期刊文献+

Identification of Kinematic Errors of Five-axis Machine Tool Trunnion Axis from Finished Test Piece 被引量:3

Identification of Kinematic Errors of Five-axis Machine Tool Trunnion Axis from Finished Test Piece
下载PDF
导出
摘要 Compared with the traditional non-cutting measurement,machining tests can more accurately reflect the kinematic errors of five-axis machine tools in the actual machining process for the users.However,measurement and calculation of the machining tests in the literature are quite difficult and time-consuming.A new method of the machining tests for the trunnion axis of five-axis machine tool is proposed.Firstly,a simple mathematical model of the cradle-type five-axis machine tool was established by optimizing the coordinate system settings based on robot kinematics.Then,the machining tests based on error-sensitive directions were proposed to identify the kinematic errors of the trunnion axis of cradle-type five-axis machine tool.By adopting the error-sensitive vectors in the matrix calculation,the functional relationship equations between the machining errors of the test piece in the error-sensitive directions and the kinematic errors of C-axis and A-axis of five-axis machine tool rotary table was established based on the model of the kinematic errors.According to our previous work,the kinematic errors of C-axis can be treated as the known quantities,and the kinematic errors of A-axis can be obtained from the equations.This method was tested in Mikron UCP600 vertical machining center.The machining errors in the error-sensitive directions can be obtained by CMM inspection from the finished test piece to identify the kinematic errors of five-axis machine tool trunnion axis.Experimental results demonstrated that the proposed method can reduce the complexity,cost,and the time consumed substantially,and has a wider applicability.This paper proposes a new method of the machining tests for the trunnion axis of five-axis machine tool. Compared with the traditional non-cutting measurement,machining tests can more accurately reflect the kinematic errors of five-axis machine tools in the actual machining process for the users.However,measurement and calculation of the machining tests in the literature are quite difficult and time-consuming.A new method of the machining tests for the trunnion axis of five-axis machine tool is proposed.Firstly,a simple mathematical model of the cradle-type five-axis machine tool was established by optimizing the coordinate system settings based on robot kinematics.Then,the machining tests based on error-sensitive directions were proposed to identify the kinematic errors of the trunnion axis of cradle-type five-axis machine tool.By adopting the error-sensitive vectors in the matrix calculation,the functional relationship equations between the machining errors of the test piece in the error-sensitive directions and the kinematic errors of C-axis and A-axis of five-axis machine tool rotary table was established based on the model of the kinematic errors.According to our previous work,the kinematic errors of C-axis can be treated as the known quantities,and the kinematic errors of A-axis can be obtained from the equations.This method was tested in Mikron UCP600 vertical machining center.The machining errors in the error-sensitive directions can be obtained by CMM inspection from the finished test piece to identify the kinematic errors of five-axis machine tool trunnion axis.Experimental results demonstrated that the proposed method can reduce the complexity,cost,and the time consumed substantially,and has a wider applicability.This paper proposes a new method of the machining tests for the trunnion axis of five-axis machine tool.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第5期999-1007,共9页 中国机械工程学报(英文版)
基金 Supported by National Nature Science Foundation of China(Grant No.51175461) Science Fund for Creative Research Groups of National Natural Science Foundation of China(Grant No.51221004) Program for Zhejiang Leading Team of S&T Innovation of China(Grant No.2009R50008)
关键词 five-axis machine tool kinematic errors trunnion axis test piece error-sensitive directions five-axis machine tool kinematic errors trunnion axis test piece error-sensitive directions
  • 相关文献

参考文献30

  • 1IBARAKI Soichi, KNAPP Wolfgang. Indirect measurement of volumetric accuracy for three-axis and five-axis machine tools: A review[J].Int.J. of Automation Technology, 2012, 6(22): 110-124.
  • 2SCHWENKE H, KNAPP W, HAITJEMA H, et al. Geometric error measurement and compensation of machines -An update[J]. CIRP Annals - Manufacturing Technology, 2008, 57(2): 560-575.
  • 3SCHWENKE H, SCHMITT R, JATZKOWSKI P, et al. On the fly calibration of linear and rotary axes of machine tools and CMMs using a tracking interferometer[J]. CIRP Annals - Manufacturing Technology, 2009, 58(1): 477-480.
  • 4WANG Jindong,GUO Junjie.Algorithm for Detecting Volumetric Geometric Accuracy of NC Machine Tool by Laser Tracker[J].Chinese Journal of Mechanical Engineering,2013,26(1):166-175. 被引量:13
  • 5ISO 230-2, 2006. Test code for machine tools - Part 2: Determination of accuracy and repeatability of positioning numerically controlled axes[S]. ISO (International Organization for Standardization), 2006.
  • 6TSUTSUMI M, SAITO A. Identification and compensation of systematic deviations particular to 5-axis machining centers[J]. International Journal of Machine Tools and Manufacture, 2003, 43(8): 771-780.
  • 7ZARGARBASHI S, MAYER J. Assessment of machine tool trunnion axis motion error, using magnetic double ball bar[J]. Int. J. of Machine Tools and Manufacture, 2006, 46(14): 1823-1834.
  • 8WEIKERT S. R-test, a new device for accuracy measurements on five axis machine tools[J]. Cirp Annals-Manufacturing Technology, 2004, 53(1): 429-432.
  • 9YAMAMOTO T, TSUTSUMI M. Determination of axis of rotation of rotary table for five-axis machining centers[J]. J. of the Japan Society for Precision Engineering, 2011, 77(3): 301-305. (in Japanese).
  • 10DASSANA Y AKE K, TSUTSUMI M, SAITO A. A strategy for identifying static deviations in universal spindle head type multi-axis machining centers[J]. Int. J. of Machine Tools and Manufacture, 2006, 46(10): 1097-1106.

二级参考文献14

共引文献12

同被引文献33

引证文献3

二级引证文献70

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