期刊文献+

基于二次相移数据重组的直行运动误差在线检测分离技术 被引量:1

On-line Measuring and Separating Technique of Linear Motion Error Based on Quadratic Phase-shift Data Re-organization
在线阅读 下载PDF
导出
摘要 通常的直线误差分离方法 ,一般是先行分离出工件的形状误差 ,再据此求出运动误差 ,由于存在着误差残留 ,不利于运动误差的在线检测 .本文在三点法测量数据的基础上 ,提出了两种基于二次相移的直行运动误差先行分离方法 :单信道二次相移数据重组法和多信道二次相移数据重组法 ,即通过对三测头数据按照二次相移原则进行单信道或多信道的数据重组 ,便能够在EST的首次操作时消除形状误差的影响 ,在反滤波基础上先行分离出直行运动误差的平移分量和转动分量 .权函数的对比分析表明 :先行分离出运动误差的单信道或多信道二次相移数据重组法与先行分离出形状误差的普通频域三点法具有相同的权函数 ,它们在本质上具有同源性和统一性 . In common straightness error separation techniques (EST), straightness error is separated and obtained firstly, and then linear motion error can be obtained secondly. Owing to inevitable error residuals, it will not be beneficial to the on machine measurement of linear motion error. To solve the problem, two new methodssingle channel quadratic phase shift data re organization method and multi channel quadratic phase shift data re organization method are proposed in this paper, which are based on the principle of quadratic phase shift and use the same measurement data coming from ordinary three point method. Through the re organization of data from one channel or multi channels , the influence of straightness error can be eliminated, and the linear motion error can be acquired directly on the basis of inverse filtering. Meanwhile, comparative analysis indicates that the same weighting function will be produced between the proposed methods for motion error measurement and the ordinary frequency domain three point method for straightness error measurement, and the homology and unitarily in nature will be confirmed. At last, satisfactory separating results in some experiments prove the correctness and effectiveness these proposed methods.
出处 《应用基础与工程科学学报》 EI CSCD 2001年第4期360-365,共6页 Journal of Basic Science and Engineering
基金 国家自然科学基金资助项目 ( 5 0 0 75 0 5 6 )
关键词 运动误差 形状误差 相移 工件 测头 误差分离 在线检测 多信道 数据重组 滤波 quadratic phase shift, data re organization, inverse filtering, weighting function, linear motion error
  • 相关文献

参考文献8

  • 1Kakino G. A measuring method for the linear error motion of machine tool[ J]. Journal of JSPE , 1982 , 48 (2) :239 ~ 244
  • 2Tanaka H, Tozawa K, Sato H, et al. Application of a new straightness measurement method to large machine tool [ J].Ann of the CIRP, 1981, 30( 1 ) :455 ~459
  • 3Tanaka H, Sato H. Extensive analysis and development of straighmess measurement by sequential-two-point method[J]. Trans ASME J Engng Indus, 1986(108) : 176 ~182
  • 4Hong M S. Separation techniques and new method for profile error and error motion measurement [ A ]. Proceedings ofthe CIRP Conf on PE&MS[ C]. Tianjin, 1991,17 ~24
  • 5Gao W, Kiyono S. On-machine measurement of large mirror profile[ A ]. Proc ASPE 7th Florida[ C ]. 1992,293 ~ 297
  • 6Gao W, Kiyono S. High accuracy profile measurement of a machined surface by the combined method [ J ].Measurement, 1996, 19(1):55~64
  • 7Gao W, Kiyono S. On-machine profile measurement of machined surface using the combined three-point method [ J ].JSME Int J Series C, 1997,40(2): 253 ~259
  • 8洪迈生,邓宗煌.三点法误差分离技术中的两个基本问题[J].计量技术,1994(1):5-7. 被引量:16

二级参考文献2

  • 1李均,袁洪祥,代瀛洲.在线圆度测量技术[J].仪器仪表学报,1989,10(1):64-71. 被引量:1
  • 2洪迈生.应用误差分离技术同时测量和分离机床主轴的径向误差运动和工件的形状误差[J]振动测试与诊断,1983(Z1).

共引文献15

同被引文献14

  • 1邓宗煌,洪迈生.三传感器误差分离技术的测量精度探讨[J].计测,1993(1):35-38. 被引量:2
  • 2洪迈生,邓宗煌.三点法误差分离技术中的两个基本问题[J].计量技术,1994(1):5-7. 被引量:16
  • 3Gao W. Error separation methods for spindle error measurement with nanometer accuracy [J]. journal of the Japan Society for Precision Engineering, 2001. 67(7): 1067~1071
  • 4Kamigaki, Yamakawa O, Omori Y. et al. Roundness measurement and its uncertainty in an international comparison [A]. Proc of IMEKO 2000 [C]. Wiena,2000. 139~142
  • 5小倉一朗 清野慧 高偉.自律的形状創成法のためのインプロセス测定プロブ開發[J].精密工學會誌,1997,63(9):1285-1289.
  • 6Gleason E, Schwenket H. A spindleless instrument for the roundness measurement of precision spheres [J].Precision Engineering, 1998, 22 (1): 37~42
  • 7Hong M S, Wei Y L, Li Z J, et al. On mapping matrixes and weight function in high-precision EST of flatness by optical probe [ A]. Proceedings of SPIE [C]. Beijing, 2000, 4222:8~15
  • 8Hideo Kato. In situ measuring system of circularity using an industrial robot and a piezo-actuator [J]. Bull JSPE, 1991, 25 (2): 130~135
  • 9Ogura I, Okazaki Y. Precision measurement for axial and angular motion errors of turning spindle by using multipoint method [J]. Journal of JSPE, 2001, 67(7): 1120~1124
  • 10IDEMA. Asynchronous spindle error measurement [S].IDEMA Standards, 1991, T17-91

引证文献1

二级引证文献2

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