• CN:11-2187/TH
  • ISSN:0577-6686

›› 2014, Vol. 50 ›› Issue (7): 128-135.

• 论文 • 上一篇    下一篇

扫码分享

数控机床几何精度溯源方法研究

田文杰;牛文铁;常文芬;张大卫   

  1. 天津大学机构理论与装备设计教育部重点实验室;北京工研精机股份有限公司技术开发中心
  • 出版日期:2014-04-05 发布日期:2014-04-05

Research on Geometric Error Tracing of NC Machine Tools

TIAN Wenjie, NIU Wentie, CHANG Wenfen, ZHANG Dawei   

  1. Key Lab of Mechanism Theory and Equipment Design of Ministry of Education, Tianjin University; Technological Development Center, Beijing Precision Machinery & Engineering Research Co.
  • Online:2014-04-05 Published:2014-04-05

摘要: 几何精度是数控机床的重要性能指标,基于激光测量原理的“九线法”是几何误差溯源最常用的手段。系统分析“九线法”在应用中存在的三类问题,并对其做出改进,建立新型几何误差辨识模型,该模型可有效提高误差辨识结果的稳定性,且该模型可实现运动副制造安装误差的溯源,以指导机床装配与精度设计。同时,针对传统九线法滚转角误差辨识中存在原理性偏差的问题,提出一种试验修正方法,以提高滚转角误差的辨识精度。计算机仿真和试验结果表明,所述理论与方法可以更加有效地实现数控机床几何误差的溯源。

关键词: 数控机床;几何误差;九线法;误差辨识, 车轮多边形化, 道岔, 高速铁路, 轮轨垂向力, 轮轨系统动力学

Abstract: Geometric accuracy is an important performance criterion for NC machine tools, and the 9-line method based on laser measuring technology is widely used for error tracing. Three kinds of application problems of the traditional 9-line method are analyzed, and a new geometric error identification model is established by modifying the traditional method. The new model can improve the stability of identification results effectively, and make it possible that the manufacturing and assembly errors of the joints can be traced. Moreover, since the traditional 9-line method has principle errors in roll angle’s identification, an experiment-based method is proposed to eliminate the principle errors. The effectiveness of these approaches are verified by both computational and experimental results.

Key words: NC machine tool;geometric error;9-line method;error identification, high-speed railway, turnout, wheel-rail system dynamic characteristics, Wheel-rail vertical force., Polygonal wheels

中图分类号: