • 1李永祥,童恒超,曹洪涛,张宏韬,杨建国.数控机床热误差的时序分析法建模及其应用[J].四川大学学报(工程科学版),2006,38(2):74-78. 被引量:40
  • 2自动钻铆技术在民机制造中的应用[J].成飞科技,2006,0(2):27-29. 被引量:4
  • 3Wang Y D , Zhang G X, Moon K S, et al. Compensation for the thermal error of a multi-axis machining eenter[J]. Journal of Mate- rials Processing Technology, 1998, 75(1 - 3) :45 - 53.
  • 4Wang X S, Yang J G, Wu H. Real time thermal error modeling and compensation of 5-axis NC grinding machine tool[C]//Proc. of the 14th Conference of Abrasive Technology in China, 2008 : 210 - 214.
  • 5Okafor A C, Ertekin Y M. Derivation of machine tool error mod- els and error compensation procedure for three axes vertical ma- chining center using rigid body kinematics [J]. International Journal of Machine Tools & Manufacture, 2000,40 (8) : 1199 - 1213.
  • 6He Z Y, Yao X H, Fu J Z. Volumetric error prediction and com- pensation of NC machine tool based on least square support vec- tor machine[J]. Advanced Science Letters, 2011,4 (6) : 2066 - 2070.
  • 7Shen J H, Yang J G. Application of partial least squares neural network in thermal error modeling for CNC machine tool [J]. Manufacturing Automation Technology, 2009,392 : 30 - 34.
  • 8Miao E M, Yah Y, Fei Y T. Application of time series to ther- mal error compensation of machine tools[C] //Proc. of the 4th International Seminar on Modern Cutting and Measurement En- gineering, 2011: 70 - 97.
  • 9Wang K C, Tseng P C, Lin K M. Thermal error modeling of a machining center using grey system theory and adaptive network- based fuzzy inferenee system[J]. JSME International Journal, Series C: Mechanical Systems, Machine Elements and Manufacturing, 2007, 49(4) :1179- 1187.
  • 10Liu G L,Zhao H T, Turyagye G. Real-time error compensation technique and its application on NC machine tools[C]//Proc, of the 11th International Manufacturing Conference in China, 2004,471: 587-591.

引证文献1

二级引证文献5

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