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数控机床精度评价新方法 被引量:30

New evaluation method on the precision of NC machine tools
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摘要 传统的定位精度与重复定位精度等指标是在准静态下评价数控机床(CNC)性能的,无法反映数控机床在运动和加工过程中的精度。首先从数控机床的数控、伺服、机械等环节在服役态下所表现出来的性能出发,提出一种对数控机床更有针对性的,以运动精度为指标的机床精度评价新方法,通过数控指令与运动轴实际位移的符合程度即运动精度来评价机床精度,然后给出了具体的评价指标,并提出了评价指标的测量方法。分析表明,这种新的机床运动精度描述评价方法能够系统、全面地评价数控机床关键性能的优劣。最后从数控、伺服和机械角度分别阐述了影响运动精度的因素。 The performance of computerized numerical control (CNC) machine tool is evaluated by the traditional positioning error and the positioning repeatability, which is in quasi static and cannot reflect the precision of machine tool in the process of movement and machining. In this paper, a novel precision evaluation method which takes the dynamic precision as index is proposed for high-speed machine tool. The precision of machine tool is described through the consistence of the actual trajectory and the ideal command. The specific evaluation index of dynamic precision is provided. Meanwhile, the measure method of evaluation index is put forward. It can be obtained that this new evaluation method of machine tool precision can evaluate the quality of key oerformance in CNC machine tnnl ~v^t~rnntloMhl ~nd rlh,
出处 《中国工程科学》 北大核心 2013年第1期93-98,共6页 Strategic Study of CAE
基金 国家重点基础研究发展计划资助项目(2009CB724407) 国家科学重大专项(2010ZX04014-015) 国家自然科学基金重点资助项目(51235009)
关键词 数控机床 运动精度 评价指标 影响因素 NC machine tools dynamic precision evaluation index impact factors
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参考文献15

  • 1Andolfatto L,Lavernhe S,Mayer J R R. Evaluation of servo,geometric and dynamic error sources on five axis high-speed ma-chine tool[J].International Journal of Machine Tools&Manufac-ture,2011,(10-11):787-796. 被引量:1
  • 2Mohamed Slamani,Rene Mayer,Marek Balazinski. Dy-namic and geometric error assessment of an XYC axis subset on five-axis high-speed machine tools using programmed and point constraint measurements[J].International Journal of Advanced Manufacture Technology,2010,(9-12):1063-1073. 被引量:1
  • 3Zhao Wanhua,Zhang Jun,Liu Hui. Analysis on spectrum characteristic of PMLSM feed drive systems oriented to motion precision[A].Chongqing,2012. 被引量:1
  • 4Koren Y. Computer Control of Manufacturing Systems[M].{H}New York:McGraw-Hill,1983. 被引量:1
  • 5Lee K,Ibaraki S,Matsubara A. A servo parameter tuning method for high-speed NC machine tools based on contouring er-ror measurement[A].Huddersfield,England,2003. 被引量:1
  • 6Schmitz Tony L,Ziegert John C,Canning J Suzanne. Case study:A comparison of error sources in high speed milling[J].{H}Precision Engineering,2008,(02):126-133. 被引量:1
  • 7洪迈生;苏恒;李济顺.数控机床的运动精度诊断法[A]无锡,2002. 被引量:1
  • 8Kono D,Matsubara A,Yamaji I. High-precision machin-ing by measurement and compensation of motion error[J].Inter-national Journal of Machine Tools & Manufacture,2008,(10):1103-1110. 被引量:1
  • 9Nakamura M,Goto S,Kyura N,Zhang Tao. Mechatronic Servo System Con-trol[M].Berlin:Springer-Verlag,2004. 被引量:1
  • 10Dieulot J Y,Thimoumi I,Colas F. Numerical aspects and performances of trajectory planning methods of flexible axes[J].International Journal of Computers Communications and Con-trol,2006,(04):35-44. 被引量:1

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